底部受热圆柱壳体内共轭传热的数值研究

A. Malik, M. Alvi, S. Khushnood, F. Mahfouz, M. Ghauri, A. Shah
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引用次数: 1

摘要

在化工和核工业过程中,底部加热的非常规圆柱形外壳内的共轭传热是重要的。本文对加工工业用离心机的外壳进行了数值分析。对[1]的实验工作进行了各种CFD模拟,研究了圆盘和内筒的材料以及外筒的几何形状对外壳的影响。通常,在这样的外壳中需要均匀的温度。与低碳钢和不锈钢相比,在底部圆盘433K的温度下使用铝内筒和使用两个不同直径的外筒,可以观察到外壳内温度更均匀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical study of conjugate heat transfer within a bottom heated cylindrical enclosure
The conjugate heat transfer within a bottom-heated non-conventional cylindrical enclosure is important with respect to the processes in chemical and nuclear industries. In this research work numerical analysis of the enclosure with respect to the centrifuge machines used in the process industry is presented. Various CFD simulations of the experimental work of [1] are performed to study the effects of materials of the disc and inner cylinder and geometries of outer cylinder on the enclosure. Generally, a uniform temperature is required in such enclosures. A more uniform temperature is observed in the enclosure by using aluminum inner cylinder at a temperature of 433K of the bottom disc and using two different diameter outer cylinders as compared to the mild steel and stainless steel.
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