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Numerical simulation of the nonlinear ultrasonic pressure wave propagation in a cavitating bubbly liquid inside a sonochemical reactor

机译:声化学反应器内空化气泡液中非线性超声压力波传播的数值模拟

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摘要

We investigate the acoustic wave propagation in bubbly liquid inside a pilot sonochemical reactor which aims to produce antibacterial medical textile fabrics by coating the textile with ZnO or CuO nanoparticles. Computational models on acoustic propagation are developed in order to aid the design procedures. The acoustic pressure wave propagation in the sonoreactor is simulated by solving the Helmholtz equation using a meshless numerical method. The paper implements both the state-of-the-art linear model and a nonlinear wave propagation model recently introduced by Louisnard (2012), and presents a novel iterative solution procedure for the nonlinear propagation model which can be implemented using any numerical method and/or programming tool. Comparative results regarding both the linear and the nonlinear wave propagation are shown. Effects of bubble size distribution and bubble volume fraction on the acoustic wave propagation are discussed in detail. The simulations demonstrate that the nonlinear model successfully captures the realistic spatial distribution of the cavitation zones and the associated acoustic pressure amplitudes.
机译:我们研究了声波化学反应器内气泡状液体中声波的传播,该反应器旨在通过用ZnO或CuO纳米颗粒涂覆纺织品来生产抗菌医用纺织品。为了帮助设计程序,开发了关于声传播的计算模型。通过使用无网格数值方法求解亥姆霍兹方程,模拟声压波在声纳反应器中的传播。本文同时实现了Louisnard(2012)最近引入的最新线性模型和非线性波传播模型,并提出了一种非线性传播模型的新颖迭代求解程序,可以使用任何数值方法和/或方法来实现或编程工具。显示了关于线性和非线性波传播的比较结果。详细讨论了气泡尺寸分布和气泡体积分数对声波传播的影响。仿真表明,非线性模型成功地捕获了空化区域的实际空间分布以及相关的声压幅度。

著录项

  • 作者

    Dogan, Hakan; Popov, Viktor;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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