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Analytical study of joint heat transfer between a gasdynamic boundary layer and an anisotropic strip

机译:胃动力边界层与各向异性条带之间的关节传热分析研究

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When solving the problems of coupled heat transfer between viscous flows and streamlined bodies under the conditions of aerodynamic heating of aircraft, it is necessary to overcome significant difficulties. They associated primarily with determining the boundary conditions. The paper investigates the joint (coupled) heat transfer between a heat and gas dynamic boundary layer and an anisotropic strip under conditions of aerodynamic heating based on the obtained analytical solution of the second initial boundary value problem of thermal conductivity in an anisotropic strip with arbitrary boundary conditions. Since the system of equations of the gasdynamic boundary layer is essentially nonlinear, mainly numerical methods are used to solve it. For an incompressible boundary layer near the critical point of a blunt wedge, an analytical solution is obtained to determine the components of the velocity vector, density, temperature, and heat fluxes. The closed-form solution to the conjugate problem was received in the form of a Fredholm integral equation of second kind. The results of numerical experiments are obtained and analyzed.
机译:在求解飞机空气动力加热条件下粘性流动和流线型体之间的耦合传热问题时,有必要克服显着的困难。它们主要与确定边界条件相关联。本文根据具有任意边界的各向异性条带中的热导率的第二初始边值问题的所得分析解,研究了气动加热条件下的热和气体动态边界层和各向异性条带之间的关节(耦合)传热。使适应。由于胃动力边界层的等式系统基本上是非线性的,因此主要用于解决这些方法来解决。对于钝楔临界点附近的不可压缩边界层,获得分析溶液以确定速度载体,密度,温度和热通量的组分。以第二类的Fredholm积分方程的形式接收缀合物问题的闭合溶液。获得并分析了数值实验的结果。

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