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首页> 外文期刊>International journal of energy research >Coupling Of Thermoelectric Modules With A Photovoltaic Panel For Air Pre-heating And Pre-cooling Application; An Annual Simulation
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Coupling Of Thermoelectric Modules With A Photovoltaic Panel For Air Pre-heating And Pre-cooling Application; An Annual Simulation

机译:用于空气预热和预冷应用的热电模块与光伏面板的耦合;年度模拟

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摘要

Thermoelectric (TE) modules are possible reversible pre-cooling and pre-heating devices for ventilation air in buildings. In this study, the opportunity of direct coupling of TE modules with photovoltaic (PV) cells is considered. This coupling is evaluated through a numerical simulation depending on the meteorological conditions of Chambery, Alpine region in France, and on the cooling or heating use of the TE modules, through annual energy and exergy efficiencies. For the considered conditions, TE module performances are of the same order as the ones of the vapour compression heat pumps, with a TE coefficient of performance higher than 2 for low values of input DC current. The PV-TE coupling efficiency varies between 0.096 and 0.23 over the year, with an average value of 0.157. Evolutions of the exergy effectiveness of PV and TE elements follow the same trends as the corresponding energy efficiencies but with steeper variations for the coupling exergy yield that varies between 0.004 and 0.014, with an annual average value of 0.010. The direct PV-TE coupling does not seem to be a sustainable option for the summer cooling purpose particularly. A case study with indirect coupling under a warm climate is considered and shows that the use of TE devices could be efficient in housing to ensure summer thermal comfort, but the corresponding necessary PV area would induce a high investment.
机译:热电(TE)模块是用于建筑物通风的可逆预冷和预热设备。在这项研究中,考虑了将TE模块与光伏(PV)电池直接耦合的机会。这种耦合是通过数值模拟进行评估的,数值模拟取决于法国阿尔卑斯山地区尚贝里的气象条件,以及每年能源和火用效率对TE模块的冷却或加热使用。在考虑的条件下,TE模块的性能与蒸气压缩热泵的性能相同,对于低输入DC电流,TE的性能系数高于2。一年中,PV-TE耦合效率在0.096到0.23之间变化,平均值为0.157。 PV和TE元素的火用效率的演变遵循与相应能效相同的趋势,但是耦合火用产量的陡峭变化在0.004和0.014之间变化,年平均值为0.010。尤其对于夏季制冷而言,直接PV-TE耦合似乎不是可持续的选择。考虑了在温暖的气候下进行间接耦合的案例研究,结果表明,使用TE装置可以有效地确保夏季的热舒适性,但是相应的必要PV面积会带来很高的投资。

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