Numerical Investigation of Cooling an Industrial Roller by Using Swirling Jets

M. Kiliç, Mahir Şahi̇n, T. Demircan, Zülfikar Ki̇li̇nc, A. Ullah
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引用次数: 1

Abstract

Effective cooling of industrial rollers has prime importance to prevent the quality degradation of the system and product. High temperature difference on the roller surface may result in thermal stresses and can cause deformations on roller surface and product. In order to prevent these deformations, cooling of an industrial roller by using swirling jets is investigated for different parameters numerically in this study. Effects of Reynolds number, surface heat flux and variation in inlet temperature of the fluid on the performance of an industrial roller are investigated in terms of temperature difference between inner and outer surface of the roller. ANSYS Fluent CFD program is used to simulate heat transfer and fluid flow in this numerical study. As a result, it is obtained that increasing Re number from 1000 to 1700 causes a decrease of 45.4% in the temperature difference between inner and outer surface of the roller. Increasing surface heat flux from 5000 to 12500 W/m2 has resulted in an increase of 149.4% in difference between inner and outer surface temperature. Increasing coolant fluid inlet temperature from 5 to 20°C has resulted in an increase of surface temperature but there is no significant change in heat transfer characteristics of the system. It is evaluated that the results of this study will contribute to design more effective cooled industrial roller.
旋流射流冷却工业轧辊的数值研究
工业轧辊的有效冷却对于防止系统和产品的质量退化至关重要。轧辊表面温差大,会产生热应力,造成轧辊表面和制品变形。为了防止这些变形,本文对不同参数下旋流射流对工业轧辊的冷却进行了数值研究。从轧辊内外表面温差的角度,研究了雷诺数、表面热流密度和流体入口温度变化对工业轧辊性能的影响。本文采用ANSYS Fluent CFD程序对传热和流体流动进行数值模拟。结果表明,当Re数从1000增加到1700时,轧辊内外表面温差减小了45.4%。表面热通量从5000 W/m2增加到12500 W/m2,导致内外表面温度差增加149.4%。将冷却液入口温度从5°C提高到20°C会导致表面温度升高,但系统的传热特性没有明显变化。本研究结果将有助于设计更有效的冷却工业轧辊。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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