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Simulation of full-angle ultrasound process tomography with two-phase media using a ray-tracing technique

机译:使用射线跟踪技术模拟两相介质的全角度超声过程层析成像

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The measurement of volume fractions and their spatial distribution in multiphase flows is of great interest in many industrial applications. Ultrasound methods are well-suited for the differentiation between liquid and gaseous phases. In a system for ultrasound process tomography, the signal transmission characteristics strongly vary with the composition and the spatial distribution of the phases in the multiphase flow. In this contribution, a simulation technique for ultrasound process tomography of gas / liquid flows is presented, which uses ray-tracing for the simulation of ultrasound wave propagation. The received signals obtained after transmission through the liquid phase and scattering at the interfaces between the liquid and the gaseous inhomogenities are efficiently calculated in the frequency domain. The simulation concept and some results of simulated exemplary scenarios are discussed.
机译:在许多工业应用中,对多相流中体积分数及其空间分布的测量非常感兴趣。超声波方法非常适合区分液相和气相。在超声过程层析成像系统中,信号传输特性会随着多相流中各相的组成和空间分布而发生很大变化。在这项贡献中,提出了一种用于气体/液体流的超声过程层析成像的仿真技术,该技术使用射线跟踪来仿真超声波的传播。在频域中有效地计算出在液相中传输并且在液体和气态不均匀性之间的界面处的散射之后获得的接收信号。讨论了仿真概念和仿真示例场景的一些结果。

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