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Introduction to LNG Bunkering.

Liquefied natural gas is poised to become a viable and widely used marine fuel. As port authorities and ship owners work together on the creation of bunkering infrastructures, and stringent environmental regulations limit the use of high sulphur fuels, there is a clear global impetus for making the...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Draffin, Nigel
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Petrospot Ltd, 2013.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • ""Dedication""; ""Foreword""; ""Preface""; ""About the author""; ""Acknowledgements""; ""Contents""; ""List of Tables and Figures ""; ""Figure 1. A lean burn gas engine""; ""Figure 2. Low pressure gas injection""; ""(Photograph courtesy of Wertsile Corporation)""; ""Figure 3. High pressure gas injection""; ""(Photograph courtesy of Wertsile Corporation)""; ""Figure 4. Principle of LU/DF register burner""
  • ""Figure 5. An illustration of how the top layer becomes heavier and the bottom level lighter. When the equilibrium point is passed, the bottom layer will try to move very quickly to the top""""Figure 6. As the upper layer gets heavier, the lower level gets lighter until..!""; ""Figure 7. As the rupture decreases the internal pressure, the liquid in the container starts to evaporate very rapidly and the volume of gas then overcomes any relief valve capacity""; ""Figure 8. Sea NG's patented Coselle for carrying CNG on ships""; ""Figure 9. LNG fuel tank on board the MF Boknafjord""
  • ""(Photograph courtesy of Multi Maritime Ship Design & Engineering)""""Figure 10. Containerised Type C tanks""; ""(Photograph courtesy of Marine Service GmbH)""; ""Figure 11. Bi-lobe Type C tank design""; ""(Image courtesy of TGE Marine Gas Engineering GmbH)""; ""Figure 12. Small LNG carrier loading at Zeebrugge""; ""(Photograph courtesy of TGE Marine Gas Engineering GmbH)""; ""Figure 13. Halhjem ferry terminal in Norway""; ""Figure 14. Wertsile LNG Pac fuel system diagram""; ""(Diagram courtesy of Wertsile Corporation)""; ""Figure 15. Wertsile gas valve unit ""
  • ""(Photograph courtesy of Wertsile Corporation)""""Figure 16. Rolls-Royce Bergen 35:40 gas engine""; ""(This photograph is reproduced with the permission of Rolls-Royce plc, copyright Rolls-Royce plc 2012)""; ""Figure 17. Wertsile 50DF engine""; ""(Photograph courtesy of Wertsile Corporation)""; ""Figure 18. MW-GI engine""; ""(Photograph courtesy of MAN Diesel & Turbo)""; ""Figure 19. Saacke Type GCU 300""; ""(Diagram courtesy of Saacke GmbH)""; ""Figure 20. Re-Liquefaction process""; ""Figure 21. Hamworthy Wertsile re-liquefaction system""
  • ""(Diagram courtesy of Wertsile Corporation)""""Figure 22. Concept LNG barge from Veka Group ""; ""(Image courtesy of Veka Group)""; ""Figure 23. Gasnor LNG delivery""; ""(Photograph courtesy of Gasnor)""; ""Figure 24. LNG bunker flow boom concept from TGE""; ""(Photograph courtesy of TGE Marine Gas Engineering GmbH)""; ""Figure 25. General arrangement of shore and ship LNG transfer schematic""; ""Figure 26. Gassing up with methane and cooling down the shore line with LNG""; ""Figure 27. Cooling down the shore pump with LNG by circulating LNG back to the shore tank""