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Crustal Strain Patterns in the Satpura Mountain Belt, Central India: Implications for Tectonics and Seismicity in Stable Continental Regions

机译:印度中部萨特普拉山脉带的地壳应变模式:对稳定大陆地区构造和地震活动的影响

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The Satpura Mountains of central India represents an ancient orogenic belt of the Mesoproterozoic time. It has a distinct sygmoidal (S-shaped) geometry with long EW and short NE–SW alignments. The mountain belt has been affected by tectonic activities throughout the geological past. The association of high seismicity, high heat flow and high Bouguer gravity anomaly with high topography of the region is a very distinct feature of the mountain range. Present analysis demonstrates that the average velocity for central India has a value of ~54 mm/year towards N050°. The velocity field vector can be partitioned into an eastward component parallel to the Satpura Mountain Belt and a northward component across the belt. The partitioned components provide evidence for sinistral strike–slip deformation of anomalously high shear strain rate of ~3 × 10−9/year in the region. Similar high shear strain rates are also found from the strain determined by GPS data. An extremely high rate of extensional strain (~600 × 10−9/year), which is comparable to that of the continental rift systems, is recorded from geodetic data of the Satpura Mountain Belt and the adjacent regions. Regional sinistral shape of the Satpura Mountains involved in a sinistral-slip transtension regime is interpreted to be the cause of high extensional and shear strain regime of the area. The occurrence of normal faulting detected in several deep seismic sounding profiles, the Moho upwarp, crustal thinning, high heat flow and high seismicity of the Satpura region are explained by this tectonic model.
机译:印度中部的萨特普拉山脉代表着中元古代的古代造山带。它具有独特的弧形(S形)几何形状,具有长EW和短NE-SW对齐。整个地质过去,山区一直受到构造活动的影响。高地震活动,高热流和高布格重力异常与该地区高地形的联系是该山脉的一个非常明显的特征。目前的分析表明,印度中部向N050°方向的平均速度为〜54毫米/年。速度场矢量可分为平行于萨特普拉山脉带的东向分量和横跨该带的北向分量。分区的成分为该地区左旋走滑变形提供了证据,异常高剪切应变率约为3×10−9 /年。从GPS数据确定的应变中也发现了类似的高剪切应变率。根据萨特普拉山脉带及邻近地区的大地测量数据,可以记录到极高的拉伸应变率(约600×10-9 / sup /年),与大陆裂谷系统相当。 Satpura山的区域左旋形状涉及一个向左滑移的过渡带,被认为是该地区高拉伸应变和剪切应变的原因。通过该构造模型解释了在萨特普拉地区的几个深部地震测深剖面,莫霍面向上弯曲,地壳变薄,高热流和高地震活动中检测到的正常断层的发生。

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