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Numerical simulation of dynamical thermal environment in underground structures

机译:地下结构动态热环境的数值模拟

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Ground heat resource, a kind of renewable energy source, its utilization has attracted great attention in many countries. In this paper, the characteristic of unsteady fluid-solid coupling heat exchange of underground structures is analyzed and the mathematical model of the unsteady heat exchange between air and the envelope of deep underground structures is established. In order to facilitate computation, a coefficient of response is adopted for boundary conditions. Also the corresponding computer program is developed. Based on this, the thermal environment is researched in the underground plant of a typical hydropower station. Result shows that the unsteady heat transfer through envelope of underground structures all the year round is the very reason why the underground structure is warm in winter and cool in summer. In addition, this paper discusses the relations between heat exchange value through envelope and other conditions such as inflow air temperature, air change times, heat source intensity and shape of a structure. This paper will be an essential basis for the design of ventilation and air-conditioning system in underground structures.
机译:地热资源是一种可再生能源,其利用已引起许多国家的关注。本文分析了地下结构的非稳态流固耦合热交换特征,建立了深层地下结构与空气之间的非稳态热交换数学模型。为了便于计算,对边界条件采用响应系数。还开发了相应的计算机程序。基于此,对典型水电站地下厂房的热环境进行了研究。结果表明,地下结构常年不间断地传热是地下结构冬暖夏凉的原因。此外,本文还讨论了通过包络线的热交换值与其他条件之间的关系,例如进风温度,换气时间,热源强度和结构形状。本文将为地下结构通风和空调系统的设计提供必要的基础。

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