Characteristics of internal and external pressures and peak net pressures on a building envelope
Bodhinayake, Geeth G., and Ginger, John D. (2022) Characteristics of internal and external pressures and peak net pressures on a building envelope. Journal of Wind Engineering and Industrial Aerodynamics, 231. 105228.
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Abstract
Net pressures on roofs and walls of a building are dependent on the internal and external pressure fluctuations. The internal pressure is influenced by the sizes and locations of the openings in the building envelope. The peak net pressure (C_(p ̌,net)) for cladding design on the roof and walls of a building will depend on the internal and external pressure fluctuations and their correlation.
External and internal pressure fluctuations and their correlations measured on the roof and wall of a 1:200 scale model nominally permeable building and a building with a wall opening were used derive peak net pressures. The large external suction pressures and the small internal pressures in the permeable building are positively correlated whilst the large external suction pressures and the large positive internal pressures in the building with windward wall opening are negatively correlated. Widely available basic statistical properties of external and internal pressures (i.e. mean, standard deviation, and peak coefficients) and their correlations are applied with the fundamental theory of the covariance integration method (without the need for their time histories) to satisfactorily estimate the peak net design pressure to within 10% of the measured value.
Item ID: | 77173 |
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Item Type: | Article (Research - C1) |
ISSN: | 1872-8197 |
Copyright Information: | © 2022 Elsevier Ltd. All rights reserved. |
Funders: | Australian Research Council (ARC) |
Projects and Grants: | ARC LP150101206 |
Date Deposited: | 10 Jan 2023 00:40 |
FoR Codes: | 40 ENGINEERING > 4005 Civil engineering > 400510 Structural engineering @ 100% |
SEO Codes: | 12 CONSTRUCTION > 1202 Construction design > 120203 Industrial construction design @ 100% |
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