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Study on Flow and Heat Transfer of Small Scale Gas Flow for Air Cooling System

机译:空冷系统小流量气流的传热研究

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摘要

The small scale pipe plays an important role in the heat and mass transfer of industrial application. For the study of the flow characteristics in small scale pipe, a modal mixed Discontinuous Galerkin (DG) method was proposed for solving axial-symmetrical Navier-Stokes (NS) equations with solid slip boundary conditions. A new limiter of modal DG was proposed. And, the special treatments of velocity slip and temperature jump in wall solid boundary were given in the numerical scheme. Extensive numerical studies for the flow characteristics of small scale pipe were conducted For validation, the comparison between the present study and experiment data were performed. The heat transfer coefficients and frictional factor are found to be increased with the diameter decreasing. Furthermore, it is observed that the frictional factor of small scale pipe is larger than that of macro scale pipe. And, the proposed DG-NS method provides a new way for the investigation of the flow characteristics in small scale flow.
机译:小型管道在工业应用中的传热和传质中起着重要作用。为了研究小型管道的流动特性,提出了一种模态混合不连续伽勒金(DG)方法,用于求解具有固滑移边界条件的轴对称Navier-Stokes(NS)方程。提出了一种新的模态DG限制器。并在数值方案中对壁面固体边界的速度滑移和温度跃迁进行了特殊处理。为了对小型管道的流动特性进行广泛的数值研究,以验证本研究与实验数据之间的比较。发现传热系数和摩擦系数随着直径的减小而增加。此外,观察到小尺寸管的摩擦系数大于大尺寸管的摩擦系数。并且,所提出的DG-NS方法为研究小规模流动中的流动特性提供了新的途径。

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