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Feasibility and performance study of the hybrid ground-source heat pump system for one office building in Chinese heating dominated areas

机译:在中国供热占主导地位的一栋办公楼中,混合地源热泵系统的可行性和性能研究

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摘要

Most buildings in the cold climate zone have unbalanced loads, mainly dominated by heating loads. The cold buildup within the soil would definitely reduce the soil temperature, which could consequently disturb the soil temperature balance, and furthermore, deteriorate the performance of ground source heat pump. A hybrid ground-source heat pump (HGSHP) with auxiliary heat source could be proposed to solve this problem. The paper aimed at investigating the feasibility and performance of HGSHP in Shenyang located in the cold area. Firstly, hourly dynamic loads of one office building were calculated. Then, three systems, including one HGSHP system with boiler as auxiliary heat source, ground source heat pump system (GSHP), and a traditional electric water chiller + boiler system (WB) were designed and simulated for this office building by TRNSYS. Several performance parameters for these three systems were obtained. These parameters included the hourly outlet/inlet temperature of buried pipes, hourly soil temperature, energy consumption distribution and the coefficient of performance (COP). Simulation results indicated that HGSHP system with boiler as auxiliary heat source could effectively solve cold accumulation problem and reduce traditional energy consumption. These results could provide some reference on HGSHP system utilization in the cold climate zones of China. (C) 2016 Elsevier Ltd. All rights reserved.
机译:寒冷气候区中的​​大多数建筑物负载不均衡,主要是供暖负载。土壤中的冷积聚肯定会降低土壤温度,从而可能会扰乱土壤温度平衡,进而使地源热泵的性能下降。可以提出一种带有辅助热源的混合地源热泵(HGSHP)来解决这个问题。本文旨在研究HGSHP在寒冷地区沉阳的可行性和性能。首先,计算一栋办公楼的每小时动态载荷。然后,TRNSYS为该办公楼设计并模拟了三个系统,包括一个以锅炉为辅助热源的HGSHP系统,地源热泵系统(GSHP)和传统的电冷水机组+锅炉系统(WB)。获得了这三个系统的几个性能参数。这些参数包括地下管道的每小时出口/入口温度,每小时土壤温度,能耗分布和性能系数(COP)。仿真结果表明,以锅炉为辅助热源的HGSHP系统可以有效解决冷库问题,减少传统能源消耗。这些结果可为中国寒冷气候区的HGSHP系统利用提供参考。 (C)2016 Elsevier Ltd.保留所有权利。

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