首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >Late Quaternary slip rate of the southern Elsinore fault, Southern California: Dating offset alluvial fans via ~(230)Th/U on pedogenic carbonate
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Late Quaternary slip rate of the southern Elsinore fault, Southern California: Dating offset alluvial fans via ~(230)Th/U on pedogenic carbonate

机译:南加州南部埃尔西诺断裂的第四纪晚期滑移速率:通过成矿碳酸盐上的〜(230)Th / U抵消冲积扇的年代

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To understand how strain is accommodated along the Pacific‐North American plate boundary and to assess the associated seismic hazard, estimates of long‐term (10~3–10~5 year) slip rates for strands of the San Andreas fault system are needed. The mean slip rate over the past ~40 kyr for the southernmost Elsinore fault, one of the principal strands of the San Andreas fault system in Southern California, was determined using offset alluvial fans dated by U‐series on pedogenic carbonate. Two displaced fans, correlated with their source drainages using distinctive gravel‐clast assemblages, define offsets of 60 ± 20 and 83 ± 31 m. Milligram‐size samples of dense carbonate clast‐coatings from fan soils provide ~(230)Th/U‐based ages of 39.1 ± 5.3 and 46.4 ± 5.3 kyr (all errors are 2σ), respectively, for the offset fans. Our results indicate that the Elsinore fault near its southern terminus slipped at a mean rate of 1.6 ± 0.4 mm/yr over the past ~40 kyr. However, slip associated with the most recent earthquake on the southern Elsinore fault increases northward from the study area, and if this pattern has repeated through time, the peak slip rate on the southern Elsinore fault may significantly exceed our measured rate.
机译:为了了解如何沿太平洋-北美板块边界适应应变并评估相关的地震危险,需要对圣安德烈亚斯断层系统股线的长期(10〜3–10〜5年)滑动率进行估算。最南端的Elsinore断层是南加州San Andreas断层系统的主要分支之一,过去〜40年间的平均滑移率是通过使用U系列测年的成岩碳酸盐岩的偏移冲积扇确定的。两个排风扇采用独特的碎石碎屑组合与其源排水相联系,确定了60±20和83±31 m的偏移量。扇形土壤的毫克级致密碳酸盐垫层涂层样品提供的偏心扇形分别基于〜(230)Th / U的年龄为39.1±5.3和46.4±5.3 kyr(所有误差均为2σ)。我们的结果表明,过去40年来,南端附近的Elsinore断层平均滑动速率为1.6±0.4 mm / yr。但是,与最近发生在南部的Elsinore断层有关的滑动从研究区域向北增加,如果这种模式随着时间的推移而重复出现,则南部Elsinore断层的峰值滑动速率可能会大大超过我们测得的速率。

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