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3D Numerical Simulation of Fluid Flow and Heat Transfer in Tube with Spiral-Flange Insert

机译:螺旋法兰插入件管中流体流动和热传递的3D数值模拟

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With the help of Fluent 6.2 and supporting software, 3D numerical simulation of fluid flow and heat transfer enhancement of plastic spiral tubes were performed on computer, and the velocity, turbulence intensity and improvement of convective heat transfer coefficient distribution in plastic spiral tubes were analyzed and compared with those in smooth tubes, and characteristics of fluid flow and heat transfer were obtained. The results showed that there were obvious axial, tangential and radial velocities in spiral space, and they were bigger than those in smooth tubes. The turbulence intensity was also increased greatly because of the existence of spiral channels. The dirt production was prevented and the tube's convection heat transfer was effectively strengthened. Its surface average heat transfer coefficient had been enhanced by about 20% compared with the smooth tubes;;The pressure drop caused by plastic spiral flange was in the permissible range of engineering application. It was suitable for the heat exchanger at a flow velocity lower than 0.8m/s.
机译:借助流利的6.2和支持软件,在计算机上进行了3D数值模拟塑料螺旋管的流体流量和传热增强,分析了塑料螺旋管中对流传热系数分布的速度,湍流强度和改善与光滑管中的那些相比,获得了流体流动和热传递的特性。结果表明,螺旋空​​间中有明显的轴向,切向和径向速度,它们大于光滑管中的径向速度。由于螺旋通道存在,湍流强度也大大增加。防止了污垢生产,并有效地加强了管的对流热传递。与光滑管相比,其表面平均传热系数约为20%;由塑料螺旋法兰引起的压降是在允许的工程应用范围内。它适用于热交换器,流速低于0.8m / s。

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