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Thermodynamic analysis of building heating or cooling using the soil as heat reservoir

机译:使用土壤作为蓄热器的建筑采暖或制冷的热力学分析

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摘要

Soil can be used as heat reservoir for building heating or cooling purposes, as the underground temperature is different of the ambient air temperature. Ambient air is heated or cooled when flowing along a tube installed underground, and this air with changed temperature is introduced in the building. This problem can be studied in many ways, the main differences being the objectives and the considered details of the flow and temperature fields. In the present work a thermodynamic analysis is made, and important criteria are obtained in what concerns both the construction parameters (diameter and length of the tube installed underground) and the operation parameters (mass flow rate and heating or cooling effect). For such an analysis it is of crucial importance the consideration of the entropy generation minimization criterion which leads to the best thermodynamic performance of the system. Results are presented for three different specified operating conditions, which can be used for a better understanding of the heating or cooling systems using the soil as heat reservoir, as well as to give guidelines and limits when more detailed analysis are to be made.
机译:土壤可以用作建筑物供热或制冷用途的蓄热器,因为地下温度与周围空气温度不同。沿着安装在地下的管道流动时,周围的空气会被加热或冷却,并且这种温度变化的空气会被引入建筑物中。可以通过多种方式研究此问题,主要区别在于流场和温度场的目标和所考虑的细节。在本工作中,进行了热力学分析,并获得了与构造参数(安装在地下的管道的直径和长度)和运行参数(质量流量以及加热或冷却效果)有关的重要标准。对于这种分析,至关重要的是要考虑使系统产生最佳热力学性能的熵产生最小化准则。给出了三种不同指定操作条件的结果,这些结果可用于更好地了解使用土壤作为蓄热器的加热或冷却系统,以及在进行更详细的分析时提供指导和限制。

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