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Study on indoor thermal environment of office space controlled by cooling panel system using field measurement and the numerical simulation

机译:冷却板系统控制办公室空间室内热环境的现场测量与数值模拟研究

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The purpose of this study was to analyze the performance of a cooling panel system installed in the vertical plane with condensation (hereinafter a cooling panel system) using field measurement and coupled simulation of convection and radiation (CFD). Unlike an all-air cooling system, the cooling panel system could remove the cooling load by convection and radiation. Since the surface temperature of the cooling panel analyzed in this study can be controlled under the dew point, this system is expected to be energy-saving and dehumidifying. In the first step of this study, the indoor thermal environment of the office space, which is air-conditioned by a cooling panel system, was analyzed by field measurement and CFD. By comparing both results, the expected precision of CFD for an indoor space with a cooling panel was examined and the CFD method verified from a practical point of view. In the next step, the thermal environment of the model office space, which is cooled by three types of HVAC system (cooling panel system, all-air cooling system, and hybrid air cooling system composed of cooling panel and natural ventilation), was analyzed using CFD. Installing a human model in the office, the characteristics of heat transportation from the human model were also analyzed. The analysis deals with only sensible heat in this study. The operative temperature in the cooling pane! system was lower than that in the all-air cooling system when each of the sensible cooling loads of all types of HVAC system was the same. In conclusion, the cooling panel system was found to be very energy-efficient.
机译:这项研究的目的是使用现场测量以及对流和辐射耦合(CFD)模拟来分析安装在垂直平面上有冷凝水的冷却板系统(以下称冷却板系统)的性能。与全空气冷却系统不同,冷却面板系统可以通过对流和辐射消除冷却负荷。由于本研究中分析的冷却板表面温度可以控制在露点以下,因此该系统有望实现节能除湿。在这项研究的第一步中,通过现场测量和CFD分析了通过冷却板系统进行空调的办公室空间的室内热环境。通过比较两个结果,检查了带有冷却板的室内空间的CFD预期精度,并从实际角度验证了CFD方法。下一步,分析了模型办公室空间的热环境,该环境通过三种类型的HVAC系统进行冷却(冷却板系统,全风冷却系统以及由冷却板和自然通风组成的混合空气冷却系统)使用CFD。在办公室中安装了人体模型,还分析了人体模型的热传递特征。在本研究中,分析仅涉及显热。冷却窗格中的工作温度!当所有类型的HVAC系统的显冷负荷均相同时,该系统的效率低于全风冷却系统。总而言之,发现冷却板系统非常节能。

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