IP Library Granted Patent US 11,143,107
Granted Patent B2
US 11,143,107 · App. 16/486,698 · Granted Oct 12, 2021

Fuel gas heater, support structure for fuel gas heater, and method for cleaning fuel gas heater

Inventors: Taichi Nakamura (Kanagawa, JP); Katsuhiro Hotta (Kanagawa, JP); Masanori Tagashira (Kanagawa, JP); Kenji Kirihara (Kanagawa, JP)
Assignee: MITSUBISHI POWER, LTD.
F02C7/224F02C7/222F02C7/32F02C3/22F05D2250/51F05D2250/52F05D2250/75
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Quick Facts
Patent No.
US 11,143,107
App. No.
16/486,698
Granted
Oct 12, 2021
Kind
B2
Abstract

A fuel gas heater includes a container; a gas inflow chamber defined in one end of the container and having a gas inlet; a gas outflow chamber defined in the one end and having a gas outlet; U-shaped heat transfer pipes disposed inside the container, the pipes each having one end communicating with the gas inflow chamber and another end communicating with the gas outflow chamber; a heating medium supply port; a heating medium discharge port; a gas inflow opening disposed to face positions at which the pipes communicate with the gas inflow chamber; a gas inflow lid that enables the gas inflow opening to be opened and closed; a gas outflow opening disposed to face positions at which the pipes communicate with the gas outflow chamber; and a gas outflow lid that enables the gas outflow opening to be opened and closed.

Claims (44)

1. A fuel gas heater, comprising:

a container having a hollow shape extending in a horizontal direction;

a gas inflow chamber defined in one end portion in a longitudinal direction of the container and having a gas inlet for fuel gas;

a gas outflow chamber defined in the one end portion in the longitudinal direction of the container and having a gas outlet for the fuel gas;

a plurality of U-shaped heat transfer pipes disposed in an inside of the container, the heat transfer pipes each having one end portion communicating with the gas inflow chamber and another end portion communicating with the gas outflow chamber;

a heating medium supply port through which a heating medium is supplied to the inside of the container;

a heating medium discharge port through which the heating medium is discharged from the inside of the container;

a gas inflow chamber maintenance opening disposed to face positions at which the heat transfer pipes communicate with the gas inflow chamber;

a gas inflow chamber open/close lid that enables the gas inflow chamber maintenance opening to be opened and closed;

a gas outflow chamber maintenance opening disposed to face positions at which the heat transfer pipes communicate with the gas outflow chamber; and

a gas outflow chamber open/close lid that enables the gas outflow chamber maintenance opening to be opened and closed.

2. The fuel gas heater according to claim 1 , wherein

the inside of the container is divided by a bulkhead extending along a vertical direction into a first space and a second space,

the gas inflow chamber is disposed adjacent to the bulkhead on an upper side in the first space,

the gas outflow chamber is disposed on a lower side in the first space and on the one end portion side of the container,

the heat transfer pipes are disposed in the second space, and

the end portions of the heat transfer pipes pass through the bulkhead.

3. The fuel gas heater according to claim 2 , wherein the gas inlet and the gas outlet are disposed in juxtaposition to each other in the longitudinal direction of the container at an upper portion of the container.

4. The fuel gas heater according to claim 2 , wherein

the first space is partitioned by a partition wall that includes a vertical wall extending along the vertical direction and a horizontal wall extending along the horizontal direction to define the gas inflow chamber and the gas outflow chamber,

the gas outflow chamber maintenance opening is disposed at the one end portion in the longitudinal direction of the container, and

the gas inflow chamber maintenance opening is disposed in the vertical wall.

5. The fuel gas heater according to claim 4 , wherein the one end portions of the heat transfer pipes are exposed to an outside of the container through the gas inflow chamber maintenance opening and the gas outflow chamber maintenance opening, and the other end portions of the heat transfer pipes are exposed to the outside of the container through the gas outflow chamber maintenance opening.

6. The fuel gas heater according to claim 1 , wherein the container has a leak heating medium discharge port, disposed at a lower portion of the container, through which the heating medium that has leaked to the gas outflow chamber is discharged.

7. The fuel gas heater according to claim 6 , wherein a leak heating medium detection device is connected with the leak heating medium discharge port.

8. A support structure for a fuel gas heater, the support structure comprising:

a support pedestal supported by a plurality of support columns disposed on a floor surface, wherein

one fuel gas heater according to claim 3 is disposed on the floor surface and another fuel gas heater according to claim 3 is disposed on the support pedestal, and

the support columns are disposed alongside the gas inflow chamber or the gas outflow chamber.

9. A method for cleaning a fuel gas heater, the fuel gas heater comprising:

a container having a hollow shape extending in a horizontal direction;

a gas inflow chamber defined in one end portion in a longitudinal direction of the container and having a gas inlet for fuel gas;

a gas outflow chamber defined in the one end portion in the longitudinal direction of the container and having a gas outlet for the fuel gas;

a plurality of U-shaped heat transfer pipes disposed in an inside of the container, the heat transfer pipes each having one end portion communicating with the gas inflow chamber and another end portion communicating with the gas outflow chamber;

a heating medium supply port through which a heating medium is supplied to the inside of the container;

a heating medium discharge port through which the heating medium is discharged from the inside of the container;

a gas inflow chamber maintenance opening disposed to face positions at which the heat transfer pipes communicate with the gas inflow chamber;

a gas inflow chamber open/close lid that enables the gas inflow chamber maintenance opening to be opened and closed;

a gas outflow chamber maintenance opening disposed to face positions at which the heat transfer pipes communicate with the gas outflow chamber; and

a gas outflow chamber open/close lid that enables the gas outflow chamber maintenance opening to be opened and closed, the method comprising:

removing the gas inflow chamber open/close lid and the gas outflow chamber open/close lid;

inserting a cleaning nozzle in the gas inflow chamber through the gas outflow chamber maintenance opening and the gas inflow chamber maintenance opening, and

injecting a blast cleaning material from the cleaning nozzle into the one end portions of the heat transfer pipes.

10. The method for cleaning a fuel gas heater according to claim 9 , the method comprising a step of causing the blast cleaning material discharged from the other end portions of the heat transfer pipes to collide against a collision plate to recover the blast cleaning material in a recovery box.

Assignments (2)
CHANGE OF NAME Recorded Oct 27, 2020
From: MITSUBISHI HITACHI POWER SYSTEMS, LTD.
To: MITSUBISHI POWER, LTD.
Reel/Frame 054225/0958 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2019
From: NAKAMURA, TAICHI; HOTTA, KATSUHIRO; TAGASHIRA, MASANORI; KIRIHARA, KENJI
To: MITSUBISHI HITACHI POWER SYSTEMS, LTD.
Reel/Frame 050076/0906 →
Priority Claims (1)
JP JP2017-031022 · Feb 22, 2017 · national
Continuity (1)
Related Publication 20210285377A1 · Sep 16, 2021
Cited By (1)
US 12,460,871