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A comparison of numerical simulation methods analyzing the performance of a ground-coupled heat pump system

机译:分析地面耦合热泵系统性能分析数值模拟方法的比较

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摘要

Ground-coupled heat pumps are increasingly being utilized to heat and cool buildings. Although it is difficult to size and to predict their behavior and performance, their design can be optimized via simulations. EnergyPlus is a popular energy simulation program for modeling building heating and other energy flows and, since it is organized to consider borehole heat exchangers via the well-known g-functions approach, it can be used advantageously for that purpose. The Capacity Resistance Model is another recent numerical simulation tool devoted to ground and borehole heat exchangers. In this work, two methods to calculate the g-fucntions were analyzed, using as case-study a real office building, whose imbalance between the heat extracted and injected into the ground was found to be appreciable. The energy imbalance involves a ground temperature drift affecting the system efficiency. The results of the EnergyPlus g-functions and the Capacity Resistance Model model approaches were compared. The capacity of the two methodologies to accurately simulate this phenomenon were analysed also with reference to the available building's long-term monitoring data. The analysis showed the importance of using g-functions suitable to reflect the layout of the borehole field, in order to correctly evaluate the energy performance of the entire ground source heat pump system.
机译:接地耦合热泵越来越地用于加热和凉爽的建筑物。虽然难以规模并预测其行为和性能,但它们的设计可以通过模拟优化。 EnergyPlus是一种流行的能量仿真程序,用于建模建筑加热和其他能量流动,并且有组织以通过众所周知的G函数方法考虑钻孔热交换器,因此可以有利地用于该目的。容量电阻模型是另一个初探地面和钻孔换热器的数控仿真工具。在这项工作中,分析了两种计算G-FUCNTIONS的方法,用例研究了一个真正的办公楼,发现其在提取并注入地面的热量之间的不平衡是可观的。能量不平衡涉及影响系统效率的地温漂移。比较了EnergyPlus G函数的结果和容量电阻模型模型方法。通过参考可用的建筑物的长期监测数据,分析了两种方法精确模拟此现象的方法的能力。该分析表明,使用适合于反映钻孔场的布局的G函数的重要性,以便正确评估整个地源热泵系统的能量性能。

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