IP Library Patent Application 15479967
Patent Application
App. No. 15/479,967

Machine train for producing nitric acid

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Quick Facts
Patent No.
US None
App. No.
15/479,967
Abstract

A machine train for producing nitric acid includes: a steam turbine having a steam turbine rotor rotating at a first rotational speed; a first compressor having a first compressor rotor rotating at a second rotational speed; a second compressor having a second compressor rotor rotating at a third rotational speed; and an expander having an expander rotor rotating at a fourth rotational speed. The steam turbine drives the first compressor. The rotor of the first compressor drives the second compressor. The expander drives the second compressor. The second compressor is configured and efficiency optimized with respect to its third rotational speed such that during operation of the machine train the first rotational speed of the steam turbine, the second rotational speed of the first compressor, the third rotational speed of the second compressor and the fourth rotational speed of the expander are equal,

Claims (11)

1 . A machine train ( 102 ) for producing nitric acid, comprising:

a steam turbine ( 10 ) having a steam turbine rotor ( 11 ) configured to rotate at a first rotational speed (n 10 );

a first compressor ( 20 ) having a first compressor rotor ( 21 ) configured to rotate at a second rotational speed (n 20 );

a second compressor ( 30 ) having a second compressor rotor ( 31 ) configured to rotate at a third rotational speed (n 30 ); and

an expander ( 40 ) having an expander rotor ( 41 ) configured to rotate at a fourth rotational speed (n 40 ),

wherein the steam turbine ( 10 ) is configured to drive the first compressor ( 20 ), and the rotor ( 11 ) of the steam turbine ( 10 ) is operationally connected to the rotor ( 21 ) of the first compressor ( 20 ) via a first coupling (K 1 ),

wherein the rotor ( 21 ) of the first compressor ( 20 ) is operationally connected to the rotor ( 31 ) of the second compressor ( 30 ) via a second coupling (K 2 ) and drives the second compressor ( 30 ).

Therein the expander ( 40 ) is configured to drive the second compressor ( 30 ) and the rotor ( 41 ) of the expander ( 40 ) is operationally connected to the rotor ( 30 ) of the second compressor via a third coupling (K 3 ), and

wherein the second compressor ( 30 ) is configured and efficiency optimized with respect to its third rotational speed (n 30 ) such that during operation of the machine train ( 102 ) the first rotational speed (n 10 ) of the steam turbine ( 10 ), the second rotational speed (n 20 ) of the first compressor ( 20 ), the third rotational speed (n 30 ) of the second compressor ( 30 ) and the fourth rotational speed (n 40 ) of the expander ( 40 ) are equal.

2 . The machine train according to claim 1 , wherein the first compressor ( 20 ) is a radial compressor.

3 . The machine train according to claim 1 , wherein the second compressor ( 30 ) is an axial compressor.

Assignments (2)
CHANGE OF NAME Recorded Aug 14, 2018
From: MAN DIESEL & TURBO SE
To: MAN ENERGY SOLUTIONS SE
Reel/Frame 046818/0806 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 25, 2017
From: ZIEGLER, KAI; UBBEN, STEFAN; ERNST, MARCO; HOERMEYER, KLAUS; EMMRICH, ROLAND
To: MAN DIESEL & TURBO SE
Reel/Frame 043086/0383 →