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A Simulation Tool for Radiative Heat Exchangers

机译:辐射换热器的仿真工具

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摘要

In order to minimize the large fan power demand from low temperature lift heat pump systems, a radiative heat exchanger is proposed as an indoor heat exchanger design in such systems. The radiative heat exchanger utilizes both natural convection and radiation so that it is capable of reducing fan power consumption while simultaneously providing an improved thermal comfort. A software tool has been developed to simulate the operative temperature field created by a radiative heat exchanger installed in a typical office setting (3m by 3m by 3m dimension). The tool includes the modeling of mean radiant temperature using an eight-surface (six walls, a window and a sunlit area on the floor) assumption, as well as the modeling of air temperature using proper orthogonal decomposition method. The proper orthogonal decomposition method was shown to be more computationally cost-effective than the conventional CFD simulation. Finally, the operative temperature simulation results were validated with the experimental data, showing the average discrepancy of 0.4 K in four measurement locations.
机译:为了使低温升降式热泵系统对大风扇功率的需求最小化,在这种系统中,提出了一种辐射式热交换器作为室内热交换器的设计。辐射换热器利用自然对流和辐射,因此能够减少风扇功耗,同时提供改善的热舒适性。已经开发出软件工具来模拟由安装在典型办公环境(3m×3m×3m尺寸)中的辐射热交换器产生的工作温度场。该工具包括使用八个表面(六个墙,一扇窗户和地板上的阳光照射区域)的假设对平均辐射温度进行建模,以及使用适当的正交分解方法对空气温度进行建模。结果表明,正确的正交分解方法比常规的CFD模拟在计算上更具成本效益。最后,通过实验数据验证了操作温度模拟结果,表明在四个测量位置的平均差异为0.4K。

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