首页> 外文期刊>Journal of geodynamics >Geodetic constraints on active tectonics of the Western Mediterranean: Implications for the kinematics and dynamics of the Nubia-Eurasia plate boundary zone
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Geodetic constraints on active tectonics of the Western Mediterranean: Implications for the kinematics and dynamics of the Nubia-Eurasia plate boundary zone

机译:大地测量学对西地中海活动构造的约束:对努比亚-欧亚板块边界带的运动学和动力学的影响

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We present GPS observations in Morocco and adjacent areas of Spain from 15 continuous (CGPS) and 31 survey-mode (SGPS) sites extending from the stable part of the Nubian plate to central Spain. We determine a robust velocity field for the W Mediterranean that we use to constrain models for the Iberia-Nubia plate boundary. South of the High Atlas Mountain system, GPS motions are consistent with Nubia plate motions from prior geodetic studies. We constrain shortening in the Atlas system to <1.5mm/yr, 95% confidence level. North of the Atlas Mountains, the GPS velocities indicate Nubia motion with respect to Eurasia, but also a component of motion normal to the direction of Nubia-Eurasia motion, consisting of southward translation of the Rif Mountains in N Morocco at rates exceeding 5 mm/yr. This southward motion appears to be directly related to Miocene opening of the Alboran Sea. The Betic Mountain system north of the Alboran Sea is characterized by WNW motion with respect to Eurasia at ~1-2 mm/yr, paralleling Nubia-Eurasia relative motion. In addition, sites located in the Betics north of the southerly moving Rif Mountains also indicate a component of southerly motion with respect to Eurasia. We interpret this as indicating that deformation associated with Nubia-Eurasia plate motion extends into the southern Betics, but also that the Betic system may be affected by the same processes that are causing southward motion of the Rif Mountains south of the Alboran Sea. Kinematic modeling indicates that plate boundary geometries that include a boundary through the Straits of Gibraltar are most compatible with the component of motion in the direction of relative plate motion, but that two additional blocks (Alboran-Rif block, Betic Mountain block), independent of both Nubia and Eurasia are needed to account for the motions of the Rif and Betic Mountains normal to the direction of relative plate motion. We speculate that the southward motions of the Alboran-Rif and Betic blocks may be related to mantle flow, possibly induced by southward rollback of the subducted Nubian plate beneath the Alboran Sea and Rif Mountains.
机译:我们介绍了从努比亚板块的稳定部分一直延伸到西班牙中部的15个连续(CGPS)和31个测量模式(SGPS)站点在摩洛哥和西班牙邻近地区的GPS观测结果。我们确定了地中海W的鲁棒速度场,用于约束伊比利亚-努比亚板块边界的模型。 GPS在高阿特拉斯山脉系统以南,与先前大地测量研究得出的努比亚板块运动一致。我们将Atlas系统中的缩短时间限制在<1.5mm / yr,置信度为95%。 GPS速度在阿特拉斯山脉北部指示努比亚相对于欧亚大陆的运动,但也是垂直于努比亚-欧亚大陆运动方向的运动的一部分,包括北摩洛哥的里夫山脉向南平移,速度超过5毫米/年。这种向南运动似乎与阿尔博兰海的中新世开放直接相关。 Alboran海以北的Betic Mountain系统的特征是WNW相对于欧亚大陆的运动约为1-2 mm / yr,与Nubia-Eurasia相对运动平行。此外,位于向南移动的里夫山脉以北的贝蒂奇山脉的遗址也表明了相对于欧亚大陆的向南运动的一部分。我们将其解释为表明与努比亚-欧亚大陆板块运动有关的形变延伸到了北贝蒂奇南部,而且贝蒂克系统也可能受到造成阿尔博兰海以南里夫山脉向南运动的相同过程的影响。运动学模型表明,包括直布罗陀海峡边界的板块边界几何形状与板块相对运动方向上的运动分量最兼容,但另外两个块(Alboran-Rif块,Betic Mountain块)独立于努比亚和欧亚大陆都需要考虑垂直于板块相对运动方向的Rif和Betic山的运动。我们推测,Alboran-Rif和Betic区块的向南运动可能与地幔流有关,可能是由Alboran海和Rif山脉下方俯冲的努比亚板块向南回滚引起的。

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