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Mapping of Seafloor Hydrothermally Altered Rocks Using Geophysical Methods: Marsili and Palinuro Seamounts, Southern Tyrrhenian Sea

机译:利用地球物理方法绘制海底热液蚀变岩石图:第勒尼安海南部的马西里和帕利努罗海山

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Hydrothermal alteration processes involve mineralogical, chemical, and textural changes as a result of hot aqueous fluid-rock interaction under evolving boundary conditions. These changes affect the physico-chemical properties of the rocks, enabling high-resolution geophysical prospecting to be an important tool in the detection of seafloor hydrothermal alteration. Here we present the results of recent geophysical investigations of the Marsili and Palinuro volcanic complexes, southern Tyrrhenian Sea, during the 2010 TIR10 and 2011 MAVA2011 cruises by the R/V Urania. The new dataset includes a dense grid of multibeam bathymetry; seafloor reflectivity, magnetic and gravity lines; and high-resolution single (CHIRP) and multichannel seismic profiles. The surveys were focused on areas known to host intense hydrothermal alteration in order to provide a more detailed description of the Marsili and Palinuro hydrothermal systems. Ground-truthing was based on earlier discoveries of hydrothermal vents and their associated deposits, and on direct observations made by ROV dives. High-resolution morpho-bathymetry, sonar reflectivity, rock magnetization, and density distribution together enabled us to assess the extent of seafloor hydrothermal alteration and its relationship to local volcanic and tectonic structures. Hydrothermal alteration associated with the Marsili seamount is largely distributed along primary volcano-tectonic structures at the ridge crest. By contrast, at Palinuro hydrothermal alteration is mostly associated with secondary volcanic structures such as collapsed calderas and volcanism reactivation along ring faults. In particular, evidence for intense hydrothermal activity occurs at Palinuro where volcanotectonic features interact with regional tectonic structures.
机译:在边界条件不断演变的情况下,由于热的水-岩石相互作用,热液蚀变过程涉及矿物学,化学和质地的变化。这些变化影响了岩石的物理化学性质,使得高分辨率地球物理勘探成为检测海底热液蚀变的重要工具。在这里,我们展示了R / V Urania在2010 TIR10和2011 MAVA2011航行期间对第勒尼安海南部马西里和帕利努罗火山群的近期地球物理调查的结果。新的数据集包括密集的多波束测深网格;海底反射率,磁力线和重力线;高分辨率单地震(CHIRP)和多通道地震剖面。这些调查的重点是已知发生强烈热液蚀变的区域,以便对马西里和帕利努罗热液系统进行更详细的描述。地面真相是基于较早发现的热液喷口及其相关沉积物,并且是基于ROV潜水的直接观测结果。高分辨率形态学,声纳反射率,岩石磁化强度和密度分布使我们能够评估海底热液蚀变的程度及其与局部火山岩和构造结构的关系。与马西里海山相关的热液蚀变主要分布在山脊顶的主要火山构造构造上。相比之下,在帕利努罗,热液蚀变主要与次级火山结构有关,例如坍塌的火山口和沿环断层的火山活动。特别是,在Palinuro发生了强烈的热液活动的证据,那里的火山构造特征与区域构造结构相互作用。

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