IP Library Granted Patent US 10,704,567
Granted Patent B2
US 10,704,567 · App. 15/907,326 · Granted Jul 7, 2020

Compressor module for compressing gas and compressor equipped therewith

Inventors: Wim Meeusen (Wilrijk, BE); Thomas De Bontridder (Wilrijk, BE)
Assignee: ATLAS COPCO AIRPOWER, NAAMLOZE VENNOOTSCHAP
F04D29/5833F04B39/06F04B53/08F04C29/04F04D29/063F04D29/5806H02K5/20H02K7/116H02K7/14H02K9/19F04B35/01
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Quick Facts
Patent No.
US 10,704,567
App. No.
15/907,326
Granted
Jul 7, 2020
Kind
B2
Abstract

A compressor module for compressing gas composed of a compressor element with a housing with integrated compressor element cooler; a motor and a gas cooler for cooling the compressed gas originating from the compressor element. The gas cooler includes a primary section through which the gas to be cooled can be guided and a secondary section that is in heat-exchanging contact with the primary section. A first cooling circuit can guide a coolant through the secondary section of the gas cooler or through a section thereof and a second cooling circuit can guide a coolant through the compressor element cooler. The first cooling circuit and the second cooling circuit are joined together in series or in parallel and are guided to a common output.

Claims (51)

1. A compressor module for compressing gas comprising:

a compressor element with a housing with an integrated compressor element cooler;

a motor; and

a gas cooler for cooling the compressed gas originating from the compressor element,

wherein the gas cooler comprises a primary section through which the gas to be cooled is able be guided and a secondary section that is in heat-exchanging contact with the primary section; and

wherein a first cooling circuit is configured to guide a coolant through the secondary section of the gas cooler or through a section thereof and a second cooling circuit is configured to guide the coolant through the compressor element cooler;

wherein the first cooling circuit and the second cooling circuit are joined together in series or in parallel and are guided to a common output; and

wherein the compressor module comprises a closed oil circuit with an oil sump and an oil pump in order to drive the oil out of the oil sump through or along hot parts of the compressor module via internal channels, and

wherein the gas cooler extends through at least a part of the oil sump of the compressor module.

2. The compressor module according to claim 1 , wherein the compressor module comprises a gearbox with a housing between the compressor element and the motor.

3. The compressor module according to claim 1 , wherein the motor comprises a housing with an integrated motor cooler.

4. The compressor module according to claim 3 , wherein the second cooling circuit is able guide coolant through the motor cooler in series or in parallel to the compressor element.

5. The compressor module according to claim 1 , wherein the oil in the oil circuit is in heat-exchanging contact with the first cooling circuit and/or with the second cooling circuit via aforementioned internal channels and/or the oil sump.

6. The compressor module according to claim 5 , wherein the oil pump is driven by the motor that drives the compressor element or by a separate motor.

7. The compressor module according to claim 5 , wherein the oil in the oil circuit is in heat-exchanging contact with the second cooling circuit via internal channels of the motor and/or of the compressor element that are in heat-exchanging contact with a motor cooler and/or with the compressor element cooler.

8. The compressor module according to claim 5 , wherein the oil in the oil circuit is in heat-exchanging contact with the first cooling circuit via the secondary section of the gas cooler or a section thereof that is in heat-exchanging contact with the oil in the oil sump.

9. The compressor module according to claim 1 , wherein the primary section of the gas cooler is formed by a tube, whereby the secondary section of the gas cooler is integrated in or around this tube.

10. The compressor module according to claim 1 , wherein the second cooling circuit is connected in parallel to the first cooling circuit or to a section of this first cooling circuit, whereby the second cooling circuit entirely or partially bypasses the first cooling circuit.

11. The compressor module according to claim 10 , wherein the first cooling circuit is provided with an input for the supply of the coolant and that the second cooling circuit is tapped off from the first cooling circuit at this input or at a point upstream from the secondary section of the gas cooler between this input and the secondary section of the gas cooler.

12. The compressor module according to claim 11 , wherein the second cooling circuit connects to the first cooling circuit at an intermediary point of the secondary section of the gas cooler between the input and output of this secondary section.

13. The compressor module according to claim 12 , wherein the second cooling circuit is connected to the first cooling circuit to bypass the secondary section in the sump section of the gas cooler.

14. The compressor module according to claim 12 , wherein a control valve and a closable connection for coolant are provided at the location of the connection of the second cooling circuit at the aforementioned intermediary point of the secondary section of the gas cooler.

15. The compressor module according to claim 1 , wherein the first cooling circuit and the second cooling circuit are connected together in series with an input and an output to guide the coolant successively through both cooling circuits.

16. The compressor module according to claim 1 , wherein the pipes of the second cooling circuit and the oil circuit are integrated in the housing of the compressor module.

17. The compressor module according to claim 1 , wherein pipes of the first cooling circuit are integrated in the housing of the compressor module.

18. The compressor module according claim 1 , wherein at the output, the coolant reaches a temperature higher than 65° C.

19. The compressor comprising at least one compressor module according to claim 1 , wherein it is affixed in a closed casing without forced ventilation with gas from the outside.

20. The compressor according to claim 19 , wherein the casing only has an inlet and an outlet for gas that is compressed by the compressor element and a supply and outlet for the coolant that is driven through the cooling circuits.

21. The compressor according to claim 19 , wherein it is an oil-free screw compressor.

22. The compressor according to claim 19 , wherein it comprises at least two of the aforementioned compressor modules, respectively at least a low pressure compressor module, and at least a high pressure compressor module whose input of the compressor element connects to the gas outlet of the low pressure compressor module, whereby the low pressure compressor module is a compressor module of which the second cooling circuit connects to the first cooling circuit at an intermediary point of the secondary section of the gas cooler between the input and output of this secondary section, and whereby the second cooling circuit of the high pressure compressor module connects to the first cooling circuit of the low pressure compressor module at the location of the aforementioned intermediary point.

23. The compressor module according claim 1 , wherein at the output, the coolant reaches a temperature higher than 75° C.

24. The compressor module according claim 1 , wherein at the output, the coolant reaches a temperature higher than 85° C.

25. A compressor module for compressing gas comprising:

a compressor element with a housing with an integrated compressor element cooler:

a motor; and

a gas cooler for cooling the compressed gas originating from the compressor element,

wherein the gas cooler comprises a primary section through which the gas to be cooled is able be guided and a secondary section that is in heat-exchanging contact with the primary section,

wherein a first cooling circuit is configured to guide a coolant through the secondary section of the gas cooler or through a section thereof and a second cooling circuit is configured to guide the coolant through the compressor element cooler,

wherein the first cooling circuit and the second cooling circuit are joined together in series or in parallel and are guided to a common output, and

wherein the second cooling circuit is able guide coolant through a cooler on the motor drive in series or in parallel to the compressor element.

26. A compressor module for compressing gas comprising:

a compressor element with a housing with an integrated compressor element cooler:

a motor; and

a gas cooler for cooling the compressed gas originating from the compressor element,

wherein the gas cooler comprises a primary section through which the gas to be cooled is able be guided and a secondary section that is in heat-exchanging contact with the primary section,

wherein a first cooling circuit is configured to guide a coolant through the secondary section of the gas cooler or through a section thereof and a second cooling circuit is configured to guide the coolant through the compressor element cooler,

wherein the first cooling circuit and the second cooling circuit are joined together in series or in parallel and are guided to a common output,

wherein the compressor module comprises a closed oil circuit with an oil sump and an oil pump in order to drive the oil out of the oil sump through or along hot parts of the compressor module via internal channels, wherein the oil in the oil circuit is in heat-exchanging contact with the first cooling circuit and/or with the second cooling circuit via aforementioned internal channels and/or the oil sump,

wherein the oil in the oil circuit is in heat-exchanging contact with the first cooling circuit via the secondary section of the gas cooler or a section thereof that is in heat-exchanging contact with the oil in the oil sump, and

wherein the gas cooler extends through the oil sump by at least a sump section, whereby the primary section and/or the secondary section of the gas cooler in this sump section of the gas cooler is in heat-exchanging contact with the oil in the oil sump.

27. The compressor module according to claim 26 , wherein the gas cooler extends outside the oil sump by at least an outer section, whereby the outer section of the primary section of this outer section is provided with a gas inlet to be able to guide the gas to be cooled successively through the outer section and the sump section.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2018
From: MEEUSEN, WIM; DE BONTRIDDER, THOMAS
To: ATLAS COPCO AIRPOWER, NAAMLOZE VENNOOTSCHAP
Reel/Frame 045923/0612 →
Priority Claims (1)
BE 2017/5140 · Mar 7, 2017 · national
Continuity (2)
Continuation PCTIB2017052857 · May 15, 2017
Related Publication 20180258952A1 · Sep 13, 2018
Cited By (1)
US 12,671,301