KR200166069Y1 - Oil furnace - Google Patents

Oil furnace Download PDF

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Publication number
KR200166069Y1
KR200166069Y1 KR2019990014168U KR19990014168U KR200166069Y1 KR 200166069 Y1 KR200166069 Y1 KR 200166069Y1 KR 2019990014168 U KR2019990014168 U KR 2019990014168U KR 19990014168 U KR19990014168 U KR 19990014168U KR 200166069 Y1 KR200166069 Y1 KR 200166069Y1
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KR
South Korea
Prior art keywords
heating
heat
oil boiler
hot water
heat source
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KR2019990014168U
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Korean (ko)
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전상율
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전상율
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Priority to KR2019990014168U priority Critical patent/KR200166069Y1/en
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Publication of KR200166069Y1 publication Critical patent/KR200166069Y1/en

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S40/00Components or accessories in combination with PV modules, not provided for in groups H02S10/00 - H02S30/00
    • H02S40/40Thermal components
    • H02S40/44Means to utilise heat energy, e.g. hybrid systems producing warm water and electricity at the same time
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/60Thermal-PV hybrids

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  • Domestic Hot-Water Supply Systems And Details Of Heating Systems (AREA)
  • Heat-Pump Type And Storage Water Heaters (AREA)

Abstract

본 고안은 날씨가 맑은날에 태양열열원을 난방에 사용할때에 태양열열원을 기름보일러열교환관을 통하여 1차로 난방을하고 남은열원은 온수기에 축열하여 태양열이 없을 때 온수기에 축열된 열원이 난방에 사용하고자하는 온도이상일 때 난방에 사용하고 열원이 부족했을때는 기름 보일러 사용함으로서 연료를 절감하는 효과을 갖는다.When the solar heat source is used for heating on a clear day, the present invention heats the solar heat source through the oil boiler heat exchanger tube and the remaining heat source is stored in the water heater. It is used for heating when it is over the desired temperature, and when it lacks heat source, it uses oil boiler to save fuel.

Description

기름보일러 온수열교환기 이용과 축일 온수직접난방{.}Oil Boiler Hot Water Heat Exchanger and Holiday Hot Water Direct Heating {.}

본 고안은 기름보일러가 설치된 가정에는 태양열 온수기를 설치하여 온수만을 사용하고 난방에는 전여사용하지않아 태양열열원을 효과적으로 사용하지못하던 것을 태양이 있을때에는 기름보일러을 작동하지않고 태양열열원을 1차로 난방에 사용하고 남은 열원을 온수기에 축열하여 태양이 없을때에는 축열된온수를 직접적으로 난방에 사용함으로서 기름보일러의 유지비을 저렴하게 하기위함이다.The present invention installs solar water heaters in homes with oil boilers and uses only hot water, and does not use them entirely for heating, so when the sun does not operate oil boilers, the solar heat source is used primarily for heating. The remaining heat source is heat-generated in the water heater, and when there is no sun, it is possible to reduce the maintenance cost of the oil boiler by directly using the heat-generated hot water for heating.

따라서 본 고안은 기름보일러가 설치된 가정에서도 태양열열원을 기름보일러을 작동하지않고 기름보일러 온수열교환기를 이용하여 난방을 1차로 사용하고 남은 열원을 축열온수기에 축열하였다가 태양열이없을때는 축열된 온수를 직접적으로 난방에 사용하면서 온수도사용하여 태양열을 최대로 사용함으로 기름보일러의 연료비절감과 투자비를 조기에 회수할수 있도록 하였다.Therefore, the present invention does not operate the oil boiler in the home with the oil boiler, but uses the oil boiler hot water heat exchanger to heat the primary heat, and the remaining heat source is stored in the heat storage water heater when there is no solar heat. By using hot water while using for heating, it maximizes solar heat, reducing fuel costs and investment costs of oil boilers early.

1도는 본고안에 기름보일러 온수열교환기 이용과 축열온수 직접난방의 전체구성도Fig. 1 shows the overall configuration of oil boiler hot water heat exchanger and direct heating of regenerative hot water in this paper.

※도면의 주요부품에 대한 부호의 설명※ Explanation of symbols for main parts in drawings

1. 냉수급수관 2. 온수사용관1. Cold water supply pipe 2. Hot water pipe

3. 기름보일러 4. 축열온수기3. Oil boiler 4. Heat storage water heater

5. 집열기(태양열) 6. 고온유로관5. Collector (solar) 6. High temperature flow path

7.8. 열교환관 9. 저온유로관7.8. Heat exchanger tube 9. Low temperature channel

10,11,12,13 온도감지센서(온도조절기)10,11,12,13 Temperature Sensor (Temperature Controller)

14,15,16,17,18 솔레노이드(전동밸브)14,15,16,17,18 Solenoid (Electric Valve)

19. 공기에어변 20. 밀폐형팽창탱크19. Air air valve 20. Hermetic expansion tank

21. 스프링자동압력변 22,압력전원스위치21. Spring automatic pressure valve 22, pressure power switch

23, 24, 순환펌프 25,자동펌프23, 24, circulation pump 25, automatic pump

26, 역류방지밸브 27, 난방급탕관26, non-return valve 27, heating water supply pipe

28. 난방관 29. 난방환수관28. Heating tube 29. Heating return tube

30. 팽창탱크 31, 자동제어컨트롤30. Expansion tank 31, automatic control control

32. 전기히타32. Electric Heater

본 고안은 날씨가 맑은 날에는 태양열 집열기(5)에 집열된 열매체가 온도감지센서(10)의 설정온도가 55℃이상이고 기름보일러(3)온도감지센서(12) 설정온도가 65℃이하이면 순환펌프(23)가 작동되면서 솔레노이드(15)가 열리면서 열매체고온수가 고온유로관(6), 열교환관(8)을 통하여 기름보일러(3)의 난방수에 열을전달하고 저온이된 열매체는 저온유로관(9)을 통하여 집열기로(5) 올라가 계속반복하면서, 기름보일러(3)온도감지센서(12-1)의 설정온도가 50℃이상이고 난방환수관(29) 온도감지센서(13)의 설정온도가 60℃이하이면 순환펌프(24)가 작동되면서 솔레노이드 (17)이 열려 기름보일러(3)난방수가 난방급탕관(27), 난방관(28), 난방환수관(29)을 회전하면서 난방환수관(29)온도감지센서(13)가 설정온도60℃이상이면 순환펌프(24)가 멈추고 솔레노이드(17)도 닫힌다. 기름보일러(3) 또한 온도가지센서(12)가 65℃이상이되면 솔레노이드(15)는 닫히고 솔레노이드(14)가열려서 열매체 고온수는 고온유로관(6), 축열온수기(4), 열교환관(7)을 통하여 축열온수기(4)의 난방수에 열을전달하면서 열매체가 회전을 하는데 축열온수기(4) 온도감지센서(11)의 설정온도가 95℃이상이면 순환펌프(23)가 멈추고 솔레노이드(14)도 닫히게 된다.In the present invention, when the weather is clear, the heat medium collected in the solar collector 5 has a set temperature of 55 ° C. or more and a set temperature of 65 ° C. or less of the oil boiler 3. As the circulating pump 23 is operated and the solenoid 15 is opened, the heat medium high temperature water transfers heat to the heating water of the oil boiler 3 through the high temperature flow path tube 6 and the heat exchange tube 8, and the heat medium that has become low temperature is low temperature. Ascending to the collector (5) through the flow path tube (9) and repeatedly, the set temperature of the oil boiler (3) temperature sensor (12-1) is 50 ℃ or more and the heating return pipe (29) temperature sensor (13) If the set temperature is less than 60 ℃ circulating pump (24) is operated and the solenoid (17) is opened oil boiler (3) heating water rotates the heating hot water pipe (27), heating pipe (28), heating return pipe (29) While the heating return pipe 29, the temperature sensor 13 is set to 60 ° C or more, the circulation pump 24 is stopped and the solenoid 17 is also closed. The oil boiler 3 also closes the solenoid 15 when the temperature branch sensor 12 reaches 65 ° C. or higher, and the solenoid 14 is opened, so that the heat medium hot water has a high temperature flow path tube 6, a heat storage water heater 4, and a heat exchange tube 7. The heat medium rotates while transferring heat to the heating water of the heat storage water heater (4). If the set temperature of the heat storage water heater (4) temperature sensing sensor (11) is 95 ° C or higher, the circulation pump (23) stops and the solenoid (14) ) Is also closed.

태양열이 없을때는 축열온수기(4)의 난방수가 온도감지센서(11-1)의 설정온도가 60℃이상이고 난방환수관(29)온도감지센서(13)의 설정온도가 60℃이하이면 순환펌프(24)작동되고 솔레노이드(16)이 열리면서 축열온수기(4)의 난방수가 난방급탕관(27), 난방관(28), 난방환수관(29)을 통하여 난방환수관(29)온도감지센서(13)설정온도가 60℃이상이면 순환펌프(24)가 멈추고 솔레노이드(16)도 닫힌다.When there is no solar heat, the circulating pump when the heating water of the heat storage water heater 4 is set to 60 ° C or higher and the set temperature of the heating return pipe 29 and the temperature sensor 13 is lower than 60 ° C. (24) When the solenoid (16) is opened and the heating water of the heat storage water heater (4) through the heating hot water supply pipe 27, the heating pipe 28, the heating return pipe (29) heating return pipe (29) temperature sensing sensor ( 13) If the set temperature is 60 ° C or higher, the circulation pump 24 is stopped and the solenoid 16 is also closed.

축열온수기(4)의 온도감지센서(11-1) 설정온도가 60℃이하이면 기름보일러가 작동하고 순환펌프(29)가 작동되면 솔레노이드(17)가 열리게된다.When the temperature detection sensor 11-1 of the heat storage water heater 4 is set to 60 ° C. or less, the oil boiler is operated and the solenoid 17 is opened when the circulation pump 29 is operated.

이상 설명한 바와 같이 본고안은 태양열이 있을 때는 기름보일러의 온수열교환관을 이용하여 난방을 하여 태양열을 우선으로 하고 없을때는 축열온수기에 축열을 하였다가 난방수로 바로이용하여 효율적으로 사용할수 있도록 되어있다.As explained above, this paper is designed to use solar oil's hot water heat exchanger tube when solar heat is applied, and to prioritize solar heat. .

Claims (1)

온도감지센서(11-1,12-1,13)와 솔레노이드(16,17)순환펌프(24)가 작동되여 태양열열매체를 기름보일러 온수열교환관을 이용하여 기름보일러 난방수로 난방하는 것과 축열온수기에 축열된 온수로 직접적으로 난방에 사용하는 방법Temperature sensor (11-1, 12-1, 13) and solenoid (16, 17) circulation pump (24) is operated to heat the solar heat medium with oil boiler heating water using an oil boiler hot water heat exchanger tube and heat storage water heater To use for direct heating with hot water regenerated on
KR2019990014168U 1999-07-16 1999-07-16 Oil furnace KR200166069Y1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR2019990014168U KR200166069Y1 (en) 1999-07-16 1999-07-16 Oil furnace

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Application Number Priority Date Filing Date Title
KR2019990014168U KR200166069Y1 (en) 1999-07-16 1999-07-16 Oil furnace

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100904013B1 (en) 2007-11-19 2009-06-22 한국에너지기술연구원 Solar Heat System and Control Method For The Same

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100904013B1 (en) 2007-11-19 2009-06-22 한국에너지기술연구원 Solar Heat System and Control Method For The Same

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