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首页> 外文期刊>International Journal of Thermal Sciences >Numerical simulation on onset characteristics of traveling-wave thermoacoustic engines based on a time-domain network model
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Numerical simulation on onset characteristics of traveling-wave thermoacoustic engines based on a time-domain network model

机译:基于时域网络模型的行波热声发动机起步特性数值模拟

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Onset characteristics of thermoacoustic engines are of great importance for understanding the internal working mechanisms of thermoacoustic conversion. A one-dimensional time-domain network model for predicting the onset characteristics of traveling-wave thermoacoustic engines with helium as working as is built. The acoustic resistance, inertance, compliance, and thermal-relaxation effects of all the acoustic components are included. The viscous and heat transfer terms in the time-domain governing equations of the acoustic tubes and the heat exchangers are deduced from the frequency-domain linear thermoacoustic theory. Combining the time-domain governing equations of the regenerator, numerical simulations of the whole onset process are then conducted in a wide operating condition range. The complete dynamic pressure wave evolution processes are simulated successfully. It is shown that a steady standing-wave acoustic field forms in almost all parts of the traveling-wave thermoacoustic engine except for the regenerator area. Onset temperature, operating frequency, and quality factor are calculated with a relatively high accuracy. The thermal relaxation effects in the regenerator are found to have a remarkable impact on the onset characteristics, especially at high mean pressures. It is also shown that the experimental damping temperature is closer to the calculated onset temperature than the experimental onset temperature. Furthermore, the reasonable distributions of the pressure and volume flow rate and the phase relationship between them in the whole system are obtained and analyzed. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:热声发动机的启动特性对于理解热声转换的内部工作机制非常重要。建立了以氦为工作原理的行波热声发动机的启动特性预测的一维时域网络模型。包括所有声学组件的声阻,惯性,柔度和热松弛效果。从频域线性热声理论推导了声管和换热器时域控制方程中的粘性和热传递项。结合再生器的时域控制方程,然后在较宽的工作条件范围内进行整个启动过程的数值模拟。成功地模拟了完整的动态压力波演化过程。结果表明,行波热声发动机的几乎所有部分(再生器区域除外)都形成稳定的驻波声场。起始温度,工作频率和品质因数的计算精度较高。发现蓄热室中的热松弛效应对开始特性有显着影响,尤其是在高平均压力下。还表明,实验阻尼温度比实验起始温度更接近计算的起始温度。此外,获得并分析了整个系统中压力和体积流量的合理分布以及它们之间的相位关系。 (C)2015 Elsevier Masson SAS。版权所有。

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