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Numerical simulations of a Cu-water nanofluid-based parabolic-trough solar collector

机译:Cu水纳米流体抛物线太阳能收集器的数值模拟

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In this study, the thermal and flow characteristics of a parabolic-trough solar collector have been numerically investigated. The turbulent flow inside the receiver tube was modeled via the finite volume method, while a non-uniform concentrated heat flux was imposed on the absorber tube. A Cu-water nanofluid was specified as the heat transfer fluid. The results showed that increasing the Cu nanoparticle concentration led to an increase in the Nusselt number (Nu). Furthermore, the effect of Cu nanoparticle addition on the heat transfer enhancement became more significant as the Reynolds number decreased. This was because nanoparticle addition mainly improved the heat transfer via conduction. As the Reynolds number increased, the role of forced convection overcame that of conduction. Furthermore, it was shown that although Cu nanoparticle addition increased the thermal efficiency, it also increased the pressure drop slightly. The effect of direct normal irradiance changes on the performance of the solar collector was assessed. At Reynolds numbers of 10(4), 10(5) and 10(6), as direct normal irradiance increased from 900 to 1100 W m(-2), Nu increased by up to 8.6%, 9.78% and 11.43%, respectively, leading to increases in thermal efficiency of 3.87%, 3.82% and 2.04%. This study provides new insight into the effect of Cu nanoparticle addition on the thermal and flow characteristics of parabolic-trough solar collectors.
机译:在本研究中,数值研究了抛物线槽式太阳能集热器的热特性和流动特性。采用有限体积法模拟了吸收管内的湍流流动,同时在吸收管上施加了非均匀的集中热流。将铜-水纳米流体指定为传热流体。结果表明,随着铜纳米颗粒浓度的增加,努塞尔数(Nu)增加。此外,随着雷诺数的降低,添加纳米铜颗粒对强化传热的影响变得更加显著。这是因为纳米颗粒的加入主要通过传导改善了传热。随着雷诺数的增加,强迫对流的作用超过了传导。此外,研究还表明,虽然添加纳米铜颗粒提高了热效率,但也略微增加了压降。评估了直接法向辐照度变化对太阳能集热器性能的影响。在雷诺数为10(4)、10(5)和10(6)时,当直接正常辐照度从900 W m(-2)增加到1100 W m(-2)时,Nu分别增加了8.6%、9.78%和11.43%,导致热效率增加了3.87%、3.82%和2.04%。这项研究为铜纳米颗粒添加对抛物面槽式太阳能集热器的热特性和流动特性的影响提供了新的见解。

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