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首页> 外文期刊>Bulletin of the Russian Academy of Sciences. Physics >Numerical approaches to simulating nonlinear ultrasound fields generated by diagnostic-type transducers
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Numerical approaches to simulating nonlinear ultrasound fields generated by diagnostic-type transducers

机译:模拟诊断型传感器产生非线性超声字段的数值方法

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AbstractTwo theoretical approaches for simulating nonlinear focused ultrasound fields generated by a diagnostic convex array are compared. The first model is based on the three-dimensional Westervelt equation and describes the full structure of the array field with high accuracy. However, it requires great computational resources and is technically difficult. The second model is based on an axially symmetric form of the parabolic KZK equation for estimating the strength of nonlinear effects in the focal region of a beam, which reduces the computational time by a factor of several hundreds. To establish the boundary conditions to the KZK model, the radius and the focal length of a circular piston source are defined such that the simulated field on the beam axis in the linear case fits the real structure of the field in the focal region. It is shown that the parabolic model can be used to accurately describe the spatial and temporal structure of the field generated by a diagnostic transducer in the focal region of the beam along its axis and in the plane of the beam’s electronic focusing.
机译:<标题>抽象 ara>比较了模拟由诊断凸数量产生的非线性聚焦超声字段的两个理论方法。第一模型基于三维Westervelt方程,并以高精度描述阵列字段的全结构。然而,它需要巨大的计算资源,技术上困难。第二模型基于抛物线KZK方程的轴对称形式,用于估计光束的焦点区域中的非线性效应的强度,这将计算时间降低了数百倍。为了建立对KZK模型的边界条件,定义圆形活塞源的半径和圆柱源的焦距,使得线性壳体中的梁轴上的模拟场适合焦点区域中该场的真实结构。结果表明,抛物面模型可用于精确描述沿着轴的轴侧凸在梁的焦点区域中的诊断换能器生成的场的空间和时间结构,并在光束的电子聚焦的平面中。

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