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P and S velocity tomography of the Mariana subduction system from a combined land-sea seismic deployment

机译:陆海地震联合部署中Mariana俯冲系统的P和S速度层析成像

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Seismic imaging provides an opportunity to constrain mantle wedge processes associated with subduction, volatile transport, arc volcanism, and back-arc spreading. We investigate the seismic velocity structure of the upper mantle across the Central Mariana subduction system using data from the 2003-2004 Mariana Subduction Factory Imaging Experiment, an 11 month deployment consisting of 20 broadband seismic stations installed on islands and 58 semibroadband ocean bottom seismographs. We determine the three-dimensional V-P and V-P/V-S structure using over 25,000 local and over 2000 teleseismic arrival times. The mantle wedge is characterized by slow velocity and high V-P/V-S beneath the fore arc, an inclined zone of slow velocity underlying the volcanic front, and a strong region of slow velocity beneath the back-arc spreading center. The slow velocities are strongest at depths of 20-30 km in the fore arc, 60-70 km beneath the volcanic arc, and 20-30 km beneath the spreading center. The fore-arc slow velocity anomalies occur beneath Big Blue seamount and are interpreted as resulting from mantle serpentinization. The depths of the maximum velocity anomalies beneath the arc and back arc are nearly identical to previous estimates of the final equilibrium depths of mantle melts from thermobarometry, strongly indicating that the low-velocity zones delineate regions of melt production in the mantle. The arc and back-arc melt production regions are well separated at shallow depths, but may be connected at depths greater than 80 km.
机译:地震成像为限制与俯冲,挥发物运输,弧火山作用和后弧扩散有关的地幔楔过程提供了机会。我们使用2003-2004年玛丽安娜俯冲工厂成像实验的数据调查了整个中央玛丽安娜俯冲系统上地幔的地震速度结构,该数据为期11个月,由安装在岛屿上的20个宽带地震台和58个半宽带海底地震仪组成。我们使用25,000多个本地地震和2000多个远程地震到达时间来确定三维V-P和V-P / V-S结构。地幔楔的特征是前弧下方的速度较慢且V-P / V-S较高,火山锋下方的速度较慢的倾斜区域以及弧后扩散中心下方的速度较弱的区域很大。在前弧的深度为20-30 km,在火山弧的下方为60-70 km,在扩散中心的下方为20-30 km,慢速速度最强。前弧慢速异常发生在大蓝海山下,并解释为是由地幔蛇形化引起的。弧和反弧下方的最大速度异常的深度几乎与以前根据热压法估算出的地幔熔体最终平衡深度相同,这强烈表明,低速区描绘了地幔中熔体的生产区域。电弧和后电弧熔体生产区域在浅深度处很好地分隔开,但可以在大于80 km的深度处连接。

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