WO2015160062A1 - Electronic valve having multi-circulation structure and indoor temperature adjustment system comprising same - Google Patents

Electronic valve having multi-circulation structure and indoor temperature adjustment system comprising same Download PDF

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Publication number
WO2015160062A1
WO2015160062A1 PCT/KR2014/010995 KR2014010995W WO2015160062A1 WO 2015160062 A1 WO2015160062 A1 WO 2015160062A1 KR 2014010995 W KR2014010995 W KR 2014010995W WO 2015160062 A1 WO2015160062 A1 WO 2015160062A1
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Prior art keywords
hot water
hole
water inlet
water return
pipe
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PCT/KR2014/010995
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French (fr)
Korean (ko)
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김기용
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(주)이노펙터
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Publication of WO2015160062A1 publication Critical patent/WO2015160062A1/en

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K11/00Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves
    • F16K11/02Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit
    • F16K11/08Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit comprising only taps or cocks
    • F16K11/085Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit comprising only taps or cocks with cylindrical plug
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K31/00Actuating devices; Operating means; Releasing devices
    • F16K31/02Actuating devices; Operating means; Releasing devices electric; magnetic
    • F16K31/04Actuating devices; Operating means; Releasing devices electric; magnetic using a motor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D19/00Details
    • F24D19/08Arrangements for drainage, venting or aerating

Definitions

  • the present invention relates to a solenoid valve having a multi-circulating structure and an indoor temperature control system having the same. More specifically, the present invention relates to an electron having a multi-circulating structure that can improve energy efficiency by organically combining ondol heating and convective heating. A valve and an indoor temperature control system having the same.
  • the heating of residential buildings in Korea heats the floor structure by circulating 60 ⁇ 80 ⁇ hot water supplied from the boiler to the hot water pipe embedded in the floor structure in consideration of equipment installation conditions and inherent living habits.
  • the predominant floor heating method is to raise indoor air temperature by heat exchange and natural convection.
  • the floor heating method indirectly heats the indoor air by accumulating heat in the floor structure, which has the advantage of well suited to the life habits of Korea, which have conventionally lie on the bed.
  • the number of family members per household has decreased, and the number of external activities has increased, and the lifestyle has changed due to the universal use of chairs, sofas, and beds.
  • Temporary heating desire during the time has been increased, but the heating method by the heat storage of the floor structure has a disadvantage that the transfer rate of the heating energy is too slow.
  • the thickness equivalent of finishing materials such as wooden floorboards, marbles, tiles, and the like prevents the heating energy of the floor structure from heating to indoor air by heat exchange with natural air and natural convection. Unnecessary preheating load is added to reduce the energy heating efficiency.
  • Korean Patent No. 10-0754121 Air heater for home using hot water
  • the prior art is connected to the floor heating pipe, the heat exchanger coil is built-in to heat the indoor air, forcibly circulating the indoor air, and the three-way valve and bypass pipe for controlling the supply of hot water, And a control device for controlling the three-way valve.
  • the above-described prior art uses the hot water supplied from the boiler to prioritize air heating, and in order to perform floor heating, the solenoid valve and the three-way valve are installed at the heating pipe between the hot water distributor and the heat dissipation coil to operate simultaneously. If the structure is complicated and any one of the three-way valve and the solenoid valve installed in the heating pipe is broken, the normal operation does not work, there is a problem that can not be smooth heating, easy repair.
  • an object of the present invention is to provide a solenoid valve having a multi-circuit structure, which is made of a simple structure and has a low failure rate, which can be easily replaced and repaired even when a failure occurs.
  • the user can selectively perform ondol heating or convection heating, and indoor temperature control system having a solenoid valve having a multi-circulation structure that can improve energy efficiency by organically controlling ondol heating and convection heating in parallel. It aims to provide.
  • the solenoid valve for supplying a fluid to the ondol heating unit or the fan coil unit
  • the solenoid valve is the first hot water inlet hole and the first hot water return hole formed to be connected to the hot water outlet pipe and the hot water return pipe of the boiler, A second hot water inlet hole and a second hot water inlet hole formed to be connected to the hot water inlet tube and the hot water outlet tube of the ondol heating unit, and a first outer hole and a second tube to be connected to the first tube and the second tube of the fan coil unit.
  • the first and second inner holes, the first and second inner holes are formed to selectively communicate with the first hot water inlet hole and the second hot water inlet hole or the first hot water return hole and the second hot water return hole
  • the first and second inner holes and the third and fourth inner holes and the fifth and sixth inner holes, and the first and second inner holes, respectively, are formed to communicate with the first outer hole and the second outer hole, respectively.
  • the first flow path and the first and second inner holes connecting the first hot water inlet hole and the second hot water inlet hole when the hot water return hole and the second hot water return hole are positioned to communicate with each other are respectively located in the first channel.
  • the first, third and fifth inner holes and the second, fourth and sixth inner holes may be formed to communicate with each other.
  • Another object of the present invention is to provide an indoor temperature control system having a solenoid valve having the multi-circulation structure.
  • the first hot water inlet hole and the second hot water inlet hole are configured such that hot water heated in the boiler is supplied to the ondol heating unit and then supplied to the fan coil unit.
  • the first hot water return hole and the second hot water return hole communicate with each other by the first inner hole and the second inner hole, respectively, by the first flow path, and the first outer hole and the second outer hole. Are respectively in communication with the fifth inner hole and the sixth inner hole.
  • the first hot water inlet hole and the second hot water inlet hole are respectively supplied such that hot water heated in the boiler is supplied to the fan coil unit and then to the ondol heating unit.
  • the first inner hole and the second inner hole communicate with each other, wherein the first hot water return hole and the second hot water return hole are interconnected by the second flow path, and the first outer hole and the second outer hole. Are respectively in communication with the third inner hole and the fourth inner hole.
  • the user can selectively heat the heating or convection heating, there is an effect that can improve the energy efficiency by organically controlling the heating on the heating and convection in parallel.
  • FIG. 1 is an exploded perspective view of a solenoid valve having a multi-circulation structure according to an embodiment of the present invention.
  • FIG. 2 is an exploded view of the outer cylinder and the inner cylinder shown in FIG.
  • Figure 3 is a schematic diagram showing a room temperature control system with a solenoid valve having a multi-circulation structure according to an embodiment of the present invention.
  • FIG. 4 is a view showing an operation of performing the ondol heating in a room temperature control system equipped with a solenoid valve having a multi-circulation structure according to an embodiment of the present invention.
  • FIG. 5 is a diagram illustrating an operation of performing convection heating in an indoor temperature control system equipped with a solenoid valve having a multi-ring structure according to an embodiment of the present invention.
  • FIG. 6 is a view illustrating an operation in which an indoor temperature control system having a solenoid valve having a multi-circulation structure according to an embodiment of the present invention does not perform ondol heating or convection heating.
  • FIG. 1 is an exploded perspective view of an electromagnetic valve having a multi-circulation structure according to an embodiment of the present invention
  • FIG. 2 is an exploded view of the outer cylinder and the inner cylinder shown in FIG. 1
  • FIG. 3 is a multi-circulation structure according to an embodiment of the present invention.
  • Figure is a schematic diagram showing a room temperature control system having a solenoid valve having a.
  • the solenoid valve 100 having a multi-circulation structure according to an embodiment of the present invention to connect the boiler 10, the ondol heating unit 20, the fan coil unit 30 to each other Installed to supply the heated fluid in the boiler 10 to the ondol heating unit 20 or the fan coil unit 30 so that the ondol heating or convection heating is selectively performed.
  • the solenoid valve 100 is composed of an outer cylinder 110, and the inner cylinder 120 rotatably installed by the drive motor 130 in the outer cylinder (110).
  • Outer tube 110 is the first hot water inlet hole 111 and the first hot water return hole 112 formed to be connected to the hot water outlet pipe 12 and the hot water return pipe 14 of the boiler 10, ondol heating unit ( The second hot water inlet hole 113 and the second hot water return hole 114 formed in connection with the hot water inlet pipe 22 and the hot water discharge pipe 24 of the 20, respectively, the first pipe 32 of the fan coil unit 30 ) And a first outer hole 115 and a second outer hole 116 formed to be connected to the second pipe 34, respectively.
  • Inner cylinder 120 is the first hot water inlet hole 111 and the second hot water inlet hole 113 or the first hot water return hole 112 and the second provided in the outer cylinder 110 in accordance with the rotation direction of the inner cylinder (120)
  • the first inner hole 121 and the second inner hole 122, the first inner hole 121 and the second inner hole 122 formed in selective communication with the hot water return hole 114 is formed on the first side
  • the inner cylinder 120 may include the first hot water.
  • the first hot water inlet 111 and the first flow path 127 interconnecting the inlet hole 111 and the second hot water inlet hole 113, and the first inner hole 121 and the second inner hole 122, respectively.
  • a second flow path 128 connecting the first hot water return hole 112 and the second hot water return hole 114 when positioned in communication with the second hot water inlet hole 113.
  • first, third, and fifth inner holes 121, 123, and 125 and the second, fourth, and sixth inner holes 122, 124, and 126 are formed to communicate with each other.
  • Figure 4 is a view showing an operation of performing the heating on the room temperature control system equipped with a solenoid valve having a multi-circulation structure according to an embodiment of the present invention
  • Figure 5 according to an embodiment of the present invention 4 is a diagram illustrating an operation of performing convection heating in an indoor temperature control system equipped with a solenoid valve having a multi-ring structure.
  • the indoor temperature control system equipped with the solenoid valve having a multi-circulation structure performs the ondol heating first
  • the hot water heated in the boiler 10 is ondol
  • the inner cylinder 120 of the solenoid valve 100 is rotated by the drive motor 130 to be supplied to the heating unit 20 and then to the fan coil unit 30 so that the first hot water inlet hole 111 and the second
  • the hot water inlet hole 113 is interconnected by the first flow path 127, and the first hot water return hole 112 and the second hot water return hole 114 are respectively the first inner hole 121 and the second inner hole.
  • the first outer hole 115 and the second outer hole 116 are rotated so as to communicate with the fifth inner hole 125 and the sixth inner hole 126, respectively.
  • the hot water is heated in the boiler 10 so that the ondol heating unit 20 performs the ondol heating first, and the hot water supplied to the first hot water inlet 111 through the hot water outlet pipe 12 is supplied to the first flow path 127.
  • the second hot water inlet hole 113 is supplied to the ondol heating unit 20 through the hot water inlet pipe 22.
  • the hot water supplied to the ondol heating unit 20 is supplied to the second hot water return hole 114 located in communication with the second inner hole 122 through the hot water discharge pipe 24 and then to the sixth inner hole 126.
  • the hot water supplied to the fan coil unit 30 passes through the fifth inner hole 125 located in communication with the first outer hole 115 connected to the first pipe 32. After moving to, it is supplied to the boiler 10 through a hot water return pipe 14 connected to the first hot water return hole 112 located in communication with the first inner hole 121.
  • the indoor temperature control system having the solenoid valve having a multi-circulation structure performs convection heating first
  • the hot water heated in the boiler 10 is transferred to the fan coil unit 30.
  • the inner cylinder 120 of the solenoid valve 100 is rotated by the drive motor 130 to be supplied to the ondol heating unit 20 and then supplied to the first hot water inlet hole 111 and the second hot water inlet hole 113.
  • the first inner hole 121 and the second inner hole 122 respectively communicate with each other, and the first hot water return hole 112 and the second hot water return hole 114 are connected to each other by the second flow path 128.
  • the first outer hole 115 and the second outer hole 116 are rotated to communicate with the third inner hole 123 and the fourth inner hole 124, respectively.
  • the hot water is heated in the boiler 10 so that the fan coil unit 30 performs convection heating first, and the hot water supplied to the first hot water inlet 111 through the hot water outlet 12 is the first hot water inlet 111.
  • the hot water moved to the third inner hole 123 is located in communication with the third inner hole 123. It is supplied to the fan coil unit 30 through the first pipe 32 connected to the first outer hole 115.
  • the hot water supplied to the fan coil unit 30 is transferred to the second inner hole 122 through the fourth inner hole 124 located in communication with the second outer hole 116 connected to the second tube 34. After the movement, it is supplied to the ondol heating unit 20 through the hot water inlet pipe 22 connected to the second hot water inlet hole 113 located in communication with the second inner hole 122.
  • the hot water supplied to the ondol heating unit 20 is moved to the second hot water return hole 114 connected to the hot water discharge pipe 24 and then the second hot water return hole 114 and the first hot water return hole 112. It is supplied to the boiler 10 through the hot water return pipe 14 connected to the first hot water return hole 112 through the second flow path 128 to interconnect the.
  • FIG. 6 is a view illustrating an operation in which an indoor temperature control system equipped with a solenoid valve having a multi-circulation structure according to an embodiment of the present invention does not perform ondol heating or convection heating.
  • the driving motor 130 of the solenoid valve 100 is operated by the control board 40, and the control board 40 is a temperature sensor installed at a predetermined position of the hot water return pipe 14. 14a and the first and second inner holes formed in the inner cylinder 120 when the measured value reaches the set temperature by receiving the temperature value of the hot water circulated from the temperature sensor 30a installed in the fan coil unit 30.
  • 121 and 122 are located between the first hot water inlet hole 111 and the first hot water inlet hole 112 formed in the outer cylinder 110, and the second hot water inlet hole 113 and the second hot water inlet hole 114. Rotating so that the hot water heated in the boiler 10 is not supplied to the ondol heating unit 20 or the fan coil unit 30 to stop the heating.
  • the hot water heated in the boiler 10 may be supplied to another room in which the heating is not completed, the heating of the room where the heating is completed may be prevented from occurring.
  • the solenoid valve having a multi-circulating structure and the room temperature control system having the same may allow the user to selectively heat ondol or convective heating and organically control the ondol heating and convective heating. In parallel, there is an effect that can improve the energy efficiency.
  • the solenoid valve having a multi-circuit structure has a simple structure, the failure rate is low, and even if a failure occurs, there is an effect that it can be easily replaced and repaired.
  • the present invention relates to a solenoid valve having a multi-circulating structure and an indoor temperature control system having the same. More specifically, the present invention relates to an electron having a multi-circulating structure that can improve energy efficiency by organically combining ondol heating and convective heating. It is available for valves and room temperature control systems having the same.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Steam Or Hot-Water Central Heating Systems (AREA)
  • Multiple-Way Valves (AREA)

Abstract

The present invention relates to an electronic valve having a multi-circulation structure and an indoor temperature adjustment system comprising the same. The present invention provides an electronic valve provided to mutually connect a boiler, an ondol heating unit and a fan coil unit, thereby supplying a fluid heated in the boiler to the ondol heating unit or the fan coil unit such that ondol heating or convection heating is selectively performed, the electronic valve comprising: an external barrel having a first hot water input hole and a first hot water return hole formed to respectively communicate with a hot water output pipe and a hot water return pipe of the boiler, a second hot water input hole and a second hot water return hole formed to be connected to a hot water input pipe and a hot water discharge pipe of the ondol heating unit, and a first external hole and a second external hole formed to be connected to a first pipe and a second pipe of the fan coil unit; and an internal barrel provided inside the external barrel so to as be rotatable by a driving motor, wherein the internal barrel comprises: first and second internal holes formed to selectively communicate with the first hot water input hole and the second hot water input hole or the first hot water return hole and the second hot water return hole according to the rotating direction of the internal barrel; third and fourth internal holes and fifth and sixth internal holes formed, on the surface opposite to the surface on which the first and second internal holes are formed, to selectively communicate with the first external hole and the second external hole; a first flow path for mutually connecting the first hot water input hole and the second hot water input hole when the first and second internal holes are positioned to respectively communicate with the first hot water return hole and the second hot water return hole; and a second flow path for mutually connecting the first hot water return hole and the second hot water return hole when the first and second internal holes are positioned to respectively communicate with the first hot water input hole and the second hot water input hole.

Description

다 순환 구조를 갖는 전자밸브 및 이를 구비하는 실내 온도 조절 시스템Solenoid valve having multi-circulation structure and room temperature control system having same
본 발명은 다 순환 구조를 갖는 전자밸브 및 이를 구비하는 실내 온도 조절 시스템에 관한 것으로, 보다 구체적으로 설명하면, 온돌난방와 대류난방을 유기적으로 병행하여 에너지 효율을 향상시킬 수 있는 다 순환 구조를 갖는 전자밸브 및 이를 구비하는 실내 온도 조절 시스템에 관한 것이다.The present invention relates to a solenoid valve having a multi-circulating structure and an indoor temperature control system having the same. More specifically, the present invention relates to an electron having a multi-circulating structure that can improve energy efficiency by organically combining ondol heating and convective heating. A valve and an indoor temperature control system having the same.
현재 우리나라 주거용 건물의 난방은 장비 설치 여건과 고유의 생활습관을 고려하여 바닥 구조체에 매립된 온수배관에 보일러에서 공급된 60 ~ 80˚의 온수를 순환시켜 바닥 구조체를 가열시키고, 이를 통하여 실내공기와의 열교환 및 자연대류에 의해 실내 공기 온도를 상승시키는 바닥 난방방식이 주종을 이루고 있다.At present, the heating of residential buildings in Korea heats the floor structure by circulating 60 ~ 80˚ hot water supplied from the boiler to the hot water pipe embedded in the floor structure in consideration of equipment installation conditions and inherent living habits. The predominant floor heating method is to raise indoor air temperature by heat exchange and natural convection.
이와 같은, 바닥 난방방식은 바닥 구조체에 온열을 축열시켜 실내 공기를 간접적으로 가열하는 것으로 종래 바닥에 누워 취침하던 우리나라의 생활 습관에도 잘 부합하는 장점이 있다. 그러나 근래 가구당 가족 구성원의 숫자가 줄어들고 외부 활동이 증가되는 등 생활패턴이 변화되었고, 집안에서도 의자나 쇼파, 침대의 보편적인 이용에 따른 생활 습관도 변화하여 전체 실내 공간 중 일부분에 대한 부분 난방이나 짧은 시간 동안의 일시적인 난방 욕구가 증가하게 되었으나, 바닥 구조체의 축열에 의한 난방 방식은 난방 에너지의 전달 속도가 너무 느린 단점이 있다.As such, the floor heating method indirectly heats the indoor air by accumulating heat in the floor structure, which has the advantage of well suited to the life habits of Korea, which have conventionally lie on the bed. However, in recent years, the number of family members per household has decreased, and the number of external activities has increased, and the lifestyle has changed due to the universal use of chairs, sofas, and beds. Temporary heating desire during the time has been increased, but the heating method by the heat storage of the floor structure has a disadvantage that the transfer rate of the heating energy is too slow.
또한, 바닥 마감재의 고급화에 따라 나무 마루판이나 대리석, 타일 등 마감자재의 두께 등가는 바닥 구조체를 가열한 난방 에너지가 실내 공기와의 열교환 및 자연대류에 의해 실내 공기가 가열되도록 열 전달하는 것을 방해하고 불필요한 예열부하가 추가되어 에너지 난방 효율을 저하시키는 문제점이 있다.In addition, with the advancement of floor finishing materials, the thickness equivalent of finishing materials such as wooden floorboards, marbles, tiles, and the like prevents the heating energy of the floor structure from heating to indoor air by heat exchange with natural air and natural convection. Unnecessary preheating load is added to reduce the energy heating efficiency.
전술한 바와 같은 문제점을 해결하기 위해 한국등록특허 제10-0754121호 "온수를 이용한 주택용 공기난방기"가 개시되어 있다.In order to solve the problems as described above, Korean Patent No. 10-0754121 "Air heater for home using hot water" is disclosed.
상기의 종래기술은 바닥 난방배관과 연결되어 실내공기를 가열할 수 있는 열교환 방열코일이 내장되고 실내 공기를 강제로 순환시켜 주는 휀과, 온수의 공급을 통제하는 3방밸브와 바이패스관, 휀과 3방밸브를 제어하기 위한 제어장치로 구성된다.The prior art is connected to the floor heating pipe, the heat exchanger coil is built-in to heat the indoor air, forcibly circulating the indoor air, and the three-way valve and bypass pipe for controlling the supply of hot water, And a control device for controlling the three-way valve.
그러나, 전술한 종래기술은 보일러로부터 공급되는 온수를 이용하여 공기난방을 우선하고 바닥난방을 하기 위해서는 온수분배기와 방열코일 사이의 난방배관에 전자밸브와 3방밸브를 설치하여 동시에 작동되도록 구성함으로써 그 구조가 복잡하고, 난방배관에 설치된 전자밸브와 3방밸브 중 어느 하나의 밸브가 고장이 나게 되면 정상적인 작동이 되지 않아 원활한 난방을 할 수 없고, 수리가 용이하지 않는 문제점이 있다. However, the above-described prior art uses the hot water supplied from the boiler to prioritize air heating, and in order to perform floor heating, the solenoid valve and the three-way valve are installed at the heating pipe between the hot water distributor and the heat dissipation coil to operate simultaneously. If the structure is complicated and any one of the three-way valve and the solenoid valve installed in the heating pipe is broken, the normal operation does not work, there is a problem that can not be smooth heating, easy repair.
따라서, 본 발명은 전술한 문제점을 해결하고자 하는 것으로, 간단한 구조로 이루어져 고장율이 낮고, 고장이 발생되더라도 손쉽게 교체 및 보수할 수 있는 다 순환 구조를 갖는 전자밸브를 제공하는 것을 목적으로 한다.Accordingly, an object of the present invention is to provide a solenoid valve having a multi-circuit structure, which is made of a simple structure and has a low failure rate, which can be easily replaced and repaired even when a failure occurs.
또한, 사용자가 온돌난방 또는 대류난방을 선택적으로 할 수 있고, 온돌난방과 대류난방을 유기적으로 제어하여 병행함으로써 에너지 효율을 향상시킬 수 있는 다 순환 구조를 갖는 전자밸브를 구비하는 실내 온도 조절 시스템을 제공하는 것을 목적으로 한다.In addition, the user can selectively perform ondol heating or convection heating, and indoor temperature control system having a solenoid valve having a multi-circulation structure that can improve energy efficiency by organically controlling ondol heating and convection heating in parallel. It aims to provide.
상기 및 기타 본 발명의 목적을 달성하기 위하여, 본 발명의 실시예에 따르면, 보일러, 온돌난방유닛, 팬코일유닛을 상호 연결하도록 설치되어 온돌난방 또는 대류난방이 선택적으로 수행되도록 상기 보일러에서 가열된 유체를 상기 온돌난방유닛 또는 상기 팬코일유닛으로 공급하는 전자밸브에 있어서, 상기 전자밸브는 상기 보일러의 온수출수관 및 온수환수관과 각각 연결되게 형성된 제1 온수입수홀 및 제1 온수환수홀, 상기 온돌난방유닛의 온수입수관 및 온수배출관과 연결되게 형성된 제2 온수입수홀 및 제2 온수환수홀, 상기 팬코일유닛의 제1관 및 제2관과 연결되게 형성된 제1 외부홀 및 제2 외부홀이 구비된 외통과, 상기 외통의 내부에 구동모터에 의해 회전 가능하게 설치된 내통으로 이루어지되, 상기 내통에는 상기 내통의 회전방향에 따라 상기 제1 온수입수홀 및 상기 제2 온수입수홀 또는 상기 제1 온수환수홀 및 상기 제2 온수환수홀과 선택적으로 연통되게 형성된 제1 및 제2 내부홀, 상기 제1 및 제2 내부홀이 형성된 반대면에 상기 제1 외부홀 및 상기 제2 외부홀과 선택적으로 연통되게 형성된 제3, 제4 내부홀 및 제5, 제6 내부홀, 상기 제1 및 제2 내부홀이 각각 상기 제1 온수환수홀과 상기 제2 온수환수홀에 연통되게 위치되었을 때 상기 제1 온수입수홀과 상기 제2 온수입수홀을 상호 연결시키는 제1 유로, 상기 제1 및 제2 내부홀이 각각 상기 제1 온수입수홀과 상기 제2 온수입수홀에 연통되게 위치되었을 때 상기 제2 온수환수홀과 상기 제2 온수환수홀을 상호 연결시키는 제2 유로가 형성된 것을 특징으로 하는 다 순환 구조를 갖는 전자밸브를 제공한다.In order to achieve the above and other objects of the present invention, according to an embodiment of the present invention, it is installed to interconnect the boiler, ondol heating unit, fan coil unit is heated in the boiler so that ondol heating or convection heating is selectively performed In the solenoid valve for supplying a fluid to the ondol heating unit or the fan coil unit, The solenoid valve is the first hot water inlet hole and the first hot water return hole formed to be connected to the hot water outlet pipe and the hot water return pipe of the boiler, A second hot water inlet hole and a second hot water inlet hole formed to be connected to the hot water inlet tube and the hot water outlet tube of the ondol heating unit, and a first outer hole and a second tube to be connected to the first tube and the second tube of the fan coil unit. It consists of an outer cylinder provided with an outer hole, the inner cylinder rotatably installed by a drive motor inside the outer cylinder, the inner cylinder according to the rotation direction of the inner cylinder The first and second inner holes, the first and second inner holes are formed to selectively communicate with the first hot water inlet hole and the second hot water inlet hole or the first hot water return hole and the second hot water return hole The first and second inner holes and the third and fourth inner holes and the fifth and sixth inner holes, and the first and second inner holes, respectively, are formed to communicate with the first outer hole and the second outer hole, respectively. The first flow path and the first and second inner holes connecting the first hot water inlet hole and the second hot water inlet hole when the hot water return hole and the second hot water return hole are positioned to communicate with each other are respectively located in the first channel. And a second flow path for interconnecting the second hot water return hole and the second hot water return hole when positioned in communication with the hot water inlet hole and the second hot water inlet hole. to provide.
상기 제1, 제3, 제5 내부홀 및 상기 제2, 제4 및, 제6 내부홀은 각각 상호연통되게 형성된 것을 특징으로 한다.The first, third and fifth inner holes and the second, fourth and sixth inner holes may be formed to communicate with each other.
본 발명의 또 다른 목적은 상기 다순환 구조를 갖는 전자밸브를 구비하는 실내 온도 조절 시스템을 제공하는 것을 목적으로 한다.Another object of the present invention is to provide an indoor temperature control system having a solenoid valve having the multi-circulation structure.
상기 실내 온도 조절 시스템이 상기 온돌난방을 수행하는 경우 상기 보일러에서 가열된 온수가 상기 온돌난방유닛으로 공급된 후 상기 팬코일유닛으로 공급되도록 상기 제1 온수입수홀과 상기 제2 온수입수홀은 상기 제1 유로에 의해 상호 연결되고, 상기 제1 온수환수홀과 상기 제2 온수환수홀은 각각 상기 제1 내부홀과 상기 제2 내부홀에 연통되고, 상기 제1 외부홀과 상기 제2 외부홀은 각각 상기 제5 내부홀과 상기 제6 내부홀에 연통되는 것을 특징으로 한다.When the indoor temperature control system performs the ondol heating, the first hot water inlet hole and the second hot water inlet hole are configured such that hot water heated in the boiler is supplied to the ondol heating unit and then supplied to the fan coil unit. The first hot water return hole and the second hot water return hole communicate with each other by the first inner hole and the second inner hole, respectively, by the first flow path, and the first outer hole and the second outer hole. Are respectively in communication with the fifth inner hole and the sixth inner hole.
상기 실내 온도 조절 시스템이 상기 대류난방을 수행하는 경우 상기 보일러에서 가열된 온수가 상기 팬코일유닛으로 공급된 후 상기 온돌난방유닛으로 공급되도록 상기 제1 온수입수홀과 상기 제2 온수입수홀은 각각 상기 제1 내부홀과 상기 제2 내부홀에 연통되고, 상기 제1 온수환수홀과 상기 제2 온수환수홀은 상기 제2 유로에 의해 상호 연결되고, 상기 제1 외부홀과 상기 제2 외부홀은 각각 상기 제3 내부홀과 제4 내부홀에 연통되는 것을 특징으로 한다.When the indoor temperature control system performs the convection heating, the first hot water inlet hole and the second hot water inlet hole are respectively supplied such that hot water heated in the boiler is supplied to the fan coil unit and then to the ondol heating unit. The first inner hole and the second inner hole communicate with each other, wherein the first hot water return hole and the second hot water return hole are interconnected by the second flow path, and the first outer hole and the second outer hole. Are respectively in communication with the third inner hole and the fourth inner hole.
전술한 구성을 갖는 본 발명에 따르면, 간단한 구조로 이루어져 고장율이 낮고, 고장이 발생되더라도 손쉽게 교체 및 보수할 수 있는 효과가 있다.According to the present invention having the above-described configuration, it is made of a simple structure has a low failure rate, even if a failure occurs there is an effect that can be easily replaced and repaired.
또한, 사용자가 온돌난방 또는 대류난방을 선택적으로 할 수 있고, 온돌난방과 대류난방을 유기적으로 제어하여 병행함으로써 에너지 효율을 향상시킬 수 있는 효과가 있다.In addition, the user can selectively heat the heating or convection heating, there is an effect that can improve the energy efficiency by organically controlling the heating on the heating and convection in parallel.
도 1은 본 발명의 일실시예에 따른 다 순환 구조를 갖는 전자밸브의 분해 사시도.1 is an exploded perspective view of a solenoid valve having a multi-circulation structure according to an embodiment of the present invention.
도 2는 도 1에 도시된 외통과 내통의 전개도.2 is an exploded view of the outer cylinder and the inner cylinder shown in FIG.
도 3은 본 발명의 일실시예에 따른 다 순환 구조를 갖는 전자밸브가 구비된 실내 온도 조절시스템을 개략적으로 도시하는 구성도.Figure 3 is a schematic diagram showing a room temperature control system with a solenoid valve having a multi-circulation structure according to an embodiment of the present invention.
도 4는 본 발명의 일실시예에 따른 다 순환 구조를 갖는 전자밸브가 구비된 실내 온도 조절 시스템이 온돌난방을 수행하는 동작을 도시하는 도면.4 is a view showing an operation of performing the ondol heating in a room temperature control system equipped with a solenoid valve having a multi-circulation structure according to an embodiment of the present invention.
도 5는 본 발명의 일실시예에 따른 다 수환 구조를 갖는 전자밸브가 구비된 실내 온도 조절 시스템이 대류난방을 수행하는 동작을 도시하는 도면.5 is a diagram illustrating an operation of performing convection heating in an indoor temperature control system equipped with a solenoid valve having a multi-ring structure according to an embodiment of the present invention.
도 6은 본 발명의 일실시예에 따른 다 순환 구조를 갖는 전자밸브가 구비된 실내 온도 조절 시스템이 온돌난방 또는 대류난방을 수행하지 않는 동작을 도시하는 도면.FIG. 6 is a view illustrating an operation in which an indoor temperature control system having a solenoid valve having a multi-circulation structure according to an embodiment of the present invention does not perform ondol heating or convection heating.
**도면의 주요 부분에 대한 부호의 설명**** Description of the symbols for the main parts of the drawings **
10; 보일러 121; 제1 내부홀10; Boiler 121; 1st interior hall
12; 온수출수관 122; 제2 내부홀12; Hot water outlet pipe 122; 2nd interior hall
14; 온수환수관 123; 제3 내부홀14; Hot water return pipe 123; 3rd interior hall
20; 온돌난방유닛 124; 제4 내부홀20; Ondol heating unit 124; 4th internal hall
22; 온수입수관 125; 제5 내부홀22; Hot water inlet pipe 125; 5th interior hall
24; 온수배출관 126; 제6 내부홀24; Hot water discharge pipe 126; 6th interior hall
30; 팬코일유닛 127; 제1 유로30; Fan coil unit 127; 1st Euro
32; 제1 관 128; 제2 유로32; First tube 128; 2nd Euro
34; 제2 관 130; 구동모터34; Second tube 130; Drive motor
40; 제어보드40; Control board
100; 전자밸브100; Solenoid valve
110; 외통110; External
111; 제1 온수입수홀111; 1st hot water inlet hole
112; 제1 온수환수홀112; 1st hot water return hole
113; 제2 온수입수홀113; 2nd hot water inlet hole
114; 제2 온수환수홀114; 2nd hot water return hole
115; 제1 외부홀115; 1st external hall
116; 제2 외부홀116; 2nd external hall
120; 내통120; Inner tube
이하, 본 발명의 바람직한 실시예를 첨부도면을 참조하여 보다 상세히 설명하기로 한다. 이 과정에서 도면에 도시된 선들의 두께나 구성요소의 크기 등은 설명의 명료성과 편의상 과장되게 도시되어 있을 수 있다.Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings. In this process, the thickness of the lines or the size of the components shown in the drawings may be exaggerated for clarity and convenience of description.
또한, 후술되는 용어들은 본 발명에서의 기능을 고려하여 정의된 용어들로서 이는 사용자, 운용자의 의도 또는 관례에 따라 달라질 수 있다. 그러므로, 이러한 용어들에 대한 정의는 본 명세서 전반에 걸친 내용을 토대로 하여 내려져야 할 것이다.In addition, terms to be described below are terms defined in consideration of functions in the present invention, which may vary according to the intention or convention of a user or an operator. Therefore, definitions of these terms should be made based on the contents throughout the specification.
도 1은 본 발명의 일실시예에 따른 다 순환 구조를 갖는 전자밸브의 분해 사시도, 도 2는 도 1에 도시된 외통과 내통의 전개도, 도 3은 본 발명의 일실시예에 따른 다 순환 구조를 갖는 전자밸브가 구비된 실내 온도 조절시스템을 개략적으로 도시하는 구성도이다.1 is an exploded perspective view of an electromagnetic valve having a multi-circulation structure according to an embodiment of the present invention, FIG. 2 is an exploded view of the outer cylinder and the inner cylinder shown in FIG. 1, and FIG. 3 is a multi-circulation structure according to an embodiment of the present invention. Figure is a schematic diagram showing a room temperature control system having a solenoid valve having a.
도 1과 도 3을 참조하면, 본 발명의 일실시예에 따른 다 순환 구조를 갖는 전자밸브(100)는 보일러(10), 온돌난방유닛(20), 팬코일유닛(30)을 상호 연결하도록 설치되어 온돌난방 또는 대류난방이 선택적으로 수행되도록 보일러(10)에서 가열된 유체를 온돌난방유닛(20) 또는 상기 팬코일유닛(30)으로 공급하는 것이다.1 and 3, the solenoid valve 100 having a multi-circulation structure according to an embodiment of the present invention to connect the boiler 10, the ondol heating unit 20, the fan coil unit 30 to each other Installed to supply the heated fluid in the boiler 10 to the ondol heating unit 20 or the fan coil unit 30 so that the ondol heating or convection heating is selectively performed.
이러한, 전자밸브(100)는 외통(110)과, 외통(110)의 내부에 구동모터(130)에 의해 회전가능하게 설치된 내통(120)으로 구성된다.Such, the solenoid valve 100 is composed of an outer cylinder 110, and the inner cylinder 120 rotatably installed by the drive motor 130 in the outer cylinder (110).
외통(110)은 보일러(10)의 온수출수관(12) 및 온수환수관(14)과 각각 연결되게 형성된 제1 온수입수홀(111) 및 제1 온수환수홀(112), 온돌난방유닛(20)의 온수입수관(22) 및 온수배출관(24)과 각각 연결되게 형성된 제2 온수입수홀(113) 및 제2 온수환수홀(114), 팬코일유닛(30)의 제1 관(32) 및 제2 관(34)과 각각 연결되게 형성된 제1 외부홀(115) 및 제2 외부홀(116)을 구비한다. Outer tube 110 is the first hot water inlet hole 111 and the first hot water return hole 112 formed to be connected to the hot water outlet pipe 12 and the hot water return pipe 14 of the boiler 10, ondol heating unit ( The second hot water inlet hole 113 and the second hot water return hole 114 formed in connection with the hot water inlet pipe 22 and the hot water discharge pipe 24 of the 20, respectively, the first pipe 32 of the fan coil unit 30 ) And a first outer hole 115 and a second outer hole 116 formed to be connected to the second pipe 34, respectively.
내통(120)은 내통(120)의 회전방향에 따라 외통(110)에 구비된 제1 온수입수홀(111) 및 제2 온수입수홀(113) 또는 제1 온수환수홀(112) 및 제2 온수환수홀(114)과 선택적으로 연통되게 형성된 제1 내부홀(121) 및 제2 내부홀(122), 제1 내부홀(121) 및 제2 내부홀(122)이 형성된 반대면에 제1 외부홀(115) 및 제2 외부홀(116)과 선택적으로 연통되게 형성된 제3, 제4 내부홀(123, 124) 및 제5, 제6 내부홀(125, 126)을 구비한다. Inner cylinder 120 is the first hot water inlet hole 111 and the second hot water inlet hole 113 or the first hot water return hole 112 and the second provided in the outer cylinder 110 in accordance with the rotation direction of the inner cylinder (120) The first inner hole 121 and the second inner hole 122, the first inner hole 121 and the second inner hole 122 formed in selective communication with the hot water return hole 114 is formed on the first side And third and fourth inner holes 123 and 124 and fifth and sixth inner holes 125 and 126 formed in selective communication with the outer hole 115 and the second outer hole 116.
또한, 내통(120)에는 제1 내부홀(121) 및 제2 내부홀(122)이 각각 제1 온수환수홀(112)과 제2 온수환수홀(114)과 연통되게 위치되었을 때 제1 온수입수홀(111)과 제2 온수입수홀(113)을 상호 연결시키는 제1 유로(127)와, 제1 내부홀(121) 및 제2 내부홀(122)이 각각 제1 온수입수홀(111)과 제2 온수입수홀(113)과 연통되게 위치되었을 때 제1 온수환수홀(112)과 제2 온수환수홀(114)을 상호 연결시키는 제2 유로(128)가 구비된다.In addition, when the first inner hole 121 and the second inner hole 122 are positioned to communicate with the first hot water return hole 112 and the second hot water return hole 114, respectively, the inner cylinder 120 may include the first hot water. The first hot water inlet 111 and the first flow path 127 interconnecting the inlet hole 111 and the second hot water inlet hole 113, and the first inner hole 121 and the second inner hole 122, respectively. ) And a second flow path 128 connecting the first hot water return hole 112 and the second hot water return hole 114 when positioned in communication with the second hot water inlet hole 113.
여기서, 제1, 제3, 제5 내부홀(121, 123, 125) 및 제2, 제4 및, 제6 내부홀(122, 124, 126)은 각각 상호연통되게 형성된다.Here, the first, third, and fifth inner holes 121, 123, and 125 and the second, fourth, and sixth inner holes 122, 124, and 126 are formed to communicate with each other.
한편, 도 4는 본 발명의 일실시예에 따른 다 순환 구조를 갖는 전자밸브가 구비된 실내 온도 조절 시스템이 온돌난방을 수행하는 동작을 도시하는 도면, 도 5는 본 발명의 일실시예에 따른 다 수환 구조를 갖는 전자밸브가 구비된 실내 온도 조절 시스템이 대류난방을 수행하는 동작을 도시하는 도면이다.On the other hand, Figure 4 is a view showing an operation of performing the heating on the room temperature control system equipped with a solenoid valve having a multi-circulation structure according to an embodiment of the present invention, Figure 5 according to an embodiment of the present invention 4 is a diagram illustrating an operation of performing convection heating in an indoor temperature control system equipped with a solenoid valve having a multi-ring structure.
도 4와 도 5를 참조하여 본 발명의 일실시예에 따른 다 순환 구조를 갖는 전자밸브가 구비된 실내 온도 조절 시스템이 온돌난방을 먼저 수행하는 경우에는, 보일러(10)에서 가열된 온수가 온돌난방유닛(20)으로 먼저 공급된 후 팬코일유닛(30)으로 공급되도록 전자밸브(100)의 내통(120)은 구동모터(130)에 의해 회전되어 제1 온수입수홀(111)과 제2 온수입수홀(113)이 제1 유로(127)에 의해 상호 연결되고, 제1 온수환수홀(112)과 제2 온수환수홀(114)은 각각 제1 내부홀(121)과 제2 내부홀(122)에 연통되고, 제1 외부홀(115)과 제2 외부홀(116)은 각각 제5 내부홀(125)과 제6 내부홀(126)에 연통되게 회전된다.4 and 5, when the indoor temperature control system equipped with the solenoid valve having a multi-circulation structure according to an embodiment of the present invention performs the ondol heating first, the hot water heated in the boiler 10 is ondol The inner cylinder 120 of the solenoid valve 100 is rotated by the drive motor 130 to be supplied to the heating unit 20 and then to the fan coil unit 30 so that the first hot water inlet hole 111 and the second The hot water inlet hole 113 is interconnected by the first flow path 127, and the first hot water return hole 112 and the second hot water return hole 114 are respectively the first inner hole 121 and the second inner hole. The first outer hole 115 and the second outer hole 116 are rotated so as to communicate with the fifth inner hole 125 and the sixth inner hole 126, respectively.
즉, 온돌난방유닛(20)이 온돌난방을 먼저 수행하도록 보일러(10)에서 가열되어 온수출수관(12)을 통해 제1 온수입수홀(111)로 공급되는 온수는 제1 유로(127)에 의해 제2 온수입수홀(113)로 이동된 후 온수입수관(22)을 통해 온돌난방유닛(20)으로 공급된다.That is, the hot water is heated in the boiler 10 so that the ondol heating unit 20 performs the ondol heating first, and the hot water supplied to the first hot water inlet 111 through the hot water outlet pipe 12 is supplied to the first flow path 127. By moving to the second hot water inlet hole 113 is supplied to the ondol heating unit 20 through the hot water inlet pipe 22.
이후, 온돌난방유닛(20)으로 공급된 온수는 온수배출관(24)을 통해 제2 내부홀(122)과 연통되게 위치된 제2 온수환수홀(114)로 공급된 후 제6 내부홀(126)과 상호 연통되게 위치된 제2 외부홀(116)에 연결된 제2 관(34)을 통해 팬코일유닛(30)으로 공급된다.Thereafter, the hot water supplied to the ondol heating unit 20 is supplied to the second hot water return hole 114 located in communication with the second inner hole 122 through the hot water discharge pipe 24 and then to the sixth inner hole 126. ) Is supplied to the fan coil unit 30 through the second pipe 34 connected to the second outer hole 116 located in communication with each other.
계속해서, 팬코일유닛(30)으로 공급된 온수는 제1 관(32)과 연결된 제1 외부홀(115)에 연통되게 위치된 제5 내부홀(125)을 통해 제1 내부홀(121)로 이동된 후, 제1 내부홀(121)과 연통되게 위치된 제1 온수환수홀(112)에 연결된 온수환수관(14)을 통해 보일러(10)로 공급된다.Subsequently, the hot water supplied to the fan coil unit 30 passes through the fifth inner hole 125 located in communication with the first outer hole 115 connected to the first pipe 32. After moving to, it is supplied to the boiler 10 through a hot water return pipe 14 connected to the first hot water return hole 112 located in communication with the first inner hole 121.
또한, 본 발명의 일실시예에 따른 다 순환 구조를 갖는 전자밸브가 구비된 실내 온도 조절 시스템이 대류난방을 먼저 수행하는 경우에는, 보일러(10)에서 가열된 온수가 팬코일유닛(30)으로 먼저 공급된 후 온돌난방유닛(20)으로 공급되도록 전자밸브(100)의 내통(120)은 구동모터(130)에 의해 회전되어 제1 온수입수홀(111)과 제2 온수입홀(113)이 각각 제1 내부홀(121)과 제2 내부홀(122)에 연통되고, 제1 온수환수홀(112)과 제2 온수환수홀(114)은 제2 유로(128)에 의해 상호 연결되고, 제1 외부홀(115)과 제2 외부홀(116)은 각각 제3 내부홀(123)과 제4 내부홀(124)에 연통되게 회전된다. In addition, when the indoor temperature control system having the solenoid valve having a multi-circulation structure according to an embodiment of the present invention performs convection heating first, the hot water heated in the boiler 10 is transferred to the fan coil unit 30. The inner cylinder 120 of the solenoid valve 100 is rotated by the drive motor 130 to be supplied to the ondol heating unit 20 and then supplied to the first hot water inlet hole 111 and the second hot water inlet hole 113. The first inner hole 121 and the second inner hole 122 respectively communicate with each other, and the first hot water return hole 112 and the second hot water return hole 114 are connected to each other by the second flow path 128. The first outer hole 115 and the second outer hole 116 are rotated to communicate with the third inner hole 123 and the fourth inner hole 124, respectively.
즉, 팬코일유닛(30)이 대류난방을 먼저 수행하도록 보일러(10)에서 가열되어 온수출수관(12)을 통해 제1 온수입수홀(111)로 공급되는 온수는 제1 온수입수홀(111)과 상호 연통되게 위치된 제1 내부홀(121)을 통해 제3 내부홀(123)로 이동되고, 제3 내부홀(123)로 이동된 온수는 제3 내부홀(123)과 연통되게 위치된 제1 외부홀(115)에 연결된 제1 관(32)을 통해 팬코일유닛(30)으로 공급된다.That is, the hot water is heated in the boiler 10 so that the fan coil unit 30 performs convection heating first, and the hot water supplied to the first hot water inlet 111 through the hot water outlet 12 is the first hot water inlet 111. ) Moved to the third inner hole 123 through the first inner hole 121 positioned in communication with each other, and the hot water moved to the third inner hole 123 is located in communication with the third inner hole 123. It is supplied to the fan coil unit 30 through the first pipe 32 connected to the first outer hole 115.
이후, 팬코일유닛(30)으로 공급된 온수는 제2 관(34)과 연결된 제2 외부홀(116)에 연통되게 위치된 제4 내부홀(124)을 통해 제2 내부홀(122)로 이동된 후, 제2 내부홀(122)과 연통되게 위치된 제2 온수입수홀(113)에 연결된 온수입수관(22)을 통해 온돌난방유닛(20)으로 공급된다.Thereafter, the hot water supplied to the fan coil unit 30 is transferred to the second inner hole 122 through the fourth inner hole 124 located in communication with the second outer hole 116 connected to the second tube 34. After the movement, it is supplied to the ondol heating unit 20 through the hot water inlet pipe 22 connected to the second hot water inlet hole 113 located in communication with the second inner hole 122.
계속해서, 온돌난방유닛(20)으로 공급된 온수는 온수배출관(24)과 연결된 제2 온수환수홀(114)로 이동된 후 제2 온수환수홀(114)과 제1 온수환수홀(112)을 상호 연결하는 제2 유로(128)를 통해 제1 온수환수홀(112)과 연결된 온수환수관(14)을 통해 보일러(10)로 공급된다.Subsequently, the hot water supplied to the ondol heating unit 20 is moved to the second hot water return hole 114 connected to the hot water discharge pipe 24 and then the second hot water return hole 114 and the first hot water return hole 112. It is supplied to the boiler 10 through the hot water return pipe 14 connected to the first hot water return hole 112 through the second flow path 128 to interconnect the.
도 6은 본 발명의 일실시예에 따른 다 순환 구조를 갖는 전자밸브가 구비된 실내 온도 조절 시스템이 온돌난방 또는 대류난방을 수행하지 않는 동작을 도시하는 도면이다.FIG. 6 is a view illustrating an operation in which an indoor temperature control system equipped with a solenoid valve having a multi-circulation structure according to an embodiment of the present invention does not perform ondol heating or convection heating.
도 6에 도시된 바와 같이, 전자밸브(100)의 구동모터(130)는 제어보드(40)에 의해 작동이 되는데, 제어보드(40)는 온수환수관(14)의 소정 위치에 설치된 온도센서(14a)와, 팬코일유닛(30)에 설치된 온도센서(30a)로부터 순환되는 온수의 온도 값을 전달받아 측정된 값이 설정 온도가 되면 내통(120)에 형성된 제1 및 제2 내부홀(121, 122)이 외통(110)에 형성된 제1 온수입수홀(111) 및 제1 온수환수홀(112)과, 제2 온수 입수홀(113) 및 제2 온수환수홀(114) 사이에 위치되도록 회전시켜 보일러(10)에서 가열된 온수가 온돌난방유닛(20) 또는 팬코일유닛(30)으로 공급되지 않도록 하여 난방을 중지시킨다.As shown in FIG. 6, the driving motor 130 of the solenoid valve 100 is operated by the control board 40, and the control board 40 is a temperature sensor installed at a predetermined position of the hot water return pipe 14. 14a and the first and second inner holes formed in the inner cylinder 120 when the measured value reaches the set temperature by receiving the temperature value of the hot water circulated from the temperature sensor 30a installed in the fan coil unit 30. 121 and 122 are located between the first hot water inlet hole 111 and the first hot water inlet hole 112 formed in the outer cylinder 110, and the second hot water inlet hole 113 and the second hot water inlet hole 114. Rotating so that the hot water heated in the boiler 10 is not supplied to the ondol heating unit 20 or the fan coil unit 30 to stop the heating.
즉, 난방이 완료된 실내의 난방을 중지시켜 난방이 완료되지 않은 다른 실내로 보일러(10)에서 가열된 온수를 공급할 수 있기 때문에 편 난방이 발생되는 것을 방지할 수 있다.That is, since the hot water heated in the boiler 10 may be supplied to another room in which the heating is not completed, the heating of the room where the heating is completed may be prevented from occurring.
따라서, 본 발명의 일실시예에 따른 다 순환 구조를 갖는 전자밸브 및 이를 구비하는 실내 온도 조절 시스템은 사용자가 온돌난방 또는 대류난방을 선택적으로 할 수 있고, 온돌난방과 대류난방을 유기적으로 제어하여 병행함으로써 에너지 효율을 향상시킬 수 있는 효과가 있다.Therefore, the solenoid valve having a multi-circulating structure and the room temperature control system having the same according to an embodiment of the present invention may allow the user to selectively heat ondol or convective heating and organically control the ondol heating and convective heating. In parallel, there is an effect that can improve the energy efficiency.
또한, 다 순환 구조를 갖는 전자밸브가 간단한 구조로 이루어져 고장율이 낮고, 고장이 발생되더라도 손쉽게 교체 및 보수할 수 있는 효과가 있다.In addition, since the solenoid valve having a multi-circuit structure has a simple structure, the failure rate is low, and even if a failure occurs, there is an effect that it can be easily replaced and repaired.
이상 본 발명의 바람직한 실시예를 첨부도면을 참조하여 설명하였지만, 당해 기술 분야에 숙련된 사람은 하기의 특허청구범위에 기재된 본 발명의 기술적 사상으로부터 벗어나지 않는 범위 내에서 본 발명을 다양하게 수정 및 변경할 수 있음을 이해할 수 있을 것이다.Although preferred embodiments of the present invention have been described above with reference to the accompanying drawings, those skilled in the art may variously modify and change the present invention without departing from the spirit of the invention as set forth in the claims below. It will be appreciated.
본 발명은 다 순환 구조를 갖는 전자밸브 및 이를 구비하는 실내 온도 조절 시스템에 관한 것으로, 보다 구체적으로 설명하면, 온돌난방와 대류난방을 유기적으로 병행하여 에너지 효율을 향상시킬 수 있는 다 순환 구조를 갖는 전자밸브 및 이를 구비하는 실내 온도 조절 시스템에 이용 가능하다.The present invention relates to a solenoid valve having a multi-circulating structure and an indoor temperature control system having the same. More specifically, the present invention relates to an electron having a multi-circulating structure that can improve energy efficiency by organically combining ondol heating and convective heating. It is available for valves and room temperature control systems having the same.

Claims (5)

  1. 보일러, 온돌난방유닛, 팬코일유닛을 상호 연결하도록 설치되어 온돌난방 또는 대류난방이 선택적으로 수행되도록 상기 보일러에서 가열된 유체를 상기 온돌난방유닛 또는 상기 팬코일유닛으로 공급하는 전자밸브에 있어서,In the solenoid valve for supplying the fluid heated in the boiler to the ondol heating unit or the fan coil unit is installed so as to interconnect the boiler, ondol heating unit, fan coil unit to selectively perform ondol heating or convection heating,
    상기 전자밸브는 상기 보일러의 온수출수관 및 온수환수관과 각각 연결되게 형성된 제1 온수입수홀 및 제1 온수환수홀, 상기 온돌난방유닛의 온수입수관 및 온수배출관과 연결되게 형성된 제2 온수입수홀 및 제2 온수환수홀, 상기 팬코일유닛의 제1관 및 제2관과 연결되게 형성된 제1 외부홀 및 제2 외부홀이 구비된 외통과,The solenoid valve includes a first hot water inlet hole and a first hot water inlet hole formed to be connected to the hot water outlet pipe and the hot water return pipe of the boiler, respectively, and a second hot water inlet formed to be connected to the hot water inlet pipe and the hot water discharge pipe of the ondol heating unit. An outer passage having a first outer hole and a second outer hole formed to be connected to the hole and the second hot water returning hole, the first pipe and the second pipe of the fan coil unit;
    상기 외통의 내부에 구동모터에 의해 회전 가능하게 설치된 내통으로 이루어지되,Consists of an inner cylinder rotatably installed by a drive motor inside the outer cylinder,
    상기 내통에는 상기 내통의 회전방향에 따라 상기 제1 온수입수홀 및 상기 제2 온수입수홀 또는 상기 제1 온수환수홀 및 상기 제2 온수환수홀과 선택적으로 연통되게 형성된 제1 및 제2 내부홀, 상기 제1 및 제2 내부홀이 형성된 반대면에 상기 제1 외부홀 및 상기 제2 외부홀과 선택적으로 연통되게 형성된 제3, 제4 내부홀 및 제5, 제6 내부홀, 상기 제1 및 제2 내부홀이 각각 상기 제1 온수환수홀과 상기 제2 온수환수홀에 연통되게 위치되었을 때 상기 제1 온수입수홀과 상기 제2 온수입수홀을 상호 연결시키는 제1 유로, 상기 제1 및 제2 내부홀이 각각 상기 제1 온수입수홀과 상기 제2 온수입수홀에 연통되게 위치되었을 때 상기 제2 온수환수홀과 상기 제2 온수환수홀을 상호 연결시키는 제2 유로가 형성된 것을 특징으로 하는 다 순환 구조를 갖는 전자밸브.The inner cylinder includes first and second inner holes selectively connected to the first hot water inlet hole and the second hot water inlet hole or the first hot water inlet hole and the second hot water inlet hole according to the rotational direction of the inner cylinder. Third and fourth inner holes and fifth and sixth inner holes selectively formed to communicate with the first outer hole and the second outer hole on opposite surfaces on which the first and second inner holes are formed; And a first flow path connecting the first hot water inlet hole and the second hot water inlet hole to each other when the second inner hole is positioned to communicate with the first hot water return hole and the second hot water return hole, respectively. And a second flow path interconnecting the second hot water return hole and the second hot water return hole when the second inner hole is positioned to communicate with the first hot water inlet hole and the second hot water inlet hole, respectively. Solenoid valve with multi-circulation structure.
  2. 청구항 1에 있어서,The method according to claim 1,
    상기 제1, 제3, 제5 내부홀 및 상기 제2, 제4 및, 제6 내부홀은 각각 상호연통되게 형성된 것을 특징으로 하는 다 순환 구조를 갖는 전자밸브.And the first, third and fifth inner holes and the second, fourth and sixth inner holes are formed in mutual communication with each other.
  3. 청구항 1 내지 청구항 2 중 어느 한 항의 다순환 구조를 갖는 전자밸브를 구비하는 실내 온도 조절 시스템.The room temperature control system provided with the solenoid valve which has a multi-circulation structure of any one of Claims 1-2.
  4. 청구항 3에 있어서,The method according to claim 3,
    상기 실내 온도 조절 시스템이 상기 온돌난방을 수행하는 경우 상기 보일러에서 가열된 온수가 상기 온돌난방유닛으로 공급된 후 상기 팬코일유닛으로 공급되도록 상기 제1 온수입수홀과 상기 제2 온수입수홀은 상기 제1 유로에 의해 상호 연결되고, 상기 제1 온수환수홀과 상기 제2 온수환수홀은 각각 상기 제1 내부홀과 상기 제2 내부홀에 연통되고, 상기 제1 외부홀과 상기 제2 외부홀은 각각 상기 제5 내부홀과 상기 제6 내부홀에 연통되는 것을 특징으로 하는 실내 온도 조절 시스템.When the indoor temperature control system performs the ondol heating, the first hot water inlet hole and the second hot water inlet hole are configured such that hot water heated in the boiler is supplied to the ondol heating unit and then supplied to the fan coil unit. The first hot water return hole and the second hot water return hole communicate with each other by the first inner hole and the second inner hole, respectively, by the first flow path, and the first outer hole and the second outer hole. Are respectively in communication with the fifth inner hole and the sixth inner hole.
  5. 청구항 3에 있어서,The method according to claim 3,
    상기 실내 온도 조절 시스템이 상기 대류난방을 수행하는 경우 상기 보일러에서 가열된 온수가 상기 팬코일유닛으로 공급된 후 상기 온돌난방유닛으로 공급되도록 상기 제1 온수입수홀과 상기 제2 온수입수홀은 각각 상기 제1 내부홀과 상기 제2 내부홀에 연통되고, 상기 제1 온수환수홀과 상기 제2 온수환수홀은 상기 제2 유로에 의해 상호 연결되고, 상기 제1 외부홀과 상기 제2 외부홀은 각각 상기 제3 내부홀과 제4 내부홀에 연통되는 것을 특징으로 하는 실내 온도 조절 시스템.When the indoor temperature control system performs the convection heating, the first hot water inlet hole and the second hot water inlet hole are respectively supplied such that hot water heated in the boiler is supplied to the fan coil unit and then to the ondol heating unit. The first inner hole and the second inner hole communicate with each other, wherein the first hot water return hole and the second hot water return hole are interconnected by the second flow path, and the first outer hole and the second outer hole. Are respectively in communication with the third inner hole and the fourth inner hole.
PCT/KR2014/010995 2014-04-15 2014-11-17 Electronic valve having multi-circulation structure and indoor temperature adjustment system comprising same WO2015160062A1 (en)

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KR101912556B1 (en) * 2018-02-08 2018-12-28 김기용 Electric valve with multi-circulation structure and indoor temperature control system including the same
KR102222331B1 (en) * 2019-06-12 2021-03-04 주식회사 한 에너지 시스템 Hybrid Boiler Device

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