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CLT Firewalls

Course Overview

Fire performances of CLT fire separations with closure (door) or service (pipe) penetrations will be discussed.

Learning Objectives

Beyond the introduction of a new, 18 storey limit, you will:

  1. Basic CLT fire separation performance.
  2. CLT‐penetration interface design principles.
  3. Testing of a CLT wall with a fire door.
  4. Testing of a CLT floor with pipe penetrations.

Course Video

Speaker Bio

Conroy Lum
Research Leader – Advanced Building Systems
FPInnovations

Conroy is a structural engineer by training and oversees the work of the research groups on structural performance, durability, and sustainability in the Advanced Building Systems department of FPInnovations. His research contributions have been in the areas of developing methods for evaluating wood products and structural adhesives, and implementing such methods in standards to support product development and manufacturing.

Mass Timber: Unlocking the Mysteries of Connection Design and Fabrication

Course Overview

Melissa will discuss the role of the specialty structural engineer in glulam connection design for your project. Tips will be provided to help streamline the work of the project architect and engineer of record, and also highlight specific detailing situations to help construction run more smoothly. Glulam fabrication will be discussed: from chisels to CNC machines. Some examples will be given to see what is possible during this timber connection renaissance, made possible by 3D fabrication models and CNC machines.

Learning Objectives

  1. Mass timber fabrication processes and the role of shop drawings.
  2. Detailing to accommodate for differing tolerances of different trades on the construction site.
  3. Tailoring timber specifications to meet architectural needs.
  4. Information required in construction documents for delegated design of mass timber connections.
  5. New timber connection possibilities through use of CNC Fabrication.
  6. How to communicate scope delineation for multiple suppliers of structural systems on your project and where are the potential gaps / overlaps.
  7. How involving your mass timber supplier early in the design process can create material and construction efficiencies.

Course Video

Speaker Bio

Melissa Kindratsky, P.Eng., LEED® AP BD+C
Structural Project Engineer
ISL Engineering and Land Services

Melissa Kindratsky, P.Eng., LEED® AP BD+C, is a structural project engineer for ISL Engineering and Land Services. With 400 people in 14 offices in western Canada, ISL established a Buildings Group in 2012 with the acquisition of Cascade Engineering Group, and Melissa joined the growing team in the Canmore office in 2015.

Melissa supports the successful delivery of building engineering to a range of clients, from independent homes owners to internationally renowned architects, timber framers, and mass timber fabricators. With over 15 years of experience in design engineering and construction, Melissa has experience in commercial, residential, and industrial developments of various shapes and sizes. Her material of choice is timber and she focuses most of her time on both concept and detailed design of timber structures. These range from modern developments to repairs of heritage structures and even playgrounds.

She passionately believes that to engineer a structure in wood, one must respect the unique properties of this natural material and even use them to enhance the design, both structurally and architecturally. Close attention is paid to the contribution of the structure to the sustainability features of a building project and these are even more easily achieved when the structure is timber.

Shifting Gears: World’s First Passivehouse Auto Dealership

Course Overview

Building a wood frame Car Dealership is a unique proposition to begin with. Making it a Certified Passivehouse building in cold windy Red Deer is an added level of complexity. Scottsville Autogroup, along with Cover Architectural Collaborative and Peel Passivehouse was up for the challenge. Now nearing completion, the project will set a new bar for energy efficient and sustainable construction in the industrial sector. The project shows that manufactured wood products are not only capable but preferable when designing sustainable buildings. The use of wood not only significantly reduces the embodied energy of the structure, but allows for thermal bridge free construction – a critical consideration when building a super-efficient envelope.

Learning Objectives

  1. How to achieve tall, long span structures using dimensional and engineered wood products.
  2. How to design thermal bridge free envelopes.
  3. How to achieve Passivehouse certification in a cold climate with significant storefront glazing.
  4. How to account for process loads in PHPP calculations.

Course Video

Speaker Bio

Lukas Armstrong
Architect and Principal
Cover Architectural Collborative

Lukas Armstrong, as an Architect and Principal at Cover Architectural Collborative in Nelson BC, has been responsible for some of Canada’s first Certified Passivehouse projects, including his own home in a multifamily residential building. Lukas has presented at the New York and Vancouver Passivehouse conferences and provides an engaging and informative window into wood frame Passivehouse design and construction.

Guide to Encapsulated Mass Timber Construction in the Ontario Building Code

Course Overview

This 2-hour technical webinar will begin with an overview of ongoing fire research at the National Research Council of Canada into various performance aspects of mass timber construction and tall wood buildings. From there, code experts from Morrison Hershfield will discuss the new building code provisions related to Encapsulated Mass Timber Construction (EMTC), which is a new construction type in the code, that permit mass timber structures up to twelve storeys in building height. Participants will receive a complimentary electronic copy of the CWC’s recently published “Guide to Encapsulated Mass Timber Construction in the Ontario Building Code” authored by Morrison Hershfield.

Learning Objectives

An overview of the Ottawa Mass Timber Demonstration Fire Tests:

  1. The presentation will provide an overview of the Mass Timber Demonstration Fire Test Project which were conducted during the summer and fall of 2022. Past research on the fire performance of mass timber construction will be reviewed briefly to provide the background necessary to understand how the latest tests support the design of taller and larger mass timber buildings. Each of the five tests performed will be reviewed along with what it means for future mass timber building design.

Guide to Encapsulated Mass Timber Construction in the Ontario Building Code:

  1. Encapsulated mass timber construction (EMTC) showcases recent advancements in fire safety engineering. These advancements are reflected in recent adoptions of EMTC as a new construction type across various jurisdictions and specifically in Ontario, through O.Reg. 451/22, which became applicable as of July 1, 2022. This presentation introduces designers and authorities to the “Guide to Encapsulated Mass Timber Construction in the Ontario Building Code.”
  2. The purpose of the guide, and this presentation, is to introduce users to the new provisions governing EMTC in Ontario, so that readers are aware of the content, intent, and application of the new provisions. The guide introduces the new provisions and highlights where new EMTC features align with similar well-known provisions of the OBC for noncombustible construction and where the new provisions differ or are unique. Through highlighting these differences, this guide seeks to broaden awareness of OBC application to the design of this new building type.

Course Video

Speaker Bio

Marc Alam
Senior Manager, Codes & Standards – Fire & Acoustics
Canadian Wood Council

As Senior Manager of Codes and Standards in fire and acoustics, Marc participates in CWC’s building code and standards fire and acoustics related initiatives and the development of CWC’s fire design tools, as well as code‐related fire and acoustics research projects. He is finalising a PhD in Fire Engineering from Carleton and has a Bachelor’s degree in Civil Engineering with a concentration in Management.

Dana Scherf, P.Eng.
Senior Code Consultant, Director of Code and Life Safety Group
Morrison Hershfield

Dana has been applying Building and Fire Codes across Canada since 1997 and has been with Morrison Hershfield since 2001. She has extensive experience in interpretation and application of the Codes to new and existing buildings, development and negotiation of Alternative Solutions, resolution of unusual fire protection construction issues, fire hazards analysis, and application of fire and smoke modelling to support design solutions. She started her career as a plans examiner with the City of Hamilton. Dana supports clients in applying the Building Code to achieve their project vision while providing the level of safety required by the Code.

Trisha Ashworth, P.Eng., M.Eng.
Senior Code Consultant, Department Manager of Code within the Code and Life Safety Group
Morrison Hershfield

Trisha has been working in the building consulting industry since 2007 and has been with Morrison Hershfield since 2017. Trisha actively applies her knowledge of Building and Fire Codes across various Canadian jurisdictions for both new building designs and existing building retrofits across a range of occupancy types. Trisha’s fundamental knowledge of fire dynamics and fire protection design, inherent in the formation of the Building Codes, allows her to apply judgment in the application of prescriptive requirements of the Codes and develop alternative solutions to meet the areas of performance required by the Codes.

Innovative Envelope Solutions for Mass Timber

Course Overview

As society strives toward lower-carbon construction and increased operational efficiency of the built environment, we know that a building’s envelope significantly impacts a project’s overall environmental performance. This panel presentation offers attendees a glimpse into three different façade systems being employed in three important mass timber projects in Toronto.

Industrialized exterior wall system for the 1925 Victoria Park project in Toronto, Canada.

From local to global, global to local – the CREE building system is used locally in various markets and continents. 1925 Victoria Park is an example of how you can use this exterior wall system. Since 2010, the CREE building system is constantly evolving and adapting to different markets. Now it is reaching North America. This presentation will give you insights into the project developments, design processes, challenges, and details of the exterior wall of the 1925 Victoria Park project in Toronto, Canada.

Learning Objectives

  1. Understand the integration of wood products in building envelopes and their role in achieving high-performance in mass timber projects.
  2. Analyze the challenges and technological solutions involved in combining wood products with other building materials for envelope construction.
  3. Evaluate the impact of prefabricated wood product systems on construction efficiency and environmental sustainability – in terms of construction timelines, labor efficiency, and carbon footprint reduction.
  4. Discuss the future implications and potential innovations in wood product applications in building envelope systems.

Course Video

Speaker Bio

Chris Ertsenian, Dip. Arch. Tech.
Associate
Moriyama & Teshima Architects

Case study presentation on the façade at Limberlost Place, Georg Brown College’s 10-storey, mass timber, net zero carbon emissions academic building on Toronto’s waterfront.

Chris Ertsenian, a long-standing MTA Associate and Senior Job Captain, facilitates competitive contractor bids, expedites construction, and minimizes change orders by ensuring that the firm’s contract documents optimize constructability and are clear, complete, and well-coordinated. He brings a breadth of experience on a wide range of project types and has been an integral member of the production and quality control team on many highly complex and exacting projects.

Chris is currently serving as Job Captain for Ontario’s first institutional mass timber building, Limberlost Place (formerly “The Arbour”) at George Brown College; managing the consultant team and monitoring construction progress. He is also the Senior Technologist on the University of Waterloo Faculty of Mathematics Academic Building.

Previously, Chris has worked with all of MTA’s partners to realize many major college and university buildings, including the Brian Mulroney Institute of Government at St. Francis Xavier University, Nova Scotia Community College’s Sydney Waterfront Campus, Toronto Metropolitan University’s Centre for Urban Innovation, and many more to name a few. He has also worked on several public and cultural projects, such as Place des Arts in the City of Greater Sudbury, the Government of Canada’s Visitor Welcome Centre Phase 1 on Parliament Hill, the City of Surrey (British Columbia) Civic Centre, as well as the Ismaili Centre and Aga Khan Museum in Toronto. With strong organizational skills and the ability to manage multiple complex projects at once, Chris’ impact on MTA’s portfolio is wide-ranging and highly influential.

He authored Moriyama & Teshima Architects’ CADD standards and user manual, as well as more recently authoring MTA’s Drawing Standards and assisting in BIM Standards which exemplify his organizational abilities, attention to detail and comprehensive knowledge of building technologies.

Kelsey Saunders, M.B.Sc., CPHD, LEED® AP BD+C.
Project Manager and Building Scientist
RDH Building Science Inc.

Case study presentation on the façade at the University of Toronto’s new 4-storey, 346-unit, mass timber student residence at Trinity College.

Kelsey Saunders is a Project Manager and Building Scientist at RDH Building Science and has been in the building science field for nearly 10 years. She holds a Bachelor of Architectural Science and a Master of Building Science degree from Ryerson University. She is a Certified Passive House Designer and a LEED AP in Building Design and Construction.

Kelsey’s work is focused on early-stage building enclosure consulting on new construction projects across North America with a particular specialty in low carbon buildings both in terms of operational and embodied carbon. She takes an enclosure-first approach to low carbon design and has worked on many Passive House, Net Zero Carbon, mass timber, and prefabricated panelized enclosure projects.

Kelsey has also been involved in numerous public and private research projects, including a current study of the embodied carbon impact of building enclosure systems in whole life carbon emissions to support early-stage decision making for low carbon design.

Tim Steffinger
Structural Consultant specialized in Engineering and System Design
CREE Buildings

Case study presentation on the façade at 1925 Victoria Park, an 11-storey, 154-unit mixed-use rental apartment building with ground floor commercial.

Tim Steffinger is a civil engineer from Germany specializing in Engineering and System Design. He studied at the University of Stuttgart and received his master’s degree in civil engineering with a focus on structural design. At CREE Buildings, he is our expert in exterior wall systems and is constantly improving the CREE System with his expertise and ever-expanding know-how through practical experience and exchange with the international network. As Structural Consultant at CREE, he supports our license partners in the realization of timber hybrid structures and coordinates CREE projects worldwide.

From local to global, global to local – the CREE building system is used locally in various markets and continents. 1925 Victoria Park is an example of how you can use this exterior wall system. Since 2010, the CREE building system is constantly evolving and adapting to different markets. Now it is reaching North America. This presentation will give you insights into the project developments, design processes, challenges, and details of the exterior wall of the 1925 Victoria Park project in Toronto, Canada.

Practical and Advanced Modeling for Design and Performance of Mass Timber Structures

Course Overview

FPInnovations’s Modeling Guide for Timber Structures is the result of global collaboration from over 100 experts. This definitive guide for timber structure modelling is the first of its kind, bringing together the experience gained from recently built timber projects with the latest research development in the modelling of timber structures. Computer modelling is essential for analyzing and designing mid- and high-rise buildings and long-span structures. It is also a valuable tool for optimizing wood-based products, connections, and systems that improve structural performance. This useful guide supports the application and development of timber construction given that timber structures increasingly require demonstration of performance or equivalency through computer modelling, regardless of whether prescriptive or performance-based design procedures are used. This session offers an overview of the guide, which includes a wide range of practical and advanced modelling topics, such as key modelling principles, methods, and techniques specific to timber structures; modelling approaches and considerations for wood-based components, connections, and assemblies; and analytical approaches and considerations for timber structures during progressive collapse, wind, and earthquake events. It also presents the differences in the modelling approaches to timber, steel, and concrete structures.

Learning Objectives

Coming Soon

Course Video

Speaker Bio

Dorian Tung
Manager Building Systems of Sustainable Construction Innovation Centres of Excellence
FPInnovations

Dr. Dorian Tung is currently the Vancouver Manager for Building Systems of Sustainable Construction Innovation Centres of Excellence in FPInnovations. He has 20 years of experience in industry and academia. He has dealt with intellectual properties, knowledge transfer, and research dissemination. In addition to delivering research and development, he has been responsible for project management, sales, and marketing, as well as developing and maintaining business relationship. Dorian is a licensed professional engineer in Canada and USA, and also holds LEED certification, Building Design + Construction, from the U.S. Green Building Council (USGBC). He has designed a variety of structural systems and is experienced with various construction materials. Dorian has a strong portfolio in developing innovative structural solutions to achieve resilience. He has ongoing collaborations with researchers and scientists around the world to apply state-of-the-art technologies.

Overview of the Ottawa Mass Timber Fire Test

Course Overview

The presentation will provide an overview of the Mass Timber Demonstration Fire Tests which were conducted during the summer and fall of 2022. Past research on the fire performance of mass timber construction will be reviewed briefly to provide the background necessary to understand how the latest tests support the design of taller and larger mass timber buildings. A review of how each of the five tests performed will be reviewed along with what it means for future mass timber building design.

Learning Objectives

  1. Understand the rationale and execution of the demonstration fire tests – why and how the tests were conducted, their significance in obtaining approvals for mass timber projects.
  2. Analyze the fire performance of mass timber structures compared to traditional building materials under controlled test conditions – understand fire dynamics in mass timber projects versus traditional materials like concrete or steel.
  3. Understand the role and results of compartment fire tests in analyzing fire dynamics in mass timber projects.
  4. Explore the implications of mass timber fire test findings on future building code developments and construction practices – how could the results from these fire tests influence changes in building codes and impact mass timber design and construction practices.

Course Video

Speaker Bio

Steve Craft, PhD, P.Eng.
Principal
CHM Fire Consultants Ltd.

Dr. Steven Craft is a founding partner of CHM Fire Consultants Ltd located in Ottawa. He served as an Adjunct Professor in the Fire Safety Engineering Program at Carleton University from 2010- 2019 and was a Research Scientist with Canada’s National Forest Products Research Institute, FPInnovations, from 2006-2011. He has an undergraduate degree in Forest Engineering from the University of New Brunswick and a PhD in Fire Safety Engineering from Carleton University. He is active in codes and standards development. He is the Chair of the ULC S100a Fire Test Committee and is on the Technical Committee for the Canadian Wood Design Standard, CSA O86, where he Chairs the Task Group on Fire Resistance.

Understanding the New EMTC Provisions in the Ontario Building Code

Course Overview

This 2-hour technical webinar will begin with an overview of ongoing fire research at the National Research Council of Canada into various performance aspects of mass timber construction and tall wood buildings. From there, code experts from Morrison Hershfield will discuss the new building code provisions related to Encapsulated Mass Timber Construction (EMTC), which is a new construction type in the code, that permit mass timber structures up to twelve storeys in building height. Participants will receive a complimentary electronic copy of the CWC’s recently published “Guide to Encapsulated Mass Timber Construction in the Ontario Building Code” authored by Morrison Hershfield.

Learning Objectives

  1. An overview of the Ottawa Mass Timber Demonstration Fire Tests:
    The presentation will provide an overview of the Mass Timber Demonstration Fire Test Project which were conducted during the summer and fall of 2022. Past research on the fire performance of mass timber construction will be reviewed briefly to provide the background necessary to understand how the latest tests support the design of taller and larger mass timber buildings. Each of the five tests performed will be reviewed along with what it means for future mass timber building design.
  2. Guide to Encapsulated Mass Timber Construction in the Ontario Building Code:
    Encapsulated mass timber construction (EMTC) showcases recent advancements in fire safety engineering. These advancements are reflected in recent adoptions of EMTC as a new construction type across various jurisdictions and specifically in Ontario, through O.Reg. 451/22, which became applicable as of July 1, 2022. This presentation introduces designers and authorities to the “Guide to Encapsulated Mass Timber Construction in the Ontario Building Code.”
    The purpose of the guide, and this presentation, is to introduce users to the new provisions governing EMTC in Ontario, so that readers are aware of the content, intent, and application of the new provisions. The guide introduces the new provisions and highlights where new EMTC features align with similar well-known provisions of the OBC for noncombustible construction and where the new provisions differ or are unique. Through highlighting these differences, this guide seeks to broaden awareness of OBC application to the design of this new building type.

Course Video

Speaker Bio

Marc Alam
Senior Manager, Codes & Standards – Fire & Acoustics
Canadian Wood Council

As Senior Manager of Codes and Standards in fire and acoustics, Marc participates in CWC’s building code and standards fire and acoustics related initiatives and the development of CWC’s fire design tools, as well as code‐related fire and acoustics research projects. He is finalising a PhD in Fire Engineering from Carleton and has a Bachelor’s degree in Civil Engineering with a concentration in Management.

Dana Scherf, P.Eng.
Senior Code Consultant, Director of Code and Life Safety Group
Morrison Hershfield

Dana has been applying Building and Fire Codes across Canada since 1997 and has been with Morrison Hershfield since 2001. She has extensive experience in interpretation and application of the Codes to new and existing buildings, development and negotiation of Alternative Solutions, resolution of unusual fire protection construction issues, fire hazards analysis, and application of fire and smoke modelling to support design solutions. She started her career as a plans examiner with the City of Hamilton. Dana supports clients in applying the Building Code to achieve their project vision while providing the level of safety required by the Code.

Trisha Ashworth, P.Eng., M.Eng.
Senior Code Consultant, Department Manager of Code within the Code and Life Safety Group
Morrison Hershfield

Trisha has been working in the building consulting industry since 2007 and has been with Morrison Hershfield since 2017. Trisha actively applies her knowledge of Building and Fire Codes across various Canadian jurisdictions for both new building designs and existing building retrofits across a range of occupancy types. Trisha’s fundamental knowledge of fire dynamics and fire protection design, inherent in the formation of the Building Codes, allows her to apply judgment in the application of prescriptive requirements of the Codes and develop alternative solutions to meet the areas of performance required by the Codes.

Simplified and Sustainable Acoustic Solutions for High-Performance Mass Timber Buildings

Course Overview

Delivering superior acoustic comfort to building occupants doesn’t have to be complicated. In this panel discussion, presented by an industry-leading manufacturer of acoustic treatments, an acoustic expert, and a LEED GA certified engineer, discover the latest ground-breaking advancements in sound technology that are transforming acoustic design in wood construction.

There are many critical factors to consider when looking at acoustic systems: weight reduction, fire performance, structural height, and environmental sustainability must all be taken into account. The panelists will share system recommendations to help designers achieve better sound performance in mass timber buildings.

Learning Objectives

  1. Identify the latest systems solutions in the marketplace.
  2. Understand how to mitigate flanking paths.
  3. Explore impact sound solutions for exposed mass timber ceilings.
  4. Discuss the benefits of dry vs. wet floor toppings based on a building’s design.

Course Video

Speaker Bio

David Dompierre, P.Eng.
Acoustic Engineer
SIBE Acoustics

Having been involved in over a hundred successful projects in North America, David was able to develop expertise in the acoustics of numerous construction systems (steel, concrete, light wood frame, mass timber, hybrids, etc.). His position as R&D director at an acoustics laboratory allowed him to gain knowledge of acoustic materials and flooring types.

For several years, he has had the opportunity to share that knowledge with firms, colleges, and universities.

David’s role as a senior noise consultant at SIBE Acoustics is to help developers and professionals with the selection and implementation of acoustic solutions in their projects.

David Gonzalez, LEED® Green Associate™
Solutions Ambassador
DCC Solutions

With over 20 years of experience in the building materials industry, David assists construction professionals achieve optimal acoustical performance for the soundproofing of buildings using a dry topping flooring system.

He is a keen green building enthusiast and enjoys acquiring knowledge on environmentally friendly, low carbon and healthy building materials that can contribute to making a positive impact on people’s health, the environment, and the construction industry.

André Rioux
Co-Owner- Business Development
AcoustiTECH

André has been working alongside building professionals for 20 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, he has participated in various organizations, presented at conferences and been part of innovative projects.

André’s experience with wood construction combined with over 20 years of research and development from AcoustiTECH has resulted in a group that is able to bring invaluable expertise and know-how to the industry.

Elevate Innovate Acoustically Integrate

Course Overview

In this session using specific project case studies, discover the latest ground-breaking advancements in sound technology that are transforming acoustic design in wood construction. There are many critical factors to consider when looking at acoustic systems: weight reduction, fire performance, structural height, on-site sequencing and environmental sustainability must all be taken into account. This session will shed light on the advantages of dry toppings over wet toppings, presenting innovative solutions that not only comply with building codes but also keep the construction process moving forward.

Learning Objectives

  1. Define Basic Acoustic Principles.
  2. Propagation of noise in Wood Construction.
  3. Dry Topping VS Wet Topping.
  4. Case Studies.

Course Video

Speaker Bio

Cristian Wallace
AcoustiTECH

Cristian Wallace brings a wealth of technical knowledge and a genuine passion for collaborating with Developers, Architects, and Acoustical Engineers. His primary objective is to empower clients by educating them on effective strategies to prevent noise-related problems and encourage sustainable construction methods. AcoustiTECH has evolved into a market leader with over 20 years of extensive research and development. Along with Cristian’s expertise they culminated into a team capable of delivering invaluable insights.

By Engineer or By Supplier? How “Involved” to Be in Choosing Engineered Lumber

Course Overview

Since Engineered Lumber Products are proprietary, there is a range of opinions about how much information to show on a set of Structural drawings. Should the framing choices be left to a supplier (similar to roof trusses), or should specific sizes and grades be specified? 

This decision affects the time-sensitive process of putting together an estimate and can affect the quality of the construction itself. Through our experience working on over 100 mid-rise projects, we provide 5 examples where information provided on the Structural Plans can make a big difference.”

Learning Objectives

4 Learning Objectives:

  1. The role of the supplier: Should they be the main “specifier” of engineered lumber?
  2. Components that Structural Engineers should be very specific about on their plans.
  3. How to select a proprietary product without committing to one brand.
  4. Vertical Load transfer details on Structural Plans that help projects succeed. 

Course Video

Speaker Bio

Andy Teasell, P.Eng
Senior Engineer, Trus Joist
Weyerhaeuser

Andy is a professional engineer with over 30 years of experience in the construction industry including: project management, structural engineering, wood component design, and field problem resolution. Based in Surrey, B.C., Andy is the Senior Engineer in Canada for Weyerhaeuser’s “Trus Joist” line of wood products. Through his interactions with Builders, Engineers, Architects, and Inspectors, he has seen what works well (and not-so well!) in the construction industry.

Ernst Grell
Territory Manager, Eastern Canada, Trus Joist
Weyerhaeuser

Ernst is a Territory Manager for Weyerhaeuser / Trus Joist in the eastern Canada region. Ernst has over 30 years technical sales experience in the Engineered Wood Industry launching his career with Trus Joist Canada in Calgary, Alberta. Ernst works closely with specifiers, builders, code officials, building and component manufacturers, and lumber yards for the smooth implementation of Trus Joist EWP in multi-family, mid-rise and low-rise residential and ICI wood framed projects.

Unlocking Insights: Mass Timber Fire Performance

Course Overview

Coming Soon

Learning Objectives

The presentation will be focused on providing a summary of the Mass Timber Demonstration Fire Test Program’s results and include the following segments:

  1. Introduction and background on what led to the demonstration fire tests.
  2. Overview of research prior to the demonstration fire tests and the contribution of the demonstration fire tests to the understanding of the fire performance of mass timber construction.
  3. Review of the five fire scenarios including the design, videos of the tests, and discussion of the results.
  4. Overview of National Research Council’s report including data collection, analysis, and conclusions.
  5. Q&A session to allow participants the opportunity to seek clarification or additional information.

Course Video

Speaker Bio

Steven Craft, PhD, P.Eng.
Founding Partner
CHM Fire Consultants Ltd

Dr. Steven Craft is a founding partner of CHM Fire Consultants Ltd located in Ottawa and Toronto, ON. He served as an Adjunct Professor in the Fire Safety Engineering Program at Carleton University from 2010- 2019 and was a Research Scientist with Canada’s National Forest Products Research Institute (FPInnovations) from 2006-2011. He has an undergraduate degree in Forest Engineering from the University of New Brunswick and a PhD in Fire Safety Engineering from Carleton University. He is the Chair of the ULC Fire Test Committee, is a Vice-chair of ASTM Committee on Fire Standards and is on the Technical Committee for the Canadian Wood Design Standard, CSA O86, where he Chairs the Task Group on Fire Resistance. Dr. Craft has been involved in over 20 significant mass timber building projects across Canada and multiple large-scale fire tests on mass timber construction.

CLT Firewalls
Mass Timber: Unlocking the Mysteries of Connection Design and Fabrication
Shifting Gears: World’s First Passivehouse Auto Dealership
Guide to Encapsulated Mass Timber Construction in the Ontario Building Code
Innovative Envelope Solutions for Mass Timber
Practical and Advanced Modeling for Design and Performance of Mass Timber Structures
Overview of the Ottawa Mass Timber Fire Test
Understanding the New EMTC Provisions in the Ontario Building Code
Simplified and Sustainable Acoustic Solutions for High-Performance Mass Timber Buildings
Elevate Innovate Acoustically Integrate
By Engineer or By Supplier? How “Involved” to Be in Choosing Engineered Lumber
Unlocking Insights: Mass Timber Fire Performance
Course Overview Fire performances of CLT fire separations with closure (door) or service (pipe) penetrations will be discussed. Learning Objectives Beyond the introduction of...
Course Overview Melissa will discuss the role of the specialty structural engineer in glulam connection design for your project. Tips will be provided to help streamline the...
Course Overview Building a wood frame Car Dealership is a unique proposition to begin with. Making it a Certified Passivehouse building in cold windy Red Deer is an added...
Course Overview This 2-hour technical webinar will begin with an overview of ongoing fire research at the National Research Council of Canada into various performance aspects...
Course Overview As society strives toward lower-carbon construction and increased operational efficiency of the built environment, we know that a building’s envelope...
Course Overview FPInnovations’s Modeling Guide for Timber Structures is the result of global collaboration from over 100 experts. This definitive guide for timber structure...
Course Overview The presentation will provide an overview of the Mass Timber Demonstration Fire Tests which were conducted during the summer and fall of 2022. Past research...
Course Overview This 2-hour technical webinar will begin with an overview of ongoing fire research at the National Research Council of Canada into various performance aspects...
Course Overview Delivering superior acoustic comfort to building occupants doesn’t have to be complicated. In this panel discussion, presented by an industry-leading...
Course Overview In this session using specific project case studies, discover the latest ground-breaking advancements in sound technology that are transforming acoustic...
Course Overview Since Engineered Lumber Products are proprietary, there is a range of opinions about how much information to show on a set of Structural drawings. Should the...
Course Overview Coming Soon Learning Objectives The presentation will be focused on providing a summary of the Mass Timber Demonstration Fire Test Program’s results and...

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