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Experimental study on ventilation and energy saving of underground buildings based on shallow ground temperature

机译:基于浅层地温的地下建筑物通风和节能试验研究

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摘要

Shallow rock and soil have a heat transfer temperature difference with the external environment, which can affect the external temperature through natural ventilation. In order to study and research the ventilation and energy saving of underground buildings based on this point, this study uses natural ventilation, field measurement, and DeST numerical simulation method to test the actual natural supply air rate of Zhengzhou metro station and the temperature, humidity, and CO2 concentration in the station. After further simulation analysis, the energy-saving design method and operation mode that make full use of natural ventilation are proposed in the end, and the energy-saving advantages that natural ventilation can bring are further explored. The results show that during the ventilation season, increasing the natural ventilation in March, April, and November can improve the thermal environment in the station and reduce the opening time of draught fan, saving the energy consumption of the fan operation, while in the months when the outdoor temperature is lower, such as in January, February, and in December, maintaining the existing natural ventilation is able to meet the station temperature requirements. It can be seen that the design of this study is reasonable and has achieved the expected effect. It can use the effect of natural ventilation on the metro station to achieve energy saving.
机译:浅层岩石和土壤与外部环境具有传热温度差异,这会通过自然通风影响外部温度。为了基于这一点研究和研究地下建筑物的通风和节能,本研究采用自然通风,现场测量和DEST数值模拟方法来测试郑州地铁站实际自然供应空气率和温度,湿度和车站中的CO2浓度。在进一步仿真分析之后,最终提出了充分利用自然通风的节能设计方法和操作模式,并进一步探索了自然通风能带来的节能优势。结果表明,在通风季节期间,在4月,4月和11月增加自然通风可以改善车站的热环境,减少风扇草案的打开时间,节省风扇运行的能耗,而在几个月内当室外温度较低时,如1月,2月和12月,维持现有的自然通风能够满足站温度要求。可以看出,这项研究的设计是合理的并且已经实现了预期的效果。它可以利用自然通风对地铁站的影响实现节能。

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