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Modeling of Non-Stationary Temperature Fields in Multilayer Shells With Film Heat Sources

机译:薄膜热源在多层壳中非稳态温度场的建模

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A method for calculating non-stationary temperature fields in a non-closed cylindrical multilayer shell with a complex shape when exposed to film heat sources is offered. The shell with constant thickness isotropic layers and various physical properties is considered. The number of layers and their layout is arbitrary. Convective heat exchange occurs on the shell surfaces. The shell is affected by interlayer heat sources. The non-stationary heat conduction equation and the boundary conditions for the multilayer shell are derived from the heat balance variational equation. The temperature fields are determined while solving the nonstationary heat conduction problem for multilayer shells when the latter are heated with interlayer film heat sources. Distribution of temperature along each layer is presented by means of the Legendre polynomials. The problem is reduced to integration of a system of differential equations by modified Taylor's method. As an example, the problem of non-stationary thermal conductivity for a five-layer glazing element of an aircraft when heated with a film heat source has been solved.
机译:提供了一种在暴露于薄膜热源时具有复杂形状的非闭合圆柱形多层壳中的非平稳温度场的方法。考虑壳体具有恒定厚度各向同性层和各种物理性质。层数及其布局是任意的。在壳表面上发生对流热交换。壳体受层间热源的影响。非静止的导热方程和多层壳体的边界条件源自热平衡变分方程。当用中间膜热源加热后者加热时,在求解多层壳体的非间断导热问题的同时确定温度场。沿着每层的温度分布通过Legendre多项式提出。通过修改的泰勒方法减少了对微分方程系统的集成。作为示例,已经解决了用薄膜热源加热时飞机的五层玻璃状元件的非静止导热率的问题。

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