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首页> 外文期刊>Journal of Heat Transfer >Numerical Computation on Natural Convection Heat Transfer From an Isothermal Sphere With Semicircular Ribs
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Numerical Computation on Natural Convection Heat Transfer From an Isothermal Sphere With Semicircular Ribs

机译:具有半圆形肋的等温球体自然对流热传递的数值计算

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For the very first time, this study attempts to address the heat dissipation from an isothermal ribbed sphere under the action of pure natural convection. Semicircular ribs of different radii are superimposed azimuthally on the outer surface of a sphere. The addition of ribs on the sphere serves a dual purpose in its practical applications: beautification of electronic devices such as spherical light sources as well as an increase in heat dissipation from the hot surface, which prevents the electronic component from getting overheated. Finite volume method-based axisymmetric numerical simulations are performed in the laminar flow regime for the following ranges of nondimensional parameters: Ray-leigh number (10~2 ≤ Ra≤ 10~8), inter-rib-spacing to sphere diameter (0.191 ≤ P/D ≤ 0.785), and rib-radius to sphere diameter (0.03 ≤ R/D ≤ 0.083). The main target of this study is to identify the critical parameters for heat transfer enhancement from the ribbed sphere compared to a conventional plane sphere. The results obtained from this work show that the average Nusselt number increases with an increase in Ra and P/D, whereas it decreases as RID increases. Effectiveness of the ribs (ε_(rib)) and critical Ray-leigh numbers (Ra_(cr)), corresponding to ε_(rib) = 1, are also calculated. Ribs are more effective in heat dissipation at low Ra and P/D and high R/D. A correlation for the average Nusselt number is also developed in this work, which would help design a better thermal management system.
机译:这项研究首次尝试根据纯自然对流的作用解决从等温罗纹球的散热。不同半径的半圆形肋在球体的外表面上方方向异性叠加。球体上的肋条在其实际应用中提供了双目的:诸如球形光源的电子设备的美化以及从热表面的散热增加,这防止了电子部件过热。基于有限的体积方法的轴对称数值模拟在Laminar流程中进行了以下范围的非潜能参数范围:射线 - Leigh数(10〜2≤RA≤10〜8),肋骨间距到球体直径(0.191≤ P /D≤0.785),肋条半径至球形直径(0.03≤r/d≤0.083)。该研究的主要目标是与传统的平面球相比,识别来自肋状球的传热增强的关键参数。从该工作获得的结果表明,随着RA和P / D的增加,平均露天数量增加,而随着RAD的增加,它会降低。还计算肋(ε_(肋))和临界射线数(RA_(CR))的有效性,对应于ε_(肋)= 1。肋骨在低RA和P / D中的散热和高R / D中更有效。在这项工作中也开发了平均纽带数的相关性,这将有助于设计更好的热管理系统。

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