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SIMULATING RADIATIVE COOLING/HEATING USING BES-CFD COUPLED SIMULATION

机译:使用BES-CFD耦合模拟来模拟辐射冷却/加热

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The radiant cooling and heating system like the thermo-active concrete core system (TACS) has long been recognized as an alternative to the conventional all-air system, especially in Europe. The latest developments in simulation tools for radiative cooling/heating focused on the explicit plant definition in the simulation tools, i.e.how to simulate what is behind the radiant surfaces There is less attention on what is going on between radiant surface and the occupied zone. This paper explores the advantages of using the coupled simulation between building energy simulation (BES) and computational fluid dynamics (CFD) simulation in designing space conditioning by radiative cooling/heating. The way the coupled simulation treats the convection coefficient definition can be utilised to improve the prediction of thermal comfort and energy consumption.
机译:像热活性混凝土核心系统(TACS)这样的辐射式冷却和加热系统早已被公认为是传统全空气系统的替代品,尤其是在欧洲。辐射冷却/加热仿真工具的最新进展集中在仿真工具中明确的工厂定义上,即如何仿真辐射表面背后的物质。对辐射表面和所占区域之间发生的事情的关注较少。本文探讨了使用建筑能量模拟(BES)和计算流体动力学(CFD)模拟之间的耦合模拟在设计通过辐射冷却/加热进行的空间调节中的优势。耦合模拟处理对流系数定义的方式可用于改善对热舒适性和能量消耗的预测。

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