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The performance improvements of a ground-coupled heat pump system for both building heating and cooling modes

机译:建筑加热和冷却模式的地面耦合热泵系统的性能改进

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The objective of the paper is to describe the performance of ground-coupled heat pump (GCHP) system in 20 years. A mathematical model for simulation of GCHP system is built based on long time-step Eskilson's theory. The design methodology is based on a simulation that predicts the temperature response of the ground heat exchanger (GHE) to monthly heating and cooling loads and monthly peak heating and cooling demands over a number of years. The temperature response also has a secondary impact on the predicted energy consumption of the system, as the coefficient of performance (COP) of the heat pump varies with entering fluid temperature. This paper presents GCHP system can achieve better energy performance in building that heating and cooling loads are balanced all the year round. It is illustrated by performing a GHE for a 300 m2 building located in Changchun, China.
机译:本文的目的是描述20年来地面耦合热泵(GCHP)系统的性能。基于长时间的Eskilson理论,构建了GCHP系统模拟数学模型。设计方法基于仿真,该模拟预测地面热交换器(GHE)的温度响应,每月加热和冷却负载和每月峰值加热和冷却需求多年来。温度响应还对系统的预测能量消耗具有二次冲击,因为热泵的性能系数(COP)随着流体温度而变化。本文介绍了GCHP系统可以在建筑物中实现更好的能量性能,即加热和冷却负载全年都均衡。它是通过在中国长春的300平方米建筑物中表演GHE来说明。

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