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首页> 外文期刊>Journal of thermal analysis and calorimetry >Energy and exergy analyses of nanofluid-filled parabolic trough solar collector with acentric absorber tube and insulator roof
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Energy and exergy analyses of nanofluid-filled parabolic trough solar collector with acentric absorber tube and insulator roof

机译:纳米流体抛抛光槽太阳能收集器的能量和暴露分析,珍珠石吸收管和绝缘子屋顶

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Increasing the energy demands has encouraged the development of novel archetypes solar receiver employed in sustainable energies. Parabolic trough solar collectors (PTSCs) attract researchers due to high thermo-hydraulic performance. The main goal of the present investigation is to design an efficient PTSC filled with nanofluid numerically using the finite volume method. The other aim is to compare the obtained numerical results of nanofluid simulation in PTSC the using single-phase mixture model (SPM) and the two-phase mixture model (TPM). In the first step, influences of using SPM or TPM on nanofluid simulation in absorber tube are investigated. Then, the influences of using an insulator roof and an acentric absorber tube on energy and exergy efficiency are studied. Consequently, in this step the optimum configuration is introduced. In the last step, effect of different nanofluid parameters (different volume fraction and various nanoparticles diameters) on the optimum configuration is investigated using TPM. Based on obtained results, for both conventional and novel PTSC, the obtained Nusselt number employing TPM simulation is more than that of SPM simulation. Also, it is found that using the novel PTSC leads to higher Nusselt number, energy efficiency, performance evaluation criteria, and outlet temperature for all studied Reynolds numbers. According to the results, the energy and exergy efficiencies of novel PTSC with an insulator arc angle of 70 degrees and acentric value of 20 mm filled with nanofluid having a diameter of 20 mm and nanoparticles volume fraction of 1% are about 73.10 and 31.55% and are the maximum obtained efficiencies in the present study.
机译:能源需求的增加鼓励了用于可持续能源的新型太阳能接收器的开发。抛物面槽式太阳能集热器(PTSCs)因其高热工水力性能而吸引了研究人员。本研究的主要目的是利用有限体积法设计一种填充纳米流体的高效PTSC。另一个目的是比较使用单相混合模型(SPM)和两相混合模型(TPM)在PTSC中获得的纳米流体模拟数值结果。第一步,研究了在吸收管中使用SPM或TPM对纳米流体模拟的影响。然后,研究了使用绝缘子屋顶和偏心吸收管对能量和(火用)效率的影响。因此,在这一步中引入了最佳配置。在最后一步中,使用TPM研究了不同纳米流体参数(不同体积分数和不同纳米颗粒直径)对最佳配置的影响。基于所得结果,对于传统和新型PTSC,采用TPM模拟得到的Nusselt数比SPM模拟得到的Nusselt数要多。此外,我们还发现,对于所有研究的雷诺数,使用新型PTSC会导致更高的努塞尔数、能效、性能评估标准和出口温度。结果表明,新型PTSC的能量效率和火用效率分别为73.10%和31.55%,其绝缘子弧角为70度,偏心值为20 mm,填充了直径为20 mm、纳米颗粒体积分数为1%的纳米流体,是本研究中获得的最大效率。

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