CN109813145A - A kind of new radiator - Google Patents
A kind of new radiator Download PDFInfo
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- CN109813145A CN109813145A CN201910228446.2A CN201910228446A CN109813145A CN 109813145 A CN109813145 A CN 109813145A CN 201910228446 A CN201910228446 A CN 201910228446A CN 109813145 A CN109813145 A CN 109813145A
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- heat
- dissipating pipe
- recirculated water
- water
- pipe
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Abstract
The invention discloses a kind of new radiators, it is related to radiator field, the new radiator, including heat-dissipating pipe outside recirculated water, water inlet pipe mouth, effluent pipe mouth and deflation valve port, the outer heat-dissipating pipe of the recirculated water is located at the centre of water inlet pipe mouth and effluent pipe mouth, the water inlet pipe mouth is located at the top of effluent pipe mouth, the quantity of the deflation valve port is two, the outer heat-dissipating pipe of the recirculated water is located at the centre of two deflation valve ports, and two deflation valve ports are located on the axis of water inlet pipe mouth and effluent pipe mouth, the inside of the outer heat-dissipating pipe of the recirculated water is fixedly connected with interior heat-dissipating pipe, the outer heat-dissipating pipe of the recirculated water is vertical direction setting.The present invention passes through the outer heat-dissipating pipe of setting recirculated water, water inlet pipe mouth, effluent pipe mouth, interior heat-dissipating pipe and connecting tube, it is fast to solve traditional radiator internal hot-water flow velocity, only radiated outward by the tube wall of the outer heat-dissipating pipe of recirculated water, the outer heat-dissipating pipe lateral heat dissipation face of recirculated water is wider, facade between two pipes is relatively narrow, heat dissipation capacity is lower, causes the heat utilization rate of radiator not high, the bad problem of heat dissipation effect.
Description
Technical field
The present invention relates to heat sink technology field, specially a kind of new radiator.
Background technique
Radiator is a kind of water heating type heater, by radiator, radiator generally comprise transverse tube, water inlet pipe mouth,
Effluent pipe mouth and circulating water pipe, circulating water pipe are radiator, and hot-water line is passed through hot water to water inlet pipe mouth and is passed to recirculated water
Heat dissipation, increases air themperature, and do not dry, that is, can reach the purpose of heating in pipe.
Transverse tube is generally arranged in conjunction with circulating water pipe in traditional radiator, transverse tube be a straight tube being integrally connected to, two
Transverse tube is connected to the top of one group of circulating water pipe and bottom end respectively, imports hot water from top transverse tube one end, after Hot water branch simultaneously
It is flowed into every independent loops water pipe inside circulation and from below the transverse tube other end while exporting, the structure water flow velocity is fast, heat
Have little time to shed completely, a large amount of hot water need to be imported just and can produce heat output, heat utilization rate is lower, and only passes through recirculated water
The tube wall of pipe radiates outward, and circulating water pipe lateral heat dissipation face is wider, and the facade between two pipes is relatively narrow, guarantee adjacent circulation water pipe it
Between in the situation appropriate of convection current gap, need more circulating water pipes welding to realize to reach certain heat dissipation area, not only take up an area face
Product is big, and the convection current radiation effect that relatively narrow the distributed heat of facade generates between two pipes is poor, and heat dissipation capacity is lower, causes to dissipate
The heat utilization rate of hot device is not high, so that heat dissipation effect is bad.
Summary of the invention
(1) the technical issues of solving
In view of the deficiencies of the prior art, the present invention provides a kind of new radiators, solve inside traditional radiator
Flow rate of hot water is fast, is only radiated outward by the tube wall of circulating water pipe, circulating water pipe lateral heat dissipation face is wider, the facade between two pipes
Relatively narrow, heat dissipation capacity is lower, causes the heat utilization rate of radiator not high, the bad problem of heat dissipation effect.
(2) technical solution
To achieve the above object, the invention provides the following technical scheme: radiating outside a kind of new radiator, including recirculated water
Pipe, water inlet pipe mouth, effluent pipe mouth and deflation valve port, the outer heat-dissipating pipe of the recirculated water are located in water inlet pipe mouth and effluent pipe mouth
Between, the water inlet pipe mouth is located at the top of effluent pipe mouth, and the quantity of the deflation valve port is two, the outer heat-dissipating pipe of the recirculated water
Positioned at the centre of two deflation valve ports, and two deflation valve ports are located on the axis of water inlet pipe mouth and effluent pipe mouth, described
The inside of the outer heat-dissipating pipe of recirculated water is fixedly connected with interior heat-dissipating pipe, and the outer heat-dissipating pipe of the recirculated water is vertical direction setting, described
The outer heat-dissipating pipe of recirculated water from left to right fix and connect by equidistant arrangement, the side of the outer heat-dissipating pipe of the recirculated water and one end of connecting tube
It connecing, and the outer heat-dissipating pipe of recirculated water is connected with connecting tube, the connecting tube is located at the centre of the outer heat-dissipating pipe of two adjacent circulation water,
The quantity of the connecting tube is two groups, and connecting tube described in two groups is symmetrical axial symmetry point with the horizontal axis of heat-dissipating pipe outside recirculated water
Axis of the axis of cloth, the water inlet pipe mouth and effluent pipe mouth respectively with two groups of connecting tubes is located on the same line.
Preferably, the two sides of the outer heat-dissipating pipe of the recirculated water are the curved surface of outwardly convex, the outer heat-dissipating pipe side of the recirculated water
The width in face is 1.5 to 3 times of frontal width.
Preferably, the equal length of the length of the interior heat-dissipating pipe and the outer heat-dissipating pipe of recirculated water, and the outer wall of interior heat-dissipating pipe
Enclosed water containing chamber is surrounded with the inner wall of heat-dissipating pipe outside recirculated water, the water containing chamber is in vertical tubulose.
Preferably, connecting tube described in two groups is located on same vertical plane, and two groups of connecting tubes are parallel to each other.
Preferably, the connecting tube is mutually perpendicular to the outer heat-dissipating pipe of recirculated water, and the connecting tube, which is located at outside recirculated water, to radiate
Pipe side is at the position of close end.
(3) beneficial effect
The present invention provides a kind of new radiator, have it is following the utility model has the advantages that
The present invention is cancelled by the outer heat-dissipating pipe of setting recirculated water, water inlet pipe mouth, effluent pipe mouth, interior heat-dissipating pipe and connecting tube
The horizontal tube structure of traditional heat sinks is replaced by more connecting tubes, is reduced flow rate of hot water, is extended the residence time of hot water, make
Thermal energy is sufficiently dissipated and is come out, and the outer heat-dissipating pipe of recirculated water is arranged to that facade is wider, the relatively narrow structure of plane of structure, facade is wider make it is adjacent
The heat convection radiating surface that the outer heat-dissipating pipe of recirculated water generates increases, and enhances radiating efficiency, by heat-dissipating pipe in being arranged, outside recirculated water
Interior heat-dissipating pipe is impregnated and passes through interior heat-dissipating pipe and distributes thermal energy to interior from upper end by hot water in heat-dissipating pipe, is generated in interior heat-dissipating pipe
Heat can itself generate convection current radiation effect, enhance distributing for its heat, achieved the purpose that greatly enhance the thermal efficiency, solve
Traditional radiator internal hot-water flow velocity is fast, is only radiated outward by the tube wall of circulating water pipe, circulating water pipe lateral heat dissipation face
Wider, the facade between two pipes is relatively narrow, and heat dissipation capacity is lower, causes the heat utilization rate of radiator not high, heat dissipation effect is bad
Problem.
Detailed description of the invention
Fig. 1 is overall structure of the present invention;
Fig. 2 is front elevational view of the present invention;
Fig. 3 is top cross-sectional view at water inlet pipe mouth position of the present invention;
Fig. 4 is top cross-sectional view at effluent pipe mouth position of the present invention.
In figure: 1, the outer heat-dissipating pipe of recirculated water;2, water inlet pipe mouth;3, effluent pipe mouth;4, deflation valve port;5, interior heat-dissipating pipe;6,
Connecting tube;7, water containing chamber.
Specific embodiment
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete
Site preparation description, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.It is based on
Embodiment in the present invention, it is obtained by those of ordinary skill in the art without making creative efforts every other
Embodiment shall fall within the protection scope of the present invention.
As shown in Figs 1-4, the present invention provides a kind of technical solution: a kind of new radiator, including heat-dissipating pipe outside recirculated water
1, water inlet pipe mouth 2, effluent pipe mouth 3 and deflation valve port 4, water inlet pipe mouth 2 connect supplying hot water pipe and are used for supplying hot water, and effluent pipe mouth 3 connects
Pass-out waterpipe makes hot water circulate for hot water to be discharged, and deflation valve port 4, which goes out to be threadedly coupled valve, blocks up, and when valve opening can exclude
The quantity of gas, the outer heat-dissipating pipe 1 of recirculated water is several, is arranged in same perpendicular, the outer heat-dissipating pipe 1 of recirculated water be located at into
The centre of hose nozzle 2 and effluent pipe mouth 3, water inlet pipe mouth 2 are positioned close to the outer 1 side middle and upper part of heat-dissipating pipe of recirculated water of side,
Effluent pipe mouth 3 is positioned close to the outer 1 side middle and lower part of heat-dissipating pipe of recirculated water of another side, and water inlet pipe mouth 2 is located at effluent pipe mouth 3
Top, the quantity of deflation valve port 4 is two, and the outer heat-dissipating pipe 1 of recirculated water is located at the centre of two deflation valve ports 4, and two are deflated
Valve port 4 is separately positioned on the 1 side middle and upper part of heat-dissipating pipe outside the recirculated water of proximal edges and dissipates outside the recirculated water of another side
At 1 side middle and lower part position of heat pipe, and two deflation valve ports 4 are located on the axis of water inlet pipe mouth 2 and effluent pipe mouth 3, are followed
The inside of the outer heat-dissipating pipe 1 of ring water is fixedly connected with interior heat-dissipating pipe 5, and the outer heat-dissipating pipe 1 of recirculated water is that vertical direction is arranged, outside recirculated water
The side of the equidistant arrangement from left to right of heat-dissipating pipe 1, the outer heat-dissipating pipe 1 of recirculated water is fixedly connected with one end of connecting tube 6, and recirculated water
Outer heat-dissipating pipe 1 is connected with connecting tube 6, and connecting tube 6 is located at the centre of the outer heat-dissipating pipe 1 of two adjacent circulation water, the number of connecting tube 6
Amount be two groups, two groups of connecting tubes 6 are symmetrical as symmetry axis using the horizontal axis of heat-dissipating pipe 1 outside recirculated water, water inlet pipe mouth 2 and out
Axis of the axis of hose nozzle 3 respectively with two groups of connecting tubes 6 is located on the same line.
As a kind of technical optimization scheme of the invention, the two sides of the outer heat-dissipating pipe 1 of recirculated water are the curved surface of outwardly convex, are followed
The width of outer 1 side of heat-dissipating pipe of ring water is 1.5 to 3 times of frontal width.
As a kind of technical optimization scheme of the invention, the length and the length phase of the outer heat-dissipating pipe 1 of recirculated water of interior heat-dissipating pipe 5
Deng, and the inner wall of the outer wall of interior heat-dissipating pipe 5 and the outer heat-dissipating pipe 1 of recirculated water surrounds enclosed water containing chamber 7, water containing chamber 7 is in vertical
Tubulose, 7 internal circulation hot water of water containing chamber, the inner wall of interior heat-dissipating pipe 5 distribute heat, and hot-air rises at the inner wall of interior heat-dissipating pipe 5,
The air pressure inside of interior heat-dissipating pipe 5 reduces, and enters air-flow from interior 5 bottom of heat-dissipating pipe, and then heat at the inner wall of interior heat-dissipating pipe 5 is empty
Gas squeezes out, and strengthens the circulating rate of thermal current.
As a kind of technical optimization scheme of the invention, two groups of connecting tubes 6 are located on same vertical plane, and two groups of connecting tubes
6 are parallel to each other, and are equally distributed on same straight line with connecting tube 6 is organized, and guarantee between the outer heat-dissipating pipe 1 of two neighboring recirculated water
There is equidistant gap, forms hot-air convection in gap.
As a kind of technical optimization scheme of the invention, connecting tube 6 is mutually perpendicular to the outer heat-dissipating pipe 1 of recirculated water, connecting tube 6
Positioned at 1 side of heat-dissipating pipe outside recirculated water at the position of close end, outer 1 axis of heat-dissipating pipe of the axis and recirculated water of connecting tube 6 is handed over
In a bit, the outer heat-dissipating pipe 1 of two neighboring recirculated water is arranged in parallel, and the outer heat-dissipating pipe 1 of recirculated water passes through connecting tube 6 and adjacent
The outer heat-dissipating pipe 1 of recirculated water is connected to, and the opposite face position for being welded on the outer heat-dissipating pipe 1 of two neighboring recirculated water is laterally arranged in connecting tube 6
The smooth circulation of thermal current is convenient at place.
When in use, heat supply water pipe is installed to 2 one end of water inlet pipe mouth, effluent pipe mouth 3 is connected into outlet conduit, valve opening
When, heat supply water pipe circulation hot water, according to thermal current natural reaction, heat is generally all distributed from upper end, cancels traditional heat sinks
Horizontal tube structure, so that the heat moment generated between the outer heat-dissipating pipe 1 of recirculated water be made to form convection current radiation effect and from upper end gap
Middle discharge, heat dissipation range increase, and by the interspersed side surface for being welded on heat-dissipating pipe 1 outside adjacent circulation water of more connecting tubes 6, make heat
Water successively imports heat-dissipating pipe 1 outside every recirculated water by connecting tube 6 from water inlet pipe mouth 2 toward 3 direction of effluent pipe mouth, and hot water, which flows into, to be held
It inside water cavity 7, and is flowed in water containing chamber 7, reduces flow rate of hot water, hot water flows to outside the corresponding recirculated water of effluent pipe mouth 3
The effluent pipe mouth 3 of 1 Shi Caicong radiator of heat-dissipating pipe flows out, and extends the residence time of hot water, dissipates thermal energy sufficiently and come out, follow
The outer heat-dissipating pipe 1 of ring water is arranged to that facade is wider, and the relatively narrow structure of plane of structure reaches same area of heat-supply service, space is greatly saved,
And the wider heat convection radiating surface for generating outer 1 opposite face of heat-dissipating pipe of adjacent circulation water of facade increases, enhancing heat dissipation effect
The facade of rate, the outer heat-dissipating pipe 1 of recirculated water is arc, is convenient for the smooth circulation of hot-air, passes through heat-dissipating pipe 5 in being arranged, interior heat-dissipating pipe 5
It is immersed within outer wall one week in the hot water in the outer heat-dissipating pipe 1 of recirculated water, when will be interior scattered in heat-dissipating pipe 1 outside hot water circuit to recirculated water
Heat pipe 5 impregnates and is distributed thermal energy to interior from interior 5 upper end of heat-dissipating pipe by interior heat-dissipating pipe 5, empty according to air stream physical principle
Gas, which enters from interior 5 bottom of heat-dissipating pipe from interior 5 upper end of heat-dissipating pipe, to be discharged, and the heat generated in interior heat-dissipating pipe 5 itself can generate convection current
Radiation effect enhances distributing for its heat, and the thermal energy that hot water generates in the outer heat-dissipating pipe 1 of recirculated water is first from interior 5 center of heat-dissipating pipe
It distributes, then also corresponding generation convection current radiation effect between the tube wall and adjacent tube wall of the outer heat-dissipating pipe 1 of recirculated water, and from two
It is discharged in side and upper and lower side gap, greatly enhances the thermal efficiency.
It can to sum up obtain, the present invention passes through setting recirculated water outer heat-dissipating pipe 1, water inlet pipe mouth 2, effluent pipe mouth 3, interior heat-dissipating pipe 5
It with connecting tube 6, solves that traditional radiator internal hot-water flow velocity is fast, is only dissipated outward by the tube wall of the outer heat-dissipating pipe 1 of recirculated water
Heat, the outer 1 lateral heat dissipation face of heat-dissipating pipe of recirculated water is wider, and the facade between two pipes is relatively narrow, and heat dissipation capacity is lower, leads to the heat of radiator
Energy utilization rate is not high, the bad problem of heat dissipation effect.
It should be noted that, in this document, such as the terms "include", "comprise" or its any other variant are intended to
Non-exclusive inclusion, so that the process, method, article or equipment including a series of elements is not only wanted including those
Element, but also including other elements that are not explicitly listed, or further include for this process, method, article or equipment
Intrinsic element.
It although an embodiment of the present invention has been shown and described, for the ordinary skill in the art, can be with
A variety of variations, modification, replacement can be carried out to these embodiments without departing from the principles and spirit of the present invention by understanding
And modification, the scope of the present invention is defined by the appended.
Claims (5)
1. a kind of new radiator, including heat-dissipating pipe (1), water inlet pipe mouth (2), effluent pipe mouth (3) and deflation valve port outside recirculated water
(4), it is characterised in that: the outer heat-dissipating pipe (1) of the recirculated water is located at the centre of water inlet pipe mouth (2) and effluent pipe mouth (3), it is described into
Hose nozzle (2) is located at the top of effluent pipe mouth (3), and the quantity of the deflation valve port (4) is two, the outer heat-dissipating pipe of the recirculated water
(1) it is located at the centre of two deflation valve ports (4), and two deflation valve ports (4) are located at water inlet pipe mouth (2) and effluent pipe mouth
(3) on axis, the inside of the outer heat-dissipating pipe (1) of the recirculated water is fixedly connected with interior heat-dissipating pipe (5), is radiated outside the recirculated water
Managing (1) is that vertical direction is arranged, the outer heat-dissipating pipe (1) of recirculated water equidistant arrangement from left to right, recirculated water heat-dissipating pipe outside
(1) side is fixedly connected with the one end of connecting tube (6), and the outer heat-dissipating pipe (1) of recirculated water is connected with connecting tube (6), described
Connecting tube (6) is located at the centre of the outer heat-dissipating pipe (1) of two adjacent circulation water, and the quantity of the connecting tube (6) is two groups, two groups of institutes
It is symmetrical as symmetry axis using the horizontal axis of heat-dissipating pipe outside recirculated water (1) to state connecting tube (6), the water inlet pipe mouth (2) and go out
Axis of the axis of hose nozzle (3) respectively with two groups of connecting tubes (6) is located on the same line.
2. a kind of new radiator according to claim 1, it is characterised in that: the two of the outer heat-dissipating pipe (1) of the recirculated water
Side is the curved surface of outwardly convex, and the width of outer heat-dissipating pipe (1) side of the recirculated water is 1.5 to 3 times of frontal width.
3. a kind of new radiator according to claim 1, it is characterised in that: the length of the interior heat-dissipating pipe (5) with follow
The equal length of the outer heat-dissipating pipe (1) of ring water, and the inner wall of the outer wall of interior heat-dissipating pipe (5) and the outer heat-dissipating pipe (1) of recirculated water surrounds envelope
The water containing chamber (7) of enclosed, the water containing chamber (7) are in vertical tubulose.
4. a kind of new radiator according to claim 1, it is characterised in that: connecting tube described in two groups (6) is located at same
On vertical plane, and two groups of connecting tubes (6) are parallel to each other.
5. a kind of new radiator according to claim 1, it is characterised in that: dissipated outside the connecting tube (6) and recirculated water
Heat pipe (1) is mutually perpendicular to, and the connecting tube (6) is located at outer heat-dissipating pipe (1) side of recirculated water at the position of close end.
Priority Applications (1)
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CN201910228446.2A CN109813145A (en) | 2019-03-25 | 2019-03-25 | A kind of new radiator |
Applications Claiming Priority (1)
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CN201910228446.2A CN109813145A (en) | 2019-03-25 | 2019-03-25 | A kind of new radiator |
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CN109813145A true CN109813145A (en) | 2019-05-28 |
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ID=66610257
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CN201910228446.2A Pending CN109813145A (en) | 2019-03-25 | 2019-03-25 | A kind of new radiator |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113701539A (en) * | 2021-09-18 | 2021-11-26 | 缙云县盛大实业有限公司 | Steel plate type radiator |
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CN2385295Y (en) * | 1999-09-08 | 2000-06-28 | 邵良福 | Internal-external porous radiator |
US20040134650A1 (en) * | 2003-01-09 | 2004-07-15 | Acre James A. | Heat exchanger with integrated flow control valve |
RU2252370C1 (en) * | 2003-11-27 | 2005-05-20 | Табунов Виталий Михайлович | Heating convective radiator and method for mounting recorder pipe in aperture of pipe collector thereof |
CN201397060Y (en) * | 2009-05-11 | 2010-02-03 | 于昌军 | Sleeve-type radiator |
CN201653226U (en) * | 2010-08-16 | 2010-11-24 | 高密市中亚暖通设备有限公司 | Flat round tube type heat radiator |
CN203560994U (en) * | 2013-09-23 | 2014-04-23 | 上海港旺实业有限公司 | Heat exchange device with auxiliary convection tubes |
CN208635607U (en) * | 2018-08-07 | 2019-03-22 | 王洪祥 | A kind of high efficiency energy-saving heat dissipating device |
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2019
- 2019-03-25 CN CN201910228446.2A patent/CN109813145A/en active Pending
Patent Citations (7)
Publication number | Priority date | Publication date | Assignee | Title |
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CN2385295Y (en) * | 1999-09-08 | 2000-06-28 | 邵良福 | Internal-external porous radiator |
US20040134650A1 (en) * | 2003-01-09 | 2004-07-15 | Acre James A. | Heat exchanger with integrated flow control valve |
RU2252370C1 (en) * | 2003-11-27 | 2005-05-20 | Табунов Виталий Михайлович | Heating convective radiator and method for mounting recorder pipe in aperture of pipe collector thereof |
CN201397060Y (en) * | 2009-05-11 | 2010-02-03 | 于昌军 | Sleeve-type radiator |
CN201653226U (en) * | 2010-08-16 | 2010-11-24 | 高密市中亚暖通设备有限公司 | Flat round tube type heat radiator |
CN203560994U (en) * | 2013-09-23 | 2014-04-23 | 上海港旺实业有限公司 | Heat exchange device with auxiliary convection tubes |
CN208635607U (en) * | 2018-08-07 | 2019-03-22 | 王洪祥 | A kind of high efficiency energy-saving heat dissipating device |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN113701539A (en) * | 2021-09-18 | 2021-11-26 | 缙云县盛大实业有限公司 | Steel plate type radiator |
CN113701539B (en) * | 2021-09-18 | 2022-08-26 | 缙云县盛大实业有限公司 | Steel plate type radiator |
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