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Investigation of heat generation/ absorption on natural convection flow in a vertical annular micro-channel An exact solution

机译:垂直环形微通道中自然对流流动的生热/吸收研究精确解

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Purpose - The purpose of this paper is to further extend the work of Weng and Chen (2009) by considering heat generation/absorption nature of fluid. Design/methodology/approach, - Exact solution of momentum equation is derived separately in terms of Bessel's function of first and second kind for heat-generating fluid and modified Bessel's function of first and second kind for heat absorbing fluid. Findings - During the course of numerical computations, it is found that skin friction and rate of heat transfer at outer surface of inner cylinder and inner surface of outer cylinder increases with the increase in heat generation parameter while the reverse trend is found in the case of heat absorption parameter. Originality/value - In view of the amount of works done on natural convection with internal heat generation/absorption, it becomes interesting to investigate the effect of this important activity on natural convection flow in a vertical annular micro-channel. The purpose of this paper is to further extend the work of Weng and Chen (2009) by considering heat generation/absorption nature of fluid.
机译:目的-本文的目的是通过考虑流体的热量产生/吸收性质来进一步扩展翁(Weng)和陈(Chen)(2009)的工作。设计/方法/方法-动量方程的精确解分别根据第一类和第二类贝塞尔函数对生热流体的作用和改进的第一类和第二类贝塞尔函数对吸热流体的作用而得出。研究结果-在数值计算过程中,发现内缸外表面和外缸内表面的表层摩擦和热传递速率随着生热参数的增加而增加,而在以下情况下则发现相反的趋势:吸热参数。独创性/价值-考虑到自然对流与内部热量产生/吸收的工作量,研究这种重要活动对垂直环形微通道中自然对流的影响变得很有趣。本文的目的是通过考虑流体的生热/吸收性质来进一步扩展翁和陈(2009)的工作。

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