IP Library Granted Patent US 11,499,776
Granted Patent B2
US 11,499,776 · App. 16/603,773 · Granted Nov 15, 2022

Method for constructing natural gas liquefaction plant

Inventors: Kenichi Kobayashi (Yokohama, JP); Takeshi Kaji (Yokohama, JP); Makoto Yamagata (Yokohama, JP)
Assignee: Chiyoda Corporation
F25J1/0257F25J1/0022F25J1/0259
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Quick Facts
Patent No.
US 11,499,776
App. No.
16/603,773
Granted
Nov 15, 2022
Kind
B2
Abstract

Provided is a method of constructing a natural gas liquefaction plant, which can shorten a construction time period by minimizing effect of a lead time for the refrigerant compressor thereon, the method including: transporting a refrigerant compression module body 175 to an installation area 85 , wherein the refrigerant compression module body is provided with a frame 120 configured to allow refrigerant compressor 150 for compressing a refrigerant for cooling natural gas to be mounted therein; installing the refrigerant compression module body 175 to the installation area 85 ; and mounting the refrigerant compressor 150 into a mounting space 130 predefined in the frame 120 of the installed refrigerant compression module body.

Claims (16)

1. A method for constructing a natural gas liquefaction plant including a modularized facility, the method comprising:

transporting a refrigerant compression module body to an installation area, wherein the refrigerant compression module body is provided with a frame configured to allow a refrigerant compressor to be mounted therein, the refrigerant compressor compressing a refrigerant used to cool natural gas;

installing the refrigerant compression module body in the installation area; and

mounting the refrigerant compressor into a mounting space predefined in the frame of the installed refrigerant compression module body,

wherein the installing of the refrigerant compression module body in the installation area is performed before the refrigerant compressor to be mounted in the refrigerant compression module body has been mounted in the refrigerant compression module body.

2. The method according to claim 1 , wherein one or more air-cooled heat exchangers are disposed at a top of the frame, and

wherein at least a part of the mounting space is located below the one or more air-cooled heat exchangers.

3. The method according to claim 1 , wherein the refrigerant compressor is secured on a floor at a lowest part of the frame.

4. The method according to claim 1 , wherein the refrigerant compressor comprises a refrigerant inlet pipe and a refrigerant outlet pipe,

wherein the refrigerant compression module body comprises two refrigerant pipes which correspond to the refrigerant inlet pipe and the refrigerant outlet pipe, respectively, and

wherein, in the step of mounting the refrigerant compressor, the refrigerant inlet pipe and the refrigerant outlet pipe are connected to their corresponding refrigerant pipes via joint pipes.

5. The method according to claim 4 , wherein both the refrigerant inlet pipe and the refrigerant outlet pipe are provided so as to protrude upward from a body of the refrigerant compressor.

6. The method according to claim 1 ,

wherein the refrigerant compressor is driven by a gas turbine, and

wherein the method further comprises arranging an exhaust gas pipe outside the frame, the exhaust gas pipe allowing exhaust gas to be discharged outside from the gas turbine.

7. The method according to claim 6 , wherein an intake port of the gas turbine is provided such that, when the refrigerant compressor is mounted in the mounting space, the intake port extends out of the frame.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 8, 2019
From: KOBAYASHI, KENICHI; KAJI, TAKESHI; YAMAGATA, MAKOTO
To: CHIYODA CORPORATION
Reel/Frame 050657/0326 →
Priority Claims (1)
JP JP2017-087195 · Apr 26, 2017 · national
Continuity (1)
Related Publication 20200116426A1 · Apr 16, 2020