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Development of the Marine Engine Room Simulator

  • Published : 2007.11.30

Abstract

The development of a Marine Engine Room Simulator system for training and research is described. Development objectives of the system are for both student training, research and development work. The system includes a distributed server/client architecture for 1 to 1, or 1 to many client simulation operation through OPC server, complete separation of visual elements from the controlling routines and the ability to work on the mathematical model independent of the controller and visual systems. A graphical user interface for the man-machine interface has been developed and the mathematical model has been updated. Various engine room operational situations can be simulated. The use of marine engine room simulator for training of sea going engineers and its competency for STCW-95 is discussed.

Keywords

References

  1. Propulsion Plant Trainer PPT2000- MC90-III, User's manual, Kongsberg Norcontrol, 1997
  2. STCW Convention 1978 / 1995, International Maritime Organization 1996. Section A-I/12 Standards governing the use of simulators Section B-I/12 Guidance governing the use of simulators STCW Code Part A Chapter III Standards regarding the engine department STCW Code Part B Chapter III Guidance regarding the engine department
  3. SOLAS consolidated edition, International Maritime Organization 2001, Part 1, Chapter II-1, Construction - Structure, subdivision and stability, machinery and electrical installations Chapter II-2, Construction - Fire protection, fire detection and fire extinction
  4. Byung-gun Jung, 'A Survey for the Development of Machinery Space Simulator', Journal of the Korean Society of Marine Engineers, Vol. 27-1, pp. 91-99, 2003
  5. Byung-gun Jung, Peter Niekamp, Jae-sik Park, 'On the effective training method for machinery space simulator', Journal of the Research Institute of Maritime Industry, Vol. 12, pp. 109-117, 2002
  6. Amier Al-Ali, E. R. Odoom, Full-scope versus pc-based simulator: A report on training and evaluation study, ICER5, Singapore, 2001

Cited by

  1. Development of the simulator for marine auxiliary boiler system vol.37, pp.2, 2013, https://doi.org/10.5916/jkosme.2013.37.2.236