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Large Eddy Simulation of acoustic pulse propagation and turbulent flow interaction in expansion mufflers

机译:膨胀消声器中声脉冲传播和湍流相互作用的大涡模拟

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摘要

A novel hybrid pressure-based compressible solver is developed and validated for low Mach number acoustic flow simulation. The solver is applied to the propagation of an acoustic pulse in a simple expansion muffler, a configuration frequently employed in HVAC and automotive exhaust systems. A set of benchmark results for experimental analysis of the simple expansion muffler both with and without flow are obtained to compare attenuation in forced pulsation for various mean-flow velocities. The experimental results are then used for validation of the proposed pressure-based compressible solver. Compressible, Unsteady Reynolds Averaged Navier–Stokes (URANS) simulation of a muffler with a mean through flow is conducted and results are presented to demonstrate inherent limitations associated with this approach. Consequently, a mixed synthetic inflow boundary condition is developed and validated for compressible Large Eddy Simulation (LES) of channel flow. The mixed synthetic boundary is then employed for LES of a simple expansion muffler to analyse the flow-acoustic and acoustic-pulse interactions inside the expansion muffler. The improvement in the prediction of vortex shedding inside the chamber is highlighted in comparison to the URANS method. Further, the effect of forced pulsation on flow-acoustic is observed in regard to the shift in Strouhal number inside the simple expansion muffler.
机译:开发了一种新颖的基于混合压力的可压缩求解器,并针对低马赫数声流仿真进行了验证。该求解器应用于简单的膨胀消声器中的声脉冲传播,该消声器是HVAC和汽车排气系统中经常使用的配置。获得了一组简单的实验结果,对有和没有流动的简单膨胀消声器进行了实验分析,以比较各种平均流速下强制脉动的衰减。然后将实验结果用于验证所提出的基于压力的可压缩求解器。进行了具有平均通过流量的消声器的可压缩非定常雷诺平均Navier–Stokes(URANS)模拟,并给出了结果以证明与该方法相关的固有局限性。因此,开发了一种混合的合成流入边界条件,并对其进行了验证,以用于通道流的可压缩大涡模拟(LES)。然后将混合的合成边界用于简单膨胀消声器的LES,以分析膨胀消声器内部的流-声和声脉冲相互作用。与URANS方法相比,突出了对室内涡旋脱落预测的改进。此外,就简单膨胀消声器内部的斯特劳哈尔数的变化而言,观察到强制脉动对流动声的影响。

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