IP Library Granted Patent US 7,753,665
Granted Patent B2
US 7,753,665 · App. 11/801,189 · Granted Jul 13, 2010

Screw compressor for working pressures above 80 bar

Assignee: Grasso GmbH Refrigeration Technology
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Quick Facts
Patent No.
US 7,753,665
App. No.
11/801,189
Granted
Jul 13, 2010
Kind
B2
Abstract

On screw compressors for extremely high discharge pressures, e.g. for application in refrigeration systems operating with CO 2 in a transcritical process, featuring two rotors, a male rotor and a female rotor having a ratio of male-to-female rotor lobes of 4:6, 5:6 or 5:7, with the male rotor having a drive-shaft end, and both rotors are enclosed in a housing, the wrap angle of the profile section of the male rotor is less than 1.5 the lobe-pitch angle, and the working cycle from the beginning of suction till the end of discharge is less than 600° of the angle of rotation of the male rotor, and the length-to-diameter ratio of the profile section of the male rotor lies between 0.3 and 0.5.

Claims (36)

1. Screw compressor for extremely high discharge pressures, for application in refrigeration systems operating on CO 2 in a transcritical process, featuring two rotors forming a rotor pair, a male rotor and a female rotor having a ratio of male-to-female rotor lobes of 4:6, 5:6 or 5:7, with the male rotor having a driving-shaft, and both rotors being enclosed in a housing featuring an inlet port for passing of the working fluid into cavities of the rotor pair and an outlet port for discharge of the gas out of the cavities of the rotor pair due to rotation of the rotors, with profile sections of the rotors having shaft shoulders enclosed in radial bearings, and the resulting axial forces being supported by axial bearings, wherein the wrap angle of the profile section of the male rotor is less than 1.5 times the lobe-pitch angle of the male rotor, and the working cycle from the beginning of suction till the end of discharge is less than 600° of the angle of rotation of the male rotor.

2. Screw compressor according to claim 1 , wherein a transfer phase has approximately double the magnitude of the lobe-pitch angle of the male-rotor profile.

3. Screw compressor according to claim 1 with an economizer connection

arranged between the inlet port and outlet port in the compressor housing, wherein the economizer connection is so arranged on the housing enclosing the rotors that there is one flow connection to each of the cavities of the male-rotor-and female-rotor profile sections also during the transfer phase.

4. Screw compressor according to claim 1 wherein the economizer connection is arranged on the housing enclosing the rotors in a manner that the flow connection exists exclusively during the transfer phase.

5. Screw compressor according to claim 1 wherein a length-to-diameter ratio of the profile section of the male rotor lies between 0.3 and 0.5.

6. Screw compressor according to claim 1 wherein the inlet port is designed so that the connection to the lobes of the rotor pair closes during the transfer phase.

7. A screw compressor for extremely high discharge pressures comprising

a male rotor;

a female rotor, wherein the male rotor and the female rotor form a rotor pair, wherein the male rotor and the female rotor have a ratio of male-to-female rotor lobes of 4:6, 5:6 or 5:7;

a driving-shaft formed at the male rotor;

a housing enclosing both rotors, wherein the housing features an inlet port for passing of working fluid into cavities of the rotor pair and an outlet port for discharge of gas out of the cavities of the rotor pair due to rotation of the rotors;

profile sections formed at the rotors having shaft shoulders enclosed in radial bearings, and resulting axial forces being supported by axial bearings, wherein

a length-to-diameter ratio of the profile section of the male rotor lies between 0.3 and 0.5, and wherein a wrap angle of the profile section of the male rotor is less than 1.5 times a lobe-pitch angle of the male rotor, and wherein a working cycle from a beginning of suction till an end of discharge is less than 600° of an angle of rotation of the male rotor.

8. The screw compressor according to claim 7 further comprising

an economizer connection arranged between the inlet port and outlet port in the compressor housing,

wherein the economizer connection is so arranged on the housing enclosing the rotors that there is one flow connection to each of the cavities of the male-rotor-and female-rotor profile sections also during a transfer phase.

9. The screw compressor according to claim 7 , further comprising

an economizer connection is arranged on the housing enclosing the rotors in a manner that a flow connection exists exclusively during a transfer phase.

10. The screw compressor according to claim 7 wherein the inlet port is constructed so that a connection to the lobes of the rotor pair closes during a transfer phase.

11. The screw compressor according to claim 7 , wherein the screw compressor is applied in refrigeration systems operating on CO 2 in a transcritical process.

12. A screw compressor for extremely high discharge pressures comprising

a male rotor;

a female rotor, wherein the male rotor and the female rotor form a rotor pair, wherein the male rotor and the female rotor have a ratio of male-to-female rotor lobes of 4:6, 5:6 or 5:7;

a driving-shaft formed at the male rotor;

a housing enclosing both rotors, wherein the housing features an inlet port for passing of working fluid into cavities of the rotor pair and an outlet port for discharge of gas out of the cavities of the rotor pair due to rotation of the rotors;

profile sections formed at the rotors having shaft shoulders enclosed in radial bearings, and resulting axial forces being supported by axial bearings,

wherein a transfer phase has approximately double a magnitude of a lobe-pitch angle of the male-rotor profile.

13. The screw compressor according to claim 12 wherein a wrap angle of the profile section of the male rotor is less than 1.5 times the lobe-pitch angle of the male rotor, and wherein a working cycle from a beginning of suction till an end of discharge is less than 600° of an angle of rotation of the male rotor.

14. The screw compressor according to claim 12 further comprising

an economizer connection arranged between the inlet port and outlet port in the compressor housing,

wherein the economizer connection is so arranged on the housing enclosing the rotors that there is one flow connection to each of the cavities of the male-rotor-and female-rotor profile sections also during a transfer phase.

15. The screw compressor according to claim 12 , further comprising an economizer connection is arranged on the housing enclosing the rotors in a manner that a flow connection exists exclusively during a transfer phase.

16. The screw compressor according to claim 12 wherein the inlet port is constructed so that a connection to the lobes of the rotor pair closes during a transfer phase.

17. The screw compressor according to claim 12 ,

wherein the screw compressor is applied in refrigeration systems operating on CO 2 in a transcritical process.

Assignments (3)
CHANGE OF NAME Recorded Jun 25, 2012
From: GRASSO GMBH REFRIGERATION TECHNOLOGY
To: GEA REFRIGERATION GERMANY GMBH
Reel/Frame 028735/0298 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2009
From: MOSEMANN, DIETER
To: GRASSO GMBH REFRIGERATION TECHNOLOGY
Reel/Frame 023344/0149 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2007
From: ZAYTSEV, DR. DMYTRO
To: MOSEMANN, DR. DIETER
Reel/Frame 019461/0442 →
Priority Claims (1)
DE 10 2006 035 782 · Aug 1, 2006 · national
Continuity (1)
Related Publication 20080031762A1 · Feb 7, 2008