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EXPERIMENTAL INVESTIGATION ON INFLUENCE OF INTEGRATED HEAT PUMP IN PERFORMANCE OF DOMESTIC WATER HEATERS

机译:集成式热泵对家用热水器性能影响的实验研究

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Air Sourced Heat pump Hot Water Heaters (ASHPWH) are integrated in buildings as a multitask system to act as both a water heater and air cooler with a lower carbon footprint. The cost effectiveness of the ASHPWH systems relative to the conventional water-heaters is a challenging issue which is researched in this project. A refined heat pump was integrated into a water heater tank and tested using the Australian testing standard AS/NZS 5125. Experiments included measurement of flow rate, temperature and pressure of water, air and refrigerant (R410a) to determine Coefficient of Performance (COP) and cost-effectiveness of the ASHPWH relative to the current 310L-ASHPWH and a standard electric water heater of similar size. The leaving water location of the condenser was also studied to reduce scalding / to destroy Legionella bacteria, to improve mixing and the delivery of hot water to the storage-tank, to enhance heat transfer stratification, buoyancy, or pumping. The relative position of the water from the storage-tank was varied and coefficient of performance (COP) of the Heat-pump and effectiveness of the water heater were determined. Experiments included measuring water, air and refrigerants flow-rates and temperatures and power consumed in compressor. This research in progress will recommend on the conditions this method is reasonable. The operational cost of 310L was 38% cheaper than the standard electric. The design (claimed) heat pump would operate 52% cheaper than the electric water heater. Carbon tax was not included but it is estimated that carbon footprint of the tested heat pump and the Standard 310L- ASHPWH were lower due to lower consumption of 40% and 33% electricity respectively relative to the electric water heater.
机译:空气源热泵热水加热器(ASHPWH)作为一个多任务系统集成在建筑物中,既可以作为热水器又可以作为具有较低碳足迹的空气冷却器。 ASHPWH系统相对于传统热水器的成本效益是一个具有挑战性的问题,对此项目进行了研究。将精致的热泵集成到热水器的水箱中,并使用澳大利亚测试标准AS / NZS 5125进行了测试。实验包括测量流量,水,空气和制冷剂的温度和压力(R410a),以确定性能系数(COP)相对于当前的310L-ASHPWH和类似尺寸的标准电热水器而言,ASHPWH具有更高的成本效益。还研究了冷凝器的出水位置,以减少烫伤/破坏军团菌细菌,改善混合和将热水输送到储罐,增强传热分层,浮力或泵送的能力。改变储水箱中水的相对位置,并确定热泵的性能系数(COP)和热水器的效率。实验包括测量水,空气和制冷剂的流量以及压缩机中消耗的温度和功率。正在进行的研究将在这种方法合理的条件下提出建议。 310L的运行成本比标准电气便宜38%。设计(声称)的热泵将比电热水器便宜52%。不包括碳税,但据估计,由于相对于电热水器分别减少了40%和33%的电力消耗,因此测试的热泵和标准310L-ASHPWH的碳足迹较低。

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