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Sound waves in a liquid with polydisperse vapor-gas bubbles

机译:具有多分散蒸气气泡的液体中的声波

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A mathematical model is presented for the propagation of plane, spherical, and cylindrical sound waves in a liquid containing polydisperse vapor-gas bubbles with allowance for phase transitions. A system of integro-differential equations is constructed to describe perturbed motion of a two-phase mixture, and a dispersion relation is derived. An expression for equilibrium sound velocity is obtained for a gas-liquid or vapor-liquid mixture. The theoretical results agree well with the known experimental data. The dispersion curves obtained for the phase velocity and the attenuation coefficient in a mixture of water with vapor-gas bubbles are compared for various values of vapor concentration in the bubbles and various bubble distributions in size. The evolution of pressure pulses of plane and cylindrical waves is demonstrated for different values of the initial vapor concentration in bubbles. The calculated frequency dependence of the phase sound velocity in a mixture of water with vapor bubbles is compared with experimental data.
机译:提出了一种数学模型,用于在包含多分散蒸气气泡的液体中传播平面声波,球形声波和圆柱形声波,并允许相变。构造了一个积分微分方程系统来描述两相混合物的扰动,并推导了一个色散关系。对于气-液或气-液混合物获得平衡声速的表达式。理论结果与已知实验数据吻合良好。比较在水与蒸气气泡的混合物中获得的相速度和衰减系数的色散曲线,以比较气泡中蒸气浓度的各种值和气泡大小的各种分布。对于气泡中初始蒸气浓度的不同值,证明了平面波和圆柱波的压力脉冲的演变。将计算出的水与汽泡混合物中的相声速的频率依赖性与实验数据进行比较。

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