US2010162748A1PendingUtilityA1
Heat generator
Est. expiryDec 29, 2028(~2.4 yrs left)· nominal 20-yr term from priority
F25B 29/003
40
PatentIndex Score
0
Cited by
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Claims
Abstract
A heat generator includes an air-conditioning refrigerating system formed of a compressor, a discharge line, a condenser, a condenser liquid line, a liquid distributor, a spoiler such as metering device, an evaporator and a suction line, and a liquid delivering system. The discharge line has a head heat segment disposed in contact with a contact segment of the delivery segment for heat exchange to charge liquid passing through the delivery pipe into hot water or steam.
Claims
exact text as granted — not AI-modified1 . A head generator, comprising:
an air-conditioning refrigerating system, said air-conditioning refrigerating system comprising: a compressor, said compressor comprising an intake end and an discharge end, said compressor being adapted to discharge a high-temperature and high-pressure gaseous refrigerant with lubricating oil; a condenser adapted to condense said high-temperature and high-pressure gaseous refrigerant with lubricating oil into a liquefied state; a refrigerant discharge line adapted to deliver said high-temperature and high-pressure gaseous refrigerant with lubricating oil from the discharge end of said compressor to said condenser for condensing, said discharge line comprising a head heat segment and a heat conducting segment; a liquid line, a liquid distributor connected to said condenser through said liquid line for distributing said liquefied refrigerant and lubricating oil; a spoiler adapted to force said liquid refrigerant with lubricating oil into a mist so as to lower the pressure of said liquid refrigerant with lubricating oil; an evaporator adapted to evaporate the mist of said liquid refrigerant with lubricating oil passed through said spoiler into a mist state ; and a suction line connected between said evaporator and the intake end of said compressor to guide the lo side refrigerant with lubricating oil from said evaporator into said compressor, said suction line comprising a heat conducting segment attached to the heat conducting segment of said refrigerant discharge line for heat exchange to raise the temperature of the lo side refrigerant with lubricating oil being delivered in said suction line to said compressor; a liquid delivering system, said liquid delivering system comprising: a delivery pipe for delivering liquid, said delivery pipe comprising a contact segment for making heat exchange with high-pressure gaseous refrigerant and the lubricating oil to charge liquid into hot water.
2 . The heat generator as claimed in claim 1 , wherein said contact segment of said delivery pipe is sleeved onto said head heat segment of said discharge line, and the flowing direction of said refrigerant and said lubricating oil to the flowing direction of the liquid in said delivery pipe for heat gain is an opposite way to each other.
3 . The heat generator as claimed in claim 2 , wherein the connection area between said contact segment of said delivery pipe and said head heat segment of said discharge line is wrapped with an insulation material.
4 . The heat generator as claimed in claim 1 , wherein said condenser comprises a plurality of condenser coils connected to said discharge line for receiving said high-temperature and high-pressure high side refrigerant with lubricating oil from discharged said compressor and condensing said high-temperature and high-pressure gaseous refrigerant with lubricating oil condensed into a liquefied state; said evaporator comprises a plurality of evaporator coils connected to said spoiler the metering device.
5 . The heat generator as claimed in claim 1 , wherein said evaporator comprises a plurality of through holes in a bottom side thereof; said liquid distributor is a coiled tubular member inserted through said through holes of said evaporator for enabling dissipate heat to condensed water produced during operation of said evaporator so to exchange heat to said liquid distributor.
6 . The heat generator as claimed in claim 1 , wherein said liquid distributor is formed in a single tube.
7 . The heat generator as claimed in claim 1 , wherein said liquid distributor is tubular member formed of a plurality of capillary tubes.
8 . The heat generator, comprising:
an air-conditioning refrigerating system, said air-conditioning refrigerating system comprising: a compressor, said compressor comprising an intake end and an discharge end, said compressor being adapted to discharge a high-temperature and high-pressure gaseous refrigerant with lubricating oil; a condenser adapted to condense said high-temperature and high-pressure gaseous refrigerant with lubricating oil into a liquefied state; a refrigerant discharge line adapted to deliver said high-temperature and high-pressure gaseous refrigerant with lubricating oil from the discharge end of said compressor to said condenser for condensing, said discharge line comprising a head heat segment and a heat conducting segment; a liquid line, a liquid distributor connected to said condenser through said liquid line for distributing said liquefied refrigerant and lubricating oil; a spoiler adapted to force said liquid refrigerant with lubricating oil into a mist so as to lower the pressure of said liquid refrigerant with lubricating oil; an evaporator adapted to evaporate the mist of said liquid refrigerant with lubricating oil passed through said spoiler into a mist state; and a suction line connected between said evaporator and the intake end of said compressor to guide the lo side refrigerant with lubricating oil from said evaporator into said compressor, said suction line comprising a heat conducting segment attached to the heat conducting segment of said refrigerant discharge line for heat exchange to raise the temperature of the lo side refrigerant with lubricating oil being delivered in said suction line to said compressor; a liquid delivering system, said liquid delivering system comprising: a delivery pipe for delivering liquid, said delivery pipe comprising a contact segment for making heat exchange with high-pressure gaseous refrigerant and the lubricating oil to charge liquid into steam a steam receiver connected with said steam delivery pipe to receive steam from said steam delivery pipe.
9 . The heat generator as claimed in claim 8 , wherein said contact segment of said delivery pipe is sleeved onto said head heat segment of said discharge line, and the flowing direction of said refrigerant and said lubricating oil to the flowing direction of the water in said delivery pipe for heat gain is an opposite way to each other.
10 . The heat generator as claimed in claim 8 , wherein the connection area between said contact segment of said delivery pipe and said head heat segment of said discharge line is wrapped with an insulation material.
11 . The heat generator as claimed in claim 8 , wherein said water circulation system further comprises a water reservoir connected to one end of said water delivery pipe opposite to said steam receiver, a connection pipe connected between said steam receiver and said water reservoir, and a water inlet pipe connected to said water reservoir.
12 . The heat generator as claimed in claim 11 , wherein said steam receiver comprises a relief pipe for releasing steam.
13 . The heat generator as claimed in claim 11 , wherein on a lower section of said water reservoir connected to an outlet pipe for outputting hot water producing therein.
14 . The heat generator as claimed in claim 8 , wherein said condenser comprises a plurality of condenser coils connected to said discharge line for receiving said high-temperature and high-pressure high side refrigerant with lubricating oil from discharged said compressor and condensing said high-temperature and high-pressure gaseous refrigerant with lubricating oil condensed into a liquefied state; said evaporator comprises a plurality of evaporator coils connected to said spoiler the metering device.
15 . The heat generator as claimed in claim 8 , wherein said evaporator comprises a plurality of through holes in a bottom side thereof; said liquid distributor is a coiled tubular member inserted through said through holes of said evaporator for enabling dissipate heat to condensed water produced during operation of said evaporator so to exchange heat to said liquid distributor.
16 . The heat generator as claimed in claim 8 , wherein said liquid distributor is formed in a single tube.
17 . The heat generator as claimed in claim 8 , wherein said liquid distributor is tubular member formed of a plurality of capillary tubes.Join the waitlist — get patent alerts
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