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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Local entropy generation rate through convective heat transfer in tubes with wire coil inserts
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Local entropy generation rate through convective heat transfer in tubes with wire coil inserts

机译:带有线圈插入件的管中对流换热引起的局部熵产生率

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Purpose - The purpose of this paper is to present a numerical analysis of the flow and heat transfer in a tube with a wire coil insert. A second law analysis of the results is accounted for, in order to assess the local and overall entropy generation in relation with the increased pressure drop and convective heat transfer. A wire coil with p/D = 1.25 and e/D = 0.076 is selected as insert device. A Reynolds number range between 100 and 1,000 is investigated, which corresponds to the typical operating regimes in the risers of liquid solar collectors. Different wall heat fluxes and inclination angles allow to analyze the potential impact of mixed convection in the presence of tube inserts. Design/methodology/approach - Three-dimensional numerical simulations are performed using a finite-volume solver, assuming laminar flow conditions. Pure water and a mixture of water and propylene-glycol (20 percent) are used as working fluids, with temperature-dependent properties. Fanning friction factor, Nusselt number and local entropy generation results are obtained in the fully developed region. Findings - The friction factor results are successfully compared with a well-known experimental correlation for wire coil inserts. The earlier onset of transition is devised at Re > 300. Nusselt number augmentations between 2.5- and 6-fold are reported with respect to the smooth tube. The mixed convection regime encountered in the smooth tube for the operating conditions investigated is canceled in the wire coiled tube, owing to the opposed effect of the swirl flow induced and the bouyancy forces. Frictional, heat transfer and overall entropy generation rates are computed locally in the fully developed region, allowing to relate these results with the flow structures in the mixed convection smooth tube and in the wire coiled tube. A threefold decrease in the entropy generation rate is reported for tubes with wire coil inserts. Originality/value - An holistic understanding of the heat transfer enhancement in tubes with wire coil inserts is provided through the analysis of the flow pattern, Fanning friction factor, Nusselt number and local entropy generation rates. The reduced entropy generation in the enhanced tube serves as a performance criteria to confirm the positive effect of wire coil inserts in heat transfer for the operating regime under investigation, in spite of the increased pressure drop.
机译:目的-本文的目的是对带有线圈插入件的管中的流动和传热进行数值分析。考虑结果的第二定律分析,以便评估与增加的压降和对流换热有关的局部和整体熵产生。选择p / D = 1.25和e / D = 0.076的线圈作为插入设备。研究了雷诺数范围在100到1,000之间的范围,该范围对应于液体太阳能集热器的立管中的典型运行方式。不同的壁热通量和倾斜角度可以分析存在管插入物时混合对流的潜在影响。设计/方法/方法-假设层流条件,则使用有限体积求解器进行三维数值模拟。纯水以及水和丙二醇(20%)的混合物用作工作流体,具有随温度变化的特性。在完全发达的区域获得了扇形摩擦系数,努塞尔数和局部熵生成结果。研究结果-摩擦系数结果已成功地与线绕嵌件的实验相关性进行了比较。过渡的早期发作设计为Re>300。据报道,平滑管的Nusselt数增加了2.5到6倍。由于所产生的涡流和反作用力的相反作用,在所研​​究的工作条件下,在光滑管中遇到的混合对流状态在盘绕管中被取消。在完全展开的区域中局部计算摩擦,传热和整体熵的产生速率,从而使这些结果与混合对流平滑管和盘管中的流动结构相关联。据报道,带有金属丝线圈插入物的管子的熵产生率降低了三倍。原创性/价值-通过分析流型,范宁摩擦系数,努塞尔数和局部熵产生率,可以全面了解带有线圈插入件的管中的传热效果。尽管增加了压降,但增强管中产生的熵减少仍可作为性能标准,以确认线圈插入件在所研究的运行方案中对热传递的积极影响。

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