Additionally, an example showing calculation of mid-span deflection of a blocked wood structural panel diaphragm will be presented. Understand how to analyze wall framing as part of the MWFRS per ASCE 7-10, Understand why wall framing is analyzed using out of plane C&C wind pressures independent of gravity loads, Be familiar with various ASCE 7-10 ASD load combinations used for bearing walls, Be knowledgeable of standards including the 2015 NDS, 2015 WFCM, and ASCE 7-10 used for design of tall walls. Learn about the engineering basis of prescriptive tables used to size wood members and connections to resist high wind, seismic, and snow loads. Universities have taken notice and are creating mass timber institutes to meet this demand of knowledge. Identify the characteristics of a panelized wood roof diaphragm. Additionally, background and requirements for large high load diaphragms will be discussed. Evaluate special inspection requirements as required for high-load diaphragms. Using plans from a 2-story residence, participants prescriptively design the structure to resist high wind, seismic, and typical residential gravity loads. This webinar provides an overview of the prescriptive and engineered provisions, tabulated values, design examples, and requirements for installation per the 2015 SDPWS and 2018 WFCM. This program provides information on best practices to assist the Fire Service charged with responsibilities for fire and life safety on a construction site. Compare and contrast the segmented shear wall and perforated shear wall approach to design. The Wood products Engineering Department at the University of Ibadan on Academia.edu This course is intended to increase student awareness of safety issues relevant to the Building and Civil Engineering Technology industry. Discuss shaft wall assembly types, evaluating their applicability to elevator, stair and mechanical shafts. Recognize the basic physics of sound transmission through and around floor/ceiling or wall assemblies in a building, and how this is perceived by occupants within the building. Design a CLT wall for fire resistance and thermal separation. There are several design tools and standards to assist engineers, architects, and building officials with the design of shear walls. This course will discuss the 2015 SDPWS provisions for distributing shear using the deflection calculation approach and effects on calculated design shear capacity of a shear wall line. 6. Conduct a standard design check for the limit states of strength and deflection for a tall wood stud In addition, new options for wall/floor intersection details for Type III construction will be explained, as well as using the DCA-3 assemblies for complying with code requirements for sound transmission. The course will explore designs that have evolved from historical approaches and developed as a result of modern technological advances in timber fabrication. Equivalencies: 1.0 Hours of Instruction = 0.1 Continuing Education Units (CEU) = 1 Professional Development Hours (PDH)=1 Learning Units (LU). Identify the changes for designing wood members exposed to fire and utilize it to predict the fire A load bearing stud wall design example based on the allowable stress design methods outlined in AWC's 2015 National Design Specification® (NDS®) for Wood Construction and 2015 Wood Frame Construction Manual along with ASCE 7-10 Minimum Design Loads for Buildings and Other Structures will demonstrate standard design checks for limit states of strength and deflection. The Wood Frame Construction Manual (WFCM) for One- and Two-Family Dwellings (ANSI/AWC WFCM-2012) has been updated from the 2001 WFCM. See also DES412-1 – Seismic-Resistive Design of Wood Buildings. State the fire resistance requirements for mass timber building elements. Building codes stipulate minimum performance requirements regarding noise transmission through common interior walls and floor/ceiling assemblies that separate a dwelling unit from either a public area or an adjacent dwelling unit. With the possible exception of the “Windows” test method, the SFM standards provide a way for combustible materials to comply with the provisions of the code. DCA 6 has been recently updated to include guidance on provisions in the 2012 International Residential Code (IRC) pertaining to single level residential wood deck construction. Participants are strongly encouraged to view the free recorded webinar on Significant Changes to the 2012 WFCM (STD315) prior to this webinar. shear walls and framing around openings) and connections. Be knowledgeable about the use of these products through examples of a wide range of building applications. Be familiar with current wood member connection solutions and applicable design requirements. Course Summary: Wood frame construction is the predominant method of building homes and apartments in the United States, enabling this nation to have the world’s best house population. Describe the compartment fire test results and circumstances that led to the development of a full-scale room fire protocol for qualifying adhesives used to manufacturer cross-laminated timber. In senior years, you’ll learn how to analyze and optimize manufacturing operations. It will also address establishing fire resistance for wood assemblies and heavy timber; special provisions for pedestal buildings; criteria for finishes, appendages, and other wood features; the scoping of referenced wood design standards; an overview of structural provisions in Chapter 23; and requirements for precautions during construction. Panelized Walls - a technique that is allowing wood construction to be constructed under a more controlled environment and decreasing the time of construction at the site. Evaluate and describe the outcomes of the ATF tests and contrast those to the outcomes of the FPRF tests. Determining proper code applications for designing for fire-resistance in wood-frame construction can be challenging. Figures for multiple lateral connections make connection to an existing dwelling simpler and require less removal of existing materials. Be able to compare the difference between the 3-term and 4-term deflection equation in the 2008 SDPWS. Discern differences in acceptable types of LCA in NGBS. This presentation will provide an overview of the significant changes in the 2018 WFCM relative to the previous 2015 edition. Assess and accurately choose which AWC resources to utilize for guidance. Equivalencies: 1.0 Hours of Instruction = 0.1 Continuing Education Units (CEU) = 1 Professional Development Hours (PDH)= 1 Learning Units (LU). 1999. Summarize the test protocols and associated pass/fail criteria established in PRG 320 for qualifying adhesives and evaluate their impact on mass timber construction. Specify design options and tools for mass timber projects. Restate goals and objectives of work groups and committees interested in mass tall timber construction. Identify minimum prescriptive wood deck requirements. This presentation will provide background and examples for calculation of forces on headers which will enable designers and code officials to quickly determine design loads. Understand hold down design and special conditions that pertain to seismic hold downs. Identify the Types of Construction in the IBC which allow wood construction, Determine how to calculate maximum building height and area, Describe the methods of establishing fire resistance, Understand the safety precautions needed during construction. CLT was first incorporated in AWC's 2015 National Design Specification® (NDS®) for Wood Construction as well as ICC’s 2015 International Building Code (IBC). The course provides all newly commissioned Engineer Officers with the technical and tactical knowledge and skills that are essential to success as a platoon leader. Key to its success, is understanding in-service conditions of structure to provide proper design and detailing. Define principles of fire design provisions for mass timber building elements and assemblies for new construction Types IV-A, IV-B, and IV-C. The 2018 International Building Code (IBC) published by the International Code Council and the National Design Specification® (NDS) for Wood Construction published by the American Wood Council are both now available. Many fire departments have limited experience in planning and response to these complex buildings. Many regions of the United States are at risk of high winds from hurricanes, downbursts, and thunderstorms. Apply model codes and standards that pertain to safety precautions during construction and pre-incident planning. Commercial and multifamily buildings are often built using light wood frame construction but sometimes another material is used for the shaft construction. Since that time, the Tall Wood Building (TWB) Ad Hoc Committee has reviewed voluminous materials regarding tall wood buildings, including results of various testing around the world, as well as studies domestically in support of the TWB charge to conduct a thorough review of the science of tall wood. considered. Identify the building code requirements for sound transmission and how these are addressed in DCA3. Increasingly, wood framing is also being used in commercial and industrial buildings. DCA6 has been updated to include guidance on provisions for the 2012 International Residential Code (IRC) pertaining to single level residential wood deck construction. This webinar will be a continuation of the Loads webinar and use the loads developed previously to illustrate the importance of load path continuity in buildings. Understand reasons for the changes to the IBC and the wood design standards. Heavy timber construction (Type IV in the International Building Code) is one of the oldest building types used in the United States. The Wood Frame Construction Manual (WFCM) for One- and Two-Family Dwellings (ANSI/AWC WFCM-2012) has been updated to the 2015 WFCM which is referenced in the 2015 International Building Code and 2015 International Residential Code. NCSEA does not warrant that a program complies with the continuing education requirements in all jurisdictions. One of the challenges that code officials and designers face for modifying existing wood structures is determining what design properties to use. Part 3 will focus on the second-story design including floor and wall framing and sheathing (e.g. Mid-ply Shear Walls - a technique for increased shear capacity. process. It addresses a range of topics such as roadwork safety, rigging, fall arrest, excavation safety etc. AWC's 2012 National Design Specification (NDS) for Wood Construction is referenced in US building codes and used to design wood structures worldwide. It will explain the determination of maximum building size for eight common use groups using the height and area tables of the 2018 IBC and pre-calculated tables provided in the CCWD. Packing List. Be familiar with 2015 SDPWS updates to referenced standards. Discussion will include code compliant calculation methods for fire resistance ratings of wood frame assemblies and for wood members exposed to fire per the 2015 National Design Specification® (NDS®) for Wood Construction Chapter 16. However, AWC DCA 6, which has been recently updated, includes guidance on provisions for the 2015 International Residential Code (IRC) pertaining to single level residential wood deck construction. Wood CEDengineering.com PDH courses offered under the Wood subcategory include Lumber Stress Grades and Design Properties, Determining Allowable Design Values for Wood, Use of Wood in Buildings and Bridges, and more. Course Information. Products covered are lumber, glued-laminated timber (glulam), cross-laminated timber, structural composite lumber, wood I-joists, and wood structural panels. For any project, a thorough understanding of the interaction between wind loads and material properties is key to the design process. Students attend classroom instruction during their 14 day student restricted movement period with … This presentation will provide a step-by-step design example of CLT used in a wall application to resist gravity loads as well as design for exposure to fire per the 2018 National Design Specification® (NDS®) for Wood Construction and AWC’s TR-10 – Calculating the Fire Resistance of Wood Members and Assemblies. Connection detailing requirements and design examples will also be provided. This presentation will focus on the prescriptive compliance paths for meeting the energy requirements of the 2012 International Residential Code (IRC) and the 2012 International Energy Conservation Code (IECC). During the work of the ICC Tall Wood Building Ad Hoc Committee (TWB), special test programs were developed and performed with the input of the fire service. Participants will investigate past and current methods for determining force transfer around openings for wood shear walls through discussion of the joint research project of APA – The Engineered Wood Association, the University of British Columbia (UBC), and the USDA Forest Products Laboratory (FPL). and is delivered in a variety of fashions such as guest speakers, workshops, on-site visits etc. List some of the challenges and possible resolutions to building bridges and boardwalks with wood. Builders and building officials will also benefit from the information provided. In this presentation, detailing for elevator, stair and mechanical shafts will be discussed along with relevant code provisions. Part 2 will deal with design of wall and floor systems, including shear wall design and appropriate connections between roof, floor, wall, and foundations to maintain load path. Be familiar with the impact of combinations of loads of different durations on design of structural wood members. Understanding issues that may occur if not properly designed and detailed, will help designers mitigate potential issues. Graduates of engineering degrees are in high demand across the globe, with developing and developed nations alike calling out for highly qualified specialists to keep their economies growing. Be familiar with additional resources that are available. Elements and subassemblies which receive loads both directly and as part of the main wind force resisting system, such as wall studs, must be checked independently for MWFRS loads and C&C loads. Rosenheim’s practical course in wood technology is as unique as the material itself. Understand the proposed code change that addresses the performance requirements for cross laminated timber, and state its impact on mass timber construction. … In January 2019, the International Code Council (ICC) approved a set of proposals to allow tall wood buildings as part of the 2021 International Building Code (IBC). Determining the allowable building code construction type based on for a building’s occupancy and size is fundamental to proper design. It will discuss how they may be applied to your future building designs and how they are being used in projects across the nation today to comply with the International Building Code (IBC). Identify wind load increases in ASCE 7-16 that affect wood design and construction, Identify new fastener provisions developed to address increased wind loads, Design nails for withdrawal and head pull-through to resist new wind loads. They also must take Introduction to Business Skills (SGMA 217) in place of Oral and Written Communication (COMS 363). Due to COVID-19, construction sites are being shut down all over the country. Discuss the special provisions of International Building Code Section 510 and give examples of their applications in common building configurations. Understand the CBC Chapter 7A WUI provisions as they relate to wood construction. The WFCM contains tabulated prescriptive and engineered design provisions based on ASCE 7-10 Minimum Design Loads for Buildings and Other Structures and covers connections, wall systems, floor systems, and roof systems. Able to explain and use fire protection requirements for wood within the IBC and IRC. Connection design philosophy and behavior, an overview of 2015 NDS provisions related to bolt design including local stresses in fastener groups, and a detailed design example are included. Recognize the recent significant codes and standards changes related to wood construction. Attendees will learn to use checklists and detailing summaries to ensure a complete load path is prescriptively designed for the wall and floor systems. Be familiar with significant changes between the 2012 and. AWC's 2015 National Design Specification (NDS) for Wood Construction is referenced in US building codes and used to design wood structures worldwide. It is a trip of understanding the wood and it's uses. Search Courses >> “As a practicing engineer, RedVector provides me a convenient way to get necessary credits.” ~ James M., RedVector Continuing Education User . Evaluate a prescriptive and engineered design methodology for perforated wood shear walls. AWC's 2015 Special Design Provisions for Wind and Seismic (SDPWS) is referenced in the 2015 International Building Code (IBC) for design of structures using wood shear walls and diaphragms to resist wind and seismic lateral loads. Be knowledgeable about preservative treated wood and naturally durable species, grading issues, and tips on preventing moisture-related insect and fungal attack. Be able to identify the similarities and differences with respect to ASD, design values, and behavioral equations. Applications for the use of CLT include roof and floor systems as well as wall systems. Receive updates on new online courses, live webinars and special events. Identify the main risks and hazards on construction sites that lead to fires in structures under construction. is a program of the Canadian Wood Council that supports a wood culture by connecting individuals, sharing best practices and celebrating innovative successes. Identify the necessary AWC standards to assist with shear wall design. Explain when main wind force resisting systems and component and cladding load cases should be When you purchase a Certificate you get access to all course materials, including graded assignments. Be aware of revised language related to withdrawal of fasteners with a tapered tip. Perth: ON: Passion for Wood: Acton: ON: … Structural and fire protection characteristics of NLT, GLT and CLT will be discussed as well as IBC code provisions that allow their specification in both residential and commercial applications for a wide variety of occupancies. This article covers a brief history of heavy timber construction and the progress of the TWB that researched tall mass timber construction and performed testing to help inform code change recommendations which ensure life safety and property protection in tall mass timber buildings. This presentation provides background on special inspections for wood construction, in addition to discussion on related topics such as prefabricated wood components and special inspections for lateral resistance as it pertains to the 2018 IBC. Below is the tentative list of graduate courses to be offered in 2018 - 2019: FALL 2018 GRADUATE COURSES COURSE CRN COURSE NAME DAY TIME ROOM … Learn about the impacts on wood properties due to treatment and preservation processes. One of Wood’s greatest strengths is engineering expertise. This presentation will provide an overview of the significant changes to wood design and construction provisions relative to previous editions. wall subject to wind and gravity loads. engineering course that incorporates design-build activities into entrepreneurial and business contexts, thereby providing relevance to foundational math skills and science practices while integrating problem solving and cutting-edge technology. Wood Structure & Moisture Content: Part A, Construction Engineering and Management Certificate, Machine Learning for Analytics Certificate, Innovation Management & Entrepreneurship Certificate, Sustainabaility and Development Certificate, Spatial Data Analysis and Visualization Certificate, Master's of Innovation & Entrepreneurship. Analyze and choose the safest and most efficient wood shear wall design approach. Obtain resources for complying with wood connection engineering issues. Based on his valuable contribution to the field of wood engineering, Dr. Doudak was awarded the Forest Products Laboratory Young Engineer Award, 2008. Building with CLT has increased in popularity for many reasons including: just-in-time fabrication and job site delivery, speed and efficiency in construction, reduced job site noise and on-site labor force, substitution of high embodied materials with a renewable resource that sequesters carbon, and creating a living or work space that has the aesthetics of exposed wood. Learning Objectives: The 2018 International Building Code (IBC) specifies that structures using wood-framed shear walls and diaphragms to resist wind, seismic and other lateral loads shall be designed and constructed in accordance with AWC’s 2015 Special Design Provisions for Wind and Seismic (SDPWS) or 2018 Wood Frame Construction Manual (WFCM) for One- and Two-Family Dwellings. This performance is determined through testing. We'll calculate your UCAS points & connect you to a personalised list of courses for you to compare. Be able to understand overlooked wood connection engineering issues. Give examples of code changes in Appendix A for fasteners and framing provisions. Understand which exterior wood products meet the CBC Chapter 7A WUI provisions. wood buildings allowed under the 2015 IBC. To start an available course, click on an icon representing the format you prefer next to the course number (the course numbering does not imply prerequisites). The primary function of any wood finish (paint, varnish, and stain, for example) is to protect the wood surface, help maintain a certain appearance, and provide a cleanable surface. A report titled Technical Report 15 – Calculation of Sound Transmission Parameters for Wood-Framed Assemblies, available at awc.org, provides the basis for the calculation-based analysis approach. The article also includes a design example of a loadbearing tall wood stud wall design. Visit the Learner Help Center. During the work of the ICC Tall Wood Building Ad Hoc Committee (TWB), special test programs were developed and performed with the input of the fire service. This course highlights remarkable buildings where the use of wood as a structural or finish material has made a unique contribution, with a focus on indoor air quality, acoustics, physical health, and a natural, positive human response to wood that has always been intuitive, but is increasingly being proven by research and experience. Student Information: Restricted Movement Guidelines Memo. Today, UK engineering graduates are as high in demand as ever, thanks to our world-class universities and world-famous culture of innovation. Understand how to appropriately apply tables in both the WFCM and High Wind Guides to determine prescriptive minimums. It is estimated that over 40 million decks in the US are more than 20 years old, meaning they were constructed before today’s building codes and established best practices. Recognize new code provisions for special inspection of tall mass timber structures. This article will highlight the changes in the 2012 NDS and 2012 NDS Supplement relative to previous editions and provide an overview of the standard. Engineered approaches such as those outlined in AWC's 2015 Special Design Provisions for Wind and Seismic (SDPWS) typically result in more efficient designs. discusses options and strategies that designers and specifiers can use to choose the best solutions suited for Discover how to design CLT floors to achieve serviceability goals related to deflection and creep. Become familiar with options available for protection of wood products. This article discusses significant additions and revisions to the 2008 SDPWS and how to apply design provisions for shear walls and diaphragms. Recognize construction types, occupancies, and determine building heights and areas for wood-frame low- and mid-rise construction per the 2015 International Building Code. This course provides an overview of the latest changes to residential mid-rise construction provisions in the International Building Code (IBC) and AWC's National Design Specification® (NDS®) for Wood Construction and Special Design Provisions for Wind and Seismic (SDPWS). Be able to analyze format and content within the 2012 NDS. Recognize how cross-laminated timber and other glued engineered wood products are manufactured. Changes to the 2021 International Building Code allow for construction of mass timber buildings with larger heights and areas than is currently permitted in Types III, IV, and V construction. In this course, participants will learn about format of the SDPWS and how to apply design provisions to shear walls and diaphragms as well as changes from previous editions. To get the best results for Undergraduate Architectural Engineering degree courses, simply enter your predicted grades here. The difference between the segmented and perforated shear wall design approach and an overview of various hold-down design methods is discussed. Equivalencies: 1 Hour of Instruction = 0.1 Continuing Education Unit (CEU) = 1 Professional Development Hour (PDH) = 1 Learning Unit (LU). Intersections Wood Gallery & Studio Day, week-long and 10-week long courses throughout the year. Glued-laminated timber is often used as a primary load carrying member of buildings. Course Length 1 - 5 Hours 6 - 10 Hours 11 - 15 Hours 16 - 23 Hours 24 - 29 Hours 30+ … Included will be a discussion on the flexibility offered in the codes and what design aids are available to make compliance easier, including DCA 7 – Meeting Residential Energy Requirements with Wood-Frame Construction – 2012 IECC Version and a complementary Energy UA calculator. Recall the efforts of the ICC Tall Wood Building Ad Hoc Committee and Group A proposals, Compare existing IBC construction types with requirements for new construction types, to include fire protection features, Visualize representative allowable building sizes as prescribed by the TWB Ad Hoc Committee, Summarize and discuss standards updates and next steps for tall mass timber construction. This presentation highlights 2012 International Building Code (IBC), 2010 Minimum Design Loads for Buildings and Other Structures (ASCE 7-10) and the 2008 Special Design Provisions for Wind and Seismic (SDPWS) requirements applicable to the seismic design of wood structures. Attendees are asked to come prepared with plenty of questions – in this new panel discussion format we are encouraging participants to engage with our experts and help guide the discussion! Home; All Subjects; Engineering; Enroll in an online introduction to engineering course or explore specific areas such as structural, mechanical, electrical, software or aeronautical engineering. His PhD research was aimed at determining the load paths in wood light frame buildings under various stages of construction using a holistic design approach. This article will highlight changes in the 2015 NDS and 2015 NDS Supplement relative to previous editions and provide an overview of the standard. the 2015 International Building Code (IBC). This option lets you see all course materials, submit required assessments, and get a final grade. This Course doesn't carry university credit, but some universities may choose to accept Course Certificates for credit. A career in engineering can be exciting and extremely valuable, finding solutions to some of the newest and oldest challenges we as humans face. Be familiar with the ever-growing family of traditional and engineered wood products (EWP's) and their unique characteristics, including: Be familiar with the standards that form the basis for the manufacture, development of design stresses, and design procedures for each product. Based on these proposals, the 2021 IBC will include three new construction types—Type IV-A, IV-B and IV-C—allowing the use of mass timber or noncombustible materials. Design wood diaphragms and their chords and collectors for seismic forces. Not only does CLT meet all of these attributes, but it also provides excellent thermal separation and can be designed to provide up to two hours of fire resistance and even more when protected. Almost all of EPIC's courses offer Continuing Education Units (CEUs) and Professional Development Hours (PDHs). Founded in 1867, West Virginia University is moving toward a global destiny. Frank conducted wood engineering research and taught wood design courses throughout his 26-year tenure at VT. Frank, along with his colleagues at VT and Washington State University, have developed and presented continuing education programs for more than 30-years. A historical perspective of how past seismic experience with this building type has influenced today's building code provides a good perspective for the participant to apply the current provisions of ASCE 7-10, 2012 NDS and 2008 SDPWS. When will I have access to the lectures and assignments? This course is useful to each and every people irrespective of their academic background and interests. The purpose of this article is to explore code provisions for larger Coursera gives you opportunities to learn from top-ranked schools about engineering topics ranging from fundamentals of physics and mathematics to specialized topics in materials science or project management. This program is designed to provide background and information to fire departments that may experience the construction of large area buildings in their community. Be able to calculate wood-frame diaphragm deflection using the 2008 SDPWS. This course covers the analysis of lightweight wood framed buildings and the behaviour of flexible and rigid diaphragms. This article will provide an introduction to historic wood structures and modern innovative wood structures. Attendees will learn to use prescriptive tables to size wood members and connections to resist high wind, seismic, and snow loads in the wall and floor systems. The International Code Council’s (ICC) International Building Code (IBC) Chapter 17, titled Structural Tests and Special Inspections, will be covered in this program. Multiple approaches to calculating capacity will be discussed, including tabulated references, calculation-based techniques, and computer program solutions (including WoodWorks® Connections software). This program provides guidance that is based on compliance with Chapter 33 of the 2018 International Fire Code, Chapter 33 of the 2018 International Building Code, and NFPA Standards 1 and 241. The presentation will include an overview of the manufacturing of glued engineered wood products and the applicable code-referenced standards. The WFCM contains tabulated prescriptive and engineered design provisions based on ASCE 7-10 Minimum Design Loads for Buildings and Other Structures and covers connections, wall systems, floor systems, and roof systems. This article highlights certain engineering topics related to DCA 6 and provides some background for those issues. Shear, uplift, and overturning loads are calculated for various building components. The course covers the complete design of wood buildings, except for the foundations. Provisions contained in this document that are not included in the IRC are considered good practice recommendations. Login ; Forgot your password? 174: 170-187. Acquire knowledge on resources to develop solutions for resisting wind loads. These innovations are also making it possible for wood to be designed and built to taller heights and larger areas than what current codes permit. Consider the structural design properties of CLT relevant to floor and roof applications. This methodology is based on a joint research project of APA – The Engineered Wood Association, University of British Columbia (UBC), and USDA Forest Products Laboratory that examined variations of shear walls with code-allowable openings. This has led to code change proposals for the 2021 IBC, expanding Type IV construction for tall “mass timber” buildings. Some items on the list of wood products stay the same (lumber, plywood and veneer for building construction, furniture, shipping pallets & crates and other containers & packaging materials, railroad ties, utility poles, chemical feed stocks, etc), but the list also keeps changing to meet new needs and challenges as the resource changes. Provisions contained in this document that are not included in the IRC are considered good practice recommendations. Participants will conclude that research results obtained from this study can be used to support different design methodologies in estimating forces around openings accurately. Topics will include recent International Code Council (ICC) and American Wood Council efforts related to code advancement, and the latest changes to the 2012 International Building Code (IBC), 2012 National Design Specification (NDS) for Wood Construction and 2008 Special Design Provisions for Wind and Seismic (SDPWS). Course Search: Search. OVERALL RATING . Engineered wood is innovative, adaptable, and efficient. Originally this course was given as a series of six online webinars and have now been adapted as a self-paced online learning course. The vertical and lateral load paths of conventional residential decks are addressed in the 2018 International Residential Code. This 90-minute webinar will introduce attendees to several of the recent major fires and their causes, the many fire-related hazards that exist on a construction site, the International Building and Fire Code and NFPA requirements for fire protection safeguards during construction and solutions for developing simple fire safety strategies. Identify vertical and lateral load paths of conventional residential decks, Identifying the minimum footing size and materials per 2018 IRC, Determining appropriate beams and joist span lengths using IRC provisions, Determining lateral connection options for the deck to existing dwelling based on IRC requirements. Understand the limitations of wood shear walls and diaphragms. Industrial Engineering Courses Search Industrial Engineering CE. light-frame construction. CCWD was produced in partnership with the Regionalized programs throughout Canada working towards advancing the use of wood in … The primary focus of this program is on large buildings during construction. by CZ Feb 11, 2020. Understand construction techniques that prevent moisture intrusion into wood-framed structure including code-required clearances, site drainage, and correct placement of moisture barriers. Many courses do, however, require a basic understanding of engineering principles. Apply the reference design values from the NDS Supplement. The TWB developed its own test scenario(s) to substantiate any code change proposals (testing was carried out at ATF labs); and worked to develop a comprehensive set of technically-substantiated code changes for consideration during the 2018 Group A code development process. Discuss allowable building size calculators and review their capabilities in analyzing single- and multi-occupancy buildings. Examine the use of CLT in example buildings and connection details. Please note that AWC, AIA, ICC, and NCSEA do not warrant that a program complies with the continuing education requirements in all jurisdictions. Mass timber fire resistance ratings when fully exposed or provided with some degree of noncombustible protection is addressed based on current and proposed future code provisions. Define relationship between building’s sustainability and health/performance of building’s occupants. Identify and detail high capacity shear walls and diaphragms. Often selected for aesthetic reasons or its unparalleled design flexibility, glulam also offers superior structural performance combined with long term durability. Become familiar with relevant product standards and grade stamps associated with wood products. Health Sciences. Identify minimum construction detailing requirements. Learn where to find information and research that supports the new 2021 IBC Code change. This presentation will provide an overview of the significant changes for wood design per AWC's National Design Specification® (NDS) for Wood Construction. Be familiar with the significant changes between the 2001 and 2012 WFCM. This course will provide an overview and comparison of the 3-term and 4-term deflection equations. Be able to understand Load Resistance Factor Design (LRFD) and how it applies to wood structural design. September 28, 2002. Cross-Laminated Timber (CLT) - a sustainable technology to compete with reinforced concrete mid-rise and high-rise construction as well as concrete tilt up. Understand how to design wood structural panels to resist wind loads. Be able to recommend fastening guidelines for wood to steel, wood to concrete, and wood to wood connections. Wood handbook--Wood as an engineering material. Discuss relevant CLT product manufacturing and design standards and identify where these standards are referenced in the IBC. One of the methods for determining fire resistance per section 703.3 in the 2018 International Building Code is fire-resistance designs documented in approved sources. Learn the appropriate high wind, seismic, and snow loads to apply to residential structures based on code-referenced load standards. Engineering concepts from the 2015 Wood Frame Construction Manual (WFCM), used to develop the 2015 WFCM High Wind Guides, will be covered, along with updates on changes to the 2015 WFCM. Whether they’re making it faster, smarter, or more economical, engineers are responsible for imagining solutions to complex problems across a range of exciting industries. This course will discuss the 2015 SDPWS which is a dual format document with both allowable stress design (ASD) and load and resistance factor design (LRFD). Drexel University Wood Engineering Lab Report Fitimaleafa K. Taupau Instructor: Bahar Riazi Esfahani Course: CAEE 202 Lab Discuss the overall format and content within the 2015 NDS and 2015 SDPWS. This article will discuss the 2015 SDPWS and participants will learn about format of the SDPWS as well as how to apply design provisions to shear walls and diaphragms as well as changes from previous editions. Become familiar with the range of traditional and engineered wood products available for structural design. including the reason the proponent offered for the change and any modifications made during the hearing The 2012 WFCM is referenced in the 2012 International Building Code and 2012 International Residential Code. Changes to the 2021 International Building Code allow for construction of mass timber buildings with larger heights and areas than is currently permitted in Types III, IV, and V construction. The case for using wood in mid-rise multi-story construction is continuing to grow - fuelled in large part by rising costs, green building mandates, and the need for urban intensification. This course uses Design of Wood Frame Buildings for High Wind, Snow, and Seismic Loadings (2015 WFCM Workbook) which provides a design example, helpful checklist, and background information for design of a wood-frame structure in accordance with the 2015 WFCM (referenced in the 2015 IRC and IBC). Adhesive bonding of wood laminations allows for the manufacture of large wood members. The changes were submitted to ICC in accordance with the January 8, 2018 deadline and will be considered during Committee Action Hearings from April 15 – 25, 2018. Understand methods used to establish allowable design properties for visually graded lumber in existing buildings. Be able to list the advantages of mid-rise light wood-frame construction. Learn about Environmental Product Declarations (EPD) and which wood products have EPDs available. Code requirements for fire safety during construction will also be reviewed. Due to the great success of DES340-Cornucopia of Classic Connection Conundrums presentation, this program includes discussion about wood-based connection design based on numerous help desk questions and feedback from design professionals. The WFCM prescriptive method will is used to illustrate the magnitude and applied location for loads applicable to low-rise wood frame construction. Be able to analyze individual components of the deflection equations to determine their magnitude of impact on total deflection. Understand the significant codes and standards related to mid-rise wood construction. Information on engineering with wood, properties of wood and designing with wood. This article provides an overview of the significant changes in the 2012 WFCM relative to the previous 2001 edition. Describe some of the code changes for Fire Resistance and Sprinklers in the built environment. Access to lectures and assignments depends on your type of enrollment. Glued connections will also be discussed along with a brief introduction to connection design software. Be familiar with NDS provisions for fastener withdrawal capacity and NDS and TR-12 provisions for fastener shear capacity. Description | Recommended courses Description Transportation has always played an essential role in the development of society, originally with regard to trade routes and harbours, but more recently with regard to land- and air-based systems as well. Be aware of updated language relating to Structural Composite Lumber. This presentation will provide an overview of the significant changes in the 2012 WFCM relative to the previous 2001 edition. Related issues including jack studs, king studs, connections for lateral and gravity loads, and the difference between dropped and raised headers will be discussed. Apply special provisions for design of wood structures that involve compartmentalization and sprinkler systems. Head of Centre and Professor of Timber Engineering He is a Chartered Engineer, Fellow of the Institution of Structural Engineers and Fellow of the Institute of Materials, Minerals and Mining. Whether you’re enrolling in your first engineering degree, or preparing to specialize with a master’s or PhD, our course guides are designed to help you choose the right program and get ready to apply. Gen. Tech. This article provides background on special inspections for wood construction in addition to discussion on related topics such as prefabricated wood components, special inspections for lateral resistance, and structural observation as it pertains to the 2012 and 2015 IBC. Also included is information on fire testing, an introduction to cross laminated timber (CLT), and an overview of proposed changes to the 2021 IBC regarding tall mass timber buildings. For those seeking practical application of the provisions of the National Design Specification® (NDS®) for Wood Construction (ANSI/AWC NDS-2015) which is referenced in the 2015 International Building Code, this presentation provides several design examples including beams, columns, and structural elements under combined bending and axial loading. Locate the fundamental IBC structural provisions for wood design and identify the IBC-referenced wood design standards. This presentation will provide an introduction to CLT including relevant design standards and code references. For more information please click the links below or call Ops at 573-596-6101. Professional Development Courses Subscribe to the Canadian Wood Council Newsletter. 2018 NDS Supplement relative to previous editions and provide an overview of the standard. Topics will include connection design philosophy and behavior, an overview of common fastener types, changes in the 2015 NDS related to cross-laminated timber, and design examples per TR12. The Wood Technology Research Centre at the University of Canterbury was fully established at the end of 1996 as a means of information exchange among staff engaged in wood-related research, to facilitate the shared use of research facilities, enhance research programmes and to promote technology transfer to end users. This presentation will provide an overview of fire design of mass timber building elements and assemblies, and protection of connections. Learn about hybrid systems using wood being developed and used in new structures. The Department offers both undergraduate and graduate programs leading to BSc, and MSc, MASc and PhD degrees, respectively. Wood WORKS! Recognize the updated language relating to cross laminated timber and new CLT adjustment factors. Fire testing to evaluate the performance of building materials and assemblies used in construction has been a requirement of building codes since the late 19th century. The course requirements for the various graduate programs in Civil Engineering are described under the respective Program Descriptions. Be able to identify lateral resisting systems and understand where to obtain design specifications for these systems. This course will outline several resources available for shear wall design, compare design results, and provide an example for resisting seismic loads on a structure using both the WFCM and SDPWS. PCS/TDY Student Lodging. This article outlines changes to the IRC as they relate to wood Discussion will focus on fire resistance-rated design parameters but will also include other architectural and structural considerations related to shaft walls. Examples from several interesting projects will be presented including buildings under renovation and waterfront structures such as piers. Briefly introduced to connection design software solutions. The use of CLT alone or in combination with other mass timber elements, such as glued laminated timber (GLT), nail laminated timber (NLT), or structural composite lumber (SCL), is becoming more common in buildings complying with the current code. While all units contain interesting and useful information, some units may be of varying interest to you, depending on whether you're a designer, builder, retailer or student. The American Wood Council offers approved courses registered with the National Council of Structural Engineers Associations Diamond Review Program, the International Code Council Education Preferred Provider Program, and the American Institute of Architects. The current editions, designated ANSI/AWC NDS-2015 and ANSI/AWC SDPWS-2015, were approved as ANSI American National Standards in 2014. Per the International Building Code (IBC), structures using wood shear walls and diaphragms to resist wind and seismic lateral loads shall be designed and constructed in accordance with AWC's Special Design Provisions for Wind and Seismic (SDPWS). Describe deck construction including wood members and fasteners. The WFCM contains tabulated prescriptive and engineered design provisions based on ASCE 7-10 Minimum Design Loads for Buildings and Other Structures and covers connections, wall systems, floor systems, and roof systems. However, light wood frame or mass timber construction may be used for the shaft walls to provide a code-compliant solution which can reduce cost and shorten construction schedule. This webinar is for building officials, fire marshals, inspectors, plan checkers, architects or builders who would like to learn how various common exterior wood products comply with Chapter 7A Wildland Urban Interface (WUI) provisions of the California Building Code (CBC). Students in this program may not take Engineering Economics (ENGG/ECON 209) for credit. This presentation will provide an overview of the significant changes to wood design and construction provisions relative to previous editions and include design examples. Engineering courses are a key focus of the timber industry’s educational program, with the aim of assisting structural lecturers to teach the concepts of timber engineering, and materials lecturers to present the benefits of wood. Equivalencies: 1.0 Hours of Instruction = 0.1 Continuing Education Units (CEU) = 1 Professional Development Hours (PDH) = 1 Learning Units (LU). Identify the make-up of the TWB Ad Hoc Committee and the process used to reach consensus on proposed code changes. Issues such as insect attack, decay fungi, and moisture ingress will be presented, along with solutions on how to prevent them. Describe and evaluate R-values and U-factors related to wood construction and understand how to calculate them; Recognize and evaluate the three prescriptive compliance energy paths recognized by the code and understand how to use them in single-family design; Research and utilize the allowable trade-offs for residential energy requirements related to wood construction in the IRC and IECC; Learn when a special inspection may be required on a structure. Examine evidence confirming the positive human response to wood for its aesthetic qualities and connection to nature. Modern-day technologies and product delivery methods have created a bold new opportunity for wood products, which in turn has given rise to a new category of structural framing systems using mass timber. Understand how the SFM standard provides a way for combustible materials to comply with the provisions of the WUI code. Early in the 20th century, versions of the ASTM E119 Standard Test Methods for Fire Tests of Building Construction and Materials were developed by the National Bureau of Standards as a means to compare the relative structural fire performance of materials and assemblies. Understand the ICC Ad Hoc Committee's code change proposal for the 2021 International Building Code (IBC) that could allow taller wood buildings. Learn to use prescriptive tables to size wood members and connections to resist high wind, seismic, and snow loads in the roof story system. Identify some of the issues related to shrinkage and understand possible solutions for mitigating shrinkage. This webinar builds on the two previous Load and Load Path webinars and describes how connectors are used to create load paths in the structure and how the 2012 Wood Frame Construction Manual (WFCM) and calculated loads are used to determine connector type and size. Learning the skills which can allow you to design, create, repair and recycle electrical technology provides you with a glut personal knowledge and professional prospects. It is applicable in all fire hazard severity zones (FHSZ) in State Responsibility Areas and Very High Fire Hazard Severity Zones in Local Responsibility Areas. After completing foundational courses in math, physics, and chemistry in first year, you’ll begin developing your knowledge of wood and material science and primary and secondary wood processing technologies. Be able to explain the correlation between wood use and carbon footprint. Upon completion of this course, participants will: AWC's 2015 National Design Specification® (NDS®) for Wood Constructionand Special Design Provisions for Wind and Seismic (SDPWS) standards are referenced in US building codes and used to design wood structures worldwide. This presentation provides an overview of the Force Transfer Around Openings (FTAO) shear wall design approach, recent research in this area, and a side-by-side comparison of design results between segmented, perforated, and FTAO design methods. Background and the resulting test protocol for CLT will be presented. The Wood Frame Construction Manual (WFCM) for One- and Two-Family Dwellings (ANSI/AWC WFCM-2015) is referenced in the 2015 International Building Code and 2015 International Residential Code. Discuss significant changes between the 2008 and 2015 SDPWS. New provisions were introduced for CLT connection design in the 2015 edition of the NDS and clarified in the 2018 edition. Start instantly and learn at your own schedule. Be familiar with relevant new provisions for Cross-Laminated Timber. Be able to analyze format and content within the 2015 SDPWS. Explain the design value adjustment factors from the NDS and NDS Supplement. Know the overall format and content within the 2015 NDS and 2015 SDPWS. For past educational offerings, go to the. The Department offers both undergraduate and graduate programs leading to BSc, and MSc, MASc and PhD degrees, respectively. Example problems showing how to apply tabular solutions offered in the High Wind Guide will also be presented. The American Wood Council's Design for Code Acceptance No. Be able to identify code acceptance of nail-laminated timber, glued-laminated timber and cross-laminated timber. And forest products on carbon Mitigation wood design standards and methods ingress will be specifically called out and... 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