Towards a Computational Workflow for Studying the Effects of Climate Change on Wind Loads on High-Rise Buildings in Urban Areas

Author:

Teran Alfonso S.1ORCID,Agrawal Shreya2,Naderian Hamidreza13,Wong Jack K.1,Song Jie1,Mercan Oya1,Kushner Paul J.4,Mardukhi Jamil3,Zhang Xuebin5

Affiliation:

1. Department of Civil & Mineral Engineering, University of Toronto, Toronto, ON, Canada

2. Department of Aeronautics and Astronautics, Stanford University, Stanford, CA, USA

3. NCK Engineering Ltd, Toronto, ON, Canada

4. Department of Physics, University of Toronto, Toronto, ON, Canada

5. Environment and Climate Change Canada, Gatineau, ON, Canada

Funder

SOSCIP/OCE Talent Edge Program

NSERC Discovery Program

University of Toronto Dean's Strategic Fund

National Council of Science and Technology

Mitacs Globalink Research Internship

Publisher

Informa UK Limited

Subject

Atmospheric Science,Oceanography

Reference62 articles.

1. Pedestrian level wind assessment through city development: A study of the financial district in Toronto

2. Amerio, L. & Zasso, P. A. (2017). Experimental high resolution analysis of the pressure peaks on a building scale model facades. Politecnico di Milano, Milan.

3. Anthes, R. A., Corell, R. W., Holland, G., Hurrel, J. W., MacCracken, M. C. & Trenberth, K. E. (2006). Hurricanes and global warming — potential linkages and consequences. https://doi.org/10.1175/BAMS-87-5-623

4. Auld, H., Waller, J., Eng, S., Klaassen, J., Morris, R., Fernandez, S., Cheng, V. & Maciver, D. (2010). 5.6 The changing climate and national building codes and standards. Adaptation and Impacts Research Section, Environment Canada, Toronto, Canada.

5. Wind loading on high-rise buildings and the comfort effects on the occupants

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