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Deriving geologic information from satellite remote sensing for mineral exploration in a semi-arid environment: The Troodos Massif, Cyprus.

机译:从卫星遥感中获取地质信息,以在半干旱环境中进行矿物勘探:塞浦路斯Troodos地块。

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摘要

The mineral exploration industry requires new cost-effective techniques to aid in locating the world's remaining mineral deposits not found by traditional exploration methods. Changing environmental, economic and social realities have altered the resource sector's demands for new technologies and methodologies, and reduced the time allowable to implement scientific innovation into operational practice. This thesis develops a satellite remote sensing information extraction methodology which can address the needs of, and the challenges facing, the mineral exploration industry. An approach based on visual interpretation of digitally enhanced imagery was evaluated within the context of an operational project model and a technology transfer perspective. Such a perspective includes building applications which produce acceptable results that are feasible to implement using available levels of technology as defined by the operational reality of the user. The Troodos Massif in Cyprus, was chosen as the site for this study as it is a classic mineral deposit rich in volcanogenic base metal sulphides in a semi-arid environment, and there was identified industrial interest in adopting remote sensing capabilities to a mineral exploration program in this region. The results demonstrate that, for this specific case studied, remote sensing can successfully (from the operational user's perspective) provide information which improves the traditional mineral emplacement model, and that the transfer of applications development to industry can be facilitated by the adoption of systematic project planning.
机译:矿产勘探业需要新的具有成本效益的技术,以帮助定位传统勘探方法无法发现的世界上剩余的矿藏。不断变化的环境,经济和社会现实改变了资源部门对新技术和新方法的需求,并缩短了将科学创新转化为运营实践所需的时间。本文提出了一种卫星遥感信息提取方法,可以解决矿物勘探业的需求和面临的挑战。在运营项目模型和技术转让视角的背景下,评估了基于视觉解释数字增强图像的方法。这样的观点包括构建可产生可接受结果的应用程序,这些结果对于使用由用户的操作现实定义的可用技术水平来实施是可行的。塞浦路斯的Troodos Massif被选为该研究的地点,因为它是半干旱环境中富含致火山性贱金属硫化物的经典矿床,并且已确定将遥感功能应用于矿产勘探计划的工业兴趣在这个地区。结果表明,对于所研究的特定案例,遥感技术可以成功地(从运营用户的角度)提供改进传统矿物安置模型的信息,并且可以通过采用系统项目来促进应用开发向工业的转移规划。

著录项

  • 作者

    Davidson, David Edward.;

  • 作者单位

    Carleton University (Canada).;

  • 授予单位 Carleton University (Canada).;
  • 学科 Geography.;Remote Sensing.
  • 学位 M.A.
  • 年度 1993
  • 页码 160 p.
  • 总页数 160
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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