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Numerical study of the effective impedance of a thermoacoustic stack

机译:热声堆栈有效阻抗的数值研究

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摘要

The force balance in the neighborhood of an idealized thermoacoustic stack is analyzed using two-dimensional unsteady flow simulations. The numerical model is based on a small-Mach-number approximation to the compressible Navier-Stokes equations; it ignores acoustic wave propagation within the stack but retains hulk compressibility and the convective nonlinearity of the original conservation equations. The effects of long wave acoustic pulses which drive the stack flow are taken into account through suitable velocity boundary conditions. The computations are used to characterize the effective impedance of the stack and to analyze its dependence on operating conditions and stack configuration parameters. Results are compared to semi-heuristic explicit formulas based on the linear theory. [References: 29]
机译:使用二维非定常流动模拟分析了理想热声堆栈附近的力平衡。数值模型基于可压缩的Navier-Stokes方程的小马赫数近似值。它忽略了声波在烟囱内部的传播,但保留了原始压缩方程的绿体可压缩性和对流非线性。通过合适的速度边界条件考虑了驱动堆垛流动的长波声脉冲的影响。该计算用于表征电池组的有效阻抗,并分析其对工作条件和电池组配置参数的依赖性。将结果与基于线性理论的半启发式显式公式进行比较。 [参考:29]

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