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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Numerical analysis of photovoltaic-thermal collector using nanofluid as a coolant
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Numerical analysis of photovoltaic-thermal collector using nanofluid as a coolant

机译:用纳米流体作为冷却剂的光伏 - 热收集器的数值分析

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The PV cells and thermal collector are integrated into a system to form the photovoltaic-thermal (PV/T) collector, and nanofluid is utilized as a coolant to decrease temperature of photovoltaic cells (PV). This work is aimed at the numerical analysis of a PV/T collector using nanofluid. For acquiring more results about the effects of operation parameters on performances of PV/T collector, the mathematical models of PV/T collector are proposed. In this work, the influences of nanofluid type and volume concentration on PV conversion efficiency, PV cell temperature, thermal and electrical power are investigated. The effects of PV collector parameters on the performances are also analyzed and discussed. The results indicate that the performances of PV/T collector with A1(2)O(3) /water nanofluid are better than that of the PV/T collector using TiO2/water nanofluid. When mass flow rate of nanofluid is 0.03 kg/s, the electrical power of the PV/T collector is much higher than that of the PV/T collector when mass flow rate of nanofluid is 0.0005 kg/s, 0.001 kg/s and 0.01 kg/s. As mass flow rate of nanofluid is 0.03 kg/s, the thermal power of the PV/T collector is 12.11% higher than that of the PV/T collector as mass flow rate of nanofluid is 0.0005 kg/s. When the channel height decreases, the removed heat of the PV/T collector by the nanofluid increases, the largest thermal power difference of the PV/T collector between 0.005 m and 0.015 m tube diameter is 24.00 W.
机译:PV电池和热集成器集成到系统中以形成光伏 - 热(PV / T)集电器,并且纳米流体用作冷却剂以降低光伏电池(PV)的温度。该工作旨在使用纳米流体的PV / T收集器的数值分析。为了获取更多关于操作参数对PV / T集电器的性能的影响的结果,提出了PV / T集电器的数学模型。在这项工作中,研究了纳米流体型和体积浓度对PV转换效率,光伏电池温度,热和电力的影响。还分析并讨论了PV收集器参数对性能的影响。结果表明,使用TiO 2 /水纳米流体的PV / T集电体的性能与A1(2)O(3)/水纳米流体的性能优于PV / T收集器的性能。当纳米流体的质量流量为0.03kg / s时,当纳米流体的质量流量为0.0005kg / s,0.001kg / s和0.01时,PV / T集电器的电力远高于PV / T集电器的电力。 kg / s。随着纳米流体的质量流量为0.03kg / s,PV / T收集器的热功率高于PV / T收集器的热功率,因为​​纳米流体的质量流速为0.0005kg / s。当通道高度减小时,通过纳米流体的PV / T集电器的移除热量增加,PV / T集电器的最大热功率差0.005米和0.015米管直径为24.00W。

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