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Conjugate Free Convection Heat Transfer in Vertical Eccentric Annuli.

机译:垂直偏心环空中的共轭自由对流换热。

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摘要

Conjugate Laminar free convection heat transfer in vertical eccentric annuli has been numerically investigated. Many practical applications for natural convection in eccentric annuli can be found in electrical, nuclear, solar and thermal fields. In nuclear field, for instance, natural convection cooling of casks containing nuclear waste can exceed thermal guidelines if positioning becomes overly eccentric. Conjugate heat transfer means the transfer of heat from one body to another by means of combined conduction and convection. Heat transfer parameters such as heat flux, Nusselt number and mean bulk temperature have been numerically obtained for different values of eccentricity, wall thickness and conductivity ratio. The effect of eccentricity, conductivity ratio, wall thickness and radius ratio on channel height, required to induce specific flow rate, has also been investigated. Results of the present study are useful in establishing the limits for solid-fluid conductivity ratio, above which, and wall thickness, below which, the conjugate effect can be neglected for practical purposes.
机译:数值研究了垂直偏心环中的共轭层流自由对流换热。偏心环空中自然对流的许多实际应用可以在电力,核能,太阳能和热力领域找到。例如,在核领域,如果定位变得过于偏心,则装有核废料的桶的自然对流冷却可能会超过热导率。共轭传热是指通过传导和对流相结合的方式将热量从一个物体传递到另一个物体。对于不同的偏心率,壁厚和电导率值,已通过数值获得了传热参数,例如热通量,努塞尔数和平均体温。还研究了偏心率,电导率比,壁厚和半径比对引起比流量所需的通道高度的影响。本研究的结果可用于确定固-流体电导率的极限,高于该极限,以及超过壁厚,低于该壁厚,出于实际目的可以忽略共轭效应。

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  • 作者

    Jamal Ahmad;

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  • 年度 2002
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