IP Library Granted Patent US 12,624,702
Granted Patent B2
US 12,624,702 · App. 18/694,467 · Granted May 12, 2026

Compressor train of chemical plants and method of operating compressor train of chemical plants

Inventors: Satoru Yoshida (Hiroshima, JP); Daisuke Kiuchi (Hiroshima, JP); Yuta Miwada (Hiroshima, JP); Tomoaki Nogami (Hiroshima, JP)
Assignee: MITSUBISHI HEAVY INDUSTRIES COMPRESSOR CORPORATION
F04D25/04F04D25/06F04D27/004
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Quick Facts
Patent No.
US 12,624,702
App. No.
18/694,467
Granted
May 12, 2026
Kind
B2
Abstract

A compressor train of chemical plants includes: a compression unit which is driven to compress a process gas of the chemical plants; a steam turbine which is rotated by steam generated in accordance with the processing of the process gas of the chemical plants to drive the compression unit; a motor which is able to assist the rotation of the steam turbine; and a frequency conversion unit which is connected to an electric power system and controls the rotation of the motor.

Claims (30)

1 . A compressor train of a chemical plant comprising:

a compression unit which is driven to compress a process gas of the chemical plant;

a steam turbine which is rotated by steam generated in accordance with processing of the process gas of the chemical plant to drive the compression unit;

a motor which is able to assist a rotation of the steam turbine;

a frequency conversion unit which is connected to an electric power system and controls a rotation of the motor;

a shaft seal device which seals a gap between a stator of the steam turbine and a rotor of the steam turbine;

a vacuum pump which is driven to be able to reduce pressure inside the steam turbine; and

a control device which controls an operating status of the steam turbine, wherein

the control device includes a vacuum pump driving unit which reduces the pressure inside the steam turbine by driving the vacuum pump while an inflow of the steam generated in accordance with the processing of the process gas into the steam turbine is stopped, a motor starting section which starts to drive the steam turbine by starting to drive the motor while the pressure inside the steam turbine is reduced and the inflow of the steam into the steam turbine is stopped, a motor driving section which continues to drive the motor, and a steam switching unit which starts the inflow of the steam into the steam turbine when an amount of the steam generated in accordance with a driving of the motor becomes a specified amount or more while the motor continues to drive.

2 . The compressor train according to claim 1 , wherein

the motor also serves as a generator that is able to generate regenerative power in accordance with the rotation of the steam turbine when the amount of the steam generated exceeds a predetermined threshold value, and

the frequency conversion unit is able to transmit the regenerative power to the electric power system.

3 . The compressor train according to claim 1 , wherein

the control device further includes a motor decelerating section which decelerates the rotation of the motor, and

the steam switching unit stops the inflow of the steam into the steam turbine when the rotation of the motor is decelerated and the amount of the steam becomes smaller than the specified amount.

4 . The compressor train according to claim 1 , further comprising:

a steam introduction line which is able to guide the steam generated in accordance with the processing of the process gas of the chemical plant to the steam turbine;

a steam discharge line which is able to guide the steam discharged from the steam turbine to a condenser;

a connection line which is able to guide the steam flowing through the steam introduction line to the condenser;

a governing valve which is disposed at a position closer to the steam turbine than a connection point between the connection line and the steam introduction line in the steam introduction line and is able to adjust the amount of the steam flowing through the steam introduction line; and

a dump valve which is disposed in the connection line and is able to adjust the amount of the steam flowing through the connection line, wherein

the steam switching unit starts or stops the inflow of the steam into the steam turbine by switching the governing valve and the dump valve.

5 . A method of operating a compressor train of a chemical plant comprising: a compression unit which is driven to compress a process gas of the chemical plant; a steam turbine which is rotated by steam generated in accordance with processing of the process gas of the chemical plant to drive the compression unit; a motor which is able to assist a rotation of the steam turbine; a frequency conversion unit which is connected to an electric power system and controls a rotation of the motor; a shaft seal device which seals a gap between a stator of the steam turbine and a rotor of the steam turbine; and a vacuum pump which is driven to be able to reduce pressure inside the steam turbine, the method comprising:

an evacuation step of reducing the pressure inside the steam turbine by driving the vacuum pump while an inflow of the steam generated in accordance with the processing of the process gas into the steam turbine is stopped;

a motor starting step of starting to drive the steam turbine by starting to drive the motor while the inflow of the steam into the steam turbine is stopped after the evacuation step is completed;

a motor driving step of continuing to drive the motor after the motor starting step is completed; and

a first steam switching step of starting the inflow of the steam into the steam turbine when an amount of the steam generated in accordance with the driving of the motor becomes a specified amount or more while the motor continues to drive.

6 . The method according to claim 5 , further comprising:

a motor decelerating step of decelerating the rotation of the motor; and

a second steam switching step of stopping the inflow of the steam into the steam turbine when the rotation of the motor is decelerated and the steam amount becomes smaller than the specified amount.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 14, 2024
From: YOSHIDA, SATORU; KIUCHI, DAISUKE; MIWADA, YUTA; NOGAMI, TOMOAKI
To: MITSUBISHI HEAVY INDUSTRIES COMPRESSOR CORPORATION
Reel/Frame 067405/0492 →
Priority Claims (1)
JP 2021-155311 · Sep 24, 2021 · national
Continuity (1)
Related Publication 20250129789A1 · Apr 24, 2025
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