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A Computational Study for Investigating Acoustic Streaming and Tissue Heating during High Intensity Focused Ultrasound through Blood Vessel with an Obstacle

机译:用障碍物通过血管调查高强度聚焦超声波的声学流和组织加热的计算研究

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The influence of High Intensity Focused Ultrasound (HIFU) on the obstacle through blood vessel is studied numerically. A three-dimensional acoustics-thermal-fluid coupling model is employed to compute the temperature field around the obstacle through blood vessel. The model construction is based on the linear Westervelt and conjugate heat transfer equations for the obstacle through blood vessel. The system of equations is solved using Finite Element Method (FEM). We found from this three-dimensional numerical study that the rate of heat transfer is increasing from the obstacle and both the convective cooling and acoustic streaming can considerably change the temperature field.
机译:在数值上研究了高强度聚焦超声(HIFU)对障碍物障碍物的影响。采用三维声学 - 热流体耦合模型来通过血管计算障碍物周围的温度场。模型结构基于障碍障碍物的线性Westervelt和缀合物传热方程。使用有限元方法(FEM)来解决方程系统。我们发现从该三维数值研究中发现,传热速率从障碍物增加,并且对流冷却和声学流均可显着改变温度场。

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