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Mathematical model of the heat transfer process taking into account the consequences of nonlocality in structurally sensitive materials

机译:在结构敏感材料中的非偏移后果的传热过程数学模型

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Creation of new materials based on nanotechnology is an important direction of modern materials science development. Materials obtained using nanotechnology can possess unique physical-mechanical and thermophysical properties, allowing their effective use in structures exposed to high-intensity thermomechanical effects. An important step in creation and use of new materials is the construction of mathematical models to describe the behavior of these materials in a wide range of changes under external effects. The model of heat conduction of structural-sensitive materials is considered with regard to the medium nonlocality effects. The relations of the mathematical model include an integral term describing the spatial nonlocality of the medium. A difference scheme, which makes it possible to obtain a numerical solution of the problem of nonstationary heat conduction with regard to the influence of the medium nonlocality on space, has been developed. The influence of the model parameters on the temperature distributions is analyzed.
机译:基于纳米技术的新材料的创建是现代材料科学发展的重要方向。使用纳米技术获得的材料可具有独特的物理机械和热物理性质,使其有效地用于暴露于高强度热机械效应的结构。创建和使用新材料的一个重要步骤是建造数学模型,以描述这些材料在外部效果的各种变化中的行为。考虑到培养基非沉积物效应考虑了结构敏感材料的热传导模型。数学模型的关系包括描述介质的空间非植物的整体术语。已经开发出一种差异方案,其使得可以获得关于介质非植物在空间上的介质非植物的影响的非营养导热问题的数值解决方案。分析了模型参数对温度分布的影响。

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