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Propagation of elastic waves through textured polycrystals: application to ice

机译:弹性波通过纹理多晶的传播:应用于冰

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摘要

The propagation of elastic waves in polycrystals is revisited, with an emphasis on configurations relevant to the study of ice. Randomly oriented hexagonal single crystals are considered with specific, non-uniform, probability distributions for their major axis. Three typical textures or fabrics (i.e. preferred grain orientations) are studied in detail: one cluster fabric and two girdle fabrics, as found in ice recovered from deep ice cores. After computing the averaged elasticity tensor for the considered textures, wave propagation is studied using a wave equation with elastic constants c=〈c〉+δc that are equal to an average plus deviations, presumed small, from that average. This allows for the use of the Voigt average in the wave equation, and velocities are obtained solving the appropriate Christoffel equation. The velocity for vertical propagation, as appropriate to interpret sonic logging measurements, is analysed in more details. Our formulae are shown to be accurate at the 0.5% level and they provide a rationale for previous empirical fits to wave propagation velocities with a quantitative agreement at the 0.07–0.7% level. We conclude that, within the formalism presented here, it is appropriate to use, with confidence, velocity measurements to characterize ice fabrics.
机译:重新探讨了弹性波在多晶体中的传播,重点是与冰研究有关的构造。随机取向的六角形单晶被认为具有特定的,不均匀的主轴概率分布。详细研究了三种典型的质地或织物(即首选的颗粒取向):一种从深冰芯中回收的冰中发现的簇状织物和两种腰带织物。在计算了所考虑的纹理的平均弹性张量后,使用弹性常数为c = 〈c〉 +δc的波动方程研究波动,该常数等于平均值​​加上与该平均值的偏差(假定较小)。这允许在波动方程中使用Voigt平均值,并通过求解适当的Christoffel方程获得速度。适当地解释了垂直传播的速度,以解释声波测井的测量结果。结果表明,我们的公式在0.5%的水平上是准确的,它们为先前的经验拟合提供了理论依据,并且在0.07-0.7%的水平上具有定量的一致性。我们得出的结论是,在这里介绍的形式主义内,适当地使用速度测量来表征冰织物是适当的。

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