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Late Holocene slip rate for the North Anatolian fault, Turkey, from cosmogenic 36Cl geochronology: Implications for the constancy of fault loading and strain release rates

机译:土耳其北安那托利亚断层的晚全新世滑移率,来自宇宙成因36Cl年代学:断层载荷和应变释放率恒定的意义

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摘要

Geomorphologic mapping and cosmogenic radionuclide (36Cl) dating of an offset fluvial terrace yield a preferred late Holocene slip rate of 20.5 ± 5.5 mm/yr for the central part of the North Anatolian fault, Turkey; an independent slip rate constrained by 14C ages is 20.5 ± 8.5 mm/yr. These rates are generally similar to, but possibly slightly slower than, the short-term rate of elastic strain storage of 25 ± 1 measured geodetically across this major strike-slip fault (Reilinger et al., 2006), suggesting that loading and strain release on this part of the North Anatolian fault have been relatively constant when averaged over the past 2–2.5 k.y. We attribute this consistency to the relatively simple structure of the Anatolia-Eurasia plate boundary in north-central Turkey, where almost all plate boundary strain is accommodated along the North Anatolian fault. The absence of other moderate to high slip rate faults (and the earthquakes they produce) leads to a relatively simple stress evolution for the fault dominated by steady tectonic loading.
机译:偏移河床阶地貌图和宇宙成因放射性核素( 36 Cl)测年 产生的晚新世晚期滑移率优选为20.5±5.5 mm / yr在 北安那托利亚断层的中部,土耳其;受 14 C年龄约束的独立滑移率 为20.5±8.5毫米/年。这些速率 通常与大地测量法测得的25± 1的短期弹性应变存储速率类似,但可能稍慢一些。这个主要的走滑断层 (Reilinger等,2006),表明在北安那托利亚断层的这一部分上的荷载和应变 释放是 过去2–2.5 ky的平均值时相对恒定我们将此一致性归因于土耳其中北部 土耳其安纳托利亚-欧亚大陆板块边界的相对简单的 结构,其中几乎所有板块边界应变都得到容纳 沿着北安纳托利亚断层。对于高滑移率断层(及其产生的地震)没有其他中等的 会导致由 为主的断层 相对简单的应力演化。稳定的构造载荷。

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  • 来源
    《Geology》 |2007年第10期|867-870|共4页
  • 作者单位

    Department of Earth Sciences, University of Southern California, Los Angeles, California 90089, USA;

    Department of Earth Sciences, University of Southern California, Los Angeles, California 90089, USA;

    Center for Accelerator Mass Spectrometry, Lawrence Livermore National Laboratory, Livermore, California 94550, USA;

    Department of Earth Sciences, University of Southern California, Los Angeles, California 90089, USA;

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  • 入库时间 2022-08-17 23:15:31

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