序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 蒸汽—液体分离器的压缩致冷 CN85109765 1985-11-22 CN1004227B 1989-05-17 小林悟; 杉木滋郎; 寺崎政敏
一种紧凑的致冷机,它有一个电机、一个升速齿轮、一个压缩机、一个冷凝器、一个减压装置和一个蒸发器。其下壁上有个第一开口而其侧壁上有第二和第三开口的一个蒸汽-液体分离器装在蒸发器上,并经第一开口与蒸发器连通。压缩机连接于蒸汽-液体分离器的侧壁,并使第二开口与压缩机的吸入流道及第三开口与压缩机的压出流道分别连通。一个分离零件布置在蒸汽-液体分离器中,并跨过从第一开口流向第二开口的致冷剂蒸汽流。
2 蒸汽-液体分离器的压缩致冷 CN85109765 1985-11-22 CN85109765A 1986-07-09 小林悟; 杉木滋郎; 寺崎政敏
一种紧凑的致冷机,它有一个电机、一个升速齿轮、一个压缩机、一个冷凝器、一个减压装置和一个蒸发器。其下壁上有个第一开口而其侧壁上有第二和第三开口的一个蒸汽-液体分离器装在蒸发器上,并经第一开口与蒸发器连通。压缩机连接于蒸汽-液体分离器的侧壁,并使第二开口与压缩机的吸入流道及第三开口与压缩机的压出流道分别连通。一个分离零件布置在蒸汽-液体分离器中,并跨过从第一开口流向第二开口的致冷剂蒸汽流。
3 Liquid/gas state separating device US10495572 2004-08-25 US20040261380A1 2004-12-30 Pierre Jeuch
The invention relates to a liquid/gas state separating device capable of separating the molecules of vapour (V) of a liquid evaporating under the effect of a partial vacuum (31) maintained by pumping means from drops (L) of said liquid carried along by the flow of vapour (V), characterised in that it comprises a vapour deflector (50) and a drop collector (60), the vapour deflector (50) imposing at least one sudden change of direction on the flow of vapour (V).
4 Vapor/liquid separator for an absorption chiller US09966417 2001-09-27 US20030056654A1 2003-03-27 Ronald M. Cosby II; Jeffrey D. Harms; Stephen A. Kujak; Luan K. Nguyen; Thomas G. Travers
An absorption apparatus for an absorption chiller includes a series of eliminator blades situated between a vaporizing chamber (e.g., a generator or an evaporator) and a devaporizing chamber (e.g., a condenser or an absorber). Each of the blades includes an upstream leg, a downstream leg and a deflection tab. With respect to the direction of vapor flowing from the vaporizing chamber to the devaporizing chamber, the upstream leg is at an upward incline and the downstream leg is at a downward incline. The deflection tab extends out over the downstream leg to create a concavity that helps prevent liquid in the devaporizing chamber from splashing back across the eliminator blade. In some embodiments, a tube support plate includes a series of holes for not only supporting the tube bundles of two heat exchangers but also for supporting the eliminator blades.
5 Vapor/liquid separator for an absorption chiller US09966417 2001-09-27 US06572689B2 2003-06-03 Ronald M. Cosby, II; Jeffrey D. Harms; Stephen A. Kujak; Luan K. Nguyen; Thomas G. Travers
An absorption apparatus for an absorption chiller includes a series of eliminator blades situated between a vaporizing chamber (e.g., a generator or an evaporator) and a devaporizing chamber (e.g., a condenser or an absorber). Each of the blades includes an upstream leg, a downstream leg and a deflection tab. With respect to the direction of vapor flowing from the vaporizing chamber to the devaporizing chamber, the upstream leg is at an upward incline and the downstream leg is at a downward incline. The deflection tab extends out over the downstream leg to create a concavity that helps prevent liquid in the devaporizing chamber from splashing back across the eliminator blade. In some embodiments, a tube support plate includes a series of holes for not only supporting the tube bundles of two heat exchangers but also for supporting the eliminator blades.
6 Mist eliminator means for an absorption refrigeration system US48737565 1965-09-15 US3283533A 1966-11-08 DAVID ARONSON
7 Maintaining the effectiveness of an additive in absorption refrigeration systems US37885464 1964-06-29 US3276217A 1966-10-04 BOURNE JOSEPH R; EISBERG KEITH V
1,114,009. Refrigerating. CARRIER CORPORATION. 1 Nov., 1965, No. 46161/65. Heading F4H. In an absorption system employing octyl alcohol as an additive to water and lithium bromide solution, points at which liquid alcohol tends to accumulate are provided with heating means to vaporize the alcohol. The illustrated system includes a gas fired generator 10, a separator 20, a condenser 11, an evaporator 12 and an absorber 13. The absorber tube bundle 46 is surrounded by a pan 48 which discharges through a pipe 49 into the outlet 64 of an absorber sump 50. A line 54 for passing strong and recirculated solution to the absorber passes at a shallow angle, Fig. 2 (not shown), through the absorber sump 50 to vaporize alcohol collecting on the surface of liquid in the sump. The chilled liquid output line 28 from the evaporator tube bundle passes in similar manner through the evaporator sump 34 to evaporate alcohol therefrom. An electric heater 72 is provided at the surface of liquid in a line returning liquid from the absorber and the separator to the generator. As an alternative to the heater 72, the return line may be run in heat exchange with the generator. Electric heaters may be used to heat the sumps 34 and 50, as may lines 24 or 18.
8 Refrigerating system US2258360 1960-04-15 US2986905A 1961-06-06 KOCHER ERICH J; GRANT WHITNEY I
9 Liquid/gas state separating device US10495572 2002-11-13 US07390341B2 2008-06-24 Pierre Jeuch
The invention relates to a liquid/gas state separating device capable of separating the molecules of vapour (V) of a liquid evaporating under the effect of a partial vacuum (31) maintained by pumping means from drops (L) of said liquid carried along by the flow of vapour (V), characterised in that it comprises a vapour deflector (50) and a drop collector (60), the vapour deflector (50) imposing at least one sudden change of direction on the flow of vapour (V).
10 Compression refrigerating machine with vapor-liquid separator US799975 1985-11-20 US4615184A 1986-10-07 Satoru Kobayashi; Shigeo Sugimoto; Masatosi Terasaki
Disclosed is a compact compressor refrigerating machine, particularly a turbo-refrigerating machine which uses a turbocompressor, having a motor, a set-up gear, a compressor, a condenser, a pressure reducing means, and an evaporator. A vapor-liquid separator having a first opening on the bottom wall thereof and second and third openings on the side wall thereof is installed on the evaporator in such a manner that the vapor-liquid separator communicates with the evaporator through the first opening. The compressor is connected to the side wall of the vapor-liquid separator so as to communicate the second opening with the suction passage of the compressor and the third opening with the discharge passage of the compressor, respectively. A separation element is disposed in the vapor-liquid separator so as to cross the flow of the refrigerant vapor which flows from the first opening toward the second opening.
11 Means for intercepting liquid refrigerant US79009347 1947-12-06 US2570962A 1951-10-09 MCBROOM JAMES C
12 Method and apparatus for circulating refrigerants US2300548 1948-04-24 US2512869A 1950-06-27 MCBROOM JAMES C
13 ABSORPTION REFRIGERATION AND AIR CONDITIONING DEVICES EP17703662.1 2017-01-19 EP3408596A2 2018-12-05 LUNDSGAARD, Hans Nicolai Schjerning; HANSEN, Daniel Buhl; VIESE, Mark Hollaender; JENSEN, Christian Fonnesbaek
An absorption refrigeration and air conditioning device capable of controlling temperature and/or the humidity of enclosed spaces particularly useful in maritime applications and improving fuel economy of internal combustion engines is provided.
14 LIQUID/GAS STATE SEPARATING DEVICE EP02781496.1 2002-11-13 EP1448290A1 2004-08-25 JEUCH, Pierre
The invention relates to a liquid/gas state separating device capable of separating the molecules of vapour (V) of a liquid evaporating under the effect of a partial vacuum (31) maintained by pumping means from drops (L) of said liquid carried along by the flow of vapour (V), characterised in that it comprises a vapour deflector (50) and a drop collector (60), the vapour deflector (50) imposing at least one sudden change of direction on the flow of vapour (V).
15 EVAPORATOR WITH LIQUID/GAS STATE SEPARATING DEVICE EP02781496.1 2002-11-13 EP1448290B1 2005-08-24 JEUCH, Pierre
The invention relates to a liquid/gas state separating device capable of separating the molecules of vapour (V) of a liquid evaporating under the effect of a partial vacuum (31) maintained by pumping means from drops (L) of said liquid carried along by the flow of vapour (V), characterised in that it comprises a vapour deflector (50) and a drop collector (60), the vapour deflector (50) imposing at least one sudden change of direction on the flow of vapour (V).
16 Compressor refrigerating machine with vapor-liquid separator EP85114481.6 1985-11-14 EP0182292B1 1991-09-18 Kobayashi, Satoru; Sugimoto, Shigeo; Terasaki, Masatosi
17 Compressor refrigerating machine with vapor-liquid separator EP85114481.6 1985-11-14 EP0182292A3 1989-07-12 Kobayashi, Satoru; Sugimoto, Shigeo; Terasaki, Masatosi

Disclosed is a compact compressor refrigerating machine, particularly a turbo-refrigerating machine which uses a turbocompressor, having a motor (1), a set-up gear (7), a compressor (2), a condenser (3), a pressure reducing means (4), and an evaporator (5). A vapor-iiquid separator (6) having a first opening (6C) on the bottom wall (6B) thereof and second (6E) and third (6F) openings on the side wall (6D) thereof is installed on the evaporator (5) in such a manner that the vapor-liquid separator (6) communicates with the evaporator (5) through the first opening (6C). The compressor (2) is con- nerted to the side wall (6D) of the vapor-liquid separator (6) so as to communicate the second opening (6E) with the suction passage (2C) of the compressor (2) and the third opening (6F) with the discharge passage (2D) of the compressor (2), respectively. A separation element (6A) is disposed in the vapor-liquid separator (6) so as to cross the flow of the refrigerant vapor which flows from the first opening (6C) toward the second opening (6E).

18 Compressor refrigerating machine with vapor-liquid separator EP85114481.6 1985-11-14 EP0182292A2 1986-05-28 Kobayashi, Satoru; Sugimoto, Shigeo; Terasaki, Masatosi

Disclosed is a compact compressor refrigerating machine, particularly a turbo-refrigerating machine which uses a turbocompressor, having a motor (1), a set-up gear (7), a compressor (2), a condenser (3), a pressure reducing means (4), and an evaporator (5). A vapor-iiquid separator (6) having a first opening (6C) on the bottom wall (6B) thereof and second (6E) and third (6F) openings on the side wall (6D) thereof is installed on the evaporator (5) in such a manner that the vapor-liquid separator (6) communicates with the evaporator (5) through the first opening (6C). The compressor (2) is con- nerted to the side wall (6D) of the vapor-liquid separator (6) so as to communicate the second opening (6E) with the suction passage (2C) of the compressor (2) and the third opening (6F) with the discharge passage (2D) of the compressor (2), respectively. A separation element (6A) is disposed in the vapor-liquid separator (6) so as to cross the flow of the refrigerant vapor which flows from the first opening (6C) toward the second opening (6E).

19 흡수식 냉난방장치의 엘리미네이터 KR1020120016758 2012-02-20 KR1020130095385A 2013-08-28 이병재
PURPOSE: An eliminator of an absorption-type heating and cooling device is provided to effectively prevent the absorbing liquid of an absorber from flowing into an evaporator and to reduce manufacturing expenses due to a simple structure. CONSTITUTION: An eliminator of an absorption-type heating and cooling device comprises a separation film (131) and a unit (132) for preventing the inflow of an absorbing liquid. The separation film separates an evaporator from an absorber and includes a transferring hole for transferring the steam of refrigerant generated in the evaporator to the absorber. The unit for preventing the inflow of the absorbing liquid is extended to the side of the absorber between the both sides of the separation film and prevents the inflow of the absorbing liquid. The unit for preventing the inflow of the absorbing liquid is welded to the separation film or after part of the unit is separated from the separation film by a punching process for forming the transferring hole, the unit is formed to be bent.
20 기액분리기를 구비한 압축식 냉동장치 KR1019850008583 1985-11-16 KR1019890004394B1 1989-11-03 고바야시사도루; 스기모또시게오; 데라사끼마사도시
The refrigerator uses a turbocompressor and has a motor, a set-up gear, a compressor, a condenser, a pressure reducer and an evaporator. A vapour-liquid separator has an opening on the bottom wall and two openings on the side wall. The separator is installed on the evaporator in a manner so that the separator communicates with the evaporator through the bottom wall opening. The compressor is connected to the side wall of the vapour-liquid separator so as to communicate through a side opening with the suction passage of the compressor and the other side opening with the discharge passage of the compressor.
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