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Minimal thermal modeling of two-way thermomechanically coupled plates for nonlinear dynamics investigation

机译:无线动力学调查双向热机耦合板的最小热建模

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摘要

Minimal thermal modeling of two-way thermomechanically coupled plates is addressed in the framework of a unified formulation of the underlying continuum problem. Variably refined reduced-order models are considered, and some main features of the relevant transient and steady responses to a variety of active thermal sources are investigated, by properly reconstructing 3D temperature configurations and energy balances. In comparison with a richer reduced model and available analytical solutions, a model with assumed cubic temperature distribution along the thickness has the advantage of being the minimal one still allowing to consider a wide set of boundary and body thermal excitations, while showing a comprehensive capability to reliably describe the thermal response. This appears of particular interest also in view of further pursuing a systematic, yet computationally demanding, investigation of the nonlinear dynamics of the coupled plate, in the cheapest possible way from both the mechanical and thermal viewpoint.
机译:双向热机械耦合板的最小热建模在统一的连续体问题的统一配方的框架中解决了。考虑可变精制的减少阶数,通过适当地重建3D温度配置和能量余额,研究了相关瞬态和对各种有源热源的相关瞬态和稳定响应的一些主要特征。与更丰富的模型和可用的分析解决方案相比,沿着厚度的假设立方温度分布的模型具有仍然仍然允许考虑广泛的边界和身体热激发的最小值的优点,同时显示出综合能力可靠地描述热响应。考虑到进一步追求耦合板的非线性动力学的进一步追求耦合板的非线性动态,从机械和热观点的最便宜方式看,这也特别兴趣。

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