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Conjugate Effects on Steady Laminar Natural Convection Heat Transfer in Vertical Eccentric Annuli

机译:共轭效应对垂直偏心环空中稳定层流自然对流换热的影响

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摘要

Combined conduction-free convection heat transfer in vertical eccentric annuli is numerically investigated using finite-difference technique. Numerical results are presented for a fluid of Prandtl number 0.7 in an annulus of radius ratio 0.5 and dimensionless eccentricity 0.5. The conjugation effect on the induced flow rate and the total heat absorbed in the annulus is presented for the case of one wall being isothermally heated while the other wall is kept at inlet fluid temperature. The conjugate effects are controlled by solid-fluid conductivity ratio, cylinder walls thickness and dimensionless channel height (i.e. Grashof number). Solid-fluid conductivity ratio is varied over a range that covers practical cases with commonly encountered inner and outer walls thickness. Values of conductivity ratio over which conjugate effect can be neglected have been obtained.
机译:利用有限差分技术对垂直偏心环空中的无传导对流组合传热进行了数值研究。给出了半径比为0.5,无量纲偏心率为0.5的环中普朗特数为0.7的流体的数值结果。对于其中一壁被等温加热而另一壁保持在入口流体温度的情况,提出了对诱导流量和在环带中吸收的总热量的共轭效应。共轭效应由固液电导率,圆柱壁厚度和无因次通道高度(即Grashof数)控制。固液电导率比在覆盖实际情况的范围内变化,该情况通常遇到内壁和外壁厚度。已经获得了可以忽略共轭效应的电导率值。

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