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Deriving a long paleoseismic record from a shallow-water Holocene basin next to the Alpine fault, New Zealand

机译:从新西兰阿尔卑斯断层附近的浅水全新世盆地获得长古地震记录

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摘要

A sedimentary sequence that was highly sensitive to fault rupture–driven changes in water level and sediment supply has been used to extract a continuous record of 22 large earthquakes on the Alpine fault, the fastest-slipping fault in New Zealand. At Hokuri Creek, in South Westland, an 18 m thickness of Holocene sediments accumulated against the Alpine fault scarp from ca. A.D. 800 to 6000 B.C. We used geomorphological mapping, sedimentology, and paleoenvironmental reconstruction to investigate the relationship between these sediments and Alpine fault rupture. We found that repeated fault rupture is the most convincing mechanism for explaining all the features of the alternating peat and silt sedimentary sequence. Climate has contributed to sedimentation but is unlikely to be the driver of these cyclical changes in sediment type and paleoenvironment. Other nontectonic causes for the sedimentary alternations do not produce the incremental increase in basin accommodation space necessary to maintain the shallow-water environment for 6800 yr. Our detailed documentation of this near-fault sedimentary basin sequence highlights the advantages of extracting paleoearthquake records from such sites—the continuity of sedimentation, abundance of dateable material, and pristine preservation of older events.
机译:对断层破裂驱动的水位和沉积物供应变化高度敏感的沉积序列已被用来连续记录新西兰断层滑移最快的断层-高山断层的22次大地震。在西南西部的霍库里溪(Hokuri Creek),大约有18 m的全新世沉积物堆积在大约20年代的阿尔卑斯断层陡坡上。公元前800年至公元前6000年我们使用地貌图,沉积学和古环境重建研究了这些沉积物与高山断裂破裂之间的关系。我们发现,反复断层破裂是解释泥炭和粉砂交替沉积序列的所有特征的最有说服力的机制。气候是造成沉积的原因,但不太可能成为沉积物类型和古环境周期性变化的驱动力。造成沉积交替的其他非构造原因并未使盆地容纳空间的增加增加,从而无法维持6800年的浅水环境。我们对这种近断层沉积盆地序列的详细记录突显了从此类地点提取古地震记录的优势-沉积的连续性,大量可更新的物质以及原始事件的原始保存。

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