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Effects of Reynolds number, baffle angle, and baffle distance on three-dimensional turbulent flow and heat transfer in a circular pipe

机译:雷诺数,折流板角度和折流板距离对圆管三维湍流和传热的影响

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In this study, steady-state three-dimensional turbulent forced convection flow and heat transfer characteristics in a circular pipe with baffles attached inside pipe have been numerically investigated under constant wall heat flux boundary condition. Numerical study has been carried out for Reynolds number Re of 3000-50,000, Prandtl number Pr of 0.71, baffle distances s/D of 1, 2, and 3, and baffle angle a of 30o-150o. Ansys Fluent 12.0.1 software has been used to solve the flow field. It is observed that circular pipe having baffles has a higher Nusselt number and friction factor compared to the smooth circular pipe without baffles. Maximum Nusselt number and friction factor are obtained for the baffle angle of 90o. Nusselt number increases while baffle distance increases in the range of studied; however, friction factor decreases. Periodically fully developed conditions are obtained after a certain module. Thermal performance factor increases with increasing baffle distance in the rage of studied but decreases with increasing Reynolds number; maximum thermal performance factor is obtained for the baffle angle of 150o. Results show that baffle distance, baffle angle, and Reynolds number play important role on both flow and heat transfer characteristics. The accuracy of the results obtained in this study is verified by comparing the results with those available in the literature for smooth circular pipes. All the numerical results are correlated within accuracy of ±10 and ±15% for average Nusselt number and Darcy friction factor, respectively.
机译:在这项研究中,在壁面通流边界恒定的条件下,对装有隔板的圆形管的稳态三维湍流强迫对流流动和传热特性进行了数值研究。对雷诺数Re为3000-50,000,普朗特数Pr为0.71,挡板距离s / D为1、2和3,挡板角度a为30o-150o进行了数值研究。 Ansys Fluent 12.0.1软件已用于求解流场。观察到,与没有挡板的光滑圆形管相比,具有挡板的圆形管具有更高的努塞尔数和摩擦系数。对于90o的挡板角,可获得最大的努塞尔数和摩擦系数。在研究范围内,Nusselt数增加而挡板距离增加;但是,摩擦系数降低。在某个模块之后,会定期获得充分发展的条件。在研究范围内,热性能系数随着挡板距离的增加而增加,但随着雷诺数的增加而减小;对于150o的挡板角,可获得最大的热性能系数。结果表明,折流板距离,折流板角度和雷诺数对流动和传热特性均起重要作用。通过将结果与光滑圆形管的文献中的结果进行比较,可以验证本研究中获得的结果的准确性。所有数值结果的平均Nusselt数和达西摩擦系数的准确度分别在±10%和±15%之间。

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