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An approximate analytical method for nonlinear transient heat transfer through a metallic thermal protection system

机译:通过金属热保护系统进行非线性瞬态热传递的近似解析方法

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摘要

Metallic thermal protection system (MTPS) is being investigated more popular in present. In preliminary design, the MTPS can be simplified as a multilayer plate, and a one-dimensional transient heat transfer analysis is commonly used to size the thickness of MTPS. A novel approximate analytical method based on separation of variables and orthogonal expansion technique is presented for temperature prediction through MTPS subjected to convection and radiation boundary conditions, which considers the effects of temperature-dependent thermal material properties. The proposed method applies a set of linear functions with space-variable to describe the distribution of thermal diffusivity through the thickness direction, and it adopts a numerical solution dividing the whole process of heat transfer into a chosen number of time steps to solve the problem of boundary conditions variation with time. An advanced linearized approximation for radiation boundary condition is developed for modified use with the analytical model. Implementation of the proposed method is demonstrated by applying it to determine the problem of nonlinear transient heat transfer through a MTPS made of Titanium 6-4 and Saffil, and a good agreement is presented by comparing with the finite element method (FEM) results.
机译:目前,金属热保护系统(MTPS)受到越来越广泛的研究。在初步设计中,可以将MTPS简化为多层板,并且通常使用一维瞬态传热分析来确定MTPS的厚度。提出了一种基于变量分离和正交扩展技术的近似估计分析方法,该方法通过考虑对流和辐射边界条件,通过MTPS对温度进行预测。所提出的方法应用了一组具有空间变量的线性函数来描述沿厚度方向的热扩散率分布,并且采用了一种数值解决方案,将整个传热过程分为选定的时间步长,从而解决了热扩散问题。边界条件随时间变化。开发了用于辐射边界条件的高级线性近似,以供分析模型修改后使用。通过将其应用于确定由6-4钛和Saffil制成的MTPS的非线性瞬态传热问题,论证了该方法的实现,并与有限元方法(FEM)的结果进行了比较,得出了很好的一致性。

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