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Ridge push, mantle plumes and the speed of the Indian plate

机译:岭推,地幔羽毛和印度板块的速度

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摘要

The buoyancy of lithospheric slabs in subduction zones is widely thought to dominate the torques driving plate tectonics. In late Cretaceous and early Paleogene times, the Indian plate moved more rapidly over the mantle than freely subducting slabs sink within it. This signal event has been attributed to arrival of the Deccan–Réunion mantle plume beneath the plate, but it is unknown in which proportions the plume acted to alter the balance of existing plate driving torques and to introduce torques of its own. Our plate kinematic analysis of the Mascarene Basin yields a detailed Indian plate motion history for the period 89–60 Ma. Plate speed initially increases steadily until a pronounced acceleration in the period 68–64 Ma, after which it abruptly returns to values much like those beforehand. This pattern is unlike that suggested to result from the direct introduction of driving forces by the arrival of a thermal plume at the base of the plate. A simple analysis of the gravitational force related to the Indian plate's thickening away from its boundary with the African plate suggests instead that the sudden acceleration and deceleration may be related to uplift of part of that boundary during a period when it was located over the plume head. In this instance, torques related to plate accretion and subduction may have contributed in similar proportions to drive plate motion.
机译:俯冲带岩石圈平板的浮力被广泛认为是驱动板块构造的转矩的主要因素。在白垩纪晚期和古近纪早期,印度板块在地幔上的移动比在地幔中自由俯冲的板块下沉更快。该信号事件归因于Deccan-Réunion地幔羽流到达板下方,但未知的羽流比例改变了现有板驱动扭矩的平衡并引入了其自身的扭矩。我们对玛斯卡林盆地的板块运动学分析得出了详细的印度板块运动史,其范围为89-60 Ma。板速最初稳定增加,直到在68-64 Ma期间出现明显的加速度,此后突然恢复到以前的值。这种模式与建议的模式不同,该模式是由于热羽流到达板的底部而直接引入驱动力而产生的。对与印度板块远离其与非洲板块边界的加厚相关的引力的简单分析表明,突然的加速和减速可能与该边界位于羽状头上方期间的部分边界的抬升有关。 。在这种情况下,与板块积聚和俯冲有关的转矩可能以相似的比例来驱动板块运动。

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    Eagles G.; Wibisono A. D.;

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  • 年度 2013
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