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Linked halokinesis and mud volcanism at the Mercator mud volcano, Gulf of Cadiz

机译:在加的斯湾的墨卡托泥火山连接的halokinesis和泥火山活动

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摘要

Mud volcanoes are seafloor expressions of focused fluid flow that are common in compressional tectonic settings. New high-resolution 3-D seismic data from the Mercator mud volcano (MMV) and an adjacent buried mud volcano (BMV) image the internal structure of the top 800 m of sediment at both mud volcanoes, revealing that both are linked and have been active episodically. The total volumes of extruded mud range between 0.15 and 0.35 km(3) and 0.02-0.05 km(3) for the MMV and the BMV, respectively. The pore water composition of surface sediment samples suggests that halokinesis has played an important role in the evolution of the mud volcanoes. We propose that erosion of the top of the Vernadsky Ridge that underlies the mud volcanoes activated salt movement, triggering deep migration of fluids, dissolution of salt, and sediment liquefaction and mobilization since the end of the Pliocene. Since beginning of mud volcanism in this area, the mud volcanoes erupted four times while there was only one reactivation of salt tectonics. This implies that there are other mechanisms that trigger mud eruptions. The stratigraphic relationship of mudflows from the MMV and BMV indicates that the BMV was triggered by the MMV eruptions. This may either be caused by loading-induced hydrofracturing within the BMV or due to a common feeder system for both mud volcanoes. This study shows that the mud volcanoes in the El Arraiche mud volcano field are long-lived features that erupt with intervals of several tens of thousands of years.
机译:泥火山是在压缩构造环境中常见的集中流体流动的海底表现。来自墨卡托泥火山(MMV)和相邻的地下泥火山(BMV)的新的高分辨率3-D地震数据对两个泥火山顶部800 m沉积物的内部结构进行了成像,揭示了两者是相互联系的并且已经活跃地MMV和BMV的挤出泥浆总体积分别在0.15和0.35 km(3)和0.02-0.05 km(3)之间。表层沉积物样品的孔隙水成分表明,盐岩运动在泥火山的演化中起了重要作用。我们提出,上新世末期以来,泥火山下面的维纳德斯基山脊顶部的侵蚀激活了盐的运动,触发了流体的深度迁移,盐的溶解以及沉积物的液化和动员。自从该地区开始泥火山活动以来,泥火山爆发了四次,而仅一次盐分构造活动被重新激活。这意味着还有其他触发泥浆喷发的机制。 MMV和BMV的泥浆流地层关系表明BMV是由MMV爆发触发的。这可能是由于BMV内的载荷引起的水力压裂造成的,也可能是由于两个泥火山的共同进料系统所致。这项研究表明,El Arraiche泥火山区的泥火山是长寿命的特征,每隔几万年爆发一次。

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