Impact of upstream buildings on Wind-Driven Rain Loading: Refining Obstruction Factor in ISO semi-empirical model based on CFD

IF 6.7 2区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Journal of building engineering Pub Date : 2024-09-11 DOI:10.1016/j.jobe.2024.110717
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Abstract

CFD is a valuable tool for assessing Wind-Driven Rain (WDR) loading, one of the most important environmental loads for façade design. The majority of previous studies on this topic have primarily concentrated on simple building configurations, i.e., stand-alone buildings. Hence, prior findings may not be applicable to consider the impact of upstream buildings in urban areas, which significantly alter wind flow field, consequently, change WDR loadings on downstream building facades compared to the stand-alone building. Part A: four different steady-state RANS models (i.e., standard kω, realizable kε, RNG kε, and standard kε) coupled with the Eulerian Multiphase (EM) technique (RANS-EM) are compared and implemented using OpenFOAM-7. These models are validated and verified based on wind-tunnel and field measurement data obtained from the literature for a six-story mid-rise residential building located in an urban area in Vancouver, Canada. The study considers 13 distinct rainfall events, for the test building with/without overhangs. All four RANS models are deemed suitable for modeling WDR in urban areas, while the steady-state standard k-ω RANS-EM approach without incorporating turbulent dispersion showing slightly better performance, thus utilized for the reminder of the study. Part B: a sensitivity analysis is presented on how the upstream buildings influence the WDR loading on a downstream building, denoted as Obstruction Factor. A comparison between the CFD and ISO semi-empirical model shows significant discrepancies, potentially reaching up to factors of 5. Thus, updated Obstruction Factors are suggested to enhance the ISO model for more accurate estimation of WDR loads.

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上游建筑物对风致雨荷载的影响:完善基于 CFD 的 ISO 半经验模型中的阻塞系数
CFD 是评估风致雨荷载(WDR)的重要工具,而风致雨荷载是幕墙设计中最重要的环境荷载之一。之前有关该主题的大多数研究主要集中在简单的建筑结构上,即独立建筑。因此,以前的研究结果可能不适用于考虑城市地区上游建筑的影响,因为上游建筑会显著改变风流场,从而改变下游建筑外墙与独立建筑相比所承受的 WDR 荷载。A 部分:使用 OpenFOAM-7 对四种不同的稳态 RANS 模型(即标准 k-ω、可实现 k-ε、RNG k-ε 和标准 k-ε)与欧拉多相(EM)技术(RANS-EM)进行了比较和实施。根据从文献中获得的一栋位于加拿大温哥华市区的六层中层住宅楼的风洞和现场测量数据,对这些模型进行了验证和确认。研究考虑了 13 个不同的降雨事件,针对的是有/无悬挑的测试建筑。所有四种 RANS 模型都被认为适用于城市地区的 WDR 建模,而不包含湍流扩散的稳态标准 k-ω RANS-EM 方法性能稍好,因此被用于本研究的提醒。B 部分:对上游建筑物如何影响下游建筑物的 WDR 负荷(表示为阻塞因子)进行了敏感性分析。CFD 与 ISO 半经验模型之间的比较显示,两者之间存在显著差异,可能高达 5 倍。因此,建议更新阻塞系数,以增强 ISO 模型,从而更准确地估算 WDR 荷载。
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来源期刊
Journal of building engineering
Journal of building engineering Engineering-Civil and Structural Engineering
CiteScore
10.00
自引率
12.50%
发文量
1901
审稿时长
35 days
期刊介绍: The Journal of Building Engineering is an interdisciplinary journal that covers all aspects of science and technology concerned with the whole life cycle of the built environment; from the design phase through to construction, operation, performance, maintenance and its deterioration.
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