论文标题
跨分布式稳定热源的声音传播和熵产生的理论分析
Theoretical analysis of sound propagation and entropy generation across a distributed steady heat source
论文作者
论文摘要
使用渐近膨胀(AE)在低频中分析具有稳定热源和平均流量的管道中的声学和熵波。分析AE解决方案是通过利用流量不变的并应用多步策略获得的。所提出的解决方案以平均流量变量积分的形式为紧凑型模型提供一阶校正。然后构建特征值系统,以预测包含分布式热源或水槽的管道的热声模式。只要满足低频条件,AE解决方案的预测与线性化的EULER方程的数值结果非常吻合。 AE解决方案能够准确地重建声学和熵波,并纠正与紧凑型模型相关的预测熵波中的明显误差。分析表明,热声系统需要考虑到声波与分布式稳定热源的相互作用产生的熵波,尤其是在管道末端处方密度或熵依赖性边界条件时。此外,讨论了AE方法和修改的WKB近似方法的组合,以进行冷却情况。 AE解决方案在低频和非常低频域中纠正WKB解决方案的缺点,并促进了不均匀的管道流场中声音传播和熵产生的全频理论分析。
Acoustic and entropy waves interacting in a duct with a steady heat source and mean flow are analysed using an asymptotic expansion (AE) for low frequencies. The analytical AE solutions are obtained by taking advantage of flow invariants and applying a multi-step strategy. The proposed solutions provide first-order corrections to the compact model in the form of integrals of mean flow variables. An eigenvalue system is then built to predict the thermoacoustic modes of a duct containing a distributed heat source or sink. Predictions from the AE solutions agree well with the numerical results of the linearised Euler equations for both frequencies and growth rates, as long as the low-frequency condition is satisfied. The AE solutions are able to accurately reconstruct the acoustic and entropy waves and correct the significant errors in the predicted entropy wave associated with the compact model. The analysis illustrates that the thermoacoustic system needs to account for the entropy wave generated by the interaction of acoustic wave and the distributed steady heat source, especially when density- or entropy-dependent boundary conditions are prescribed at the duct ends. Furthermore, a combination of the AE method and the modified WKB approximation method is discussed for a cooling case. The AE solutions remedy the disadvantage of the WKB solution in the low and very low-frequency domain and facilitate full-frequency theoretical analyses of sound propagation and entropy generation in inhomogeneous duct flow fields.