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Enhance photovoltaic/thermal system performance by using nanofluid

机译:通过使用纳米流体增强光伏/热系统性能

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The operating temperature of the PV system greatly affect the system efficiency. To resolve this problem, cooling techniques are used to dissipate the heat from PV/T module. An experimental has been setup to investigate the thermal efficiency of the PV/T module using nanofluid at constant mass flow rate. ALO-water nanofluid is used to reduce the operating temperature of PV/T panel. The results indicated that the temperature of the PV/T module was 79.1°C and a conversion efficiency is about 8% without using ALO-water. On the otherhand, using nanofluid at concentration ratio of 0.3% at constant mass flow rate of 0.2L/s, the temperature is dropped to 42.2°C at the same test condition(irradiation 1000W/m and 24 minute test time),This led to increasing in the efficiency of solar panel to 12.1%. The heat was extracted from the PV/T module by using cooling system with nanofluid that can contribute to the overall energy output of the system.
机译:光伏系统的工作温度极大地影响了系统效率。为了解决此问题,使用了冷却技术来散发来自PV / T模块的热量。已经建立了一个实验来研究在恒定质量流量下使用纳米流体的PV / T模块的热效率。 ALO-水纳米流体用于降低PV / T面板的工作温度。结果表明,在不使用ALO水的情况下,PV / T模块的温度为79.1℃,转化效率为约8%。另一方面,在质量流量为0.2L / s的情况下,使用浓度为0.3%的纳米流体,在相同的测试条件下(辐照度为1000W / m,测试时间为24分钟)将温度降至42.2°C,这导致将太阳能电池板的效率提高到12.1%。通过使用具有纳米流体的冷却系统从PV / T模块中提取热量,该热量可以有助于系统的整体能量输出。

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