Total Dynamic Analysis of Deep-Seabed Integrated Mining System

심해저 광물자원 채광시스템의 통합거동 해석

  • Kim, Hyung-Woo (Maritime & Ocean Engineering Research Institute, KORDI) ;
  • Hong, Sup (Maritime & Ocean Engineering Research Institute, KORDI) ;
  • Choi, Jong-Su (Maritime & Ocean Engineering Research Institute, KORDI) ;
  • Yeu, Tae-Kyeong (Maritime & Ocean Engineering Research Institute, KORDI)
  • 김형우 (한국해양연구원 해양시스템기술연구본부) ;
  • 홍섭 (한국해양연구원 해양시스템기술연구본부) ;
  • 최종수 (한국해양연구원 해양시스템기술연구본부) ;
  • 여태경 (한국해양연구원 해양시스템기술연구본부)
  • Published : 2006.11.16

Abstract

This paper concerns about total dynamic analysis of integrated mining system. This system consists of vertical steel pipe, intermediate buffer station, flexible pipe and self-propelled miner. The self-propelled miner and buffer are assumed as rigid-body of 6-dof. Discrete models of vertical steel pipe and flexible pipe are adopted, which are obtained by means of lumped-parameter method. The motion of mining vessel is not considered. Instead, the motion of mining vessel is taken into account in form of various boundary conditions (e.g. forced excitation in slow motion and/or fast oscillation and so on). A terramechanics model of extremely soft cohesive soil is applied to the self-propelled miner. The hydrodynamic forces and moments are included in the dynamic models of vehicle and lifting pipe system. Hinged and fixed constraints are used to define the connections between sub-systems (vertical steel pipe, buffer, flexible pipe, miner). Equations of motion of the coupled model are derived with respect to the each local coordinates system. Four Euler parameters are used to express the orientations of the sub-systems. To solve the equations of motion of the total dynamic model, an incremental-iterative formulation is employed. Newmark-b method is used for time-domain integration. The total dynamic responses of integrated mining system are investigated.

Keywords