Carbon Impact and Cost of Mass Timber Beam–Column Gravity Systems

Author:

Chaggaris Rachel,Pei Shiling,Kingsley Greg,Feitel Alexis

Abstract

The need to lower the embodied carbon impact of the built environment and sequester carbon over the life of buildings has spurred the growth of mass timber building construction, leading to the introduction of new building types (Types IV-A, B, and C) in the 2021 International Building Code (IBC). The achievement of sustainability goals has been hindered by the perceived first cost assessment of mass timber systems. Optimizing cost is an urgent prerequisite to embodied carbon reduction. Due to a high level of prefabrication and reduction in field labor, the mass timber material volume constitutes a larger portion of total project cost when compared to buildings with traditional materials. In this study, the dollar cost, carbon emitted, and carbon sequestered of mass timber beam–column gravity system solutions with different design configurations was studied. Design parameters studied in this sensitivity analysis included viable building types, column grid dimension, and building height. A scenario study was conducted to estimate the economic viability of tall wood buildings with respect to land costs. It is concluded that, while Type III building designations are the most economical for lower building heights, the newly introduced Type IV subcategories remain competitive for taller structures while providing a potentially significant embodied carbon benefit.

Funder

National Science Foundation

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development

Reference15 articles.

1. 2018 Global Status Report: Towards a Zero-Emission, Efficient and Resilient Buildings and Construction Sector,2018

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4. Tall Wood Buildings in the 2021 IBC Up to 18 Stories of Mass Timberhttps://www.woodworks.org/wp-content/uploads/wood_solution_paper-TALL-WOOD.pdf

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