• According to acoustic wave equation, the property and propagation of SAW is expounded.

    声波方程出发,阐述了声表面基本性质传播特性

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  • Aimed at acoustic wave equation, the paper gave absorbing boundary condition by using perfectly matched layer.

    本文针对声波方程给出完全匹配吸收边界方法

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  • The study in the paper is based on acoustic wave equation, but its research methods are also suitable to elastic and viscoelastic wave equation.

    本文提出的反演理论,主要基于声波波动方程展开讨论研究的,研究方法对于弹性方程和弹性波方程同样适应

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  • Although one can get full acoustic wave data using acoustic wave equation for seismic modeling, the data are difficult to interpret for the multiples.

    利用声波方程进行地震波场数值模拟虽然可以计算全波波场值,但是也常常会出现层间多次波,给资料解释造成一定困难

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  • In numerical wave simulation of finite difference for acoustic wave equation, due to the limitation of computer model, there inevitably exists strong artificial boundary reflection.

    声波波动方程有限差分场数值模拟由于计算模型限制导致很强的人为边界反射的产生。

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  • Based on the acoustic wave equation and structural motion equation, the vibration characteristics from the fluid loaded stiffened cylindrical double shell are studied by using finite element method.

    基于流体波动方程结构动力方程,利用有限元方法研究了考虑流固耦合时的双层加圆柱壳体振动特性

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  • In chapter two, the (3 + 1) dimensional weakly nonlinear ion acoustic wave at higher order transverse perturbations in plasma was discussed and described by the Kadomtsev-Petviashvili (KP) equation.

    论文第二章研究等离子体横向扰动下的(3 +1)非线性离子声波,得到了描述离子声的(3 + 1)维kp方程。

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  • The finite difference methods based on acoustic or elastic wave equation are very useful tools for wave-field numerical modeling or VSP data synthesizing.

    基于声波弹性方程有限差分方法数值模拟地震波场或合成VSP地震记录的有力工具

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  • Based on 1-d wave equation, a reconstruction algorithm of layered acoustic impedance profile has been established in this paper.

    本文基于一维波动方程提出层状介质阻抗剖面重建算法

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  • The FEM equation of acoustic wave is used to calculate the air-current natural frequency and pressure pulsation in the pipeline.

    利用有限元法求解声学波动方程,建立了管内气流的有限元运动方程,计算出管内气柱的固有频率气流压力脉动。

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  • The FEM equation of acoustic wave is used to calculate the air-current natural frequency and pressure pulsation in the pipeline.

    利用有限元法求解声学波动方程,建立了管内气流的有限元运动方程,计算出管内气柱的固有频率气流压力脉动。

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