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TallWood 1 Quiz

 
1. In what year was the firm’s main office established in Vancouver? *
2. How many buildings does the company currently operate in? *
3. What is one of the key benefits of mass timber construction? *
4. Which city has the highest seismic activity where a mass timber project was built? *
5. What was one of the main challenges faced during the Langford project? *
6. What material is commonly used alongside CLT panels in hybrid structures? *
7. What advantage does prefabrication provide in mass timber construction? *
8. What was a key goal of the Quayside Toronto project? *
Why do different timber manufacturers produce varying panel sizes? *
10. What is a significant challenge when designing mass timber connections? *

Aspen Art Museum: Creating an Innovative Wood Structure

Course Overview

The Aspen Art Museum, designed by architect Shigeru Ban, includes a long-span three-dimensional wood space-frame roof. Ban’s charge was to create a wood space frame with spans of more than 50 feet and cantilevers of 14 feet, in a structural depth of 3 feet. The space frame was to have two planes of intersecting diagonal webs of curved members that undulated up and down to touch the planes of the top and bottom chords with no visible connectors. This case study presentation will describe the design and construction of the wood structure, including paths explored but not chosen for the final design.

Learning Objectives

  1. Articulate the particular demands associated with creating a 3-dimensional space frame entirely in wood.
  2. Recognize the advantages and disadvantages of several wood connection strategies in space-frame structures.
  3. Be aware of manufacturing capabilities and limitations that influenced the design of the Aspen Art Museum roof structure.
  4. Understand the importance of early engagement of manufacturing and engineering partners in the design process for innovative wood structures.

Course Video

Speaker Bio

Gregory R. Kingsley, PhD, PE
President and CEO
KL&A Inc.

Gregory is the president and CEO of KL&A Inc., Structural Engineers and Builders in Golden, Colorado, a firm of 65 that includes structural engineers, steel detailers, and construction managers. He enjoys working with design architects on innovative structures, especially wood and steel.

Online Tools for Wood Construction

Course Overview

This course will cover two new free online tools developed by CWC: CodeCHEK and FRR & STC Tool.

CodeCHEK helps designers to determine if and when lightweight wood-frame, heavy timber, mass timber and/or encapsulated mass timber construction can be used, and to determine what are the applicable construction requirements related to fire safety.

FRR & STC (fire-resistance rating & sound transmission class) Tool helps designers in the determination of generic fire-resistance rating designs of lightweight wood-frame wall, floor, and roof assemblies using the Component Additive Method described in Appendix D of the NBC , which is referenced as an acceptable solution in Section 3.1 of the NBC and can be used for buildings permitted to be of combustible construction. In addition, the tool provides the sound transmission class (STC) value that is associated with each wall or floor assembly for which STC information is available.

Learning Objectives

  1. Background on the height and area articles of the National Building Code.
  2. Overview of new CodeCHEK tool.
  3. Description of the component additive method from Appendix D of the National Building Code.
  4. Overview of new FRR & STC (fire-resistance rating & sound transmission class) tool.

Course Video

Speaker Bio

Marc Alam, Ph.D.
Manager – Codes and Standards, Fire
Canadian Wood Council

Marc Alam is a member of the Canadian Wood Council. As Manager, Codes and Standards in the fire division, Marc assists through participation in CWC’s building code and standards fire‐related initiatives and the development of CWC’s fire design tools, as well as code‐related fire research projects.

Wood in Low-Rise Commercial Buildings

Course Overview

In Canada, we are fortunate to have both structural engineers and architects who, because of the numerous benefits, would like to work with wood whenever they can. While many are comfortable using wood in traditional applications and in buildings that are relatively small in scale, not all have the requisite experience working with wood (whether traditional light wood-frame, heavy timber, or new engineered mass timber systems) in larger, non-traditional applications. In this context, the main purpose of this presentation is to demonstrate how a variety of structural wood systems can be successfully applied to a range of large-scale, low-rise building types – ones more typically constructed of steel. We believe that providing sound examples of structural wood systems for non-traditional applications can be a powerful tool to encourage developers, builders, architects, and engineers to use wood as the primary structural material in these types of buildings.

Learning Objectives

  1. Importance of the Low-Rise Market.
  2. Scope and Content of the Low-Rise Guide.
  3. Review of Mass Timber and Hybrid Structural Systems Applicable to Low-rise Buildings.
  4. Review of Light Framing Structural Systems Applicable to Low-rise Buildings.

Course Video

Speaker Bio

Claude Lamothe
President
Intra-Bois Inc.

Claude Lamothe, President Intra-Bois Inc. Claude graduated from McGill University in 1985 with a Civil Engineering Bachelor Degree. He worked four years in the lumber truss and steel industries before joining Trus Joist. After five years as a Technical Sales Representative and three years as Eastern Canada Regional Sales Manager, Claude joined Domtar Lumber Division as Marketing Manager and then worked for Goodfellow as Manager Engineered Wood Products. From 2002 to 2012, Claude was Sales Manager Structural & Industrial Segments for the Lumber Division of Resolute Forest Products. In 2012, Claude founded its own consulting firm Intra-Bois Inc. Intra-Bois offers structural engineering services and has performed several market studies for major North American forest products companies.

Excellence and Innovation: Inspirational Wood Buildings in the UK

Course Overview

This presentation will highlight recent award winning timber projects recognized in the UK including several beautiful wood buildings that were featured in technical case studies published by TRADA. The Timber Research and Development Association is an internationally recognised centre of excellence on the specification and use of timber and wood products. TRADA’s origins go back over 80 years and its name is synonymous with independence and authority. TRADA’s aim is to provide members with the highest quality information on timber and wood products to enable them to maximise the benefits that timber can provide.

Learning Objectives

Coming Soon

Course Video

Speaker Bio

Coming Soon

Practical Aspects of Wood Quality for Architects and Engineers

Course Overview

Born out of years of research and real world experience Les Jezsa applies his unique perspective in exploring the wood quality attributes of: strength, stiffness, density, dimensional stability and natural durability.

Many of the examples and teaching tools developed by Les Jozsa and used in this course are also used in university architect and engineering programs around the world. 

Learning Objectives

  1. Wood availability and wood use will span from the global scale to the local picture, from the temperate zone and tropical rainforest, in terms of industrial and non-industrial uses.
  2. Old-growth and second-growth wood attributes will be illuminated in terms of density, strength and stiffness, dimensional stability, and natural durability.
  3. Hardwoods- softwoods, lumber grades, wood-moisture relationships, and protecting wood through pressure treating and painting.

Course Video

Speaker Bio

Les Jozsa
Research Scientist Emeritus
FPInnovations | Forintek

Les Jozsa’s expertise and knowledge, as a wood technologist, spans a wide perspective, from the macroscopic to the microscopic realm. The above graphic, designed and drawn by the author, could be his business card. His responsibilities included planning, coordinating and conducting research on wood quality attributes, utilizing X-ray densitometric techniques. His resource evaluation projects have dealt with all the major commercial tree species in western Canada, and involved stand selection, tree sampling, laboratory measurements, analysis, and reporting. Log diagramming, lumber conversion, and lumber grading protocols were followed to examine the impact of silvicultural treatments (like spacing, thinning, fertilization and pruning) on wood production and wood quality. Intensive tree sampling techniques provided information on stem size, stem taper, branch size, heartwood-sapwood distribution, and juvenile- mature-wood classification. His three-dimensional analysis of ring width, ring density, fiber length and shrinkage was ground-breaking in Canada. It was made possible through techniques developed by his colleagues at Forintek under his leadership. His other projects have dealt with climate-tree-growth relationships, the acoustical properties of wood, shrinkage and swelling, and lumber drying. Other responsibilities included conducting workshops with professional foresters, wood workers, architects and engineers. He developed an extensive variety of teaching aids which are being used around the world at several universities, dealing with wood technology and wood-structure. He is an expert witness in Forensic Dendrochronology in the Supreme Court of Canada.

Mid Rise Engineering Considerations for Engineered Wood Products – 2024 Edition

Course Overview

While many designers are familiar with engineered wood products such as I‐joists and structural composite lumber, it is important to understand the structural requirements associated with each in order to achieve proper performance—especially in mid‐rise Construction. With an emphasis on products used in commercial and multi‐family buildings, this presentation will cover engineered wood product acceptance, testing requirements, lateral design, and proper detailing.

Learning Objectives

  1. Testing requirements and acceptance of wood I‐joists and structural composite Lumber (SCL) products.
  2. Dimension stability in regards to moisture content changes and the differences between solid wood products.
  3. Lateral design, including information on I‐joist diaphragm capacities and the detailing of rim board connections.
  4. Fire resistance design, including wood I‐joist assembly requirements and SCL char rate equivalency to solid wood.

Course Video

Speaker Bio

Jeff Olson, P.E., P.Eng.
Boise Cascade EWP, White City, OR

Jeff is currently the Technical Services Manager for Boise Cascade, Engineered Wood Products division. He has over 30 years of experience in the design and testing of engineered wood products and is licensed as a Professional Engineer in several western Canadian provinces and U.S. states.

On Site Moisture Management of Wood Frame Construction

Course Overview

This presentation aims to help designers and construction companies/builders assess the potential for moisture related issues arising during the construction appropriate actions to mitigate such risk. Information on wetting and drying potential, and solutions and available resources related to onsite moisture management as well as design measures will be discussed.

Learning Objectives

  1. Wood’s basic physical properties related to moisture management.
  2. Categories of wood materials/built up assemblies.
  3. Wetting and drying performance of different assemblies.
  4. Different level of onsite moisture protection.
  5. Design solutions to facilitate drying performance.

Course Video

Speaker Bio

Jieying Wang
Senior Scientist – Building Systems Department
FPInnovations

Jieying Wang is a senior scientist in the Building Systems department of FPInnovations.

Since she joined FPInnovations (then operating as “Forintek”) about 11 years ago, her research has primarily focused on wood durability, moisture management and thermal performance of wood‐based building envelopes.

Delivering Efficient Engineered Wood and Hybrid Structures

Course Overview

This course explores the opportunities and challenges associated with the design and construction of modern timber and hybrid wood structures from the perspective of builders, developers, and project teams. Through a series of real-world case studies—including medical, educational, transportation, and recreational facilities—the presenters examine how material selection, prefabrication, mass timber systems, and collaborative project delivery influence project cost, schedule, constructability, and sustainability outcomes. Participants will gain insight into the importance of early stakeholder involvement, digital modeling, manufacturing coordination, and innovative wood construction practices that support efficient and successful project delivery.

Learning Objectives

  1. Identify opportunities and challenges associated with the design and construction of modern timber and hybrid wood structures.
  2. Explain how collaborative project delivery, early stakeholder involvement, and constructability planning contribute to successful wood construction projects.
  3. Evaluate the benefits of prefabrication, mass timber systems, and digital modeling tools in improving construction speed, quality, and project outcomes.

Course Video

Speaker Bio

John Paone
Director / Sr. Vice President
Alfred Horie Construction Co. Ltd., Burnaby, BC

Mark Porter, P.Eng.
Struct. Eng.
FIStructE, Associated Engineering, Burnaby, BC

Demystifying Acoustics for All Wood Buildings

Course Overview

This presentation defines Acoustic building code requirements and discusses important acoustic principles in mass timber construction.

Learning Objectives

  1. Acoustic complaints & Law Suits.
  2. Customer negative perception of your building (ex; wood frame vs concrete).
  3. Code regulations (ex; need to reduce weight, acoustic requirements, etc.).
  4. Abundance of possibilities and unclear information.

Course Video

Speaker Bio

André Rioux
Co-Owner/Business Development
AcoustiTECH

André has been working alongside building professionals for more than 15 years and is recognized for his passion for the field of acoustics and his expert knowledge.

Promoting wood construction across Canada and the US has been a great focus of his, participating in various organizations, giving conferences and joining innovation projects.

André’s experience with wood construction combined with over 20 years of research and development from AcoustiTECH has resulted in a group being able to bring invaluable expertise and knowhow.

Tallwood 1

Course Overview

Mass timber has garnered a lot of interest in Ontario in recent years and with the recent adoption of the encapsulated mass timber construction requirements into the Ontario Building Code, the path to approvals for these buildings has become less onerous. Building with mass timber has many benefits vs. conventional concrete or steel construction from sustainability to construction time to occupant health. However, cost is often a deterring factor, particularly for developers. There are many considerations that need to be made to make tall mass timber buildings a competitive option and we will share some with you in this presentation using the recently completed Tallwood 1 building in Langford, BC. Tallwood 1 is the first 12-story mass timber-steel hybrid building in Canada and located in one of the highest seismic zones in the country. In addition to sharing lessons learned from this project, we will also discuss how this building may be different if it were to be built in Ontario.

Learning Objectives

  1. Understand the design and construction advantages of using mass timber in tall building projects like Tallwood 1 – structural benefits, aesthetic possibilities, and environmental impact.
  2. Analyze the engineering challenges and solutions involved in the project, focusing on mass timber integration with other construction materials.
  3. Evaluate the implications of prefabrication and modular construction techniques used in the Tallwood 1 project – to enhance construction efficiency, reduce waste, and potentially lower project costs.
  4. Discuss the impact of innovative structural systems like point-supported CLT and hybrid seismic systems on the architectural design and functionality of tall buildings.

Course Video

Speaker Bio

Mehrdad Jahangri, P.Eng., Dipl. Ing.(Germany)
Principal
ASPECT Structural Engineers

Mehrdad is a principal at ASPECT and has more than three decades of international experience on notable, architecturally oriented commercial, educational, recreational, and residential projects. He is internationally recognized for his innovative approach and consulting with North American and international architects. He has a sound knowledge of building physics and sustainable design concepts that allow him to actively engage in sustainable design challenges and decisions. Mehrdad understands the challenge of creating carefully detailed yet efficient structural designs and provides an unparalleled level of service to all his clients.

Eva Chau, P.Eng., M.Eng.
Associate
ASPECT Structural Engineers

Eva is an Associate at ASPECT and holds a Bachelor of Applied Science in Civil Engineering from the University of Toronto and a master’s degree in Structural and Earthquake Engineering from the University of British Columbia. Over the course of her career, she has worked on a wide range of residential, institutional, civic, and transit projects. Eva is proficient with all major building materials but has been strongly focused on mass timber building for the past 4 years. Eva is passionate about structural engineering and always strives to help clients realize their unique visions and achieve their project goals.

The Importance of Proper Specification: Agricultural, Commercial, and Industrial Applications for Pressure Treated Wood

Course Overview

One important aspect for all building products is proper specification. The Canadian Wood Council partnered with Wood Preservation Canada to publish a Specification Guide for non-residential pressure treated wood products, with a focus on agricultural, commercial, and industrial applications. Presentation attendees will learn more about the governing standard for wood preservation, how this standard is linked to the National Building Code, and key considerations that are essential for ensuring proper specification of pressure treated wood products.

Learning Objectives

Coming Soon

Course Video

Speaker Bio

Craig Wilson
Vice President
Technical Services with Timber Specialties Ltd.

Craig has nearly 40 years of experience in the wood preservation industry. He currently oversees the Technical Services Department at Timber Specialties which provides preservatives and technically related services to the wood preservation industry in Canada. He has been involved in many aspects of wood preservation and has served on several committees and associations including the Canadian Standards Association, the American Wood Preservation Association, Wood Preservation Canada, and was past President for the Canadian Wood Preservation Association.

Craig was an integral part of the development of the Use Category System and residential standards for treated wood in the CSA Standards. He has extensive knowledge on the treatability of Canadian Wood species with a variety of waterborne preservatives including CCA, ACQ, Borate, and Micronized copper.

Robert Jonkman, P.Eng.
VP Codes and Engineering
Canadian Wood Council

After completing a Bachelor of Civil Engineering and Management degree at McMaster University in 1994, Robert worked for one year at a structural engineering consulting firm and over nine years as the Design and Engineering Supervisor at a Canadian timber frame manufacturer. Robert joined the Canadian Wood Council in 2005, progressing to become the Director of Codes and Standards – Structural Engineering in 2014, and VP of Codes Engineering in 2021.

Robert has expertise in structural engineering, building science, and energy issues and active in the Codes and Standards development and with the Canadian Home Builders, including:
-Member – NBC SC Structural Design (Part 4).
-Member – NBC SC Housing and Small Buildings (Part 9).
-Secretary – TC responsible for CSA O86 “Engineering Design in Wood” Standard.
-Chair – ISO TC 165 mirror committee.

Wood Design & Building Magazine, vol 24, issue 97
2025 Wood Design & Building Awards Call for Submissions Now Open
Wood Design and Building Awards
Wood Decay and Repair
Wood Design: A Guide for Architects and Educators
Canadian Wood Council releases new Environmental Product Declarations for 5 Canadian manufactured wood products
Wood Design & Building Magazine, vol 24, issue 96
Canadian Wood Council Applauds Strategic Federal Investments in B.C.’s Forest Industry
Canadian Wood Council Applauds Federal-Provincial Investment in Advanced Wood Construction in Quebec
Canadian Wood Council Applauds Federal Investment in Nova Scotia’s Mass Timber Industry
Treatment during engineered wood product manufacture
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