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Ten questions concerning modeling of wind-driven rain in the built environment

机译:关于建筑环境中风雨建模的十个问题

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Wind-driven rain (WDR) in the built environment is a complex multiscale phenomenon. Wind flows in complex urban environment and rain events of various intensities may lead to very different rain deposition distributions within the city. Proper modeling of WDR is required as moisture is a main cause of material degradation in the built environment but also as understanding the water cycle in the urban environment is essential to provide solutions for the urban heat island, amongst others. What are the main aspects to be taken into account to predict wind-driven rain? How should such aspects be considered and modeled? Is it possible and relevant to predict in detail the moisture loads due to rain in complex systems as cities? This paper answers these questions from a multiscale perspective combining modeling and experimental work. The different scales relevant for accurate estimation of wind-driven rain in the built environment are presented. Rain deposition on complex geometries can be modeled by CFD, taking into account turbulent dispersion. Such modeling provides the impact velocity and angle of attack for each droplet size at any location on the urban surfaces. Using this information and the structure of the surface, the fate of the rain droplets can be predicted, namely whether it splashes, bounces or simply spreads. (C) 2016 Published by Elsevier Ltd.
机译:建筑环境中的风雨(WDR)是一个复杂的多尺度现象。复杂的城市环境中的风流和各种强度的降雨可能会导致城市内降雨的分布非常不同。需要对WDR进行正确的建模,因为水分是建筑环境中材料降解的主要原因,而且理解城市环境中的水循环对于提供城市热岛解决方案至关重要。在预测风雨时应考虑哪些主要方面?应该如何考虑和建模这些方面?在城市等复杂系统中,能否详细预测由于降雨造成的水分负荷?本文从建模和实验工作相结合的多尺度角度回答了这些问题。介绍了与准确估计建筑环境中的风雨有关的不同尺度。考虑到湍流扩散,可以通过CFD对复杂几何形状上的雨水沉积进行建模。这种建模为城市表面上任何位置的每个液滴尺寸提供了撞击速度和攻角。利用这些信息和表面结构,可以预测雨滴的命运,即雨滴是飞溅,反弹还是简单扩散。 (C)2016由Elsevier Ltd.出版

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