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首页> 外文期刊>Oceanographic Literature Review >BRAVOSEIS: Geophysical investigation of rifting and volcanism in the Bransfield strait, Antarctica
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BRAVOSEIS: Geophysical investigation of rifting and volcanism in the Bransfield strait, Antarctica

机译:Bravoseis:南极洲布兰斯菲尔德海峡散步和火山中的地球物理调查

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摘要

The Bransfield Basin is a back-arc basin located in Western Antarctica between the South Shetland Islands and Antarctic Peninsula. Although the subduction of the Phoenix plate under the South Shetland block has ceased, extension continues through a combination of slab rollback and transtensional motions between the Scotia and Antarctic plates. This process has created a continental rift in the basin, interleaved with volcanic islands and seamounts, which may be near the transition from rifting to seafloor spreading. In the framework of the BRAVOSEIS project (2017-2020), we deployed a dense amphibious seismic network in the Bransfield Strait comprising 15 land stations and 24 ocean-bottom seismometers, as well as a network of 6 moored hydrophones; and acquired marine geophysics data including multibeam bathymetry, sub-bottom profiler, gravity & magnetics, multi-channel seismics, and seismic refraction data. The experiment has collected a unique, high quality, and multifaceted geophysical data set in the Central Bransfield Basin, with a special focus on Orca and Humpback seamounts. Preliminary results confirm that the Bransfield region has slab-related intermediate depth seismicity, with earthquake characteristics suggesting distributed extension across the rift. Gravity and magnetic highs delineate a segmented rift with along-axis variations that are consistent with increased accumulated strain to the northeast. Orca volcano shows evidences of an active caldera and magma accumulation at shallow depths, while Humpback volcano has evolved past the caldera stage and is currently dominated by rifting structures. These differences suggest that volcanic evolution is influenced by the position along the rift. Although a lot of analysis remains, these results provide useful constraints on the structure and dynamics of the Bransfield rift and associated volcanoes.
机译:Bransfield Basin是一个后弧盆地,位于南部驻地岛屿和南极半岛之间的西南科学。虽然南部驻地块下的凤凰板的俯冲停止了,但延伸通过平板回滚和南极板之间的静音动作继续。这个过程在盆地中创造了一个大陆裂缝,与火山群岛和海山交错,这可能靠近从渔获到海底蔓延的过渡。在Bravoseis项目的框架(2017-2020)中,我们在布兰斯菲尔德海峡部署了一个密集的两栖地震网络,包括15个陆站和24个海底地震仪,以及6个系泊的水母网络;并获得了包括多波米浴碱,次底分布器,重力和磁性,多通道地震和地震折射数据的海洋地球物理数据。该实验收集了在勃兰菲尔德野生州中央盆地中的独特,高品质和多方面的地球物理数据,特别关注ORCA和座船山脉。初步结果证实,布兰菲尔德地区具有与平板相关的中间深度地震性,地震特性暗示裂谷中的分布式延伸。重力和磁性高度用沿着轴上变化描绘了分段裂缝,这与东北累积的累积应变增加一致。 Orca Volcano显示了在浅层深度处的活跃的Caldera和Magma积累的证据,而驼背火山已经发展过了Caldera阶段,目前通过脱脂结构主导。这些差异表明火山的进化受到裂口沿着境地的影响。虽然仍然存在大量分析,但这些结果对布兰田裂谷和相关火山的结构和动态提供了有用的限制。

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  • 来源
    《Oceanographic Literature Review》 |2020年第10期|2177-2177|共1页
  • 作者单位

    Andalusian Institute of Geophysics University of Granada C/ Profesor Clavera 12 Granada 18071 Spain;

    Andalusian Institute of Geophysics University of Granada C/ Profesor Clavera 12 Granada 18071 Spain;

    Andalusian Institute of Geophysics University of Granada C/ Profesor Clavera 12 Granada 18071 Spain;

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