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I. HYDROTHERMAL VENTS AT 5000M ON THE MIDCAYMAN RISE: WHERE BASEMENT LITHOLOGY AND DEPTH OF VENTING CONTROLS SULPHIDE DEPOSIT COMPOSITION

机译:I. Midcayman崛起5000米的水热风官:其中基底岩性和通风深度控制硫化物沉积物组合物

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This contribution describes the geological setting of hydrothermal activity within the Mid-Cayman Rise (MCR) using data acquired during RRS James Cook cruise JC44 (MAR-APR 2010) from the deep-towed sidescan sonar TOBI, 6000m-diving AUV Autosub6000 and the Robotic Underwater Vehicle (RUV) HyBIS. The 110 km-long Mid-Cayman Rise (MCR), located within the Cayman Trough, Caribbean Sea, is the deepest seafloor-spreading centre in the world reaching to ~7000m. Its morphology is consistent with ultra-slow-spreading and magnetic anomalies confirm its divergence rate of only ~15 mm yr-1, with active spreading since ~49 Ma. Hence the MCR poses an endmember of extreme depth for oceanic accretion and hydrothermal circulation. Our sonar imagery revealed accretion of new volcanic crust is focused within two ridge segments, to the north and south of a centrally located massif of peridotite and gabbro. Following earlier indications of hydrothermal plumes [1], we discovered two unique high-temperature hydrothermal system within the MCR: one at a depth of 5000m in the neovolcanic zone of the northern segment of the MCR, and another at 2200m on the flanks of the MCR coincident with the peridotite massif. These sites show contrasting styles of fluid venting, mineralisation, geological setting and host rock interaction enabling us to propose that depth and base,ent lithology plays an important role in controlling the metal tenor of submarine hydrothermal deposits.
机译:这种贡献描述了使用RRS James Cuck Cruise JC44(2010年4月)在拖曳的SideScan Sonar Tobi,6000m潜水AUV AutoSub6000和机器人中获得的数据水下车辆(RUV)HYBIS。 110 km-long Mid-Cayman崛起(MCR),位于加勒比海的Cayman Trough内,是世界上最深的海底展举中心达到〜7000米。它的形态与超缓慢扩散和磁性异常一致,磁性异常确认其发散率仅为〜15 mm YR-1,自〜49 mA以来,主动蔓延。因此,MCR为海洋增生和水热循环产生极端深度的端部。我们的声纳图像揭示了新的火山地壳的吸积,在两个山脊部分内集中在北部和南部地区的北部和普罗博的北部。遵循早些时候的水热羽毛[1],我们在MCR中发现了两个独特的高温水热系统:一个在MCR北部北部段的新硅村庄的深度为5000米,另一个在2200米处MCR与恒星骨骼重合。这些网站显示了流体通风,矿化,地质环境和主体岩石互动的对比度,使我们能够提出这种深度和基础,胸岩在控制潜艇水热沉积物的金属主床上起着重要作用。

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