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A comparative study of analytical and numerical transient force excitations on an elastic half-space

机译:弹性半空间上的解析和数值瞬态力激励的比较研究

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The numerical modeling of ultrasonic wave propagation in elastic solids is discussed for nondestructive testing applications because of the relative ease with which the boundaries of realistic defect shapes and testing geometries can be handled. Two-dimensional (2-D) finite-element code has been developed for this purpose yielding good qualitative agreement between numerical predictions and experimental measurements. However, as a major step n the development of a full three-dimensional formulation, the 2-D code requires some quantitative form of validation. Here a direct transient comparison of analytical and numerical predictions of ultrasonic wave propagation in an elastic half-space is given that clearly validates the 2-D numerical code quantitatively and provides a useful theoretical benchmark against which future numerical codes can be evaluated.
机译:对于无损检测应用,讨论了超声波在弹性固体中传播的数值模型,因为可以相对容易地处理实际缺陷形状和测试几何形状的边界。为此,已经开发了二维(2-D)有限元代码,从而在数值预测和实验测量之间产生了良好的定性一致性。但是,作为开发完整三维公式的主要步骤,二维代码需要某种定量形式的验证。在此,给出了在弹性半空间中对超声波传播的分析和数值预测的直接瞬态比较,可以清楚地定量地验证二维数值,并为评估未来的数值提供了有用的理论基准。

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