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P-wave velocity measurements for preliminary assessments of the mineralization in seafloor massive sulfide mini-cores during drilling operations

机译:钻井作用期间海底大规模硫化物迷你芯矿化初步评估的P波速度测量

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摘要

Deep-sea mining exploration for seafloor massive sulfide (SMS) deposits is currently increasing. At present, most exploration activities are surficial and use indirect methods to identify potential sites and perform first assessments. For a proper resource estimate, however, drilling is inevitable. By using seabed drill rigs, exploration costs can be reduced considerably. SMS deposits are normally found at depths between 1000 and 4000 m and in order for deep sea mining to be implemented, reliable technologies are needed. Additionally, the development of geophysical systems that can detect and classify mineralized zones from waste materials while drilling could decrease costs and speed up offshore operations by limiting the amount of drilling of unmineralized materials. This paper shows how the physical properties of SMS can be used to discriminate between host rocks and mineralization. Seismic P-wave velocities (Vp) were measured on 40 SMS and unmineralized mini-cores. By back-calculating the porosity from Vp, comparing the results with electrical resistivity measurements, and using Archie's Law, it is possible to observe that metallic conduction exists. For deep-sea mineral exploration, the combination of seismic tests, electrical resistivity and magnetic susceptibility could support the preliminary discrimination of mineralized samples in the cores while drilling at the seafloor.
机译:海底硫化物(SMS)沉积物的深海采矿勘探目前正在增加。目前,大多数勘探活动都是表演,并使用间接方法来识别潜在地点并执行第一次评估。然而,对于适当的资源估算,钻井是不可避免的。通过使用海床钻机,可以大大降低勘探成本。 SMS沉积物通常在1000至4000米之间发现深度,并且为了实现深海采矿,需要可靠的技术。另外,在钻井的同时可以通过限制未碎片化材料的钻孔量来降低成本并加速海上操作的地球物理系统的发展。本文展示了SMS的物理性质如何用于区分主体岩石和矿化。在40短信和未碎片的迷你芯上测量地震P波速度(VP)。通过从VP的孔隙率来计算,将结果与电阻率测量相比,并使用Archie的定律,可以观察到存在金属传导。对于深海矿物勘探,地震检验,电阻率和磁化率的组合可以支持在海底钻井时核心矿化样品的初步辨别。

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