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首页> 外文期刊>Heat Transfer Research >NUMERICAL ANALYSIS OF HEAT TRANSFER IN A FLAT-PLATE SOLAR COLLECTOR WITH NANOFLUIDS
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NUMERICAL ANALYSIS OF HEAT TRANSFER IN A FLAT-PLATE SOLAR COLLECTOR WITH NANOFLUIDS

机译:纳米流体平板太阳能收集器中传热的数值分析

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摘要

Heat transfer aspects of a typical flat-plate solar collector utilizing water-based nanofluids as the working fluid were analyzed numerically. Water-based nanofluids of various compositions containing metallic Al2O3 and Cu nanoparticles with volume fractions ranging from 1% to 5% were examined, and the effects of the nanofluids on the heat transfer were quantified. Relevant parameters such as the heat flux, Reynolds number, and the collector tilt angle were calculated and compared to each other at different boundary conditions. The flat-plate solar collector geometry was simplified, and only a fluid carrying pipe with an absorber surface was chosen as a numerical model with a particular attention to symmetry, instead of taking the entire collector geometry. The numerical model was controlled and confirmed by applying it to similar studies existing in the pertinent literature. All numerical solutions were carried out by using a commercial finite volume soft ware package called ANSYS Fluent. The results show that the nanofluids increase the heat transfer rate ranging from 1% to 8%, when compared to water as a working fluid.
机译:在数值上分析利用水基纳米流体的典型平板太阳能收集器的传热方面。检查含有金属Al2O3和具有体积级分的含金属Al2O3和Cu纳米颗粒的水基纳米流体,测量纳米流体对热传递的影响。计算和在不同边界条件下彼此计算的相关参数,例如热通量,雷诺数和集电极倾斜角度。简化了平板太阳能收集器几何形状,并且仅选择具有吸收体表面的流体承载管作为具有对称性的特别注意的数值模型,而不是将整个收集器几何形状。通过将其应用于相关文献中存在的类似研究来控制和确认数值模型。通过使用称为Ansys流畅的商业有限体积软件包进行所有数值解决方案。结果表明,与水作为工作流体相比,纳米流体增加了10%至8%的传热速率。

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