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Numerical investigation of heat transfer and fluid flow characteristics inside a wavy channel

机译:波浪通道内传热和流体流动特性的数值研究

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The periodically fully developed laminar heat transfer and fluid flow characteristics inside a two-dimensional wavy channel in a compact heat exchanger have been numerically investigated. Calculations were performed for Prandtl number 0.7, and Reynolds number ranging from 100 to 1,100 on non-orthogonal non-staggered grid systems, based on SIMPLER algorithm in the curvilinear body-fitted coordinates. Effects of wavy heights, lengths, wavy pitches and channel widths on fluid flow and heat transfer were studied. The results show that overall Nusselt numbers and friction factors increase with the increase of Reynolds numbers. According to the local Nusselt number distribution along channel wall, the heat transfer may be greatly enhanced due to the wavy characteristics. In the geometries parameters considered, friction factors and overall Nusselt number always increase with the increase of wavy heights or channel widths, and with the decrease of wavy lengths or wavy pitches. Especially the overall Nusselt number significantly increase with the increase of wavy heights or channel widths, where the flow may become into transition regime with a penalty of strongly increasing in pressure drop.
机译:数值研究了紧凑型换热器中二维波浪通道内周期性充分发展的层流传热和流体流动特性。在曲线正交拟合坐标系中,基于SIMPLER算法,对非正交非交错网格系统上的Prandtl数0.7和雷诺数从100到1,100进行了计算。研究了波高,波长,波节距和通道宽度对流体流动和传热的影响。结果表明,总的Nusselt数和摩擦系数随雷诺数的增加而增加。根据沿通道壁的局部Nusselt数分布,由于波浪形特性,可以大大增强传热。在所考虑的几何参数中,摩擦系数和总Nusselt数总是随波状高度或通道宽度的增加以及波状长度或波状间距的减少而增加。尤其是总的Nusselt数会随着波浪形高度或通道宽度的增加而显着增加,在这种情况下,流量可能会进入过渡状态,并且压降会大大增加。

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