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Analysis of conduction - natural convection conjugate heat transfer in the gap between concentric cylinders under solar irradiation

机译:太阳辐照下同心圆柱间隙中的传导-自然对流共轭换热分析。

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摘要

Although, in general, most of concentric cylinders used in engineering applications are heated non-uniformly, studies on the natural convection in the air layer between the cylinders have been performed only for the uniform heating so that it is difficult to apply the results to the real cases. In the present study, the effects of material property of outer cylinder and the air gap thickness between cylinders on the natural convection are investigated by computational fluid dynamics and experimental means. Namely, conduction-natural convection conjugated heat transfer in the concentric cylinders, gun and shield tube, under solar irradiation, is analyzed numerically and the various predictions on the resultant thermal deformations of gun are compared to the experimental data with variation of the gap thickness of cylinders and material properties of shield tube. Results show that larger the thermal conductivity of shield tube, smaller the Nusselt number variations of gun and shield tube surfaces. This is due to that balance of conduction in the cylinders and natural convection in the gap between inner and outer cylinders may increase the uniformity of the air layer temperature. High thermal conductivity of shield tube inhibits the natural convection in the air layer and there exists a gap thickness that exerts an influence critically on the thermal deformation of gun.
机译:尽管通常在工程应用中使用的大多数同心圆柱体都是不均匀加热的,但是仅对均匀加热进行了圆柱体之间空气层自然对流的研究,因此很难将结果应用于真实案例。在本研究中,通过计算流体动力学和实验手段研究了外圆柱体的材料特性和圆柱体之间的气隙厚度对自然对流的影响。即,数值分析了在太阳辐射下,同心圆柱体,喷枪和屏蔽管中的传导-自然对流共轭传热,并随着间隙厚度的变化,对所得的喷枪热变形的各种预测结果与实验数据进行了比较。筒和屏蔽管的材料性能。结果表明,屏蔽管的热导率越大,喷枪和屏蔽管表面的努塞尔数变化越小。这是由于气缸内的传导平衡和内,外气缸之间的间隙中的自然对流会增加空气层温度的均匀性。屏蔽管的高导热性抑制了空气层中的自然对流,并且存在间隙厚度,该间隙厚度严重影响了喷枪的热变形。

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