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Numerical investigation on the convective heat transfer in a spiral coil with radiant heating

机译:辐射加热螺旋线圈对流换热的数值研究

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The objective of this study was to numerically investigate the heat transfer in spiral coil tube in the laminar, transitional, and turbulent flow regimes. The Archimedean spiral coil was exposed to radiant heating and should represent heat absorber of parabolic dish solar concentrator. Specific boundary conditions represent the uniqueness of this study, since the heat flux upon the tube external surfaces varies not only in the circumferential direction, but also in the axial direction. The curvature ratio of spiral coil varies from 0.029 at the flow inlet to 0.234 at the flow outlet, while the heat transfer fluid is water. The 3-D steady-state transport equations were solved using the Reynolds stress turbulence model. Results showed that secondary flows strongly affect the flow and that the heat transfer is strongly asymmetric, with higher values near the outer wall of spiral. Although overall turbulence levels were lower than in a straight pipe, heat transfer rates were larger due to the curvature-induced modifications of the mean flow and temperature fields. [Projekat Ministarstva nauke Republike Srbije, br. 42006].
机译:这项研究的目的是对层流,过渡和湍流状态下螺旋盘管的传热进行数值研究。阿基米德螺旋形线圈暴露于辐射加热下,应代表抛物面碟形太阳能集热器的吸热器。特定的边界条件代表了这项研究的独特性,因为管外表面上的热通量不仅在圆周方向上而且还在轴向上变化。当传热流体是水时,螺旋线圈的曲率比从流量入口处的0.029到流量出口处的0.234变化。使用雷诺应力湍流模型求解了3-D稳态输运方程。结果表明,二次流强烈影响流动,并且传热是高度不对称的,在螺旋外壁附近的传热值更高。尽管总体湍流水平低于直管,但由于曲率引起的平均流场和温度场的变化,传热速率更大。 [Projekat Ministarstva nauke Republike Srbije,br。 42006]。

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