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Heat transfer within an eccentric annulus containing heat generating fluid

机译:包含生热流体的偏心环内的热传递

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摘要

In this paper, the heat transfer within an eccentric annulus containing heat-generating fluid is investigated. The inner cylinder of the annulus is heated and kept at constant temperature, while the outer cylinder is cooled and maintained at a constant temperature lower than that of the inner cylinder. The full governing equations of mass, momentum, and energy have been solved to investigate the characteristics of flow and thermal fields within the annulus. Besides considering the numerical solution in the case of natural convection at moderate Rayleigh number of 104, the study also considered the numerical and analytical solutions in case of pure heat conduction within the annulus. Moreover, the study discussed the effect of annulus radius ratio Rr, the eccentricity e, and the heat generation parameter S on the heat transfer process. The study considered the range of Rr from 1.4 to 3.2, the range of e from −0.6 to 0.6, and the range of S up to 5. The study manifests that the numerical results for the case of pure conduction are in excellent agreement with the corresponding analytical results. The results for both pure conduction and natural convection cases showed that the average dimensionless temperature of the heat generation fluid increases with the increase in S. Similarly, the heat rejected from the outer cylinder increases with the increase in S for a given Rr. On the contrary, the heat added to the annulus through the inner cylinder decreases as S increases and changes to heat rejection if S exceeds a certain critical value S∗. The value of S∗is found to decrease with the increase in Rr for both pure conduction and natural convection cases. Moreover, the heat transfer rates at inner and outer walls of the annulus decrease for a given Rr as the inner cylinder moves upward from negative eccentricity to positive eccentricity until both start increasing again at a certain positive eccentricity.
机译:在本文中,研究了包含生热流体的偏心环空中的热传递。环的内筒被加热并保持在恒定的温度,而外筒被冷却并保持在比内筒的温度低的恒定温度。解决了质量,动量和能量的完整控制方程,以研究环空中的流场和热场特征。除了考虑中性瑞利数为104的自然对流情况下的数值解外,研究还考虑了环内纯热传导情况下的数值解和解析解。此外,研究讨论了环半径比Rr,偏心率e和生热参数S对传热过程的影响。研究考虑了Rr的范围从1.4到3.2,e的范围从-0.6到0.6,S的范围直到5。研究表明,纯传导情况下的数值结果与导数之间非常吻合。相应的分析结果。纯传导和自然对流情况的结果都表明,在给定的Rr下,生热流体的平均无量纲温度随S的增加而增加。类似地,从外筒排出的热量随S的增加而增加。相反,当S超过某个临界值S *时,随着S的增加,通过内筒添加到环空的热量减少,并变为散热。对于纯传导和自然对流情况,发现S ∗值都随着Rr的增加而减小。此外,对于给定的Rr,随着内圆柱体从负偏心向正偏心向上移动,直到两者都开始以某个正偏心率再次开始增加时,在环的内壁和外壁处的传热速率都会降低。

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  • 来源
  • 作者

    H. Imtiaz; F.M. Mahfouz;

  • 作者单位

    Department of Engineering Mechanics, Applied Mechanics Lab, Tsinghua University;

    Mechanical Power Department, Faculty of Engineering, Menoufia University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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