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Transient and seasonal performance evaluation of a novel flexible heat pump for solar cooling

机译:一种新型柔性热泵用于太阳冷却的瞬态和季节性绩效评价

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摘要

Solar cooling plays an important role in low-carbon societies. The existing solar cooling systems commonly suffer from low energy efficiency or low applicability. To solve this problem, a novel solar-powered flexible HEHP (hybrid-energy heat pump) is proposed. Firstly, thermodynamic and TRNSYS models are established with verified accuracies. Using the models, the steady-state HEHP performance is investigated under various operating modes and working parameters. In addition, transient characterization shows that the solar-based modes operate longer than the non-solar mode with R-AHP (absorption ratio) ranging in 0.3-1.0. With enhanced cooling capacities, the HEHP mode generally operates at high cooling loads. The seasonal performance is compared between FPC (flat plate collector) and ETC (evacuated tube collector), concluding that the ETC-based HEHP performs much better than the FPC-based HEHP. The collector area greatly affects the system performance; as the collector area increases from 0 to 300 m(2), the load fraction of the solar-based modes significantly increases from 0 to 0.69 for FPC and from 0 to 0.93 for ETC, the seasonal COP (coefficient of performance) respectively rises from 5.5 to 7.2 and from 5.5 to 8.9, while the energy saving ratio (ESR) respectively reaches 21.2% and 31.8%. As for the tank volume, it has a much smaller influence; with the specific tank volume increasing from 0.01 to 0.06 m(3)/m(2), the ESR slightly varies from 15.1% to 17.3% for FPC and from 25.1% to 28.4% for ETC. This study aims to facilitate the development, design and operation of the solar HEHP cooling system.
机译:太阳能冷却在低碳社会中起着重要作用。现有的太阳能冷却系统通常遭受低能量效率或低适用性。为了解决这个问题,提出了一种新颖的太阳能柔性HEHP(混合能量热泵)。首先,使用验证的精度建立热力学和Trnsys模型。使用模型,在各种操作模式和工作参数下调查稳态HEHP性能。此外,瞬态表征表明,基于太阳能的模式比非太阳能模式长于0.3-1.0的R-AHP(吸收率)。通过增强的冷却能力,HEHP模式通常在高冷却负载下运行。在FPC(平板收集器)和ETC(疏散管收集器)之间比较季节性性能,结论是基于等等的HEHP比基于FPC的HEHP更好。收集器区域极大地影响了系统性能;由于收集区域从0到300米增加(2),因此基于太阳能的模式的负载分数显着增加到FPC的0至0.69,从0到0.93等,季节性警察(性能系数)分别升起5.5至7.2和5.5至8.9,虽然节能率(ESR)分别达到21.2%和31.8%。至于罐式体积,影响更小;具有从0.01至0.06 m(3)/ m(2)的特定罐体积增加,ESR略微不同于FPC的15.1%至17.3%,而25.1%至28.4%。本研究旨在促进太阳能HEHP冷却系统的开发,设计和运行。

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