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USING BOUNDARY CONDITIONS TO ACCOUNT FOR MEAN FLOW EFFECTS IN A ZERO MACH NUMBER ACOUSTIC SOLVER

机译:使用边界条件来解决零马赫数声求解器中的平均流效应

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The present study is devoted to the modeling of mean flow effects while computing thermoacoustic modes under the zero Mach number assumption. It is first recalled that the acoustic impedance modelling a compressor or a turbine must be prescribed under an energetical form instead of the classical acoustic variables. Then we demonstrate the feasibility to take into account the coupling between acoustic and entropy waves in a zero Mach number framework to capture a family of low frequency entropic modes. The proposed approach relies on a new Delayed Entropy Coupled Boundary Condition (DECBC) and proves able to capture a family of Low frequency entropic mode even though no mean flow term is included into the fluctuating pressure equation.
机译:本研究致力于在零马赫数假设下计算热声模式时的平均流效应建模。首先要回顾的是,必须以能量形式而不是经典的声学变量来规定对压缩机或涡轮机进行建模的声阻抗。然后,我们证明了在零马赫数框架中考虑声波和熵波之间的耦合以捕获一系列低频熵模式的可行性。所提出的方法依赖于新的延迟熵耦合边界条件(DECBC),并且被证明能够捕获低频熵模式族,即使波动压力方程中未包含平均流量项也是如此。

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