Fuel feeding system and method of operating a fuel feeding system
US-9206776-B2 · Dec 8, 2015 · US
US9664317B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9664317-B2 |
| Application number | US-201313791004-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 8, 2013 |
| Priority date | Sep 10, 2010 |
| Publication date | May 30, 2017 |
| Grant date | May 30, 2017 |
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A connection having at least one double-walled pipe of stainless steel connected to an LNG tank is disclosed, the LNG tank having an inner shell of stainless steel and an outer shell spaced at a distance from the inner shell, the inner and outer shells defining an isolation space therebetween. The at least one double-walled pipe includes a common outer wall and at least one inner pipe. The outer wall of the pipe is connected to the inner shell of the tank in such a way that the outer wall and/or a pipe fitting of cold resistant material between the inner shell and the outer wall is arranged to compensate for changes in the length of the outer wall of the pipe and/or of the pipe fitting due to temperature differences between the outer wall of the pipe and the inner shell of the tank.
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What is claimed is: 1. A connection arrangement, comprising: at least one double-walled pipe of stainless steel; an LNG tank having an inner shell of stainless steel and an outer shell spaced at a distance from the inner shell; at least one connection between the at least one double-walled pipe and the LNG tank; and a tank room in fluid connection with the LNG tank via the at least one double-walled pipe, wherein the inner and outer shells of the LNG tank define an isolation space therebetween, wherein the double-walled pipe includes an outer wall and at least one inner pipe, wherein the at least one connection is arranged for connecting the outer wall of the pipe to the inner shell of the tank by a pipe fitting of a cold resistant material arranged between the inner shell and the outer wall to compensate for changes in a length of the outer wall of the pipe and/or for changes in a length of the pipe fitting caused by temperature differences between the outer wall of the pipe and the inner shell of the tank, and wherein the at least one connection connects the pipe fitting to an interface between the outer shell of the tank and the outer wall of the pipe, and wherein the outer wall of the pipe is connected to the LNG tank as a second barrier in case of a liquid and/or compressed gas leakage, and the arrangement comprises a tank room in fluid connection with the LNG tank via the at least one double-walled pipe. 2. The arrangement of claim 1 , wherein a material of the outer wall and/or pipe fitting is a cold resistant stainless steel. 3. The arrangement of claim 1 , wherein the outer shell of the tank is carbon steel. 4. The arrangement of claim 1 , wherein the tank room is configured to convert LNG into an engine gas. 5. The arrangement of claim 1 , wherein the isolation space between the inner and outer shells of the LNG tank is under vacuum and/or filled with an isolation material. 6. The arrangement of claim 5 , wherein the isolation material is perlite or vermiculite. 7. The arrangement of claim 1 , comprising: an isolation space between the outer wall and the inner wall of the at least one double-walled pipe of stainless steel, and wherein the isolation space of the double-walled pipe is under vacuum and/or filled with an isolation material. 8. The arrangement of claim 7 , wherein the isolation material is perlite or vermiculite. 9. A connection arrangement in combination with a ship engine, comprising: at least one double-walled pipe of stainless steel; an LNG tank having an inner shell of stainless steel and an outer shell spaced at a distance from the inner shell; at least one connection between the at least one double-walled pipe and the LNG tank, the inner and outer shells of the LNG tank defining an isolation space therebetween, wherein the at least one double-walled pipe includes an outer wall and at least one inner pipe, wherein the at least one connection is arranged for connecting the outer wall of the pipe to the inner shell of the tank by a pipe fitting by of a cold resistant material arranged between the inner shell and the outer wall to compensate for changes in a length of the outer wall of the pipe and/or for changes in a length of the pipe fitting caused by temperature differences between the outer wall of the pipe and the inner shell of the tank, and wherein the at least one connection connects the pipe fitting to an interface between the outer shell of the tank and the outer wall of the pipe, and wherein the outer wall of the pipe is connected to the LNG tank as a second barrier in case of a liquid and/or a compressed gas leakage in associated valves and piping; and a tank room in fluid connection with the LNG tank via the at least one double-walled pipe for converting LNG into a gas for delivery to an engine. 10. The arrangement of claim 9 , wherein the material of the outer wall and/or pipe fitting is a cold resistant stainless steel. 11. The arrangement of claim 9 , wherein the outer shell of the tank is carbon steel. 12. The arrangement of claim 9 , wherein the isolation space between the inner and outer shells of the LNG tank is under vacuum and/or filled with an isolation material. 13. The arrangement of claim 12 , wherein the isolation material is perlite or vermiculite. 14. The arrangement of claim 9 , comprising: an isolation space between the outer wall and the inner wall of the at least one double-walled pipe of stainless steel, and wherein the isolation space of the double-walled pipe is under vacuum and/or filled with an isolation material. 15. The arrangement of claim 14 , wherein the isolation material is perlite or vermiculite.
Granular · CPC title
Ships · CPC title
Arrangements in parallel · CPC title
Steels · CPC title
Manufacturing of particular parts or at special locations · CPC title
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