Efficient Survey Tools for an Improved Understanding of Deep Seabed Minerals

R. Bosler, Simen Rønne, David Furmidge, Alfhild Waeroe, Johann Rangua, Craig Ferguson
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Abstract

The proposed paper presents a novel method of sampling potential polymetallic nodule and manganese crust extraction sites that improves the efficiency and effectiveness of the campaign when compared to traditional surveying methods. The new method utilizes a work-class ROV to perform survey sampling and testing tasks at a relatively large number of sites per dive. The ROV platform enables the use of precision measurement devices such as high-resolution sonar, cone penetrometer test (CPT) systems and core drilling machines to take in-situ samples and measurements. An ROV mounted skid with integrated sample storage drawers allows samples to be taken from numerous sites using ROV resources and manipulators. Transiting from sample site to sample site at depth improves the efficiency of sampling campaigns especially at very deep polymetallic nodule fields up to 6000 meters deep. Initial studies have shown that high resolution sonar scans can measure nodule abundance and size with sufficient accuracy over a much greater area in less time when compared to traditional box coring methods. Studies of nodule and manganese crust sampling campaign durations have shown that transiting from site to site with the ROV at depth reduces the total duration of a representative sampling campaign by 50% or more. Incorporation of a high accuracy CPT system onto the ROV skid enables in-situ geotechnical testing at depth that are more accurate than the traditional method of measuring sub-core samples taken from box core samples at surface laboratories. For manganese crust fields, a novel core sampling drill rig is capable of drilling core holes on sea floor slopes from 0 – 90° without the need for the ROV to land. These advantages combined with the adaptable capability of manipulator systems to collect samples and the ability to provide high-definition video footage of seafloor topology will result in significant improvements to the efficiency and quality of polymetallic nodule and manganese crust site evaluation. The expected gains in cost and accuracy of assessing deep-sea mineral resources will accelerate the pace of material extraction projects and allow greater investment in marine mineral extraction projects due to greater confidence of project success.
提高对深海海底矿物认识的有效测量工具
本文提出了一种新的多金属结核和锰结壳提取地点的采样方法,与传统的测量方法相比,该方法提高了该活动的效率和有效性。新方法利用工作级ROV在每次潜水中在相对较多的地点执行调查抽样和测试任务。ROV平台可以使用高精度测量设备,如高分辨率声纳、锥形探深仪测试(CPT)系统和岩心钻机,进行现场取样和测量。ROV安装的滑橇带有集成的样品存储抽屉,可以使用ROV资源和操纵器从多个地点采集样品。从一个采样点到另一个采样点的深度转换提高了采样活动的效率,特别是在深达6000米的非常深的多金属结核油田。最初的研究表明,与传统的箱形取心方法相比,高分辨率声纳扫描可以在更短的时间内,在更大的区域内,以足够的精度测量结节的丰度和大小。对结核和锰结壳取样持续时间的研究表明,使用ROV从一个地点转移到另一个地点,可以将代表性取样活动的总持续时间减少50%或更多。将高精度CPT系统集成到ROV滑块上,可以在深度进行原位岩土测试,比在地面实验室测量从箱形岩心样本中提取的亚岩心样本的传统方法更准确。对于锰壳油田,一种新型岩芯取样钻机能够在0 - 90°的海底斜坡上钻取岩芯孔,而无需ROV着陆。这些优势与机械臂系统采集样品的适应性以及提供海底拓扑的高清视频片段的能力相结合,将显著提高多金属结核和锰结壳现场评估的效率和质量。深海矿物资源评估成本和准确性的预期收益将加快物质开采项目的步伐,并由于对项目成功的更大信心而允许对海洋矿物开采项目进行更大的投资。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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