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Porous media representation of louvers in building simulations for natural ventilation

机译:百叶窗建立自然通风模拟的多孔媒体表示

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Many buildings have louvers on their facades or windows, as they reduce penetration of wind-driven rain, indoor glare and irradiance from the sun and external noise. However, these louvers typically have millimetre-scale blade thicknesses and slat pitch, while spanning metres across the building in a full simulation domain of several kilometres. Consequently, computational fluid dynamic models require vastly increased cell counts to explicitly resolve these fine features for accuracy, which is computationally expensive. An alternative is to utilize a porous media model based on the Darcy-Forchheimer law to reduce the cell count. We present a method to determine parameters for a porous media representation of louvers, and quantify the associated deviation in velocity and pressure in a simplified building simulation. We show errors in the air velocities after passage through the porous media zone ranges from 10% in the simplest models to 38% in more complex cases.
机译:许多建筑物的外墙或窗户都有百叶窗,因为他们减少了风力驱动的雨水,室内眩光和来自阳光和外部噪音的辐照。然而,这些百叶窗通常具有毫米级叶片厚度和板条间距,而在几公里的完整仿真结构域中跨越跨越米。因此,计算流体动态模型需要大大增加的单元计数,以明确地解决这些精确特征,以便准确度,这是计算昂贵的。替代方案是基于达西 - 前大学定律使用多孔介质模型,以减少细胞计数。我们介绍一种确定百叶窗多孔介质表示的参数的方法,并在简化的建筑模拟中量化速度和压力的相关偏差。我们在通过多孔介质区通过最简单的模型中的介质范围为38%,在更复杂的情况下显示空气速度的误差。

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