IP Library Granted Patent US 9,284,856
Granted Patent B2
US 9,284,856 · App. 13/496,904 · Granted Mar 15, 2016

Gas turbine combined cycle power plant with distillation unit to distill a light oil fraction

Inventors: Masaki Iijima (Tokyo, JP); Toyoaki Komori (Tokyo, JP); Ryotaro Kanai (Tokyo, JP); Takeo Araki (Yokohama, JP)
Assignee: MITSUBISHI HITACHI POWER SYSTEMS, LTD.
F01K23/10B01D3/10C10G7/06F01K7/16F01K23/064Y02E20/16
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Quick Facts
Patent No.
US 9,284,856
App. No.
13/496,904
Granted
Mar 15, 2016
Kind
B2
Abstract

The present invention is a gas turbine combined cycle power plant which generates electricity by fueling a gas turbine with crude oil or heavy oil and which is provided with a vacuum distillation unit which distills and extracts a light oil fraction from crude oil or heavy oil by keeping the interior thereof in an environment which lowers a boiling point of crude oil or heavy oil, and the vacuum distillation unit is provided with heaters which heat distillation materials by using low pressure steam and medium pressure steam generated in a gas turbine combined cycle.

Claims (52)

1. A gas turbine combined cycle power plant, comprising:

a gas turbine which generates electricity by being fueled with crude oil or heavy oil;

a multiple-stage exhaust heat recovery portion, which generates electricity by using exhaust gas of the gas turbine as at least a partial heat source of the multiple-stage exhaust heat recovery portion; and

a distillation unit,

wherein the multiple-stage exhaust heat recovery portion comprises a low pressure steam generator, a low pressure steam turbine, a medium pressure steam generator, and a medium pressure steam turbine,

wherein the distillation unit distills a light oil fraction from crude oil or heavy oil, with the interior of the distillation unit kept in an environment which lowers a boiling point of crude oil or heavy oil,

wherein the distillation unit is provided with heaters configured to heat crude oil or heavy oil, wherein the heaters are provided with a low pressure steam extraction pipe through which low pressure steam generated in the multiple-stage exhaust heat recovery portion flows and a medium pressure steam extraction pipe through which medium pressure steam generated in the multiple-stage exhaust heat recovery portion flows,

wherein the low pressure steam extraction pipe is branched from and connected to a low pressure steam pipe which supplies the low pressure steam from the low pressure steam generator to the low pressure steam turbine, and

wherein the medium pressure steam extraction pipe is branched from and connected to a medium pressure steam pipe which supplies the medium pressure steam from the medium pressure steam generator to the medium pressure steam turbine.

2. The gas turbine combined cycle power plant according to claim 1 ,

wherein the heaters comprise heat exchangers.

3. The gas turbine combined cycle power plant according to claim 1 ,

wherein the heaters into which the low pressure steam and the medium pressure steam are introduced are installed at different sites of the distillation unit.

4. The gas turbine combined cycle power plant according to claim 1 ,

wherein at least either one of the heaters into which the low pressure steam is introduced or another of the heaters into which the medium pressure steam is introduced is installed halfway along a supply channel which supplies crude oil or heavy oil to the distillation unit, thereby heating crude oil or heavy oil.

5. The gas turbine combined cycle power plant according to claim 1 ,

wherein one of the heaters into which the medium pressure steam is introduced is installed at a circulation channel which heats intermediate fractions extracted by an intermediate stage of the distillation unit and returns them inside the distillation unit.

6. The gas turbine combined cycle power plant according to claim 1 ,

wherein one of the heaters into which the medium pressure steam is introduced is used to heat an intermediate fraction extraction pipe and another of the heaters into which the low pressure steam is introduced is used to heat a fuel supply line, and

wherein the intermediate fraction extraction pipe is installed below the fuel supply line.

7. A gas turbine combined cycle power plant, comprising:

a gas turbine which generates electricity by being fueled with crude oil or heavy oil;

a multiple-stage exhaust heat recovery portion, which generates electricity by using exhaust gas of the gas turbine as at least a partial heat source of the multiple-stage exhaust heat recovery portion; and

a distillation unit,

wherein the multiple-stage exhaust heat recovery portion comprises a low pressure steam generator, a low pressure steam turbine, a medium pressure steam generator, and a medium pressure steam turbine,

wherein the distillation unit distills a light oil fraction from crude oil or heavy oil, with the interior of the distillation unit kept in an environment which lowers a boiling point of crude oil or heavy oil,

wherein the distillation unit is provided with heaters configured to heat crude oil or heavy oil, wherein the heaters are provided with a low pressure steam extraction pipe through which low pressure steam generated in the multiple-stage exhaust heat recovery portion flows and a medium pressure steam extraction pipe through which medium pressure steam generated in the multiple-stage exhaust heat recovery portion flows,

wherein the low pressure steam extraction pipe is connected to the low pressure steam turbine, and

wherein the medium pressure steam extraction pipe is connected to the medium pressure steam turbine.

8. The gas turbine combined cycle power plant according to claim 7 ,

wherein the heaters comprise heat exchangers.

9. The gas turbine combined cycle power plant according to claim 7 ,

wherein the heaters into which the low pressure steam and the medium pressure steam are introduced are installed at different sites of the distillation unit.

10. The gas turbine combined cycle power plant according to claim 7 ,

wherein at least either one of the heaters into which the low pressure steam is introduced or another of the heaters into which the medium pressure steam is introduced is installed halfway along a supply channel which supplies crude oil or heavy oil to the distillation unit, thereby heating crude oil or heavy oil.

11. The gas turbine combined cycle power plant according to claim 7 ,

wherein one of the heaters into which the medium pressure steam is introduced is installed at a circulation channel which heats intermediate fractions extracted by an intermediate stage of the distillation unit and returns them inside the distillation unit.

12. The gas turbine combined cycle power plant according to claim 7 ,

wherein one of the heaters into which the medium pressure steam is introduced is used to heat an intermediate fraction extraction pipe and another of the heaters into which the low pressure steam is introduced is used to heat a fuel supply line, and

wherein the intermediate fraction extraction pipe is installed below the fuel supply line.

13. A method for generating electricity by a gas turbine combined cycle in which a gas turbine is fueled with crude oil or heavy oil and exhaust gas of the gas turbine is also used at least as a partial heat source of a multiple-stage exhaust heat recovery portion, wherein the multiple-stage exhaust heat recovery portion comprises a low pressure steam generator, a low pressure steam turbine, a medium pressure steam generator, and a medium pressure steam turbine, the method comprising the steps of:

extracting low pressure steam by a low pressure steam extraction pipe which is branched from and connected to a low pressure steam pipe which supplies the low pressure steam from the low pressure steam generator to the low pressure steam turbine;

extracting medium pressure steam by a medium pressure steam extraction pipe which is branched from and connected to a medium pressure steam pipe which supplies the medium pressure steam from the medium pressure steam generator to the medium pressure steam turbine; and

heating the crude oil or the heavy oil by the low pressure steam and the medium pressure steam generated in the multiple-stage exhaust heat recovery portion when a light oil fraction is distilled from crude oil or heavy oil in an environment which lowers a boiling point of crude oil or heavy oil.

14. The method for generating electricity by the gas turbine combined cycle according to claim 13 , wherein

the step of the heating comprises exchanging heat between the low pressure steam and the crude oil or the heavy oil and exchanging heat between the medium pressure steam and the crude oil or the heavy oil.

15. A method for generating electricity by a gas turbine combined cycle in which a gas turbine is fueled with crude oil or heavy oil and exhaust gas of the gas turbine is also used at least as a partial heat source of a multiple-stage exhaust heat recovery portion, wherein the multiple-stage exhaust heat recovery portion comprises a low pressure steam generator, a low pressure steam turbine, a medium pressure steam generator, and a medium pressure steam turbine the method comprising the steps of:

extracting low pressure steam by a low pressure steam extraction pipe which is connected to the low pressure steam turbine;

extracting medium pressure steam by a medium pressure steam extraction pipe which is connected to the medium pressure steam turbine; and

heating the crude oil or the heavy oil by the low pressure steam and the medium pressure steam generated in the multiple-stage exhaust heat recovery portion when a light oil fraction is distilled from crude oil or heavy oil in an environment which lowers a boiling point of crude oil or heavy oil.

16. The method for generating electricity by gas turbine combined cycle according to claim 15 , wherein

the step of the heating comprises exchanging heat between the low pressure steam and the crude oil or the heavy oil and exchanging heat between the medium pressure steam and the crude oil or the heavy oil.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2015
From: MITSUBISHI HEAVY INDUSTRIES, LTD.
To: MITSUBISHI HITACHI POWER SYSTEMS, LTD.
Reel/Frame 034858/0078 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2012
From: IIJIMA, MASAKI; KOMORI, TOYOAKI; KANAI, RYOTARO; ARAKI, TAKEO
To: MITSUBISHI HEAVY INDUSTRIES, LTD.
Reel/Frame 027883/0892 →
Continuity (1)
Related Publication 20120175889A1 · Jul 12, 2012