Compressor assembly
12523209 ยท 2026-01-13
Assignee
Inventors
Cpc classification
F04B37/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B53/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B37/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B53/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A compressor assembly includes a compressor of the reciprocating piston type. The compressor includes a cylinder head bounding a cylinder head chamber. Each cylinder head chamber is connected via a condensate drain pipe to a condensate collection chamber so as to form a condensate connection. A first end of the condensate drain pipe is connected with the cylinder head and a second end of the condensate drain pipe is connected with the condensate collection chamber. The first end of the condensate drain pipe is at a highest level of the condensate drain pipe and all other parts of the condensate drain pipe are at lower levels so that transport of condensate through the condensate drain pipe takes place under the effect of gravity.
Claims
1. A compressor assembly comprising: a compressor of a reciprocating type including: a compressor housing; at least one cylinder; at least one piston reciprocally moveably arranged in the at least one cylinder and driveable by a crankshaft/piston-rod assembly; at least one cylinder head bounding a cylinder head chamber associated with the at least one cylinder; at least one discharge valve, wherein between the at least one cylinder and the cylinder head chamber associated therewith, a respective one of the at least one discharge valve is mounted which opens when an over-pressure prevails in the cylinder relative to a pressure prevailing in the cylinder head chamber associated therewith; and a compressed gas outlet emanating in a compressed gas pipe fluidly connected with the at least one cylinder head chamber; a condensate collection chamber connected with the compressed gas outlet so that in the condensate collection chamber a pressure prevails substantially equal to the pressure in the cylinder head chamber; and a condensate drain pipe which connects the at least one cylinder head chamber to the condensate collection chamber so as to form a condensate connection, wherein a first end of the condensate drain pipe is connected with the cylinder head and wherein a second end of the condensate drain pipe is connected with the condensate collection chamber, wherein the first end of the condensate drain pipe is at a highest level of the condensate drain pipe and all other parts of the condensate drain pipe are at lower levels so that transport of condensate through the condensate drain pipe takes place under an effect of gravity, and wherein the condensate connection between the cylinder head chamber and the condensate collection chamber including the condensate drain pipe is an open connection without any valves.
2. The compressor assembly according to claim 1, wherein the condensate collection chamber is bounded by an oil separator vessel.
3. The compressor assembly according to claim 2, wherein the first end of the condensate drain pipe is connected to a drain opening in the cylinder head.
4. The compressor assembly according to claim 1, wherein the condensate collection chamber is bounded by a dedicated condensate drainage pressure vessel.
5. The compressor assembly according to claim 4, wherein the first end of the condensate drain pipe is connected to a drain opening in the cylinder head.
6. The compressor assembly according to claim 1, wherein the condensate collection chamber is bounded by an integral part of a compressed gas pipe connected to the compressed gas outlet of the compressor, wherein the integral part of the compressed gas pipe forming the condensate collection chamber is at a level lower than that of the cylinder head chamber.
7. The compressor assembly according to claim 6, wherein the first end of the condensate drain pipe is connected to a drain opening in the cylinder head.
8. The compressor assembly according to claim 1, wherein the first end of the condensate drain pipe is connected to a drain opening in the cylinder head.
9. The compressor according to claim 8, wherein the drain opening is at a level below the at least one discharge valve.
10. The compressor according to claim 9, wherein the drain opening is at a lowest point of the cylinder head chamber.
11. The compressor according to claim 8, wherein the cylinder head chamber comprises a part which forms a dam for condensate liquid so as to form a condensate reservoir in the cylinder head chamber, wherein the drain opening opens into the condensate reservoir, wherein the dam blocks a flow of condensate from the condensate reservoir to the at least one discharge valve.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1)
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DETAILED DESCRIPTION
(7)
(8) In accordance with the invention, the compressor assembly 10 is characterized by a condensate collection chamber 32 or 34 which is connected with the compressed gas outlet 30 so that in the condensate collection chamber 32 or 34 a pressure prevails which is substantially equal to the pressure in the cylinder head chamber 24. The compressor assembly 10 is also characterized by a condensate drain pipe 36 which connects the at least one cylinder head chamber 24 to the condensate collection chamber 32 or 34 so as to form a condensate connection. A first end 36a of the condensate drain pipe 36 is connected with the at least one cylinder head 24. A second end 36b of the condensate drain pipe 36 is connected with the condensate collection chamber 32 or 34. The first end 36a of the condensate drain pipe 36 is at a highest level of the condensate drain pipe 36 and all other parts of the condensate drain pipe 36 are at lower levels so that transport of condensate through the condensate drain pipe 36 takes place under the effect of gravity.
(9) In an embodiment, of which an example is shown in
(10) In another embodiment, of which an example is shown in
(11) In yet another embodiment, the condensate collection chamber may bounded by an integral part of a compressed gas pipe 42 which is connected to the compressed gas outlet 30 of the compressor 12. The integral part of the compressed gas pipe 42 forming the condensate collection chamber should be at a level lower than that of the cylinder head chamber 24. It may be formed in a lower part of the compressed gas pipe 42 which may, optionally, have locally an increased diameter so as to provide some condensate buffer volume.
(12)
(13) In an embodiment, which is part of all the examples shown in the figures, the condensate connection between the cylinder head chamber 24 and the condensate collection chamber including the condensate drain pipe 36 may be an open connection without any valves.
(14) In an embodiment, the first end 36a of the condensate drain pipe 36 may be connected to drain opening 40 (see Detail V in
(15) In one embodiment (not shown) the drain opening 40 may be at a level below the at least one discharge valve 26. Preferably, the drain opening 40 is at the lowest point of the cylinder head chamber 24 so that any drainage that may be formed in the cylinder head chamber 24 is immediately drained to the pressure vessel 32 or 34. Thus, the risk that any liquid enters the cylinder 16 and causes damage is minimized.
(16) In an alternative embodiment, of which an example is shown in
(17)
(18) Although illustrative embodiments of the present invention have been described above, in part with reference to the accompanying drawings, it is to be understood that the invention is not limited to these embodiments. Variations to the disclosed embodiments can be understood and effected by those skilled in the art in practicing the claimed invention, from a study of the drawings, the disclosure, and the appended claims.
(19) Reference throughout this specification to one embodiment or an embodiment means that a particular feature, structure or characteristic described in connection with the embodiment is included in at least one embodiment of the present invention. Thus, the appearances of the phrases in one embodiment or in an embodiment in various places throughout this description are not necessarily all referring to the same embodiment.
(20) Furthermore, it is noted that particular features, structures, or characteristics of one or more of the various embodiments which are described above may be used implemented independently from one another and may be combined in any suitable manner to form new, not explicitly described embodiments. The reference numbers used in the detailed description and the claims do not limit the description of the embodiments, nor do they limit the claims. The reference numbers are solely used to clarify.