首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Seismic and Geodetic Evidences of a Hydrothermal Source in the Md 4.0, 2017, Ischia Earthquake (Italy)
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Seismic and Geodetic Evidences of a Hydrothermal Source in the Md 4.0, 2017, Ischia Earthquake (Italy)

机译:MD 4.0,20,20,20,20,20,20,20,20,20,20,20,20,20,80,20,2017

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摘要

Seismic events characterize active hydrothermal and volcanic areas and may be due to magma/fluid migration, hydrothermal pressurization, gravitational instability, and local tectonics. On 21 August 2017, an Md 4.0 earthquake occurred at Ischia volcanic island (Italy), within an active hydrothermal system. We analyze seismic, Global Positioning System, and interferometric synthetic aperture radar data to shed light on the source mechanism of such an event. The low-frequency content (2 Hz), the low stress drop (0.01 MPa), and a low S/P spectral ratio suggest the involvement of fluids in the source mechanism. The focal mechanism suggests a mixed shear-tensile (opening) rupture with the P first arrivals showing up movements in the nearest stations. Geodetic data describe an E-W elongated area of coseismic subsidence overlapping a WSW-ENE fault bounding the hydrothermal reservoir at depth. The modeled deformation field is consistent with a two-source model consisting of a WSW-ESE striking, north dipping normal fault, and a closing subhorizontal crack. This closure immediately followed an initial opening related to a fluid pressurization event responsible for the earthquake. We show that moderate magnitude earthquakes in active hydrothermal areas may be associated with the pressurization/depressurization cycles of a hydrothermal reservoir due to self-sealing processes and not to the arrival of new fluids from depth. Other events like that recorded at Ischia, which have affected the island in historical times, are not necessarily associated with 'volcanic unrest' episodes and imply the occurrence of fault-valve mechanisms. Therefore, the dynamics of hydrothermal systems must be taken into account in the seismic hazard evaluation.
机译:地震事件表征了活性水热和火山区域,可能是由于岩浆/液体迁移,水热加压,重力不稳定和局部构造。 2017年8月21日,在活跃的水热系统内Ischia火山岛(意大利)发生了MD 4.0地震。我们分析地震,全球定位系统和干涉综合孔径雷达数据,以阐明这种事件的源机构。低频含量(2Hz),低应力下降(0.01MPa)和低S / P光谱比表明流体在源机构中的参与。焦点机制表明混合的剪切拉伸(开口)破裂与P首先抵达在最近站中出现的运动。大地测量数据描述了一种E-W细长区域的电影沉降区域,其在深度下与水热储存器限定了WSW-ENE故障。所建模的变形场与一个由WSW-ESE引人注目,北浸正常故障组成的双源模型一致,以及闭合脱色裂缝。这种闭合紧接着跟随与负责地震的流体加压事件相关的初始开口。我们表明,由于自密封过程,在热水储存器中的加压/减压循环可能与来自深度的新流体的到达时,活性水热区域中的中等幅度地震可能与水热储存器的加压/减压循环相关联。在历史时代受到岛屿的伊斯基亚的其他事件,这些事件在历史时代影响了岛屿,不一定与“火山动乱”剧集相关,并意味着发生故障阀机构。因此,在地震危险评估中,必须考虑水热系统的动态。

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