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Testing and simulation of a low-temperature air-source heat pump operating in a thermal buffer zone

机译:在热缓冲区中运行的低温空气源热泵的测试和模拟

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Air-source heat pumps (ASHPs) are commonly used in temperate climates throughout Europe and Asia to provide energy efficient heating and cooling. However. ASHPs have not been widely adopted for heating in colder climates because the coefficient of performance (COP) is lower when outdoor temperatures are colder. While many researchers are working on improving the cold-temperature performance of ASHPs by altering the design of the equipment, this work examines an innovative way to improve performance by operating an existing 'off-the-shelf' ASHP within a thermal buffer zone. This paper shows that operating an ASHP in a thermal buffer zone (TBZ) created by an enclosed balcony space can improve the COP in cold temperatures. An ASHP operating in a TBZ was tested in a climate chamber where the performance was monitored under a variety of climatic conditions. The temperature drawdown of the TBZ and the associated impact on the COP were observed. The TBZ solar heat gain rates required to improve the COP were identified for a range of exterior temperatures. Then, a suite-based energy model was developed and calibrated to simulate the performance of the ASHP operating in the TBZ. The model provided a reasonable prediction of the ASHP performance below 10 C.
机译:空气源热泵(ASHP)通常在整个欧洲和亚洲的温带气候中使用,以提供节能的供热和制冷。然而。由于在室外温度较低时性能系数(COP)较低,因此ASHP尚未广泛用于较冷气候的采暖。虽然许多研究人员正在通过更改设备的设计来改善ASHP的低温性能,但这项工作研究了一种通过在热缓冲区内运行现有的“现货供应” ASHP来提高性能的创新方法。本文表明,在封闭的阳台空间创建的热缓冲区(TBZ)中运行ASHP可以提高低温下的COP。在TBZ中运行的ASHP在气候室中进行了测试,该气候室在各种气候条件下对性能进行了监控。观察到TBZ的温度下降以及对COP的相关影响。对于一系列外部温度,确定了提高COP所需的TBZ太阳热量获取率。然后,开发并校准了基于套件的能源模型,以模拟在TBZ中运行的ASHP的性能。该模型为10°C以下的ASHP性能提供了合理的预测。

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