Calculation of Temperature Fields in Multilayer Plates and Shells with Distributed Heat Sources

N. Smetankina, O. Postnyi
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Abstract

The aircraft multilayer glazing is considered as arectangular multilayer plate made up of isotropic layers withconstant thickness. The temperature on the side surface of theplate is zero. Convective heat transfer occurs on outer surfaces ofthe plate; on layers' interfaces film heat sources are arranged.The heat conduction equation for an arbitrary plate layer isreduced to the functional equation. A solution of the functionalequation we search in the form of three space functions product.We get the system of ordinary differential equations. Seriesexpansion factors are determined from a system of linearalgebraic equations. A transform of the required function isfound by the second expansion theorem, and the problemsolution has the form of double trigonometrical series.The comparative analysis of the results is carried out with theresults of other method. The method offered can be used fordesigning a safe multilayer glazing under operational andemergency thermal and force loading in different vehicles.
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分布热源下多层板壳温度场的计算
飞机多层玻璃被认为是由等厚各向同性层组成的矩形多层板。板侧面的温度为零。对流换热发生在板的外表面;在层的界面上布置薄膜热源。将任意板层的热传导方程简化为泛函方程。我们以三个空间函数积的形式寻找函数方程的解。我们得到一个常微分方程组。级数展开因子是由线性代数方程组确定的。利用第二展开式定理求出所需函数的变换,问题解具有二重三角级数的形式。并将所得结果与其他方法所得结果进行了对比分析。所提供的方法可用于设计不同车辆在操作和应急热载荷和力载荷下的安全多层玻璃。
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