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Numerical Prediction of Laminar Characteristics of Fluid Flow and Heat Transfer in Finned-Tube Heat Exchangers

机译:翅片管换热器内流体流动和传热层流特性的数值预测

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This study is performed to determine the characteristics of fin and tube heat exchanger for the plain and wavy fin configurations considering in lined and staggered tube arrangements for laminar flow regime. This analysis has been conducted using Commercial Computational Fluid Dynamics Code ANSYS CFX-11. The results are expressed in terms of friction factor (f) and the Colburn factor (j) and efficiency index (j/f).The code was validated by comparing the results obtained with the previously investigated experimental data. The effects of different geometrical parameter such as Longitudinal pitch, Transverse Pitch, Fin Pitch, Wavy angle on the heat transfer and the pressure drop were investigated. This study reveals that the flow distinction between plain and wavy fin has a profound influence on the heat transfer and pressure drop performance. It was observed that, increasing the longitudinal and transverse pitch causes a decrease in the thermal and hydraulic performance of the heat exchanger for low Reynolds Number problem. The result for the fin pitch study indicated that decrease in the fin pitch causes a decrease in both heat transfer and friction characteristics significantly.
机译:进行这项研究是为了确定平面和波浪形翅片结构的翅片和管式换热器的特性,考虑层流流动的衬里和交错管布置。该分析是使用商业计算流体动力学代码ANSYS CFX-11进行的。结果以摩擦系数(f)和Colburn系数(j)和效率指数(j / f)表示。通过将所得结果与先前研究的实验数据进行比较,对代码进行了验证。研究了纵向节距,横向节距,鳍节距,波浪角等不同几何参数对传热和压降的影响。这项研究表明,平翅片和波状翅片之间的流动区别对传热和压降性能有深远的影响。观察到,对于低雷诺数问题,增加纵向和横向螺距会导致热交换器的热和水力性能下降。散热片节距研究的结果表明,散热片节距的减小会导致传热和摩擦特性的下降。

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