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首页> 外文期刊>Acta acustica united with acustica >Time-domain modelling: Combining ESM and a finite-difference method for thermoacoustic devices
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Time-domain modelling: Combining ESM and a finite-difference method for thermoacoustic devices

机译:时域建模:结合ESM和热声器件的有限差分方法

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摘要

Thermoacoustic devices are today mainly simulated using frequency-domain methods. Contrary to frequencydomain methods, time-domain methods may include non-linear effects and time-varying boundary conditions. However, time-domain modelling of thermoacoustic devices is computationally expensive, due to large differences in geometric length scales and time scales. The primary aim of this paper has been to model thermoacoustic devices with computational efficiency by using two different methods. The acoustic field outside the stack, based on the assumption of plane waves, is modelled using the efficient Equivalent Source Method (ESM), whereas the complex acoustic field in the stack is modelled using a finite-difference model. In a previous paper of the authors, ESM and a finite-difference model have been combined to model acoustic wave propagation, though thermal effects and heat flow to the stack plate were excluded. In this paper, however, these effects are included. The performance of the model is studied and compared to linear thermoacoustic theory. The proposed model may provide a useful tool for studying time-varying acoustic fields and temperature distributions in thermoacoustic devices.
机译:今天,主要使用频域方法来模拟热声设备。与频域方法相反,时域方法可能包括非线性效应和时变边界条件。然而,由于几何长度尺度和时间尺度的巨大差异,热声装置的时域建模在计算上是昂贵的。本文的主要目的是通过使用两种不同的方法来对具有计算效率的热声设备进行建模。基于平面波的假设,使用有效等效源方法(ESM)对堆栈外部的声场进行建模,而使用有限差分模型对堆栈中的复声场进行建模。在作者的前一篇论文中,尽管排除了热效应和流向叠层板的热流,但ESM和有限差分模型已组合在一起以模拟声波传播。但是,本文中包括了这些影响。研究了模型的性能,并将其与线性热声理论进行了比较。所提出的模型可以为研究热声装置中随时间变化的声场和温度分布提供有用的工具。

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