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The loss coefficient for fluctuating flow through a dominant opening in a building

机译:通过建筑物主要开口的流量波动的损耗系数

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Wind-induced fluctuating internal pressures in a building with a dominant opening can be described by a second-order non-linear differential equation. However, the accuracy and efficiency of the governing equation in predicting internal pressure fluctuations depend upon two ill-defined parameters: inertial coefficient C-L and loss coefficient C-L, since C-L determines the un-damped oscillation frequency of an air slug at the opening, while C-L controls the decay ratio of the fluctuating internal pressure. This study particularly focused on the value of loss coefficient and its influence factors including: opening configuration and location, internal volumes, as well as wind speed and approaching flow turbulence. A simplified formula was presented to predict loss coefficient, therefore an approximate relationship between the standard deviation of internal and external pressures can be estimated using Vickery's approach. The study shows that the loss coefficient governs the peak response of the internal pressure spectrum which, in turn, will directly influence the standard deviation of the fluctuating internal pressure. The approaching flow characteristic and opening location have a remarkable effect on the parameter C-L.
机译:可以通过二阶非线性微分方程来描述具有主要开口的建筑物中风引起的内部压力波动。但是,控制方程预测内部压力波动的准确性和效率取决于两个不确定的参数:惯性系数CL和损耗系数CL,因为CL确定了开口处空气弹头的无阻尼振荡频率,而CL控制波动内部压力的衰减率。这项研究特别关注损耗系数的值及其影响因素,包括:开口结构和位置,内部容积以及风速和进风湍流。提出了一个简化的公式来预测损耗系数,因此可以使用维格(Vickery)方法估算内部压力和外部压力的标准偏差之间的近似关系。研究表明,损耗系数决定着内部压力谱的峰值响应,而峰值响应又将直接影响内部压力波动的标准偏差。接近的流量特性和打开位置对参数C-L有显着影响。

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