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Multi-scale Quantitative Risk Analysis of Seabed Minerals: Principles and Application to Seafloor Massive Sulfide Prospects

机译:海底矿物质的多尺度定量风险分析:海底硫化硫化物前景的原则与应用

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摘要

The potential for mining hydrothermal mineral deposits on the seafloor, such as seafloor massive sulfides, has become technically possible, and some companies (currently not many) are considering their exploration and development. Yet, no present methodology has been designed to quantify the ore potential and assess the risks relative to prospectivity at prospect and regional scales. Multi-scale exploration techniques, similar to those of the play analysis that are used in the oil and gas industry, can help to fulfill this task by identifying the characteristics of geologic environments indicative of ore-forming processes. Such characteristics can represent a combination of, e.g., heat source, pathway, trap and reservoir that all dictate how and where ore components are mobilized from source to deposition. In this study, the understanding of these key elements is developed as a mineral system, which serves as a guide for mapping the risk of the presence or absence of ore-forming processes within the region of interest (the permissive tract). The risk analysis is carried out using geoscience data, and it is paired with quantitative resource estimation analysis to estimate the in-place mineral potential. Resource estimates are simulated stochastically with the help of available data (bathymetric features in this study), conventional grade-tonnage models and Monte Carlo simulation techniques. In this paper, the workflow for a multi-scale quantitative risk analysis, from the definition to the evaluation of a permissive tract and related prospect(s), is described with the help of multi-beam data of a known hydrothermal vent site.
机译:在技​​术上,在海底硫化物如海底硫化物等海底矿物矿床上的可能性,并且一些公司(目前不多)正在考虑他们的勘探和发展。然而,目前没有旨在量化矿石潜力,并评估相对于前景和区域尺度的前瞻性的风险。类似于石油和天然气行业中使用的游戏分析的多尺度勘探技术,可以通过识别指示矿石过程的地质环境的特征来帮助实现这项任务。这些特征可以代表例如热源,途径,陷阱和储层的组合,其全部决定如何且矿石组分从源沉积动员。在这项研究中,对这些关键要素的理解是作为矿物系统开发的,作为绘制在感兴趣区域内(允许的道)内的存在或不存在矿石形成过程的风险的指南。风险分析使用地球科学数据进行,与定量资源估计分析配对,以估计就地矿物潜力。在可用数据的帮助下随机模拟资源估计(本研究中的沐浴特征),常规级吨位模型和蒙特卡罗模拟技术。在本文中,根据已知的水热通风位点的多光束数据,描述了从定义到多尺度定量风险分析的工作流程,从定义中描述了允许允许的漏洞和相关前景。

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