首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Slip-rates along the Chaman fault: Implication for transient strain accumulation and strain partitioning along the western Indian plate margin
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Slip-rates along the Chaman fault: Implication for transient strain accumulation and strain partitioning along the western Indian plate margin

机译:Chaman断层的滑移率:对沿印度西部板块边缘的瞬态应变积累和应变分配的影响

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The Chaman fault in Western Pakistan marks the western collision boundary between the Indian and Eurasian plates and connects the Makran subduction zone to the Himalayan convergence zone. Geomorphic-scale slip-rates along an active strand of the Chaman fault are added to the sporadic data set of this poorly investigated transform system. Field investigations coupled with high-resolution GeoEye-1 satellite data of an alluvial fan surface (Bostankaul alluvial fan) show ~1150m left-lateral offset by the fault since the formation of the alluvial fan surface. A weighted mean ~(10)Be exposure age of 34.8±3kyr for the Bostankaul alluvial surface yields a slip-rate of 33.3±3.0mm/yr. This rate agrees with the geologically defined slip-rates along the Chaman fault, but is approximately twice as large as that inferred from the decade-long global positioning system measurements of 18±1mm/yr. The contrast in geomorphic and geodetic slip-rates along the Chaman fault, like other major intra-continental strike-slip faults, has two major implications: 1) the geodetic rates might represent a period of reduced displacement as compared to the averaged Late Pleistocene rate because of transient variations in rates of elastic strain accumulation; or 2) strain partitioning within the plate boundary zone. While strain partitioning could be the reason of slip-rate variations within the western Indian plate boundary zone, transient strain accumulation could explain contrasting slip-rates along the Chaman fault at this stage in its poorly understood seismic cycle.
机译:巴基斯坦西部的Chaman断层标志着印度和欧亚板块之间的西部碰撞边界,并将Makran俯冲带与喜马拉雅辐合带连接起来。沿Chaman断层活动链的地貌尺度滑移率被添加到这个研究不足的转换系统的零星数据集中。野外调查加上冲积扇面(Bostankaul冲积扇)的高分辨率GeoEye-1卫星数据显示,自冲积扇面形成以来,断层向左偏移了约1150m。 Bostankaul冲积层的加权平均〜(10)Be暴露年龄为34.8±3kyr,滑移率为33.3±3.0mm / yr。该速率与沿Chaman断层的地质定义的滑移率相符,但大约是从长达十年的全球定位系统测量值18±1mm / yr推算得出的滑移率的两倍。与其他主要的陆内走滑断层一样,沿Chaman断层的地貌和大地滑动速率的对比有两个主要含义:1)与平均晚更新世速率相比,大地速率可能表示位移减少的时期由于弹性应变累积速率的瞬时变化;或2)在板边界区域内进行应变分配。尽管应变分配可能是印度西部板块边界区域内滑移率变化的原因,但瞬变应变积累可以解释在尚不了解的地震周期的这一阶段沿Chaman断层形成对比的滑移率。

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