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A Thermal Stability Criterion for Heat Conduction in Multilayer Composite Solids

机译:多层复合固体中导热的热稳定性判据

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摘要

Excessive heat generation within a body can cause unbounded temperature or thermal instability. In this work, a new stability test is established for heat conduction in one-dimensional multilayer composite solids that have internal heat generation at a rate proportional to the interior temperature. In the development, a spatial state formulation in the Laplace transform domain and a root locus analysis yield a stability criterion. This criterion gives an upper bound of heat source for thermal stability and relates the degree of excessive heat production to the number of unstable (positive) eigenvalues. The proposed stability test does not need any information on system eigenvalues, requests minimum computational effort, and is applicable to composites with thermal resistance at layer interfaces and bodies with nonuniformly distributed parameters. The convenience and efficiency of the stability test are demonstrated in three numerical examples.
机译:体内产生过多的热量会导致温度升高或热不稳定。在这项工作中,建立了一种新的稳定性测试,用于在一维多层复合固体中的导热,该固体具有以与内部温度成比例的速率产生内部热量。在开发过程中,拉普拉斯变换域中的空间状态公式化和根轨迹分析得出了稳定性标准。该标准为热稳定性提供了热源的上限,并将过多热量产生的程度与不稳定(正)特征值的数量相关联。所提出的稳定性测试不需要任何关于系统特征值的信息,所需的计算工作量最少,并且适用于在层界面和具有不均匀分布参数的实体处具有热阻的复合材料。在三个数值示例中说明了稳定性测试的便利性和效率。

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