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  • IMMS
    Design Considerations for Deep Sea Mining Umbilicals

    By Sander van Leeuwen

    Outline: · De Regt Marine Cables. · The link between system requirements and umbilical requirements (which system requirements have the largest impact on the umbilical design). · Design options for de

    Jan 1, 2018

  • IMMS
    Managing Deep-Sea Exploration Programs from Concept to Success

    By Odyssey Marine Exploration

    Odyssey is a world leader in marine exploration and has undertaken expeditions in varying environments throughout the world addressing many commercial and regulatory demands. Odyssey works in a variet

    Jan 1, 2018

  • IMMS
    Geophysical Exploration And Resource Assessment Of Deepwater Polymetallic Sulfide Deposits, Papua New Guinea

    By M. E. Williamson

    From December 2004 through March of 2005 an extensive geophysical program was conducted to delineate polymetallic sulfide deposits in the Bismark Sea for a major mining concern. Deeply towed sidescan

    Jan 1, 2005

  • IMMS
    Comparative Analysis of Deep-Sea Minerals

    By Pedro Madureira, Georgy Cherkashov, Harald Brekke, Marzia Rovere

    "The most promising deep-sea mineral resources for exploration in the Area (beyond the limits of national jurisdiction) are polymetallic nodules, cobalt-rich ferromanganese crusts and polymetallic sul

    Jan 1, 2017

  • IMMS
    Nautilus Minerals: The Latest in Exploration and Development

    By John Parianos

    2013 has seen good progress for Nautilus Minerals and our projects due to the determination of our people and the continued support from shareholders and stakeholders. Our focus remains Solwara 1 in P

    Sep 14, 2011

  • IMMS
    Pelagic Sediments Associated with Polymetallic Nodules in the Clarion Area Fracture Zone (0561cd29-9a1e-44e4-ad6d-1907506df123)

    By Marlene Olivares Cruz

    The particles that make up the deep-sea sediments have two main sources: 1) those that are created in situ from dissolved components and 2) those that are washed into the ocean in solid phases from th

    Sep 14, 2011

  • IMMS
    Seafloor Deployed Core Drill Successful In Deepsea Test

    By M. E. Williamson

    In September 2005 Williamson & Associates, Inc. delivered the BMS2 remotely operated seafloor coring system to the Japan Oil, Gas & Minerals National Corporation (JOGMEC). During acceptance trials ab

    Jan 1, 2005

  • IMMS
    GSR’s PROCAT-Project: Technical de-Risking of Deep Sea Mining Equipment – A Step-By-Step Approach towards Future Exploitation

    By Kris De Bruyne

    Since 2013, GSR has undertaken 4 exploration campaigns, which focused on environmental baseline monitoring (marine biology), resource definition and technological change. The seabed nodule collection

    Jan 1, 2018

  • IMMS
    Free-Hanging vs Free-Standing Seabed Mining Vertical Transport Systems

    By Richard Harrison, Frank Lim

    Deepsea Mining will soon become a reality with Nautilus Minerals getting their equipment ready to mine SMS at Solwara 1 off the coast of Papua New Guinea. The vertical transport system (VTS) adopted b

    Jan 1, 2018

  • IMMS
    The Relationship Between Coastal Sand Mining And Erosion Rates Along The Southern Monterey Bay Shoreline

    By Laura Moore

    The southern shoreline of Monterey Bay, extending from Moss Landing to the Monterey Peninsula, consists of sandy beaches backed by an extensive Flandrian and pre-Flandrian dune complex. This length of

    Jan 1, 1994

  • IMMS
    Effects of Sedimentation from Deep-Sea Mining: A Benthic Disturbance Experiment off New Zealand.

    By Malcolm Clark, Robin K. H. Falconer

    There are a number of likely impacts from mining operations, but a key issue is uncertainty about the environmental effects of sediment plumes created by disturbance to the seafloor and discharge of p

    Jan 1, 2018

  • IMMS
    Monitoring the Dynamics of Gas Hydrate Deposits and Hydrothermal Discharge using the NEPTUNE Undersea Observatory Network

    By S. Kim Juniper

    Ocean observatory technologies permit uninterrupted, real-time observation of dynamic seafloor environments such as gas hydrate deposits and hydrothermal vent fields that are of both scientific and ec

    Sep 14, 2011

  • IMMS
    Challenges of Deep Water Mining: A key to better operation in deep waters is obtaining the information at the resolution necessary for the application. Technology advances now allows high resolution data collection in the most challenging water depth

    By Francois P. Leroy

    In the quest of studying the assigned blocks of seafloor for deep water mining, each member country of the ISA is thirsty for accurate information as to the level of resources available. Manganese nod

    Jan 1, 2010

  • IMMS
    Indian Underwater Mining Programme, Its Long Term And Short Term Objectives

    By M. Ravindran

    The Government of India started its deep seabed exploration programme during 1982. This programme was started as one of national importance and several national laboratories were involved to realize t

    Jan 1, 1994

  • IMMS
    Seabed Classification at Seafloor Hydrothermal Sulfides Fields Using Multi-beam Sonar

    By Tao Chunhui

    The seabed deposits type and distribution are very complex at the hydrothermal field. In this paper, we provided an approach to study the seabed deposits classification at the Precious Stone Mountain

    Sep 14, 2011

  • IMMS
    Manganese Nodules: Overcoming The Constraints

    By William D. Siapno

    Approximately a century lapsed between the time nodules were discovered and the beginning of commercial exploration in the early 1960's. A period of rapid development of exploration and mining te

    Jan 1, 1985

  • IMMS
    A Comparison Of The Results Of Three Systems For Setting Sediment Quality Guidelines For Trace Metals

    By Derek V. Ellis

    Sediment Quality Guidelines can provide target values that should not be exceeded when seabed deposits are disturbed for mining, waste discharge or other purposes. Three sets of Guidelines have appear

    Jan 1, 1995

  • IMMS
    From Space Robotics to Deep-sea Mining

    By Robert Corcoran, Piotr Jasiobedzki, Roy Jakola, Michael Jenkin

    Vast mineral resources of copper, zinc, cobalt and gold have been identified off the coast of Papua New Guinea at depths exceeding 2,000 meters. Accessing them in a cost effective manner and without

  • IMMS
    On The Deep Water Turbine-Electric Energy Systems For Industrial Use

    By Igor E. Mikhaltsev

    This paper concerns the continuation of work on the deepwater non-oxygen cycle heat energy generating systems. The 25-kW prototype of a universal deepwater turbine-electric energy source with hydrazi

    Jan 1, 2001

  • IMMS
    The Coming Copper Crisis: An Important Role For Deep-Sea Mineral Resources In Fulfilling Japan?s Demand

    By Tetsuo Yamazaki

    Manganese nodules, seafloor massive sulfides, and cobalt-rich manganese crusts in deep-sea areas have been considered as future metal sources (Mero, 1965; Halbach, 1982; Lenoble, 2000). Manganese nod

    Jan 1, 2005