심해저의 이산정보를 고려한 채집시스템의 불확실성 기반 다분야 최적설계

Uncertainty-based Multidisciplinary Design Optimization of Pilot Miner System Considering Discrete Data of Deep-sea Environment
  • 조수길
  • 김신유
  • 김새결
  • 김지훈
  • 장준용
  • 외 4명

초록

Deep-sea manganese nodules which have been found on the seafloor contain many kinds of metals such as manganese, copper and rare-earth elements as well. A pilot miner system which is designed for collecting manganese nodules consists of three subsystems, a collector, a crawler and a chassis structure. It collects manganese nodules while traveling on cohesive soft soil of deep-sea floor about 5,000 meters depth. There are a variety of design requirements related to mining systems. Hence the pilot miner system cannot be designed with an objective of a single part only. Meanwhile, because a pilot miner is operated in inaccessible area where people had no interests in the past, the environment is unknown or unexpected. Thus, data of the deep-sea environment exist in discrete form through exploration for ten years. These discrete data should be considered and estimated in design phase. In this paper, uncertainty-based multidisciplinary design optimization of a pilot miner system, which is able to consider each subsystems and discrete data of deep-sea environment, is performed.

키워드

Discrete Data(이산화 정보)Deep-sea Environment(심해저 환경)Pilot Miner System(집광로봇 시스템)Uncertainty-based Multidisciplinary Design Optimization(불확실성 기반 다분야 통합 최적설계)
제목
심해저의 이산정보를 고려한 채집시스템의 불확실성 기반 다분야 최적설계
제목 (타언어)
Uncertainty-based Multidisciplinary Design Optimization of Pilot Miner System Considering Discrete Data of Deep-sea Environment
저자
조수길김신유김새결김지훈장준용최종수김형우홍섭이태희
발행일
2014-11
유형
Proceeding
저널명
대한기계학회 2014년도 추계학술대회
페이지
1104 ~ 1105