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Effects of Partial Melting on Seismic Velocity and Attenuation: A New Insight from Experiments

机译:部分熔化对地震速度和衰减的影响:实验中的新洞察力

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The effects of partial melting on seismic velocity and attenuation have long been studied by focusing on the direct effects of melt, such as the poroelastic effect. The direct effects are generally very small for a very small melt fraction. Because geochemical studies have shown that the melt fraction during partial melting is very small (similar to 0.1%), it is difficult to explain upper-mantle low- velocity regions by the direct effects of melt. Recent experimental studies, by using a rock analog, have captured a significant enhancement of polycrystal anelasticity just before partial melting in the absence of melt. This newly recognized effect enables us to interpret seismological and geochemical observations consistently. The new anelasticity model significantly changes the interpretation of upper-mantle seismic structures. This review summarizes the recent progress in the understanding of polycrystal anelasticity, starting from a basic knowledge of linear anelasticity.
机译:通过专注于熔体的直接影响,如熔体效果的直接影响,研究了部分熔化对地震速度和衰减的影响。 对于非常小的熔体部分,直接效果通常非常小。 因为地球化学研究表明,部分熔化期间的熔体级分非常小(类似于0.1%),因此难以通过熔体的直接作用来解释覆盖的低速区域。 通过使用岩石类似物的近期实验研究已经捕获了在没有熔体的情况下部分熔化之前的多晶骨质性的显着提高。 这种新公认的效果使我们能够始终如一地解释地震学和地球化学观察。 新的Anelasticity模型显着改变了上部地幔地震结构的解释。 本综述总结了从线性无比度的基本知识开始了解多晶骨系的理解进展。

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