Suction Acoustic Filter for Compressor
20180045195 ยท 2018-02-15
Inventors
- Paulo Rogerio Carrara Couto (Joinville, BR)
- Flavio Jorge Haddad Kalluf (Joinville, BR)
- Dietmar Erich Bernhard LILIE (Joinville, BR)
Cpc classification
F01N1/163
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B49/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/0055
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B49/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention relates to the technological field of compressors and components and/or devices for compressors. Problem to be solved: The current state of the art includes cooling system of dual evaporation and/or dual suction. On the solutions already existing, the selection of one among the two evaporation/suction lines is done by high complexity constructive mechanisms. Problem resolution: The invention in question aims to simplify the construction of a selection mean of one among two evaporation/suction lines. For so, is revealed a suction acoustic filter for reciprocating compressor which integrates an automatic valve coupled to the inlet way of the suction acoustic filter and a valve of a way is coupled to the inlet way of the suction acoustic filter, being said automatic valve and said valve of a way acting selectively reciprocating, where the valve opening of a way ends up opening the automatic valve.
Claims
1. Suction acoustic filter for reciprocating compressor, characterized by comprising: at least one inlet way and, at least one outlet way and at least one main chamber disposed between the two inlet ways and the outlet way; the mains chamber comprises an acoustic attenuation volume common to at least two inlet ways and to at least one outlet way; at least one automatic valve cooperating disposed related to inlet way of the suction acoustic filter; at least one valve of at least one way cooperating disposed related to the inlet way of the suction acoustic filter; and said automatic valve and said one way valve acting selectively reciprocating, being the opening of the one way valve ending up closing automatic valve, and one way valve closing ends up opening automatic valve.
2. Filter, according to claim 1, characterized by the fact that a one way valve comprises a two position valve for two ways.
3. Filter, according to claim 1, characterized by the fact that a one way valve comprises a valve commanded by solenoid.
4. Filter, according to claim 1, characterized by the fact that automatic valve comprises a check valve.
5. Filter, according to claim 1, characterized by the fact that automatic valve comprises a pressure differential valve.
6. Filter, according to claim 1, characterized by the fact that automatic valve comprises a plate valve, and is normal-opened.
7. Filter, according to claim 5, characterized by the fact that further comprises at least one path-end stop disposed inside the main chamber in a way to cooperate with at least one among the two valves.
8. Filter, according to claim 1, characterized by the fact that automatic valve comprises is housed on a bottom portion of the suction filter.
9. Filter, according to claim 1, characterized by the fact that further comprises at least one mounting structure which, disposed inside the main chamber, is capable of allowing assembling of at least one among two valves.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The acoustic filter suction to reciprocating compressor now revealed becomes detailed detail based on the figures listed below, including:
[0021]
[0022]
[0023]
DETAILED DESCRIPTION OF THE INVENTION
[0024] According to the mentioned
[0025] According to the present invention, it is noted that the suction acoustic filter described herein comprises a first inlet way 11, a second input track 12 and output track 2. The terms input and output refers only to the fluid dynamics observed in an acoustic filter suction, which in this case provides for the evaporation gas inlet/suction through the channels 11 and 12, and the outlet of the evaporation gas/suction to the engine compression of the reciprocating compressor, via 2.
[0026] As usual, it is expected also a main chamber 1 disposed between the input channels and the output via the acoustic filter. It is exactly in said main chamber 1 which is the attenuation of the suction pulses, and this effect already notoriously described in related technical literature.
[0027] In accordance with the subject invention, the flow of fluids that can enter the chamber 1 through the first inlet way 11 is controlled by an automatic valve 3 (previously known valves which open and close automatically when pressure conditions allow, for example, ball valves, check valves, plate valves, among others), while the flow of fluids that can enter the chamber 1 through the second path input 12 is controlled by a one-way valve 4 (valve ON/OFF). In this context, it remains clear that both valves 3 and 4 may comprise essentially conventional and commercially available valves, known by technicians skilled in the art.
[0028] In the first constructive option of the acoustic filter suction to reciprocating compressor, as shown in
[0029] In the second constructive option of the acoustic filter suction to reciprocating compressor, as shown in
[0030] In the constructive possibilities of the acoustic filter illustrated suction in
[0031] In the third constructive possibility suction acoustic filter for reciprocating compressor, as shown in
[0032] Still on the constructive possibilities illustrated in
[0033] In general, the third constructive option of the acoustic filter suction to reciprocating compressor, as shown in
[0034] The outputs of both valves 3 and 4 are directed to the camera 1, which comprises, by definition, a common volume, and intermediate between the two valves 3 and 4 and the outflow two of said acoustic filter suction.
[0035] The functional logic of the suction acoustic filter for reciprocating compressor disclosed herein is simple: the differential pressure existing inside the chamber 1 determines which of the valves is in an active operational state. Therefore, it is necessary that the inlet means of the pressure 12 is always larger than the input via the pressure 11, so that simple operation (change of operational status) of a track 4 the valve is sufficient to switch between fluid communication via inlet 11 and outlet of two or fluid communication via the inlet 12 and the outlet pathway 2.
[0036] Thus, it is noted that the functional principle of suction acoustic filter reciprocating compressor disclosed herein is similar to the functional principle of selection of the fluid cooling system described in document U.S. Pat. No. 5,531,078 patenting. In fact, this is exactly the intention of the invention in question, with further optimize aspects for improvement also exist in the cooling system described in patenting document U.S. Pat. No. 5,531,078.
[0037] Accordingly, it is the great merit of the subject invention using an acoustic filter suction necessary and usually existing on piston compressors, which, provided with two cooperating operating valves solve the assembly problems and lubricant oil return existing in this document patenting U.S. Pat. No. 5,531,078.
[0038] While in Patent document U.S. Pat. No. 5,531,078 a one-way valve is external and the check valve is directly mounted on the pipe where circulates the flow of fluid at high pressure, in the invention in question, both valves are mounted so safe, practical and reliable, even in a modeling element whose characteristics are used to facilitate any type of assembly and mechanical connection.
[0039] While in Patent document U.S. Pat. No. 5,531,078 the two suction lines are airtight, culminating in the great lubricant oil return problem (widely known problem for the skilled in the art), the subject invention only one of the evaporation/suction lines needs to be tight, while the other suction line/evaporation can be equalized to the internal pressure of the compressor housing within which the suction acoustic filter is disposed. The evaporation/hermetic suction line (high pressure) is connected to the inlet way 12 of the filter, while the input means 11 is equalized with pressure inside the compressor housing (not shown), a pressure that corresponds to the line evaporation/equalized suction.
[0040] Furthermore, the valve 3 is accommodated preferably in the lower suction filter region so that the oil may eventually be housed inside said suction filter during compressor operation to be easily purged to the compressor housing when the valve 3 is open. In fact, a valve normally-open to the input means 11 is preferred to allow the suction oil filter purging during the period that the compressor is switched off.
[0041] Having described the preferred embodiment of the invention in question, it remains evident that the scope of protection required is not limited to the illustrative figure, but on the set of claims and the possible equivalent means.