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Achieving a Specific Nonuniform Heat Flux With an Electrical Heat Flux Plate

机译:用电热板实现特定的非均匀热通量

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A voltage applied across a uniform plate results in a uniform ohmic heat dissipation, useful for conducting heat transfer experiments or preventing unacceptably low temperatures on spacecraft components. Most experiments to date involve application of a known uniform heat flux to the surface of a model. Measurement of the resulting temperature distribution facilitates calculation of the heat transfer coefficient, h. The dependence of h on the boundary condition, however, may necessitate a specified nonuniform heat flux. In this paper, a novel methodology is developed for designing a nonuniform thickness heat flux plate to provide a specified spatially variable heat flux. The equations are derived to solve the two dimensional heat flux with a variable cross sectional area. After showing that this inverse heat transfer problem cannot be readily linearized, a methodology utilizing a smooth surface polynomial was applied. Then, for a prescribed, desired heat flux distribution, a 7th order polynomial (including 36 terms) yielded a normalized root mean squared error of 1% over the surface. This distributed heat flux could result in significant power and thus cost savings for a variety of applications.
机译:施加在均匀板上的电压会导致均匀的欧姆散热,这对于进行传热实验或防止航天器组件上的温度过低是有用的。迄今为止,大多数实验涉及将已知的均匀热通量施加到模型表面。测量所得温度分布有助于计算传热系数h。但是,h对边界条件的依赖性可能需要指定的不均匀热通量。在本文中,开发了一种新颖的方法来设计厚度不均匀的热通量板,以提供指定的空间可变热通量。导出方程以求解具有可变横截面面积的二维热通量。在表明这种逆传热问题不能轻易线性化之后,应用了利用光滑表面多项式的方法。然后,对于规定的所需热通量分布,七阶多项式(包括36个项)在整个表面上产生1%的归一化均方根误差。这种分布的热通量可以产生可观的功率,从而节省各种应用的成本。

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