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Total analysis of cooling effects of cross-ventilation affected by microclimate around a building

机译:全面分析建筑物周围微气候对交叉通风的降温效果

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摘要

This study aims to develop a simulation system for evaluating the passive cooling effects, such as cross-ventilation, solar shading by trees, etc. Since the passive cooling effects are strongly affected by the spatial distributions of airflow, air temperature and radiative heat transports around a building, the microclimate around a building should be accurately predicted for this type of simulations. In this study, convective and radiative heat transports around buildings are analyzed by CFD (computational fluid dynamics) and radiation computations. Furthermore, the heat load calculation with the program "TRNSYS" was carried out, using the values of the cross-ventilation rates predicted by CFD computation and incoming solar radiation onto the building walls under the shade of trees obtained by the radiation computation as boundary conditions. Indoor velocity and indoor air temperature obtained by the simulation system developed here showed generally good agreement with measured data.
机译:这项研究旨在开发一种评估被动冷却效果的仿真系统,例如交叉通风,树木遮荫等。由于被动冷却效果受气流,空气温度和周围辐射热传输的空间分布的强烈影响在建筑物中,对于这种类型的模拟,应准确预测建筑物周围的微气候。在这项研究中,通过CFD(计算流体力学)和辐射计算分析了建筑物周围的对流和辐射热传递。此外,使用程序“ TRNSYS”进行热负荷计算,将通过CFD计算预测的交叉通风率的值以及在通过辐射计算获得的树木阴影下入射到建筑物墙壁上的太阳辐射的边界条件作为边界条件。 。通过此处开发的模拟系统获得的室内速度和室内空气温度与测量数据总体上显示出良好的一致性。

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