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Earthquake Impact on Active Margins: Tracing Surficial Remobilization and Seismic Strengthening in a Slope Sedimentary Sequence

机译:地震对活动边界的影响:在斜坡沉积序列中追踪表层动员和地震加固

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摘要

Strong earthquakes at active ocean margins can remobilize vast amounts of surficial slope sediments and dynamically strengthen the margin sequences. Current process understanding is obtained from resulting event deposits and low‐resolution shear strength data, respectively. Here we directly target a site offshore Japan where both processes are expected to initiate, that is, at the uppermost part (15 cm) of a sedimentary slope sequence. Based on a novel application of short‐lived radionuclide data, we identified, dated, and quantified centimeter‐scale gaps related to surficial remobilization. Temporal correlation to the three largest regional earthquakes attest triggering by strong earthquakes (M w >8). Also, extremely elevated shear strength values suggest a strong influence of seismic strengthening on shallow sediments. We show that despite enhanced slope stability by seismic strengthening, earthquake‐induced sediment transport can occur through surficial remobilization, which has large implications for the assessment of turbidite paleoseismology and carbon cycling at active margins.
机译:在活跃的海洋边缘发生的强地震可以转移大量表层斜坡沉积物,并动态增强边缘序列。当前对过程的了解分别来自所产生的事件沉积和低分辨率抗剪强度数据。在这里,我们直接针对日本海上的一个站点,预计这两个过程都会启动,即在沉积斜坡序列的最高部分(15厘米)。基于短寿命放射性核素数据的新颖应用,我们确定,标明了日期并量化了与表面动员有关的厘米级差距。与三场最大的区域地震的时间相关性证明是强地震触发的(M w> 8)。同样,极高的抗剪强度值表明地震强化对浅层沉积物的强烈影响。我们表明,尽管通过地震加固提高了边坡的稳定性,但地震诱导的泥沙输送仍可以通过表面迁移来进行,这对浊积岩古地震学和活跃边缘碳循环的评估具有重大意义。

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