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Simulation of a Geothermal Heat Pump System with an Expander-Driven Primary Pump

机译:带有膨胀机驱动的主泵的地热热泵系统的仿真

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In this study, the authors examined feasibility of a GSHP which uses energy from expander to drive primary (ground side) pump by a simulation (see Fig.1). The simulator has ability to represent convectional and diffusion heat transfer in soil. It also can simulate as well as dynamic behavior of refrigerant cycle. It has been revealed from this study that the formation temperature falls drastically in the initial phase of the operation and system performance (COP) is reduced afterwards for a low flow rate by single expander-driven pump. The performance of system has been evaluated for a two primary pump system, where one pump is driven by power output from the expander and the other is by external electricity. We have found that there exists optimum capacity ratio of expander and pump for most effective use of the energy from the expander. It has been also demonstrated that overall electrical power consumption can be reduced a few percentage using this system, although further investigation on more detailed system design and operation style should be made.
机译:在这项研究中,作者通过模拟研究了一种GSHP的可行性,该GSHP使用来自膨胀机的能量来驱动主(地面)泵(见图1)。该模拟器具有表示土壤中对流和扩散热传递的能力。它还可以模拟制冷剂循环以及动态行为。从这项研究中已经揭示出,在操作的初始阶段,地层温度急剧下降,并且随后由于单个膨胀机驱动的泵的低流量,系统性能(COP)降低。已针对两台主泵系统评估了系统的性能,其中一台泵由膨胀机输出的功率驱动,另一台由外部电力驱动。我们发现,为了最有效地利用膨胀机的能量,存在膨胀机和泵的最佳容量比。还已经证明,尽管应该对更详细的系统设计和操作方式进行进一步的研究,但是使用该系统可以将总体电力消耗降低几个百分点。

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