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Analytical characterisation of amplitude-dampening and phase-shifting in air/soil heat-exchangers

机译:空气/土壤换热器中振幅衰减和相移的分析表征

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This article presents the complete analytical solution for the heat diffusion of a cylindrical air/soil heat-exchanger with adiabatic or isothermal boundary condition, submitted to constant airflow with harmonic temperature signal at input. It will be shown that, depending on its thickness, the soil layer will induce either one of two kinds of amplitude-dampening and phase-shifting regimes of the periodic input signal. In particular, for a thin layer submitted to adiabatic boundary condition, it is possible to completely phase-shift the periodic input while barely dampening its amplitude, a phenomenon apparently unexploited up to now, which might give rise to interesting energy handling techniques. Analytical results are validated against a finite-difference numerical simulation model as well as against an experimental setup.
机译:本文为绝热或等温边界条件下的圆柱型空气/土壤热交换器的热扩散提供了完整的解析解决方案,该热交换器在输入时经受恒定的气流并带有谐波温度信号。将显示,取决于其厚度,土壤层将引起周期性输入信号的两种幅度衰减和相移形式中的任一种。尤其是,对于处于绝热边界条件的薄层,可以在几乎不衰减其幅度的情况下完全改变周期输入的相移,而这种现象到目前为止尚未发现,这可能引起人们感兴趣的能量处理技术。针对有限差分数值模拟模型以及实验装置对分析结果进行了验证。

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