首页> 外文会议>ASME international mechanical engineering congress and exposition >THERMAL PERFORMANCE OF A PARABOLIC TROUGH RECEIVER WITH PERFORATED CONICAL INSERTS FOR HEAT TRANSFER ENHANCEMENT
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THERMAL PERFORMANCE OF A PARABOLIC TROUGH RECEIVER WITH PERFORATED CONICAL INSERTS FOR HEAT TRANSFER ENHANCEMENT

机译:带有多孔锥形插入物的抛物线槽接收器的热性能

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Heat transfer enhancement in receivers of parabolic trough collectors offers several benefits including reduction in absorber tube circumferential temperature differences, reduced emissivity of the absorber tube selective coating, thus improved thermal and thermodynamic performance of the receiver. In this work, heat transfer enhancement in a parabolic trough receiver using perforated conical inserts was numerically investigated. The analysis was carried out for dimensionless insert's cone angles in the range 0.40 - 0.90, dimensionless insert spacing in the range 0.06 - 0.18 and dimensionless insert size in the range 0.45 - 0.91. The flow was considered fully developed turbulent with Reynolds numbers in the range 1.02×10~4≤Re ≤7.38 × 10~5 depending on the temperature of the heat transfer fluid. The heat transfer fluid temperatures used were 400 K, 500 K, 600 K and 650 K. The numerical solution was obtained using the finite volume method together with the realizable k-ε model for turbulence modeling. From the study, there is a range of Reynolds numbers and geometrical parameters for which the gain in performance is more than the increase in pumping power due to heat transfer enhancement. The use of perforated conical inserts in the receiver's absorber tube increases the thermal efficiency in the range 3-8% for some range of geometrical parameters.
机译:抛物槽式集热器的接收器中传热的增强提供了许多好处,包括减少吸收器管圆周温度差,减小吸收器管选择性涂层的发射率,从而提高接收器的热和热力学性能。在这项工作中,在数值上研究了使用多孔圆锥形插入件的抛物槽式接收器中的传热增强。对无量纲刀片的锥角在0.40-0.90的范围,无量纲刀片的间距在0.06-0.18的范围以及无量纲刀片的尺寸在0.45-0.91的范围内进行了分析。根据传热流体的温度,该流动被认为是完全发展的湍流,雷诺数在1.02×10〜4≤Re≤7.38×10〜5范围内。所使用的传热流体温度为400 K,500 K,600 K和650K。使用有限体积法和可实现的k-ε模型进行湍流建模,得到了数值解。根据研究,存在一定范围的雷诺数和几何参数,由于热传递增强,其性能增益远大于泵浦功率的增大。对于某些范围的几何参数,在接收器的吸收器管中使用带孔的锥形插件可将热效率提高3-8%。

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