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KR100675484B1 - Heating plumbing system of apartment house - Google Patents

Heating plumbing system of apartment house Download PDF

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KR100675484B1
KR100675484B1 KR1020050029764A KR20050029764A KR100675484B1 KR 100675484 B1 KR100675484 B1 KR 100675484B1 KR 1020050029764 A KR1020050029764 A KR 1020050029764A KR 20050029764 A KR20050029764 A KR 20050029764A KR 100675484 B1 KR100675484 B1 KR 100675484B1
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hot water
heating
boiler
water distributor
pipe
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KR20050088936A (en
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오선교
경대호
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(주) 선엔지니어링종합건축사사무소
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G17/00Connecting or other auxiliary members for forms, falsework structures, or shutterings
    • E04G17/04Connecting or fastening means for metallic forming or stiffening elements, e.g. for connecting metallic elements to non-metallic elements
    • E04G17/045Connecting or fastening means for metallic forming or stiffening elements, e.g. for connecting metallic elements to non-metallic elements being tensioned by wedge-shaped elements

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  • Architecture (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Steam Or Hot-Water Central Heating Systems (AREA)

Abstract

공동주택의 난방 시스템을 개선시킴으로서 난방배관을 통한 온수의 이동시에 마찰저항을 경감시켜 난방 배관의 시공은 간편하게 하며, 난방 배관의 직경을 획기적으로 감소시킬 수 있어 단열층에 손상을 주지 않아 에너지 효율을 극대화시키며 층간 소음을 감소시킬 수 있는 공동주택의 난방 배관 시스템이 개시된다. 본 발명은 원격지의 난방수 공급업체 또는 보일러를 통하여 가열된 온수를 이용하여 난방을 수행하는 공동주책의 난방 배관 시스템에 있어서, 온수를 공동주택의 각 실별로 온수의 공급을 개폐시키기 위한 다수의 2차밸브들이 형성된 온수분배기에 공급시키기 위하여 보일러에 내장 또는 세대별로 온수 분배기와 병행하여 설치된 1차 펌프; 및 온수분배기에 형성된 2차밸브들의 출구측에 각각 형성되며 공동주택의 각 실에 매설된 난방배관으로의 온수의 순환을 촉진시키기 위한 소형의 2차펌프들을 포함한다.By improving the heating system of apartment buildings, it reduces frictional resistance during the movement of hot water through the heating pipe, simplifying the construction of the heating pipe, and dramatically reducing the diameter of the heating pipe, thus maximizing energy efficiency by not damaging the insulation layer. A heating plumbing system of a multi-unit house is disclosed to reduce floor noise. The present invention is a heating plumbing system of the joint house to perform heating by using hot water heated through a remote heating water supplier or a boiler, a plurality of 2 for opening and closing the supply of hot water for each room of the apartment house A primary pump installed in the boiler or installed in parallel with the hot water distributor for each generation to supply the hot water distributor having the secondary valves; And small secondary pumps each formed at the outlet side of the secondary valves formed in the hot water distributor and for promoting circulation of hot water to the heating pipes embedded in each chamber of the apartment house.

Description

공동주택의 난방 배관 시스템{system of pipe laying for heating of an apartment house}System of pipe laying for heating of an apartment house

도 1은 본 발명에 따른 공동주택의 난방 배관 시스템에서 난방 배관의 설치방법을 보여주기 위한 배관 설치도이다.1 is a piping installation diagram for showing the installation method of the heating piping in the heating piping system of a multi-unit house according to the present invention.

<도면의 주요 부분에 대한 부호의 설명><Explanation of symbols for the main parts of the drawings>

100 : 보일러 110 : 1차 펌프 100: boiler 110: primary pump

112 : 메인밸브 114 : 동관112: main valve 114: copper tube

120 : 온수분배기 122a~122d : 2차 밸브 120: hot water distributor 122a ~ 122d: secondary valve

130a~130d : 2차 펌프 140 : 온수회수관130a ~ 130d: 2nd pump 140: hot water collection pipe

본 발명은 공동주택의 난방 배관 시스템에 관한 것으로, 특히 공동주택의 난방 시스템을 개선시킴으로서 난방배관을 통한 온수의 이동시에 마찰저항을 경감시켜 난방 배관의 시공은 간편하게 하며, 난방 배관의 직경을 획기적으로 감소시킬 수 있어 단열층에 손상을 주지 않아 에너지 효율을 극대화시키며 층간 소음을 감소시킬 수 있는 공동주택의 난방 배관 시스템에 관한 것이다. The present invention relates to a heating piping system of a multi-family house, and in particular, by improving the heating system of the multi-family house to reduce the frictional resistance during the movement of hot water through the heating pipe to simplify the construction of the heating pipe, dramatically reducing the diameter of the heating pipe The present invention relates to a heating plumbing system of a multi-unit house, which can be reduced, thereby not damaging the insulation layer, maximizing energy efficiency and reducing floor noise.

일반적으로, 단독 주택과 아파트와 같은 공동주택에서는 온수를 이용하여 난방을 수행한다. 온수를 이용한 난방은 개별적으로 설치된 보일러 또는 원격지에서 난방수 공급 장치에서 공급된 고온의 온수는 배관을 통해 온수분배기로 이동된다. 온수분배기는 각 실마다 별도로 매설된 난방파이프를 통하여 온수를 공급하여 실내 바닥을 가열(실내 바닥과 열 교환)하게 된다. 실내 바닥과 열 교환한 다음 온도가 저하된 온수는 온수분배기로 복귀한 후 배관을 통해 보일러 또는 난방수 공급 장치로 이동되어 다시 가온된 다음 위의 과정을 통하여 재순환함으로써 난방을 수행하는 것이다.Generally, in a multi-family house such as a single house and an apartment, heating is performed using hot water. The hot water is heated in a boiler or remotely installed hot water from the heating water supply unit to the hot water distributor through the pipe. The hot water distributor supplies hot water through a heating pipe separately embedded in each room to heat the indoor floor (heat exchange with the indoor floor). After exchanging heat with the indoor floor, the warmed water is returned to the hot water distributor, moved to a boiler or a heating water supply device through a pipe, and then heated again, and then is heated by recirculating through the above process.

또한, 아파트와 같은 공동주택의 경우에는 구조의 특성상 콘크리트로 층 과 층 사이(층간)가 연결되어 있어서 바닥 또는 벽체의 충격에 의해 발생하는 소음인 층간 소음이 문제가 되고 있다. 공동주택에서 층간소음이 문제가 되는 이유는 소리의 전달은 매체의 질량에 비례해서 빨라지는 특성에 기인하는 데, 콘크리트의 밀도가 공기보다 월등하게 높기 때문이다. 이러한 아파트와 같은 공동주택의 층간 소음을 방지하기 위하여 최근에는 층간 소음 방지재를 시공하거나 바닥단열용으로 사용하는 기포콘크리트에 소음흡수재를 넣는 방법을 사용하고 있으나, 아파트와 같은 공동주택의 층간 소음의 방지를 위해서는 공동주택의 바닥의 단열층에 손상을 주지 않는 시공법이 바람직하다. In addition, in the case of a multi-family house such as an apartment, the floor-to-floor noise, which is a noise generated by the impact of the floor or the wall, is a problem due to the connection between the floors and the floors with concrete. The reason why floor noise is a problem in MDUs is that the transmission of sound is due to the property of being faster in proportion to the mass of the medium because the density of the concrete is much higher than that of air. Recently, in order to prevent the noise between floors of apartments such as apartments, a noise absorbing material is put into the foam concrete used for floor insulation or floor insulation. For prevention, a construction method that does not damage the insulation layer of the floor of the apartment house is preferable.

그러나 종래의 공동주택에서의 난방방식은 상술한 바와 같이 보일러 또는 원격지의 난방수 공급업체에서 가열된 온수를 보일러에 내장된 펌프 또는 세대별로 온수 분배기와 병행하여 설치된 펌프를 이용하여 난방배관을 통하여 각 실에 공급 하는 방법으로 온수를 순환시키는 것이다. 단일한 펌프에 의하여 난방수의 순환이 이루어지기 때문에 각 실까지의 난방용 배관의 마찰 저항을 균등하게 하기 위하여 일정 직경을 가진 난방배관(16A)을 사용하여야 하며, 온수 분배기에서 각 실까지의 거리와 크기에 관계없이 난방용 배관의 길이를 일정하게 시공하여야 하는 불편함이 있었다. However, the conventional heating method in the multi-unit house, as described above, through the heating pipe using the pump installed in the boiler or a hot water distributor in parallel with the hot water distributor for each generation of hot water heated by the heating water supplier in the remote place The hot water is circulated by supplying it to the chamber. Since the circulation of the heating water is made by a single pump, a heating pipe (16A) having a certain diameter should be used to equalize the frictional resistance of the heating pipes to each room, and the distance from the hot water distributor to each room Regardless of the size, there was an inconvenience in that the length of the heating pipe should be constant.

온수 분배기에서 각 실별로 분배된 난방용 배관의 길이가 일정하지 않을 경우에는 펌프에서 형성된 압력이 각 실별로 일정하게 도달되지 않고, 이에 따라 온수의 순환이 균일하지 못하여 불균일한 난방이 됨에 따라 불필요한 에너지 낭비를 초래하는 문제점이 있었다.If the length of the heating pipe distributed in each room in the hot water distributor is not constant, the pressure generated in the pump is not reached uniformly in each room, and accordingly, the circulation of hot water is not uniform and wastes unnecessary energy due to uneven heating. There was a problem that caused.

그리고 온수분배기에서 각실별로 균일한 온수의 순환을 위하여 난방용 배관으로 일정직경(16A)을 가진 배관을 사용함에 따라 공동주택의 바닥의 시멘트 모르터의 마감 두께가 최소 45mm이상을 필요로 하여 층간소음 방지를 위한 단열층에 손상을 초래할 수 있으며, 공동주택의 시공비가 증가하는 문제점이 있었다. In order to circulate the hot water uniformly in each room in the hot water distributor, the pipe with the constant diameter (16A) is used as the heating pipe. May cause damage to the insulation layer for, there was a problem that increases the construction cost of the apartment.

본 발명은 상기의 문제점을 해소하기 위하여 발명된 것으로, 아파트등 공동주택의 난방방법에 있어서 보일러 또는 원격지의 난방수 공급업체에서 가열된 온수를 보일러에 내장 또는 세대별로 온수 분배기와 병행하여 설치된 1차 펌프를 이용하여 온수분배기로 전달하고, 온수분배기를 통하여 각 실별로 전달되는 온수는 각 실의 난방 배관에 각각 형성된 2차 펌프들을 통하여 전달시킨다. 이와 같은 본 발명에 따른 난방 시스템에서는 기존의 난방 배관의 관경보다 적은 난방 배관(16A에 서 12A)을 사용하고 각 실별로 난방 배관의 길이를 다르게 설치하더라도 난방 배관의 마찰 저항에 구애되지 않는다. 그러므로 난방 배관을 간편하게 시공하며, 난방 배관으로 관경이 경감됨에 따라 공동주택의 바닥용 시멘트 모르터 마감 두께를 35mm로 하더라도 단열층에 손상을 주지 않는 시공이 가능함에 따라 에너지 효율을 극대화 할 수 있고 층간소음을 경감시킬 수 있는 공동주택의 난방 배관 시스템을 제공하는 데 그 목적이 있다. The present invention has been invented to solve the above problems, in the heating method of apartments, such as apartments, the first installed in parallel with the hot water distributor in the boiler or hot water heated in the boiler or remote heating water supplier in each boiler The pump is delivered to the hot water distributor, and the hot water delivered to each chamber through the hot water distributor is transferred through the secondary pumps respectively formed in the heating pipe of each chamber. In such a heating system according to the present invention, even if the heating pipe (16A to 12A) is used less than the diameter of the existing heating pipe, and the length of the heating pipe is installed differently for each room, it is not limited to the frictional resistance of the heating pipe. Therefore, the heating piping can be easily installed, and as the diameter of the heating pipe is reduced, even if the floor thickness of the cement mortar for the apartment is 35mm, the construction can be performed without damaging the insulation layer, thereby maximizing energy efficiency and noise between floors. The purpose is to provide a heating plumbing system for apartment houses that can be alleviated.

이와 같은 목적을 달성하기 위한 본 발명은The present invention for achieving the above object

원격지의 난방수 공급업체 또는 보일러를 통하여 가열된 온수를 이용하여 난방을 수행하는 공동주책의 난방 배관 시스템에 있어서,
보일러에서 가열된 온수를 다수의 2차밸브들이 형성된 온수분배기에 공급시키며, 온수분배기의 온수를 온수회수관으로 회수하기 위하여 보일러에 내장 또는 세대별로 온수 분배기와 병행하여 설치된 1차 펌프; 및
온수분배기에 형성된 2차밸브들의 출구측에 각각 형성되며 공동주택의 각 실에 매설된 난방배관으로의 각각 온수를 순환시키며, 각실을 순환된 온수를 다시 온수 분배기로 회수하기 의한 소형의 2차펌프들을 포함한다.
In a co-owned heating piping system that uses a hot water heated by a remote heating water supplier or a boiler,
A primary pump for supplying hot water heated in a boiler to a hot water distributor having a plurality of secondary valves, the primary pump being installed in a boiler or parallel to the hot water distributor for each generation to recover the hot water of the hot water distributor to the hot water collection pipe; And
Small secondary pump which is formed at the outlet side of the secondary valves formed in the hot water distributor and circulates the hot water to the heating pipe embedded in each room of the apartment house, and recovers the circulated hot water back to the hot water distributor. Include them.

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바람직하게, 2차 펌프의 용량은 2,000∼6,000kcal/h이고, 토출구경은 12∼16A이고, 각 실에 매설된 난방배관의 직경은 12∼16A이다. Preferably, the capacity of the secondary pump is 2,000 to 6,000 kcal / h, the discharge diameter is 12 to 16 A, and the diameter of the heating pipe embedded in each chamber is 12 to 16 A.

이하 첨부된 도면을 참조하여 본 발명의 바람직한 실시예를 상세히 설명하면 다음과 같다. Hereinafter, exemplary embodiments of the present invention will be described in detail with reference to the accompanying drawings.

도 1은 본 발명에 따른 공동주택의 난방 배관 시스템에서 난방 배관의 동작을 설명하기 위한 배관의 설치도이다.1 is an installation diagram of a pipe for explaining the operation of the heating piping in the heating piping system of a multi-unit house according to the present invention.

도 1에서 보는 바와 같이, 본 발명에 따른 난방 배관 시스템은 원격지의 난방수 공급업체 또는 보일러(100)를 통하여 가열된 온수를 공급받는다. 가열된 온수는 보일러에 내장 또는 세대별로 온수 분배기와 병행하여 설치된 1차 펌프(110)의 가압력을 이용하여 펌프측 메인 밸브(112) 및 배관경이 25A인 동관(114)을 통하여 공동주택의 각 실별로 온수의 공급을 개폐시키기 위한 다수의 2차밸브들(122a~122d)이 형성된 온수분배기(120)에 공급된다. As shown in FIG. 1, the heating piping system according to the present invention receives heated hot water through a remote heating water supplier or a boiler 100. The heated hot water is built into the boiler or through the main valve 112 of the pump side and the copper pipe 114 having a pipe diameter of 25 A by the pressing force of the primary pump 110 installed in parallel with the hot water distributor for each household. A plurality of secondary valves 122a to 122d for opening and closing the supply of hot water are supplied to the formed hot water distributor 120.

즉, 난방용 온수의 순환은 원격지의 난방수 공급업체 또는 보일러(100)에서 데워진 온수는 보일러에 내장 또는 세대별로 온수 분배기와 병행하여 설치된 1차 펌프(110)에 의하여 2차밸브들(122a~122d)이 형성된 온수분배기(120)에 공급된다.That is, the circulation of the hot water for heating is the secondary water heaters 122a to 122d by the primary pump 110 installed in parallel with the hot water distributor by the built-in or generation by the heating water supplier or the boiler 100 in a remote place. ) Is supplied to the formed hot water distributor (120).

여기서, 본 발명에 따른 난방배관시스템에서는 온수분배기(120)에 형성된 2차밸브들(122a~122d)의 출구측에 각각 소형의 2차펌프(130a~130d)들이 형성된다. 그러므로 2차 밸브들(122a~122d)로 공급된 난방이 필요하여 개방시킨 2차밸브들(122a~122d)을 통하여 2차 펌프들(130a~130d)에 공급된다. Here, in the heating piping system according to the present invention, small secondary pumps 130a to 130d are formed at the outlet sides of the secondary valves 122a to 122d formed in the hot water distributor 120. Therefore, heating supplied to the secondary valves 122a to 122d is required and supplied to the secondary pumps 130a to 130d through the secondary valves 122a to 122d opened.

2차 펌프들(130a~130d)에 공급된 온수는 2차펌프들(130a~130d)의 가압력에 의하여 2차펌프들(130a~130d)의 출구측의 12A 동관들(132a~132d)을 통과한 후 각 실을 난방한 후 다시 온수회수관(140)을 통하여 보일러(100)의 온수통 또는 원격지의 난방수 공급업체로 회수되어 난방을 수행한다.
즉, 본원 발명은 보일러(100)에서 방열손실 없이 재빠르게 각 거실로 균등하게 분배하는 것에 그 목적을 두고 보일러(100)와 1차 펌프(110)를 통하여 온수분배기(120)를 거쳐 온수회수관(140)으로 회수되는 구간을 온수 순환의 제 1 계통으로 하고, 온수분배기(120)에서 2차밸브들(122a~122d) 및 소형의 2차펌프들(130a~130d)을 통하여 각 거실의 난방코일을 경유하여 다시 온수분배기(120)로 유입되는 구간을 온수순환의 제 2 계통으로 분리시킴으로써 보일러(100)를 포함한 제 1 계통은 연료를 절감하고 2차 펌프들((130a~130d)를 포함한 제 2 계통은 각 거실의 최적 온도제어와 각 거실의 코일 길이에 따른 마찰손실을 제어하여 기존의 1차 펌프방식에 따른 각 거실의 난방불균형 문제를 해결할 수 있고 에너지를 절감하는 것이다. 본 발명의 제 1 펌프(110)와 제2 펌프들(130a~130d)은 각각 독립적으로 운전되는 것이다.
The hot water supplied to the secondary pumps 130a to 130d passes through the 12A copper tubes 132a to 132d on the outlet side of the secondary pumps 130a to 130d by the pressing force of the secondary pumps 130a to 130d. Then, after heating each room, the hot water collection pipe 140 is recovered again to the hot water tank of the boiler 100 or the heating water supplier of a remote place to perform heating.
That is, the present invention for hot water distribution pipe through the hot water distributor 120 through the boiler 100 and the primary pump 110 for the purpose of quickly and evenly distributed to each living room without the heat dissipation loss in the boiler (100). The section recovered to 140 is the first system of hot water circulation, and the heating of each living room through the secondary valves 122a to 122d and the small secondary pumps 130a to 130d in the hot water distributor 120. By separating the section flowing into the hot water distributor 120 again through the coil into a second system of the hot water circulation, the first system including the boiler 100 saves fuel and includes secondary pumps (130a to 130d). The second system is to solve the heating imbalance problem of each living room according to the existing primary pump method by controlling the optimum temperature control of each living room and the friction loss according to the coil length of each living room, and save energy. First Pump 110 and Second Pumps 130a to 130d Each is driven independently.

그러므로, 본 발명에 따른 난방 배관 시스템에서는 온수분배기(120)에 형성된 2차밸브들(122a~122d)의 출구측에 각각 소형의 2차펌프(130a~130d)들이 별도로 형성됨으로서 종래의 난방 배관의 관경보다 적은 난방 배관을 사용하고 각 실별로 난방 배관의 길이를 다르게 설치하더라도 난방 배관의 마찰 저항에 구애되지 않는다. 그러므로 난방 배관을 간편하게 시공하며, 난방 배관으로 관경이 경감됨에 따라 공동주택의 바닥용 시멘트 모르터 마감 두께를 35mm로 하더라도 단열층에 손상을 주지 않는 시공이 가능하다.
본 발명은 공통 온수분배기에서 2차 펌프를 거쳐 각 거실의 난방코일까지의 길이가 각각 다르게 시공할 수 있으며, 이 시공된 코일길이에 알맞는 마찰손실에 따라 그 유량과 양정에 맞는 2차 펌프를 선정하여야하며 독자계통으로 운전되어야 한다.
Therefore, in the heating piping system according to the present invention, since the small secondary pumps 130a to 130d are formed separately at the outlet sides of the secondary valves 122a to 122d formed in the hot water distributor 120, Even if you use less heating pipe than the diameter and install different lengths of heating pipes for each room, you are not limited to the frictional resistance of the heating pipes. Therefore, the heating pipes can be easily installed, and as the pipe diameter is reduced by the heating pipes, even if the thickness of the cement mortar for the floor of the apartment house is 35 mm, the construction can be performed without damaging the insulation layer.
The present invention can be constructed in a different length from the common hot water distributor to the heating coil of each living room through the secondary pump, and according to the friction loss suitable for the length of the coil, the secondary pump that matches the flow rate and head It should be selected and operated on its own system.

본 발명에 따른 난방 배관시스템서 사용되는 1차 및 2차 펌프의 사양 및 종래의 난방시스템에서 사용되는 펌프의 사양에 대한 비교는 <표 1>과 같다.Comparison of the specifications of the primary and secondary pumps used in the heating piping system according to the present invention and the specifications of the pumps used in the conventional heating system are shown in Table 1.

<표1> 본 발명과 종래의 난방 배관 시스템의 펌프의 비교<Table 1> Comparison of the present invention and the pump of the conventional heating piping system

형 식 구 분        Type Classification 본 발명의 펌프사양Pump specification of the present invention 종래의 펌프사양Conventional pump specification 1차 펌프Primary pump 2차펌프Secondary pump 단일 펌프Single pump 용량(kcal/h)Capacity (kcal / h) 10,000∼16,00010,000-16,000 2,0002,000 10,000∼16,00010,000-16,000 전원(v/hz)Power (v / hz) 220/60220/60 220/60220/60 입력(watt)Input (watt) 2020 33 5050 입력(계)Input (count) 38∼4138-41 5050 양정(m)Head lift (m) 1One 0.50.5 22 유량(t/min)Flow rate (t / min) 2424 33 2424 토출구경(A)Outlet diameter (A) 2525 1212 2525

종래의 난방 배관 시스템은 보일러에 내장 또는 세대별로 온수 분배기와 병행하여 설치된 단일한 펌프를 통하여 온수를 공급하여 난방이 이루어지기 때문에 난방코일 배관의 저항을 같게 하기 위하여 배관의 길이를 일정하게 구성하는 것임에 비하여 본 발명에 따른 난방배관 시스템은 2차 펌프를 통하여 각실에 온수를 공급하는 방식을 통하여 난방이 이루어지기 때문에 2차 펌프와 각실까지의 난방코일 배관의 길이와 관계없이 시공이 이루어진다.In the conventional heating piping system, since the heating is performed by supplying hot water through a single pump installed in a boiler or in parallel with the hot water distributor for each generation, the length of the pipe is uniformly configured to make the resistance of the heating coil pipe the same. Compared with the heating piping system according to the present invention, since the heating is performed by supplying hot water to each room through the secondary pump, the construction is performed regardless of the length of the secondary coil and the heating coil pipe to each room.

상술한 바와 같이, 본 발명에 따른 공동주택의 난방 배관시스템은 난방용 온수의 순환에 있어서 1차 및 2차 펌프를 이용하여 난방을 실시함에 따라 난방코일 배관시 마찰 저항을 고려하지 않고 시공할 수 있어 시공의 간편화, 난방의 효율화를 이룰 수 있다. 또한, 난방코일 배관의 관경을 경감하여 시공할 수 있어서 층간 소음 방지 및 에너지 효율을 극대화 할 수 있다.As described above, the heating plumbing system of the multi-unit house according to the present invention can be constructed without considering the frictional resistance during heating coil piping by heating by using the primary and secondary pump in the circulation of hot water for heating. Simplification of construction and efficiency of heating can be achieved. In addition, it can be installed by reducing the diameter of the heating coil pipe to maximize the noise efficiency and energy saving between floors.

이상에서 첨부된 도면을 참조하여 본 발명의 바람직한 실시예를 상세히 설명하였으나, 본 발명은 이에 한정되는 것이 아니며 본 발명의 기술적 사상의 범위내에서 당업자에 의해 그 개량이나 변형이 가능하다.Although the preferred embodiments of the present invention have been described in detail with reference to the accompanying drawings, the present invention is not limited thereto and may be improved or modified by those skilled in the art within the scope of the technical idea of the present invention.

Claims (3)

원격지의 난방수 공급업체 또는 보일러(100)를 통하여 가열된 온수를 이용하여 난방을 수행하는 공동주책의 난방 배관 시스템에 있어서, In the heating pipe system of the joint order to perform heating by using hot water heated through a remote heating water supplier or boiler 100, 상기 보일러(110)에서 가열된 온수를 다수의 2차밸브들(122a~122d)이 형성된 온수분배기(120)에 공급시키며, 상기 온수분배기(120)의 온수를 온수회수관(140)으로 회수하기 위하여 보일러에 내장 또는 세대별로 온수 분배기와 병행하여 설치된 1차 펌프(110); 및 Supplying hot water heated in the boiler 110 to the hot water distributor 120 having a plurality of secondary valves 122a to 122d, and recovering the hot water of the hot water distributor 120 to the hot water recovery pipe 140. Primary pump 110 installed in parallel with the hot water distributor for each generation or in the boiler; And 상기 온수분배기(120)에 형성된 2차밸브들(122a~122d)의 출구측에 각각 형성되며 공동주택의 각 실에 매설된 난방배관으로의 각각 온수를 순환시키며, 상기 각실을 순환된 온수를 다시 온수 분배기(120)로 회수하기 의한 소형의 2차펌프(130a~130d)들을 포함하는 공동주택의 난방배관시스템.It is formed at the outlet side of the secondary valves (122a ~ 122d) formed in the hot water distributor 120, respectively circulating the hot water to the heating pipes embedded in each room of the apartment house, the hot water circulated through the respective rooms again Heating piping system of a multi-family house comprising a small secondary pump (130a ~ 130d) by recovering the hot water distributor (120). 제 1항에 있어서, 상기 2차 펌프의 용량은 2,000∼6,000kcal/h이고, 양정은 0.5∼1 m 및 유량은 3∼10 t/min이며, 토출구경은 12∼16A임을 특징으로 하는 공동주택의 난방배관시스템.The multi-family house according to claim 1, wherein the capacity of the secondary pump is 2,000 to 6,000 kcal / h, the head is 0.5 to 1 m, the flow rate is 3 to 10 t / min, and the discharge diameter is 12 to 16 A. Heating piping system. 제 1 항에 있어서, 상기 각실에 매설된 난방배관의 직경은 12∼16A임을 특징으로 하는 공동주택의 난방배관시스템.The heating piping system according to claim 1, wherein the diameter of the heating pipes embedded in the rooms is 12 to 16A.
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Publication number Priority date Publication date Assignee Title
KR970062540A (en) * 1996-02-16 1997-09-12 노재훈 Heating water automatic distributor of boiler
KR19980013802A (en) * 1996-08-03 1998-05-15 송석원 Control device for centralized hot water distribution system
KR19990013526U (en) * 1997-09-27 1999-04-15 최병숙 Hot water boiler with distributor assembly
JP2001241677A (en) 2000-03-02 2001-09-07 Corona Corp Hot water heating device
KR200265183Y1 (en) 2001-10-18 2002-02-25 김완규 Individual heating (central heating) device using circulation pump and check valve.
KR20030062060A (en) * 2002-01-16 2003-07-23 이수빈 Hot water pipe and floor heating system using the hot water pipe
KR20050073637A (en) * 2004-01-09 2005-07-18 송종석 Individual heating system to be possible thermostatic control of each heating zone

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Publication number Priority date Publication date Assignee Title
KR970062540A (en) * 1996-02-16 1997-09-12 노재훈 Heating water automatic distributor of boiler
KR19980013802A (en) * 1996-08-03 1998-05-15 송석원 Control device for centralized hot water distribution system
KR19990013526U (en) * 1997-09-27 1999-04-15 최병숙 Hot water boiler with distributor assembly
JP2001241677A (en) 2000-03-02 2001-09-07 Corona Corp Hot water heating device
KR200265183Y1 (en) 2001-10-18 2002-02-25 김완규 Individual heating (central heating) device using circulation pump and check valve.
KR20030062060A (en) * 2002-01-16 2003-07-23 이수빈 Hot water pipe and floor heating system using the hot water pipe
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