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Measurement and implications of frequency dependence of attenuation

机译:衰减的频率依赖性的测量及其含义

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摘要

Constraining the frequency dependence of intrinsic seismic attenuation in the Earth is crucial for: 1. correcting for velocity dispersion due to attenuation: 2. constructing attenuation and velocity models of the interior using datasets with different frequency contents: and. 3. interpreting lateral variations of velocity and attenuation in terms of temperature and composition. Frequency dependence of attenuation q can be represented by a power law q proportional to q(o)omega(-alpha). Despite its importance, efforts at determining alpha from surface wave and free oscillation data have been thwarted by the strong tradeoffs between the depth- and frequency dependence of attenuation. We develop and validate a new method that eliminates this tradeoff, allowing a direct estimation of effective frequency dependence of attenuation without having to construct a new depth-dependent model of attenuation. Using normal mode and surface wave attenuation measurements between 80 and 3000 s, we find that alpha varies with frequency within the absorption band. It is 0.3 at periods shorter than 200 s, it decreases to 0.1 between 300 and 800 s, and becomes negative at periods longer than 1000 s.
机译:限制地球固有地震衰减的频率依赖性对于以下方面至关重要:1.校正衰减引起的速度分散:2.使用具有不同频率内容的数据集构建内部的衰减和速度模型:和。 3.根据温度和成分解释速度和衰减的横向变化。衰减q的频率依赖性可以用与q(o)ω(-alpha)成比例的幂律q表示。尽管它很重要,但由于衰减的深度和频率相关性之间的重大折衷,阻碍了根据表面波和自由振荡数据确定α的努力。我们开发并验证了消除这种折衷的新方法,从而无需建立新的深度相关衰减模型即可直接估算有效的衰减频率依赖性。使用正常模式和80至3000 s之间的表面波衰减测量,我们发现α随吸收带内的频率而变化。在小于200 s的时间段为0.3,在300到800 s之间降低至0.1,在大于1000 s的时间段为负。

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