Ab'/> Long-term in situ observations at the Athina mud volcano, Eastern Mediterranean: Taking the pulse of mud volcanism
首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Long-term in situ observations at the Athina mud volcano, Eastern Mediterranean: Taking the pulse of mud volcanism
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Long-term in situ observations at the Athina mud volcano, Eastern Mediterranean: Taking the pulse of mud volcanism

机译:在Athina Mud火山,东地中海的长期观测:采取泥火山的脉搏

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AbstractLong-term monitoring on mud volcanoes is fundamental to unravel episodic processes and transient changes that might otherwise be missed by using snapshot observations during time-limited research expeditions. We deployed a pore- and seafloor-pressure observatory close to the main conduit of the Athina mud volcano, south of Turkey (Eastern Mediterranean Sea), for a period of 26months between February 2014 and April 2016. The observatory recorded 32 pore pressure transients related to as many seismic events (out of 625 earthquakes with Mw≥2.5 occurred over the monitoring period in a radius of 1000km) and few pore pressure excursions related to mud volcanism. The data helped to define a threshold for earthquake-triggered changes in mud volcano pore pressure, thus delineating possible pore pressure-distance relationships for different magnitudes ranges. Peak ground accelerations, as representative for earthquakes ground motion at the observatory have been calculated with different ground motion prediction equations. Using a conservative approach, an empirical equation has been identified, which specify the lowermost PGA necessary to induce a change in pore pressure record at the Athina mud volcano. Moreover, internal variations of the mud volcano system recordable through the pore pressure signal have been described for the first time in such a submarine feature.Highlights
机译:<![cdata [ 抽象 在泥火山上的长期监控是Unrapl eCiSodic过程的基础,否则可能会错过的瞬态变化在有限的研究探险期间快照观察。我们部署了一个孔隙和海底压力天文台,靠近火鸡(东地中海东部地中海)南部的athina泥火山的主要导管,于2014年2月和2016年4月之间为26个月。观测所记录32个孔隙压力瞬变对于尽可能多的地震事件(在625个地震中,在半径为1000km的监测期内发生了MW≥2.5),并且与泥火山有关的孔隙压痕很少。这些数据有助于定义泥浆火山孔隙压力变化的地震触发变化的阈值,从而划定了不同幅度范围的可能的孔压力距离关系。峰接地加速度,作为地震地震地面运动的代表已经用不同的地面运动预测方程计算。使用保守方法,已经识别了经验方程,其指定了在athina泥火山诱导孔隙压力变化所必需的最低PGA。此外,已经在这种潜艇特征中首次描述了通过孔隙压力信号可记录的泥浆火山系统的内部变型。 亮点

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