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Experimental analysis of exergy efficiency and entropy generation of diamond/water nanofluids flow in a thermosyphon flat plate solar collector

机译:钻石/水纳米流体流动效率和熵生成的实验分析,在热源脊柱平板太阳能收集器中的流动

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The performance of flat plate solar collector was experimentally investigated using nanodiamond nanofluid that circulates in it under thermosyphon conditions. The nanofluids were prepared by adding nanodiamond (ND) nanoparticles at 0.2, 0.4, 0.6, 0.8 and 1.0% volume concentrations into the distilled water. The study was performed to analyze the collector thermal efficiency, exergy efficiency, entropy generation, heat transfer coefficient, friction factor and power consumption requirement in the test time interval between 10:00 a.m. to 16:30 p.m. The experimental results show that the trend of these parameters is strongly influenced by the changes of solar irradiation. The highest collector thermal efficiency of 69.85% is achieved by 1.0 vol% ND/ water nanofluid with 12.7% increase over that when pure water is used. Water as the working fluid generates a maximum entropy of 5.725 W/K, and this value drops to 5.541 W/K when 1.0 vol% ND/water nanofluid is used. Heat transfer irreversibility is shown by Bejan number to be the dominant contributor to the total entropy, and the entropy generation number shows that the ND/water nanofluid is more sensitive to entropy generation than water as the working fluid.
机译:使用纳米胺纳米流体进行实验研究平板太阳能收集器的性能,该纳米胺纳米流体在热循环条件下循环。通过将0.2,0.4,0.6,0.8和1.0%体积浓度加入蒸馏水中加入纳米金刚胺(Nd)纳米颗粒来制备纳米胺流体。进行该研究以分析收集器热效率,高度效率,熵生成,传热系数,摩擦系数,摩擦因子和功耗要求在10:00至下午16:30之间。实验结果表明,这些参数的趋势受到太阳照射的变化的强烈影响。最高收集器热效率为69.85%,取得1.0体积%的Nd /水纳米流体,在使用纯水时增加12.7%。作为工作流体的水产生5.725W / k的最大熵,当使用1.0Vol%Nd /水纳米流体时,该值下降至5.541W / K.热传递不可逆转性被BEJAN号码显示为总熵的主要贡献者,熵产生数量表明Nd /水纳米流体对熵产生比水更敏感,而不是作为工作流体。

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