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首页> 外文期刊>Science Advances >A revised position for the primary strand of the Pleistocene-Holocene San Andreas fault in southern California
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A revised position for the primary strand of the Pleistocene-Holocene San Andreas fault in southern California

机译:加利福尼亚州南部全新生圣安德烈亚斯故障的主要股线的修订职位

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The San Andreas fault has the highest calculated time-dependent probability for large-magnitude earthquakes in southern California. However, where the fault is multistranded east of the Los Angeles metropolitan area, it has been uncertain which strand has the fastest slip rate and, therefore, which has the highest probability of a destructive earthquake. Reconstruction of offset Pleistocene-Holocene landforms dated using the uranium-thorium soil carbonate and beryllium-10 surface exposure techniques indicates slip rates of 24.1 ± 3 millimeter per year for the San Andreas fault, with 21.6 ± 2 and 2.5 ± 1 millimeters per year for the Mission Creek and Banning strands, respectively. These data establish the Mission Creek strand as the primary fault bounding the Pacific and North American plates at this latitude and imply that 6 to 9 meters of elastic strain has accumulated along the fault since the most recent surface-rupturing earthquake, highlighting the potential for large earthquakes along this strand.
机译:San Andreas Fault具有南加州南部大型地震的最高依赖性概率。然而,在洛杉矶大都市区以东的故障中,它一直不确定哪条股的滑移率最快,因此具有最高概率的破坏性地震。使用铀 - 钍碳酸盐和铍 - 10表面曝光技术的抵消抵消全新世 - 全新世地貌的重建表示San Andreas故障每年24.1±3毫米的滑移率,每年21.6±2和2.5±1毫米分别分别是特派团小溪和禁止股。这些数据建立了Mission Creek Strik,因为在这种纬度的太平洋和北美板块的主要故障中,暗示了6至9米的弹性应变沿着最近的表面破裂地震,突出了大量的潜力沿着这个股线的地震。

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