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Numerical Simulation on the Heat Dissipation of the Outdoor Unit in the Groove of High-Rise Building

机译:高层建筑沟槽室外散热的数值模拟

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In order to study the influence of the heat dissipation of the outdoor unit in the groove of the highrise building. Numerical simulation of the thermal environment of a high-rise building is carried out. The results show that: When the outdoor mean wind speed is 2.7m/s, the maximum inlet air temperature of the outdoor unit under full load condition is about 43.3 °C, which is 2 °C lower than that under no wind condition. The monsoon is beneficial to the heat dissipation of the outdoor unit. When the hot air in the building groove rises, the corner flow is induced at the lower side of the refuge layer. Due to the reverse pressure gradient, the flow separation occurs, resulting in the blockage in the flow channel. When the air flows through the refuge layer, the flow expands suddenly due to the increase of the cross-section of the channel. The turbulent boundary layer is separated. The vortex region is induced on the upper side of the refuge layer. Since the heat on the upper and lower sides of the refuge floor cannot be effectively dissipated, the inlet air temperature of the outdoor unit is higher than that of other floors, which reduces the working efficiency of the outdoor unit.
机译:为了研究高层建筑沟槽槽散热的影响。进行了高层建筑物热环境的数值模拟。结果表明:当室外平均风速为2.7m / s时,全负荷条件下室外装置的最大入口空气温度约为43.3°C,比在无风条件下低2°C。季风有利于室外单位的散热。当建筑物槽中的热空气上升时,角流在避难层的下侧感引起。由于反向压力梯度,发生流动分离,从而导致流动通道堵塞。当空气流过避难层时,由于通道的横截面的增加,流动突然突出。湍流边界层被分离。涡旋区域诱导在避难层的上侧。由于避难地板的上侧和下侧上的热量不能有效地耗散,因此室外单元的入口空气温度高于其他地板的入口空气温度,这降低了室外单元的工作效率。

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