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Design and Perfromance Characteristics of a Portable Solar-Driven Thermoelectric Heat Pump under Thunder Bay Extreme Cold Conditions in Northwestern Ontario, Canada

机译:加拿大西北安大略省雷湾极端寒冷条件下的便携式太阳能驱动热电热泵的设计和性能特征

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Renewable & alternative non-conventional green energy technologies used for heat-pumping applications have shown real merits and received renewed interest in recent years especially in small-scale portable heating applications. Solar-driven thermoelectric heat pumping is one of these innovative technologies. In this paper, a thermoelectric heat pump that utilizes the Peltier effect has been designed, constructed and instrumented for suitable experimentation and characterization under Thunder Bay city extreme cold weather conditions in Canada. The thermoelectric test setup is powered using a renewable solar photovoltaic system and tested under different operating conditions. It was found that the PV-powered thermoelectric heat pump system has shown an acceptable performance with COP ranging from 0.98–1.22. Typical results showed that the average heat pumping power for the system was 72.1 W when the system was operated at an ambient temperature of –17 °C with an inside system temperature increased from approximately -5 °C to 25 °C.
机译:近年来,用于热泵应用的可再生和替代性非常规绿色能源技术已显示出真正的优点,并引起了人们的新兴趣,尤其是在小型便携式供暖应用中。太阳能驱动的热电热泵是这些创新技术之一。在本文中,利用珀尔帖效应的热电热泵已经过设计,制造和测试,可以在加拿大桑德贝城的极端寒冷天气条件下进行合适的实验和表征。热电测试装置使用可再生太阳能光伏系统供电,并在不同的操作条件下进行测试。结果发现,以光伏为动力的热电热泵系统在COP为0.98–1.22的范围内表现出可接受的性能。典型结果表明,当系统在–17°C的环境温度下运行且系统内部温度从大约-5°C升高到25°C时,系统的平均热泵浦功率为72.1W。

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