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Recycle effect on heat transfer enhancement in double-pass parallel-plate heat exchangers under asymmetric wall fluxes

机译:非对称壁通量下循环对双通道平行板式换热器传热增强的影响

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摘要

A new design of conjugated heat transfer in double-pass parallel-plate laminar countercurrent operations subjected to asymmetric wall heat fluxes has been investigated theoretically, and the analytical results obtained with superposition model which introduces the an eigenfunction expansion in terms of power series for the homogeneous part and an asymptotic solution for the inhomogeneous part. The influences of the design parameters, the impermeable-sheet position (△), and the operating parameters, the mass-transfer Graetz number (Gz), wall heat flux ratio (Q_r) and recycle ratio (R), are examined. The results are represented graphically and compared with those in a single-pass parallel-plate heat exchanger (without inserting an impermeable sheet). Considerable improvement in heat transfer is obtainable by employing such a recyclic double-pass device, instead of using the single-pass one. A technical feasibility of the new double-pass device was investigated in terms of the Nusselt number and device performance improvement under the effect of variable ratio of heat fluxes on both sides. It concluded that a substantial heat-transfer efficiency improvement is achieved by employing such a recyclic device with suitable elections of impermeable-sheet position and recycle ratio.
机译:理论研究了在非对称壁热流作用下双通道平行板层流逆流共轭传热的新设计,并通过叠加模型获得了解析结果,该模型引入了幂函数本征函数展开式。部分和非齐次部分的渐近解。研究了设计参数,不透水板位置(△)和操作参数,传质格氏数(Gz),壁热通量比(Q_r)和循环比(R)的影响。结果以图形方式表示,并与单程平行板热交换器(不插入不透水板)中的结果进行比较。通过采用这种循环双程装置而不是单程装置,可以显着改善传热。从Nusselt数和两侧热通量可变比率的影响下改善器件性能的角度,研究了这种新型双通道器件的技术可行性。结论是,通过使用具有适当的不渗透片位置和再循环比选择的这种再循环装置,可以实现显着的传热效率的提高。

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  • 作者单位

    Energy and Opto-Electronic Materials Research Center, Department of Chemical and Materials Engineering, Tamkang University, 151 Ying-chuan Road, Tamsui, Taipei County, 251, Taiwan;

    Energy and Opto-Electronic Materials Research Center, Department of Chemical and Materials Engineering, Tamkang University, 151 Ying-chuan Road, Tamsui, Taipei County, 251, Taiwan;

    Department of Chemical and Materials Engineering, Chang-Gung University, 259 Wen-Hwa 1st Road, Kwei-Shan, Tao-Yuan, 333, Taiwan;

    Energy and Opto-Electronic Materials Research Center, Department of Chemical and Materials Engineering, Tamkang University, 151 Ying-chuan Road, Tamsui, Taipei County, 251, Taiwan;

    Energy and Opto-Electronic Materials Research Center, Department of Chemical and Materials Engineering, Tamkang University, 151 Ying-chuan Road, Tamsui, Taipei County, 251, Taiwan;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    heat transfer; recycle effect; asymmetric wall flux; double-pass operation;

    机译:传播热量;回收效果;壁通量不对称双程操作;

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