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Heat Transfer and Pressure Drop in Wavy-Walled Tubes: A Parameter-BASED CFD Study

机译:波浪壁管中的传热和压降:基于参数的CFD研究

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Co-relations of friction factor and Nusselt number for plain tubes have been widely developed, but less analysis has been done for tubes with wavy surfaces. This paper uses the Computational Fluid Dynamics (CFD) tool for the analysis of heat transfer and pressure drop in wavy-walled tubes, which can be utilized as a heating element for fluids. An investigation was done for the effect of Reynolds number (Re) and wavy-walled tube geometry on friction factor and Nusselt number of laminar and turbulent flow inside wavy-walled tubes. The numerical results and experimental comparison indicate that heat transfer and pressure drop for water are significantly affected by wavy-walled tube parameters and flow Reynolds number. These wavy-walled tubes are capable of increasing the heat transfer to or from a fluid by an order of magnitude but at an expense of higher pumping power. This ratio was found to remain at the minimum at a wave factor of 0.83 for 34 Re 3500 and maximum at a wave factor of 0.15 for 200 Re 17,000. New correlations of friction factor and Nusselt number based on wavy-walled tube parameters are proposed in this paper, which can serve as design equations for predicting the friction factor and heat transfer in wavy-walled tubes under a laminar and turbulent regime with less than 10% error. The quantitative simulation results match the experimental results with less than 15% error. The qualitative comparison with the experiments indicates that the simulations are well capable of accurately predicting the circulation zones within the bulgy part of the tubes.
机译:普通管的摩擦因子和泡沫数量的共同关系得到了广泛的开发,但是对于带有波浪表面的管道已经减少了分析。本文采用计算流体动力学(CFD)工具用于分析波浪壁管中的传热和压降,其可以用作用于流体的加热元件。对雷诺数(RE)和波浪壁管几何形状的影响进行了调查,对波状管内部层和湍流的摩擦因子和泡沫流量的泡沫和湍流的影响。数值结果和实验比较表明,水的热传递和压力下降受波浪壁管参数和流动雷诺数的显着影响。这些波浪壁管能够将热传递增加到流体或从流体的级,但以较高的泵送功率为代价。发现该比率保持在0.83的波率下的最小值,34°-3500,波波因子为0.15的波峰,200

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