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EFFECTS OF NUCLEI SIZE DISTRIBUTION ON THE DYNAMICS OF A SPHERICAL CLOUD OF CAVITATION BUBBLES

机译:核尺寸分布对空心气泡球形云动态的影响

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The nonlinear dynamics of a spherical bubble cloud with nuclei size distribution are studied numerically. The spectrum of nuclei is assumed uniform initially. The simulations employ a nonlinear continuum bubbly mixture model with consideration of the presence of bubbles of different sizes. This model is then coupled with the Rayleigh-Plesset equation for the dynamics of bubbles. A numerical method based on the integral representation of the mixture continuity and momentum equations in the Lagrangian coordinates is developed to solve this set of integro-differential equations. Computational results show that the nuclei size distribution has significant effects on the cloud dynamics in comparison to the results for a single bubble size. One important effect is that the bubble collapse is always initiated near the surface of the cloud, even if the cloud has a very small initial void fraction. This effect has an important consequence, namely that the geometric focusing of the bubbly shock wave is always a part of the nonlinear dynamics associated with the collapse of a spherical cloud with nuclei size distribution. The strength of the shock and the oscillation structure behind the shock front are suppressed due to the effects of multiple bubble sizes. Far-field acoustic pressures radiated by two bubble clouds, one of equal-size bubbles and the other with bubble size distribution, are also compared. It is found that the cloud containing bubbles of different sizes emits a larger noise than the cloud of identical bubbles. Explanations for this effect are also presented.
机译:用核尺寸分布的球形气泡云的非线性动力学进行了数值。最初假设核的光谱。考虑到不同尺寸的气泡的存在,模拟采用非线性连续体起泡混合模型。然后,该模型与用于气泡动态的Rayleigh-Plesset方程耦合。开发了一种基于拉格朗日坐标中混合连续性和动量方程的积分表示的数值方法,以解决这组积分微分方程。计算结果表明,与单一泡沫尺寸的结果相比,核尺寸分布对云动力学具有显着影响。即使云具有非常小的初始空隙率分数,也是一个重要的效果是始终在云表面附近启动云层。这种效果具有重要的结果,即气泡冲击波的几何聚焦始终是与具有核尺寸分布的球形云塌陷相关的非线性动力学的一部分。由于多种气泡尺寸的效果,震动后面的冲击力和振荡结构的强度被抑制。还比较了由两个气泡云辐射的远场声压,还比较了相同尺寸的气泡和具有气泡尺寸分布的另一个气泡。结果发现,含有不同尺寸的气泡的云散发出比相同气泡的云的噪声更大。还提出了这种效果的解释。

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