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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >From two way time to depth and pressure for interpretation of seismic velocities offshore: Methodology and examples from the Wallaby Plateau on the West Australian margin
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From two way time to depth and pressure for interpretation of seismic velocities offshore: Methodology and examples from the Wallaby Plateau on the West Australian margin

机译:从两种方法到深度和压力,从近距离和深度来解释近海地震速度:西澳大利亚州边缘的瓦拉比高原的方法和实例

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The effect of water loading can account for sub-seafloor seismic P-wave velocity increases exceeding 1.km/s from shallow to deep water, but it is commonly ignored in offshore studies.Direct comparative analysis of interval velocity patterns between areas of significantly different water depths requires various water pressure related changes in velocity to be accounted for.This apparently simple task is not easy to implement in practical terms.One approach is to try to predict velocity increase at any given depth due to the pressure effect of water layer above, and then to reduce the observed interval velocity at that depth by subtraction of the predicted velocity increase.Interval velocities at different locations thus reduced can be compared and conclusions about rock lithology can subsequently be made.The application of water depth adjustments to seismic velocities, and the methods used to apply them, remain controversial.The presentation of velocity models as a function of pressure rather than two-way time, or depth, emerges as a possible solution.Analysis of appropriately adjusted seismic interval velocities from Geoscience Australia's 2008/09 seismic survey GA 310 in conjunction with seismic reflection interpretation provides new insights into the geology of the Wallaby Plateau, offshore of Western Australia.Seismically distinctive divergent dipping reflector sequences(DDRS), identified in the area, are similar in seismic character to seaward dipping reflector sequences(SDRS) of inferred volcanic composition.The water depth adjustment of seismic velocities analysed in our study reduces the distinction between SDRS, DDRS and sedimentary strata such that discrimination between volcanic and sedimentary strata in DDRS or SDRS is equivocal.A major uncertainty of this interpretation is caused by a lack of global reference velocity models of SDRS and DDRS.
机译:水负荷的影响可以解释从浅水到深水的海底地震P波速度增加超过1.km/s,但在海上研究中通常被忽略。水深需要考虑各种与水压力有关的速度变化,这看似简单的任务实际上并不容易实现。一种方法是尝试预测由于任何水深的压力作用而在任何给定深度的速度增加,然后通过减去预测的速度增加来减小在该深度处的观测层速度。可以比较不同位置处的层速度,从而可以得出岩石岩性的结论。将水深调整应用于地震速度,以及使用它们的方法仍然存在争议。速度模型作为压力的函数的表示而不是双向的时间或深度是一种可能的解决方案。澳大利亚地质科学局(Aeoscience Australia)的2008/09地震勘测GA 310对适当调整的地震间隔速度的分析以及地震反射解释的结合,提供了对Wallaby高原地质的新见解,在澳大利亚西部海域,该地区确定的地震独特的倾角反射器序列(DDRS)在地震特征上与推断的火山岩成分的向海倾角反射器序列(SDRS)相似。 SDRS,DDRS和沉积岩层之间的区别使得DDRS或SDRS中的火山岩和沉积岩层之间的区分是模棱两可的。

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