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首页> 外文期刊>International Communications in Heat and Mass Transfer >Heat transfer enhancement for the power-law fluids through a parallel-plate double-pass heat exchangers with external recycle
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Heat transfer enhancement for the power-law fluids through a parallel-plate double-pass heat exchangers with external recycle

机译:通过带有外部循环的平行板双程热交换器增强幂律流体的传热

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摘要

The conjugated Graetz problem of the double-pass heat transfer through a parallel-plate device with uniform wall temperature and external recycle in the outlet channel was solved analytically with the use of the orthogonal expansion technique for the power-law fluids. The mathematical formulation of the heat transfer problem was developed for fully developed laminar velocity profiles through the parallel-plate channels by ignoring axial conduction and assuming fluid properties of temperature independence. The constant outer wall temperature and continuous temperature and heat flux between the two subchannels with inserting impermeable sheet were considered for thermal boundary conditions. The analytical results show that the recycle ratio and impermeable sheet position play significant influences on the efficiencies of the heat transfer as compared to that in a single pass (without an impermeable sheet inserted and without recycle). The outlet temperature of the heat exchanger seems to be independent of the power-law index of the fluid, while the average Nusselt number could not be enhanced significantly with the lowering power index The power consumption increment owing to the cross-sectional area reduction from single-pass to double-pass was also taken into account for comparisons.
机译:通过使用正交膨胀技术对幂律流体进行分析,解决了通过平行板装置进行双程传热的共轭Graetz问题,该装置具有均匀的壁温和出口通道中的外部循环。对于传热问题的数学公式,是通过忽略轴向传导并假设流体温度独立性而通过平行板通道完全展开的层流速度曲线而开发的。热边界条件考虑了恒定的外壁温度和连续的温度以及在两个子通道之间插入不透水板的热通量。分析结果表明,与单程通过(不插入不可渗透片且不进行再循环)相比,再循环率和不可渗透片材位置对传热效率有重要影响。热交换器的出口温度似乎与流体的幂律指数无关,而平均Nusselt数却无法随功率指数的降低而显着提高。比较时还考虑了-pass到double-pass的比较。

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    Energy and Opto-Electronic Materials Research Center, Department of Chemical and Materials Engineering, Tamkang University, J51 Yingzhuan Road, Tamsui District, New Taipei 251, Taiwan;

    Energy and Opto-Electronic Materials Research Center, Department of Chemical and Materials Engineering, Tamkang University, J51 Yingzhuan Road, Tamsui District, New Taipei 251, Taiwan;

    Energy and Opto-Electronic Materials Research Center, Department of Chemical and Materials Engineering, Tamkang University, J51 Yingzhuan Road, Tamsui District, New Taipei 251, Taiwan;

    Energy and Opto-Electronic Materials Research Center, Department of Chemical and Materials Engineering, Tamkang University, J51 Yingzhuan Road, Tamsui District, New Taipei 251, Taiwan;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    power-law fluids; orthogonal expansion technique; double-pass operation; heat transfer efficiency; external recycle;

    机译:幂律流体;正交扩展技术双程操作;传热效率外部回收;

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