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EXPERIMENTAL ANALYTICAL INVESTIGATION ON SURFACE WATER HEAT EXCHANGER OF GROUND SOURCE HEAT PUMP

机译:地源热泵地表水换热实验分析研究

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A close loop surface water heat pump system is being widely used due to its high efficiency heat transfer performance, energy saving and low operation cost and environmental protection features. With reference to a surface water heat pump project servicing 40,000 m2 building area, this study focused on developing the surface water heat exchanger technology. Three types of prototype heat exchanger were designed, namely a U coil, a helical coil, and a slinky coil. Each heat exchanger was designed with 200m long 32mm OD HDPE pipe. Those three types of heat exchangers were installed in a lake one meter below the water surface. A test rig was employed to examine the corresponding summer time heat sinking performance and winter time heat sourcing performance for those heat exchangers. This paper shows the detailed study on summer time heat sinking test and modeling for those heat exchangers. The on site tests were carried out in August and September 2006, with circulation water inlet temperature of 35??and flow velocity of 0.6 m/s. Based on the data collected from the on site test it was found that the heat transfer rates were 59 W/m, 53 W/m, and 50 W/m for the U coil, the helical coil and the slinky coil heat exchangers, respectively. Detailed analysis of heat transfer mechanisms for those heat exchangers was also discussed. It is concluded from this study that these three types of surface water heat exchangers can be applied according to their different features. U coil heat exchanger could offer higher heat transfer efficiency than others if abundant amount of surface water source is available. However the helical and the slinky heat exchangers can be a good solution for the situation of limited water source or with a deep surface water source.
机译:闭环地表水热泵系统由于其高效的热传递性能,节能,低运行成本和环保特性而被广泛使用。参照服务于40,000平方米建筑面积的地表水热泵项目,本研究着重于发展地表水热交换器技术。设计了三种类型的原型热交换器,即U型盘管,螺旋形盘管和Slinky盘管。每个热交换器都设计有200m长的32mm OD HDPE管。这三种类型的热交换器安装在水面以下一米的湖泊中。使用测试台来检查这些热交换器的相应夏季散热性能和冬季散热性能。本文详细介绍了这些热交换器的夏季散热测试和建模。现场测试于2006年8月和2006年9月进行,循环水入口温度为35℃,流速为0.6 m / s。根据现场测试收集的数据,发现U形线圈,螺旋形线圈和袖形盘管热交换器的传热速率分别为59 W / m,53 W / m和50 W / m。 。还讨论了这些热交换器的传热机理的详细分析。从这项研究得出的结论是,可以根据它们的不同特征来应用这三种类型的地表水热交换器。如果有大量的地表水源,U盘管换热器可以提供比其他更高的传热效率。但是,对于有限的水源或地表水源较深的情况,螺旋式和袖式换热器可能是一个很好的解决方案。

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