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首页> 外文期刊>International Journal of Heat and Mass Transfer >Steady and unsteady numerical investigations of laminar fluid flow and heat transfer in a 180° bend with bypass
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Steady and unsteady numerical investigations of laminar fluid flow and heat transfer in a 180° bend with bypass

机译:带旁路180°弯曲中的层流体流动和热传递的稳定和不稳定的数值研究

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The present study investigates the fluid flow and heat transfer characteristics in a 180° bend domain with a bypass in the divider section using an in-house code based on Streamline Upwind Petrov-Galerkin Finite Element Method. The ratio of the inlet height to outlet height (10R), location of the bypass (L_(byp)) and Reynolds number (Re) are the parameters considered to assess the effects of heat transfer in a 180' bend. Flow in three 10R geometries i.e., IOR 1:2, 1:1, 2:1 with three L_(byp) (-7, -5, -3) and Re in the range of 100-900 is investigated. IOR and L_(byp) significantly affect the flow transitions from steady-state to periodic unsteady and finally to chaotic unsteady state. In this study, it is established that the lOR-bypass combination augments the heat transfer and decreases the pressure drop, which has been quantified using Thermal Performance Factor (TPF) and Nusselt number distribution (Nu). The increase in Nu and TPF for IOR 1:2 and 2:1 domains is higher than IOR 1:1 domains. A three-dimensional unsteady state investigation at Re = 300 is also performed for IOR 1:2 with L_(byp) = -7 to understand the convection of 3D vortices in the span-wise direction and its influence on heat transfer. From the 3D study, it is concluded that though the vortex shedding in the streamwise direction is similar to the 2D case, the spatial arrangement of 3D vortices along the span-wise direction is irregular at any given instant, which results in variable temperature and Nu distribution in the domain.
机译:本研究通过基于流线Upwind Petrov-Galerkin有限元方法的内部代码来研究一种180°弯曲域中的流体流动和传热特性,在分配器部分中旁路。入口高度与出口高度(10R)的比率,旁路的位置(L_(BYP))和Reynolds号(RE)是考虑评估了180'弯曲中的传热效果的参数。在三个10R几何形状中流动,IOR 1:2,1:1,2:1具有三个L_(BYP)(-7,-5,-3),并且RE在100-900的范围内。 IOR和L_(BYP)显着影响从稳态到周期性不稳定的流过渡,最后才能混乱不稳定状态。在本研究中,建立了LOR-BYPASS组合增强了热传递并降低了使用热性能因子(TPF)和NUSERET编号分布(NU)量化的压降。 IOR 1:2和2:1域的NU和TPF的增加高于IOR 1:1个域。 RE = 300的三维不稳定状态调查也用于IOR 1:2,L_(BYP)= -7以了解跨度方向上的3D涡流的对流及其对传热影响的影响。从3D研究中,结论是,尽管在流动方向上的涡流脱落类似于2D情况,但是在任何给定的时刻沿着跨度方向的3D涡流的空间布置是不规则的,这导致可变温度和nu在域名分发。

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