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Thermal Behavior of a Multi-layered Thin Slab Carrying Periodic Signals Under the Effect of the Dual-Phase-Lag Heat Conduction Model

机译:双相滞后热传导模型影响多层薄板承载周期信号的热行为

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摘要

The thermal behavior of a two–layered thin slab carrying periodic signals under the effect of the dual-phase-lag heat conduction model is investigated. Two types of periodic signals are considered, a periodic heating source and a periodic imposed temperature at the boundary. The deviations among the predictions of the classical diffusion model, the wave mode, and the dual-phase-lag model are investigated. Analytical closed-form solutions are obtained for the temperature distribution within the slab. The effect of the angular frequency, thickness of the plate, dimensionless thermal relaxation time, dimensionless phase-lag in temperature gradient, thermal conductivity, and thermal diffusivity on the temperature distribution of the slab was studied. It is found that the deviations among the three models increase as the frequency of the signals increases and as the thickness of the plate decreases. It is found that the use of the dual-phase-lag heat conduction model is necessary when the metal film thickness is of order 10−6 m and the angular frequency of the signals is of order 1012rad · s−1.
机译:研究了在双相滞后热传导模型的作用下带有周期性信号的两层薄板的热行为。考虑了两种类型的周期性信号,即周期性加热源和边界处的周期性施加温度。研究了经典扩散模型,波动模式和双相滞后模型的预测之间的偏差。对于平板内的温度分布,获得了解析的封闭形式的解。研究了角频率,板厚,无量纲的热弛豫时间,温度梯度无量纲的相位滞后,热导率和热扩散率对板坯温度分布的影响。可以发现,三个模型之间的偏差随着信号频率的增加和平板厚度的减小而增加。发现当金属膜厚度为10−6 m且信号的角频率为1012 rad时,需要使用双相滞后热传导模型·s-1

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