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State-of-the-Art Review of Simulated Rain Infiltration and Environmental Loading for Large-Scale Building Envelope Testing

机译:大型建筑围护结构测试的模拟雨水渗透和环境负荷的最新技术回顾

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Much work has been done in the last decade on the determination of exterior loading conditions including rainfall. These methods are generally geared for heat, air, and moisture (HAM) modeling and involve selecting a "reference year." Whereas the real climate of the reference year can be followed in simulations, the loading has to be simplified in an experiment. To set deterministic or quasi-stochastic loads for experimental testing, the climatic variables can be statistically analyzed. However, the reference year does not provide information in terms of wind-driven rain infiltration loading. As well, since in an experiment the water must be inserted physically, two more steps are required to determ ine the load conditions: the water insertion rate must be established as well as the method of water introduction. This paper presents various existing methods for selecting a climate-representative reference year and their limited applicability for experimental testing. Methods to determine the impinging wind-driven rain on building facades are discussed, as well as previous work on wind-driven rain infiltration and methods used for the experimental simulation of wind-driven rain infiltration. The findings from the literature review show that there is a need for the development of a methodology to simulate wind-driven rain infiltration that takes into consideration climatic variables, such as rainfall and wind speed, as well as building geometry, location on a facade, and an estimate of wind-driven rain infiltration rates in the context of building envelope testing.
机译:在过去的十年中,在确定包括雨水在内的外部负载条件方面已经进行了许多工作。这些方法通常适用于热,空气和湿气(HAM)建模,涉及选择“参考年”。尽管可以在模拟中遵循参考年的真实气候,但必须在实验中简化负荷。为了为实验测试设置确定性或准随机负载,可以对气候变量进行统计分析。但是,参考年份未提供有关风驱动雨水渗透负荷的信息。同样,由于在实验中必须物理插入水,因此需要两个步骤来确定负载条件:必须确定水的插入速率以及引入水的方法。本文介绍了选择气候代表基准年的各种现有方法及其在实验测试中的有限适用性。讨论了确定建筑物外墙撞击风雨的方法,以及风雨渗入的先前工作以及用于风雨渗入实验模拟的方法。文献综述的结果表明,有必要开发一种模拟风驱动雨水渗透的方法,该方法应考虑气候变量(例如降雨和风速)以及建筑物的几何形状,立面上的位置,以及在建筑物围护结构测试中估算的风雨渗透率。

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