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Study on the Numerical Simulation of Surface Flow and Heat Transfer in Inclined Wave Fin-and -tube Heat Exchanger

机译:倾斜波翅片型热交换器表面流动和热传递数值模拟研究

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With the CFD calculation software FLUENT, numerical simulation has been conducted to study the surface flow and heat transfer in inclined wave fin-and-tube heat exchanger, including uniform angle wave fin and inclined increase-angle wave fin. Velocity field, pressure field and the distribution of temperature field on the air side of fin surface were obtained. Heat transfer performance of the two kinds of fin were discussed and the curve of both heat exchange and pressure drop related to the inlet velocity were analyzed. The results indicates that in the same conditions, heat transfer effect is better than uniform angle wave fin. When the inlet velocity is 4 m/s, the heat transfer of inclined increase-angle wave fin is about 1.1 times higher than that of uniform angle wave fin meanwhile the pressure resistance is as much as around 1.2 times, which provides a theoretical basis on heat transfer enhancement of wave finned tube.
机译:利用CFD计算软件流畅,已经进行了数值模拟,以研究倾斜波翅片管热交换器的表面流动和传热,包括均匀角波翅片和倾斜的增加角波翅片。得到翅片表面空气侧的速度场,压力场和温度场的分布。分析了两种翅片的传热性能,分析了与入口速度相关的热交换和压力下降的曲线。结果表明,在相同的条件下,传热效果优于均匀角波翅片。当入口速度为4米/秒时,倾斜增加角波鳍片的传热比均匀角波鳍片高约1.1倍,同时耐压性高达约1.2倍,这提供了理论基础波翅管的传热增强。

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