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Tytuł artykułu

Characteristic and requirements of electrical systems on modu class vessels

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This article briefly introduces the characteristics of MODU vessels and of their electrical systems. Electrical systems of such vessels consist of: redundant power generation and distribution system, dynamic positioning, drilling/well intervention process system and gas detection system including electrical installations in hazardous areas. Offshore vessels classified as MODU are among the most complex and technically advanced. Additional MODU classification society requirements for electrical systems have been stated. MODU philosophy has been presented by examples of various systems.
Rocznik
Tom
Strony
15--24
Opis fizyczny
Bibliogr. 22 poz., rys., tab.
Twórcy
autor
  • Gdynia Maritime University Poland
autor
  • Gdynia Maritime University Poland
Bibliografia
  • 1. Code for the Construction and Equipment of Mobile Offshore Drilling Units – MODU Code, International Maritime Organization 2009.
  • 2. 2009 MODU Code - Code for the Construction and Equipment of Mobile Offshore Drilling Units, Lloyd's Register of Shipping, 2009.
  • 3. Rules for Building and Classing - Mobile Offshore Drilling Units, American Bureau of Shipping, 2016.
  • 4. Rules for Classification of Offshore Drilling and Support Units DNV-OSS-101, DNV-GL, 2013.
  • 5. [a1] IMO Guidelines for vessels with Dynamic Positioning Systems, IMO MSC/Circ.645 June 1994.
  • 6. Rules for Classification of Ships - Dynamic Positioning Systems, DNV-GL, 2013.
  • 7. Guide for Dynamic Positioning Systems, American Bureau of Shipping, 2013.
  • 8. Clarification of IMO MODU Code 2009, Classification Support Newsletter, DNV-GL, 2014.
  • 9. Offshore Standard – Electrical Installations DNV-OS-D201, DNV-GL, 2013.
  • 10. Offshore Standard – Safety Principles and Arrangements DNV-OS-A101, DNV-GL, 2013.
  • 11. DNV GL rules for classification: Ships, DNV-GL, 2016.
  • 12. Rules and Regulations for the Classification of Ships, Lloyd's Register of Shipping, 2016.
  • 13. Rules for the Classification of Steel Ships, American Bureau of Shipping, 2016.
  • 14. Bastian B. Sieci elektroenergetyczne na jednostkach pływających z systemem dynamicznego pozycjonowania, Przegląd Elektrotechniczny 2/2010.
  • 15. Mindykowski J., Assessment of Electric Power Quality in Ships Systems Fitted with Converter Subsystems, Polish Academy of Sciences, Shipbuilding & Shipping, Gdańsk 2003.
  • 16. Wyszkowski S., Elektrotechnika Okrętowa, Wydawnictwo Morskie, Gdańsk 1991.
  • 17. Bastian B., Plachtyna O., Kutsyk A., Real Time Computer Tester for Automatic Voltage Regulators Used in Marine Generators, Poznań University of Technology Academic Journals, Poznań 2016.
  • 18. Zhi Z.Z., The development and research method of dynamic positioning systems, The Ocean Engineering 20(1), 2002.
  • 19. Morgan M., Dynamic Positioning of Offshore Vessels, Marine Division Honeywell Inc., 1978.
  • 20. Kamal G., Saurabh S., Dynamic Positioning Power Plant System Reliability and Design, PCIC Europe Conference, Rome 2011.
  • 21. Lauvdal T., Power Management System With Fast Acting Load Reduction For DP Vessels, Dynamic Positioning Conference – 2000.
  • 22. Savoy S., Power Management System Design, Functionality and Testing, Dynamic Positioning Conference – 2002.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-30965c11-ae6c-40e1-b53b-4d14a27f48fe
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