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THERMAL ANALYSIS OF VERTICAL GROUND EXCHANGERS OF HEAT PUMPS

机译:热泵垂直接地交换机的热分析

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Heat flow rate transferred from the ground by vertical ground exchangers of heat pump units is analysed in the paper. The investigation of the mentioned heat flow rate, for different arrangements of the exchanger tubes, different values of the temperature of an intermediate medium, different thermal parameters of the ground, and for the different values of seepage velocity, is the main aim of the paper. For this purpose, proper unsteady state temperature distributions in the ground surrounding the ground exchanger have been calculated. The temperature distributions in the ground considered are governed by the standard unsteady heat conduction equation with the convective term in the unfrozen part of the domain, if the seepage is taken into account, and Stefan's boundary condition on the phase change interface. Calculations have been carried out using the home code FEMCONV, if the seepage is considered. The finite element method (FEM) is implemented in this code both to calculate the temperature fields and the velocity fields of moisture. The Darcy's model is assumed to describe the seepage flow in the ground. Due to the existence of phase change on the moving interface, the apparent heat capacity method is applied. Additionally, an original technique is used to avoid remeshing because the seepage flow takes place within the unfrozen part of the computational domain, which changes its shape in the time. PATRAN-THERMAL code has been usually employed to calculate the temperature fields in case the seepage is neglected.
机译:在纸上分析了热泵单元垂直接地交换机从地面传递的热流速。所提到的热流速率的研究,用于交换管的不同布置,中间介质温度的不同值,地面的不同热参数,以及渗流速度的不同值,是纸张的主要目的。为此目的,已经计算了地面上的适当的不稳定状态温度分布已经计算出地面交换机的地面。如果考虑渗出,则所考虑的地面中的温度分布由标准的非定常导热方程与具有对流术语中的具有对流术语的对流术语,以及相变接口上的Stefan的边界条件。如果考虑渗漏,则使用主代码Femconv执行计算。在该代码中实现了有限元方法(FEM),以计算温度场和水分的速度场。假设达西的模型描述了地面中的渗流流。由于移动界面上的相变存在,施加表观热容量方法。另外,原始技术用于避免回忆,因为渗流流程发生在计算域的未分解部分内,其在时间变化其形状。在忽略渗出的情况下,通常使用帕特曼热代码来计算温度场。

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