KR810000022Y1 - Water-tube for home use hot-water boiler - Google Patents

Water-tube for home use hot-water boiler Download PDF

Info

Publication number
KR810000022Y1
KR810000022Y1 KR790005236U KR790005236U KR810000022Y1 KR 810000022 Y1 KR810000022 Y1 KR 810000022Y1 KR 790005236 U KR790005236 U KR 790005236U KR 790005236 U KR790005236 U KR 790005236U KR 810000022 Y1 KR810000022 Y1 KR 810000022Y1
Authority
KR
South Korea
Prior art keywords
water
heat
tube
boiler
home use
Prior art date
Application number
KR790005236U
Other languages
Korean (ko)
Inventor
김기
Original Assignee
김기
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 김기 filed Critical 김기
Priority to KR790005236U priority Critical patent/KR810000022Y1/en
Application granted granted Critical
Publication of KR810000022Y1 publication Critical patent/KR810000022Y1/en

Links

Landscapes

  • Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)

Abstract

내용 없음.No content.

Description

가정용 보일러의 수조Countertop of household boiler

제1도는 본 고안의 사시도.1 is a perspective view of the present invention.

제2도는 본 고안의 수조를 부분 발췌한 상태의 확대 사시도.Figure 2 is an enlarged perspective view of a partially extracted tank of the present invention.

제3도는 본 고안의 사용상태를 표시한 단면도.3 is a cross-sectional view showing the state of use of the subject innovation.

제4도는 본 고안의 수조를 발췌한 상태의 부분확대 단면도.Figure 4 is a partially enlarged cross-sectional view of the tank extract of the present invention.

본 고안은 가정에서 사용하는 소형 보일러의 수조를 나선상으로 권설하여 형성화되 내면에 전열면적을 증대시켜서 가온의 신속화와 이에 따른 연료의 절약은 물론, 보일러 설치의 간편화를 기하고 제작시의 공정을 단순화하며 연료 효율을 최대한으로 활용토록 안출한 가정용 보일러의 수조에 관한 것이다.The present invention is formed by spirally installing a water tank of a small boiler used at home, and increases the heat transfer area on the inner surface, thereby facilitating heating and consequently saving fuel, simplifying boiler installation, and simplifying the manufacturing process. It also relates to a tank of a domestic boiler designed to make the best use of fuel efficiency.

종래에는 원형관을 나선상으로 권선케 한것의 결점을 보완토록 한 것이 실용신안 공보제409호에 계재된바 있는 8자형으로 구성한 것이 있는데 이는 목적하는 바의 효과를 얻지 못하였을 뿐 아니라 필요없는 부분으로 열전도가 되고 필요한 부분으로는 열전도가 효과적으로 이루어지지 않으며 제작시 자체 소모가 많고 시공시에 보온재의 충진이어려우며 연소열이 직접 닿지않는 면적이 절반이 넘기 때문에 물이 가온되는 시간이 더소요되며, 신속히 가온되지 않고, 파이프가 장구형으로 되여 열전도연소열이 직접 받는 면적이 적은등 제결점이 많았든 것이다.In the related art, to compensate for the shortcomings of winding a circular tube in a spiral shape, there is an 8-character shape described in Utility Model Publication No. 409, which does not have the desired effect and is not necessary. As heat conduction is required, heat conduction is not done effectively, and it is expensive to manufacture itself, it is difficult to fill the insulation during construction, and because the area where the heat of heat does not directly reach more than half, it takes more time to warm up the water. There were many defects such as not being heated, the pipes being long-shaped and having a small area of direct heat transfer.

본 고안은 이와 같은 종래의 제결점을 해결및 보완하고 연소열이 직접 받는 면적을 극대화하고 연소열이 직접 받지 않는 부분을 극소화하여 내부에 유통되는 물이 신속히 가온토록 안출한 것으로서 첨부된 도면에 의하여 상세히 설명하면 다음과 같다.The present invention solves and complements the above conventional drawbacks, maximizes the area of direct combustion heat, minimizes the portion of direct combustion heat and minimizes the portion of direct combustion heat so that the water circulated inside can be quickly warmed and described in detail by the accompanying drawings. Is as follows.

수관을 코일상의 나선관으로 수조(1)을 구성함에 있어서, 외측면(4) 내향으로 상부경사면(5)(5′)와 하부경사면(6)(6′)과 내측면(7)(7′)을 형성하여 상하수실(8)(8′)를 형성한 수조(1)을 코일형의 나선상으로 권설하여 그상하단(2)(3)에 2조의 배출구(9)(9′)와 환수구(10)(10′)를 형성하여서 된 것이다.In constructing the water tank 1 with a coiled spiral tube, the inclined surface 5, 5 'and the inclined surface 6, 6' and the inner surface 7, 7 inward of the outer surface 4 are formed. '(1) is formed, and the water tank (1) in which the water and sewage chambers (8) (8') are formed is coiled in a spiral shape, and two sets of outlets (9) (9 ') and return water are disposed at upper and lower ends (2) and (3). It was made by forming the sphere 10 (10 ').

미설명부호 11은 내공, 12는 연소통, 13은 보온재, 14는 방열실, 15는 연통, 16은 공기 공급구이다.Reference numeral 11 is an internal hole, 12 is a combustion cylinder, 13 is a heat insulating material, 14 is a heat dissipation chamber, 15 is a communication, 16 is an air supply port.

이와 같이 된 본 고안의 작용효과를 설명하면 다음과 같다.Referring to the effect of the present invention made as follows.

제3도에 표시한 바와 같이 장치하여 사용케 되는데 수조(1)의 내측내공(11)에 연소통(12)를 안치하고 보온재(13)으로서 보온케한 다음, 하부 환수구(10′)와 하부 배출구(9′)를 연결 순환케 하거나 상부 환수구(10)과 상부배출구(9)를 연결각기 별도의 순환회로를 구성하여 사용할 수도 있고 상하배출구(9)(9′), 상하환수구(10)(10′)를 하나로서 연결 사용할수도 있게 되는데,As shown in FIG. 3, the apparatus is used by placing the combustion cylinder 12 in the inner cavity 11 of the water tank 1, keeping it warm as a heat insulating material 13, and Connect the lower outlet (9 ') or connect the upper return port (10) and the upper outlet (9) can be used to configure a separate circulation circuit, respectively, the upper and lower outlet (9) (9'), the upper and lower return ( 10) (10 ') can be used as one,

연소통(12)에 연탄을 연소시키면 연소열이수조(1)내측의 상하 경사면(5)(5),(6)(6′)와 상하내측면(7)(7′)의 삼면을 가열시킴으로 상하수실(8)(8′)내로 순환되는 물의 가온속도가 빠르게 되며 연소열 자체도 배출되는 과정에서 나선상의 요구를 따라서 와류형상으로 회전 상승하기 때문에 신속하게 배출되지 않게 되어 연소열은 수조(1)내면에 충분히 열을 전달한 후 배출케 되어 폐열의 낭비가 없이 열효율을 종래의 8자형수조에 비하여 최대한으로 활용케되는 효과를 갖게 되는 것이다.When the coal briquettes are burned in the combustion cylinder 12, three surfaces of the upper and lower inclined surfaces 5, 5, 6, 6 'and the upper and lower inner surfaces 7, 7' inside the combustion heat tank 1 are heated. The heating rate of the water circulated into the water and sewage chamber 8 (8 ') is increased, and the combustion heat itself is not discharged quickly because it rises in a vortex shape according to the spiral demand in the process of discharging the combustion heat itself. After the heat is sufficiently transferred to the discharged, there is no waste of waste heat to have the effect of maximally utilizing the thermal efficiency as compared to the conventional eight-shaped water tank.

즉, 본 고안은 종래의 원형관 장방형관등과 같이 전열 접속면이 절반밖에 되지 않는데 비하여 본고안수조는 외측면(4)에 비하여 연소열이 직접 닿는 접속면이 상부경사면(5)(5′)와 하부 경사면(6)(6′) 및 내면(7)(7′)의 삼면이 연소열의 직접 닿은 접속면이 되여 전열 면적이 배가 되므로 연소열을 최대한 이용하게 되고 외면(4)이 평판 상이여서 발열 또한 대폭 감속 시킬수가 있게 된다.In other words, the present invention has only half the heat transfer connection surface as in the conventional circular tube rectangular tube, etc., the main ophthalmic tank has a connection surface where the heat of combustion directly touches the upper slope surface (5) (5 ') and the outer surface (4). The three surfaces of the lower inclined surfaces 6, 6 'and the inner surface 7, 7' become direct contact surfaces of the combustion heat, so that the heat transfer area is doubled, thereby making the most of the combustion heat. The speed can be greatly reduced.

또 수조(1)의 제작공정에 있어서도 상하수실(8)(8′)를 동시에 권선할 수 있어서 단선식 강관제보다 신속하게 할수 있고 특히 상하수실(8)(8′)가 상하로 분리되여 있어 열의 흡수가 빠르고 균일하여 순환회로가 균일한 출력으로 순환될수 있는 것이다.Also, in the manufacturing process of the water tank 1, the water and sewage chambers 8 and 8 'can be wound at the same time, so that they can be made faster than the single wire steel pipe, and the water and sewage chambers 8 and 8' are separated up and down. Absorption of heat is fast and uniform, so the circulation circuit can be circulated with uniform output.

이와 같이 본 고안은 전열 접속면적의 증대로 인한 열효율의 극대화와 제작상의 공정을 단순화 시키면서 두가지로 다변화하며 제작및 설치비에 경제성을 부여할수 있는 효과적인 것이다.As such, the present invention is effective in maximizing thermal efficiency due to the increase in the heat transfer connection area and simplifying the manufacturing process.

Claims (1)

도면에 표시한 바와같이 외측면(4) 내향으로 상부경사면(5)(5′)와 하부경사면(6)(6′)과 내측면(7)(7′)를 형성하여 상하수실(8)(8′)를 형성한 수조(1)을 코일형의 나선상으로 권설하여 그 상하단(2)(3)에 2조의 배출구(9)(9′)와 환수구(10)(10′)를 형성하여서된 가정용 보일러의 수조.As shown in the figure, the upper and lower inclined surfaces 8 are formed by forming the upper inclined surface 5, 5 ', the lower inclined surface 6, 6', and the inner surface 7, 7 'inwardly of the outer surface 4. The tank 1 in which the 8 'is formed is wound in a coiled spiral to form two sets of discharge ports 9, 9' and a return port 10, 10 'in the upper and lower ends 2, 3, respectively. Tank of domestic boiler.
KR790005236U 1979-08-30 1979-08-30 Water-tube for home use hot-water boiler KR810000022Y1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR790005236U KR810000022Y1 (en) 1979-08-30 1979-08-30 Water-tube for home use hot-water boiler

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR790005236U KR810000022Y1 (en) 1979-08-30 1979-08-30 Water-tube for home use hot-water boiler

Publications (1)

Publication Number Publication Date
KR810000022Y1 true KR810000022Y1 (en) 1981-01-31

Family

ID=19214254

Family Applications (1)

Application Number Title Priority Date Filing Date
KR790005236U KR810000022Y1 (en) 1979-08-30 1979-08-30 Water-tube for home use hot-water boiler

Country Status (1)

Country Link
KR (1) KR810000022Y1 (en)

Similar Documents

Publication Publication Date Title
KR960004764Y1 (en) Boiler for room heating
CN210624951U (en) Energy-saving combustion chamber of gas wall-mounted furnace
KR810000022Y1 (en) Water-tube for home use hot-water boiler
CN2314285Y (en) Circular electric water heater
CN107212736B (en) Gas type steam generator and inner container thereof
CN212901718U (en) Energy-saving heating device for intelligent building
CN2366777Y (en) High temp. steam boiler
CN213514408U (en) Iron liner of boiler
CN2319745Y (en) Household gas boiler
CN216347085U (en) Wall-mounted low-carbon condensation energy saver
CN210070225U (en) Boiler with condensation function
CN213454252U (en) Superconducting structure for water heating equipment
CN218179025U (en) Hybrid heater for heating in power plant
CN216245532U (en) Communicating circulating shuttle kiln
CN208011684U (en) A kind of energy saving hydroelectric separation water heater
KR200207399Y1 (en) Firewood Boiler
KR20000021319U (en) A structure of boiler
CN206176719U (en) High -efficient boiler of energy saving and emission reduction
JPS6146357Y2 (en)
CN207751175U (en) Direct fired-air heating system
CN100491861C (en) Partition structure type pressure-bearing flowing fluid quick heater
JPH0224043Y2 (en)
KR850002177Y1 (en) Hot water boiler
CN2358396Y (en) Boiler for domestic gas-fired stove
KR900006506Y1 (en) Steam boiler