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Asymptotic thermal analysis of a rotating and sublimating sphere illuminated by a light source

机译:光源照亮的旋转升华球的渐近热分析

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摘要

The method of matched asymptotic expansions is applied for analysis of a generic unsteady three-dimensional (3D) thermal model of a rotating and sublimating homogeneous sphere asymmetrically illuminated by a light source and a series of approximate asymptotic models is proposed. The temperature field is described by heat conduction equation with a strongly non-linear boundary condition, accounting for the light absorption, thermal conductivity, self emission, and sublimation on the sphere surface. It is shown that properly generalized Van Dyke's matching rule, accounting for non-linearity of the boundary condition, results in an asymptotic model, which provides accurate description of the temperature field even if the Fourier number Fo based on the sphere period of revolution is as small as 10. The asymptotic model is also capable for accurate description of the thermal boundary layer degeneration, when the angle between the rotational axis and the direction to the light source tends to zero or the effect of rotation vanishes locally. The accuracy of the asymptotic models is verified by the comparison of the computational results obtained based on the full 3D and asymptotic models. The asymptotic models are applied to study the effect of all dimensionless parameters on the total gas production rate of the sphere. It is found that in a large range of conditions the surface temperature field and gas production rate are independent of Fo, but determined by a new "rotational" parameter, which serves as measure of the sphere rotation rate.
机译:将匹配渐近展开法用于光源不对称照射的旋转升华均匀球体的非定常三维(3D)热模型分析,并提出了一系列近似渐近模型。温度场由具有强非线性边界条件的热传导方程式描述,其中考虑了光吸收,热导率,自发光和球体表面的升华。结果表明,适当地推广了范戴克的匹配规则(考虑了边界条件的非线性),可以生成一个渐近模型,即使基于旋转球面周期的傅里叶数Fo为,该模型也可以准确描述温度场。小到10。当旋转轴与光源方向之间的角度趋于零或旋转效果局部消失时,渐近模型也能够准确描述热边界层退化。通过比较基于完整3D模型和渐近模型获得的计算结果,验证了渐近模型的准确性。应用渐近模型研究所有无量纲参数对球体总产气率的影响。发现在大范围的条件下,表面温度场和气体产生速率与Fo无关,但是由新的“旋转”参数确定,该参数用作球体旋转速率的量度。

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