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首页> 外文期刊>Acta acustica united with acustica >Numerical Simulation of Minor Losses Due to a Sudden Contraction and Expansion in High Amplitude Acoustic Resonators
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Numerical Simulation of Minor Losses Due to a Sudden Contraction and Expansion in High Amplitude Acoustic Resonators

机译:高振幅声谐振器突然收缩和膨胀引起的微小损失的数值模拟

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摘要

A time-accurate high-order numerical simulation is used to study the minor losses due to an abrupt change in a resonator's cross-sectional area. A finite amplitude standing wave is established in the resonator using two different types of driver. In one case the entire resonator is shaken and in the other a line source is used to simulate the effect of a piston. It is found that a net pressure difference is generated across the change in cross-sectional area. It is due to the minor loss coefficients being different in one half cycle than the other in an oscillatory flow. This net pressure difference is almost a constant along the resonator. The results of the numerical simulation are in a very good agreement with the results of a complementary experiment for a wide variety of the operating conditions. It is found that a quasi-steady approach underpredicts the minor losses. An empirical relationship is defined for the minor losses based on the results of the numerical simulation. An approach based on the second law of thermodynamics is also used to examine the loss of availability due to the net minor loss.
机译:时间精确的高阶数值模拟用于研究由于谐振器横截面积的突然变化而引起的微小损耗。使用两种不同类型的驱动器在谐振器中建立了一个有限幅度的驻波。在一种情况下,整个谐振器都被摇动,而在另一种情况下,线源被用来模拟活塞的作用。发现在横截面积的变化上产生净压力差。这是因为在振荡流中,一个半周期的次要损耗系数与另一个半周期的不同。沿谐振器的净压差几乎恒定。数值模拟的结果与针对多种操作条件的补充实验的结果非常吻合。发现准稳定方法低估了较小的损失。基于数值模拟的结果,为微小损失定义了经验关系。基于热力学第二定律的方法也用于检查由于净轻微损失而导致的可用性损失。

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