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Potential of Utilizing Different Natural Cooling Sources to Reduce the Building Cooling Load and Cooling Energy Consumption: A Case Study in Urumqi

机译:利用不同自然冷却源降低建筑制冷负荷和制冷能耗的潜力:以乌鲁木齐市为例

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Generally, Central Asia is typical for regions with strong solar radiation and various natural cooling sources. The heat gain from the building envelope accounts for a large part of the cooling load there. Thus, the pipe-embedded envelope is receiving attention as a semi-active system of utilizing natural energy for cooling. In this study, the performance of the pipe-embedded envelope used in Urumqi is numerically investigated. The energy saving potential regarding evaporative cooling and a ground-source heat exchanger (GSHE) is evaluated over a complete summer. The results show that the built-in pipes can reduce 80% of the solar heat gain through windows, with an effectiveness of around 60%. External windows rather than internal windows should be insulated because the air cavity is cool. With respect to the pipe-embedded wall, it becomes a radiant cooling panel absorbing the heat from the room, with an effectiveness around 83%. The seasonal cooling energy is decreased by 25%–50% in a typical office with a pipe-embedded envelope. Offices with a large window-to-wall ratio are acceptable because natural cooling is employed. GSHE performs the best among the selected sources. The effectiveness of evaporative cooling is also satisfactory, with an energy saving rate of 27%. Overall, the pipe-embedded system is suitable for climatic regions like Urumqi.
机译:通常,中亚地区通常是具有强烈太阳辐射和各种自然冷却源的地区。从建筑物围护结构获得的热量占那里制冷负荷的很大一部分。因此,作为利用自然能量进行冷却的半主动系统,埋入管道的外壳受到关注。在这项研究中,数值研究了乌鲁木齐使用的管道埋入式信封的性能。在整个夏季,评估了与蒸发冷却和地源热交换器(GSHE)有关的节能潜力。结果表明,内置管道可以减少80%的太阳能通过窗户的热能吸收,效率约为60%。外窗而不是内窗应该隔热,因为空气腔是凉的。对于嵌入管道的墙壁,它成为吸收房间热量的辐射式散热面板,效率约为83%。在典型的带有管道嵌入式外壳的办公室中,季节性制冷能量减少了25%–50%。因为采用自然冷却,所以具有大的墙对墙的办公室是可以接受的。 GSHE在所选来源中表现最好。蒸发冷却的效果也令人满意,节能率为27%。总体而言,管道嵌入式系统适用于乌鲁木齐等气候地区。

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