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Study of the design Method of an Efficient Ground Source Heat Pump Thermal Source System in a Cold Area

机译:寒冷地区高效地源热泵热源系统设计方法研究

摘要

The ground source heat pump (GSHP) system-an energy efficiency and environment friendly system-is becoming popular in many parts of China. However, an imbalance usually exists between the annual heat extracted from and rejected to the ground due to the different heating and cooling load of a building, which will consistently deteriorate the heat pump efficiency leading even to the breakdown of the heat pump. This paper brings forward a design method of adding supplemental heat rejection equipment, a cooling tower, in the system to solve the problem in a cold area. Taking an office building in Beijing as an example, the authors simulate the GSHP system with two different connection methods between the cooling tower and vertical buried-pipe heat exchangers (in series and in parallel) using TRNSYS simulation software, and put forward several design schemes that can ensure the whole system continually operates with high efficiency. This also makes it possible to perform a more detailed economic optimization of the GSHP-based system in the future.
机译:地源热泵(GSHP)系统-一种节能环保的系统-在中国许多地区正变得越来越流行。但是,由于建筑物的供暖和制冷负荷不同,每年从地面抽出和排出地面的热量之间通常会存在不平衡,这将始终使热泵效率下降,甚至导致热泵故障。本文提出了一种在系统中增加辅助排热设备,冷却塔的设计方法,以解决寒冷地区的问题。以北京的一栋办公楼为例,作者使用TRNSYS仿真软件对冷却塔与立式埋管换热器(串联和并联)之间两种不同的连接方式进行了GSHP系统的仿真,并提出了几种设计方案。可以确保整个系统持续高效运行。这也使得将来可以对基于GSHP的系统进行更详细的经济优化。

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