CN207962615U - Improve boiler heat utilization rate boiler steam condensate reflux - Google Patents
Improve boiler heat utilization rate boiler steam condensate reflux Download PDFInfo
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- CN207962615U CN207962615U CN201820384571.3U CN201820384571U CN207962615U CN 207962615 U CN207962615 U CN 207962615U CN 201820384571 U CN201820384571 U CN 201820384571U CN 207962615 U CN207962615 U CN 207962615U
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Abstract
The utility model discloses a kind of raising boiler heat utilization rate boiler steam condensate refluxes, including condensing babinet, it is provided with condensation chamber in cooling cylinder body and crosses wind chamber, wind chamber is crossed to be arranged in the top of condensation chamber, and it crosses between wind chamber and condensation chamber and is provided with cold plate, cold plate is obliquely installed, and condensation hole is offered on cold plate, wherein the aperture in condensation hole is gradually reduced from condensation chamber to wind chamber is crossed;It is provided with air inlet and thermovent on the condensation babinet crossed at wind chamber, wherein air inlet is equipped with cooling blower;It is provided with steam inlet and condensing hot air furnace mouth on condensation babinet at condensation chamber;The utility model has the beneficial effects that:Steam transforming is recycled for water by condensing babinet, since steam is when becoming water, when still there is certain heat, therefore the water that condensation is collected being put into boiler use again, the less boiler of energy heats the energy consumed when water, while also avoiding the waste of dilutional hyponatremia.
Description
Technical field
The utility model is related to condensation reflux units, and in particular to improve the reflux of boiler heat utilization rate boiler steam condensate
Device.
Background technology
Boiler is a kind of energy conversion, and the energy inputted to boiler has chemical energy, electric energy in fuel, boiler output
Steam, high-temperature water with certain thermal energy or organic heat carrier.The original meaning of pot refers to the water container heated on fire, and stove refers to burning
The place of fuel, boiler include pot and stove two large divisions.The hot water or steam generated in boiler can directly be industrial production and people
The people's livelihood, which is lived, provides required thermal energy, mechanical energy can be also converted to by Steam Power Equipment, or again turn mechanical energy by generator
It is changed to electric energy.The boiler for providing hot water is known as hot-water boiler, is mainly used for living, also there is a small amount of application in industrial production.It generates
The boiler of steam is known as steam boiler, is often simply called boiler, is chiefly used in thermal power station, ship, locomotive and industrial and mining enterprises.
Boiler will produce a large amount of steam in use, existing factory be usually at present by steam direct emission,
The waste of a large amount of water is caused, the requirement for saving energy consumption is not suitable for.
Utility model content
The purpose of this utility model is to provide a kind of raising boiler heat utilization rate boiler steam condensate reflux, solutions
The steam that certainly conventional boiler generates is not collected, the problem of so as to cause heat and water waste.
In order to solve the above technical problems, the utility model uses following technical scheme:
Boiler heat utilization rate boiler steam condensate reflux, including condensation babinet are improved, is provided in cooling cylinder body
Condensation chamber and wind chamber is crossed, crosses wind chamber and be arranged in the top of condensation chamber, and cross between wind chamber and condensation chamber and be provided with cold plate, condense
Plate is obliquely installed, and condensation hole is offered on cold plate, wherein the aperture in condensation hole is gradually reduced from condensation chamber to wind chamber is crossed;
It is provided with air inlet and thermovent on the condensation babinet crossed at wind chamber, wherein air inlet is equipped with cooling blower;
It is provided with steam inlet and condensing hot air furnace mouth on condensation babinet at condensation chamber.
Further technical solution is that steam inlet is opened on the lateral wall of condensation babinet among the above, and steam into
The axis of mouth is arranged perpendicular to cold plate plate face;
The bottom of condensation chamber is in inverted cone, and wherein condensing hot air furnace mouth is located at the cone tip part of the bottom of condensation chamber.
Further technical solution is that air inlet is arranged in the cold plate lower end being obliquely installed, and along cold among the above
Solidifying plate is obliquely installed upwards, and thermovent is arranged at the high-end place of cold plate being obliquely installed, and setting is aligned with air inlet.
Further technical solution is that condense babinet among the above include outer-layer box body and interior layer box body, outer-layer box body and
Interior layer box body is provided with cavity, and wherein thermovent is opened on the tank wall of interior layer box body, is further opened on the tank wall of outer-layer box body
Exhaust outlet, wherein exhaust outlet are arranged close to the bottom of condensation chamber.
Further technical solution is to be provided with wind deflector, wind deflector between outer-layer box body and interior layer box body among the above
Cavity is separated into and is arranged around interior layer box body, and spiral air-guiding aisle, wherein one end of air-guiding aisle and thermovent
Connection, the other end are connected to exhaust outlet.
Further technical solution is, among the above in condensation chamber, the rainy eyebrow plate of top setting of steam inlet, and rain eyebrow
Plate is fixedly connected on the madial wall of interior layer box body;
Rain eyebrow plate is heat-conducting plate, and one end of rain eyebrow plate passes through interior layer box body and in air-guiding aisle.
Compared with prior art, the beneficial effects of the utility model are at least one of following:
1, steam transforming is recycled by the utility model by condensing babinet for water, since steam is becoming water
When, still there is certain heat, therefore the water that condensation is collected is put into boiler again in use, when the less boiler of energy heats water
The energy consumed, while also avoiding the waste of dilutional hyponatremia.
2, effectively vapor can be condensed by cold plate.
3, the condensation effect of cold plate can be improved by crossing wind chamber, and then improves entire working efficiency.
4, condensation hole coordinated wind chamber that can improve the condensation effect of cold plate, improved entire working efficiency.
Description of the drawings
FIG. 1 is a schematic structural view of the utility model.
Fig. 2 is the structural schematic diagram that the utility model carries outer-layer box body and interior layer box body.
Fig. 3 is the structural schematic diagram of the utility model cold plate.
Specific implementation mode
In order to make the purpose of the utility model, technical solutions and advantages more clearly understood, below in conjunction with attached drawing and implementation
Example, the present invention will be further described in detail.It should be appreciated that specific embodiment described herein is only used to explain
The utility model is not used to limit the utility model.
Embodiment 1:
As shown in Figure 1,3, boiler heat utilization rate boiler steam condensate reflux, including condensation babinet 1, condensation are improved
Be provided with condensation chamber 2 in babinet 1 and cross wind chamber 3, cross wind chamber 3 and be arranged in the top of condensation chamber 2, and cross wind chamber 3 and condensation chamber 2 it
Between be provided with cold plate 4, cold plate 4 is obliquely installed, offered on cold plate 4 condensation hole 5, wherein condensation hole 5 aperture by cold
Solidifying chamber 2 is gradually reduced to wind chamber 3 is crossed;It is provided with air inlet 6 and thermovent 7 on the condensation babinet 1 crossed at wind chamber 3, wherein entering the wind
Cooling blower is installed at mouth 6;It is provided with steam inlet 8 and condensing hot air furnace mouth 9 on condensation babinet 1 at condensation chamber 2.
In the present embodiment, condensation babinet 1 is passing through condensation for condensing work, condensation chamber 2 for collecting condensed fluid
Condensed water is imported into boiler by water recovery port 9 again, and the air inlet 6 crossed on wind chamber 3 is equipped with wind turbine, is blown to wind chamber 3 is crossed
Wind improves the condensation effect of cold plate 4 to which band is passed by the temperature of cold plate 4 in wind chamber 3, and thermovent 7 blows out wind turbine
, the wind with heat is discharged, and the steam that boiler generates is imported into condensation chamber 2 by steam inlet 8, in this way by condensing babinet
1 is recycled steam transforming for water, since steam is when becoming water, still has certain heat, therefore will condensation
The water of collection puts into boiler again in use, the less boiler of energy heats the energy consumed when water, while also avoiding dilutional hyponatremia
Waste, can improve the condensation effect of cold plate 4 by crossing wind chamber 3, and then improve entire working efficiency.
Embodiment 2:
As shown in Figure 1, 2, in contrast to embodiment 1, the present embodiment optimizes steam inlet 8, and steam inlet 8 is opened in condensation
On the lateral wall of babinet 1, and the axis of steam inlet 8 is arranged perpendicular to 4 plate face of cold plate;The bottom of condensation chamber 2 is in inverted
Cone, wherein condensing hot air furnace mouth 9 are located at the cone tip part of the bottom of condensation chamber 2.
In the present embodiment, in order to improve the rate of set of vapor, so that 8 face cold plate of steam inlet, 4 plate face
Setting so that a large amount of steam can directly hit cold plate 4, to realize rapid condensation, and then improve the speed of condensation,
And the bottom of condensation chamber 2 is in inverted cone, the cone tip part that condensing hot air furnace mouth 9 is located at the bottom of condensation chamber 2 makes in this way,
Water after condensation can quickly be flowed down along cone tip part, to facilitate the collection of condensed water.
Embodiment 3:
As shown in Figure 1, 2, in contrast to embodiment 2, the present embodiment optimizes air inlet 6, and the setting of air inlet 6 is being obliquely installed
4 lower end of cold plate, and be obliquely installed upwards along cold plate 4, thermovent 7 is arranged at the 4 high-end place of cold plate being obliquely installed,
And it is aligned setting with air inlet 6.
In the present embodiment, in order to increase the contact of the wind and cold plate 4 that are blown out at air inlet 6, therefore by that will enter the wind
Mouth 6 is arranged in 4 lower end of cold plate being obliquely installed, and is obliquely installed upwards along cold plate 4 so that air inlet 6 blows into next
Wind energy is enough effectively to be blown in the plate face of cold plate 4, to improve heat transfer effect so that the condensation effect of cold plate 4 more preferably, and
Thermovent 7 is aligned setting with air inlet 6, was avoided that 3 interior air-flow of wind chamber was disorderly in this way, and influenced air circulation.
Embodiment 4:
As shown in Fig. 2, in contrast to embodiment 3, the present embodiment optimizes air inlet 6, and condensation babinet 1 includes outer-layer box body 10
With interior layer box body 11, outer-layer box body 10 and interior layer box body 11 are provided with cavity, and wherein thermovent 7 is opened in the case of interior layer box body 11
On wall, exhaust outlet 12 is further opened on the tank wall of outer-layer box body 10, wherein exhaust outlet 12 is arranged close to the bottom of condensation chamber 2.
In the present embodiment, in use, by heat exchange, and the wind blown out from thermovent 7, temperature comparisons are in water
The temperature of steam is still relatively low, therefore in order to improve the utilization rate to wind, directs wind into cavity, and make interior layer box body 11
Heat conduction so that the vapor energy rapid condensation being attached on 11 madial wall of interior layer box body, and then improve condensing means condensation
Effect and rate.
Embodiment 5:
As shown in Fig. 2, in contrast to embodiment 4, the present embodiment optimizes air inlet 6, outer-layer box body 10 and interior layer box body 11
Between be provided with wind deflector 13, cavity is separated by wind deflector 13 to be arranged around interior layer box body 11, and spiral wind-guiding is logical
Road 14, wherein one end of air-guiding aisle 14 are connected to thermovent 7, and the other end is connected to exhaust outlet 12.
In the present embodiment, in order to extend residence time of the wind blown out from thermovent 7 in cavity, wind is further increased
With the heat exchange efficiency of vapor on 11 madial wall of interior layer box body, therefore first cavity is arranged by wind deflector 13 it is spiral, to
Extend residence time of the wind blown out from thermovent 7 in cavity, improve heat transfer effect so that the effect of condensing means condensation
More preferably faster with rate.
Embodiment 6:
As shown in Fig. 2, in contrast to embodiment 4, the present embodiment optimizes condensation chamber 2, in condensation chamber 2, steam inlet 8
The rainy eyebrow plate 15 of top setting, rain eyebrow plate 15 is fixedly connected on the madial wall of interior layer box body 11;Rain eyebrow plate 15 is heat-conducting plate, and
One end of rain eyebrow plate 15 passes through interior layer box body 11 and in air-guiding aisle 14.
In the present embodiment, in order to which the water of condensation enters steam inlet 8, therefore the water condensed into is prevented by rain eyebrow plate 15
It is entered in pipeline by steam inlet 8, therefore rain eyebrow plate 15 is set, and rain eyebrow plate 15 is arc panel, so that rain eyebrow plate
Water on 15 leaves along rain eyebrow plate 15, avoids water inlet in steam inlet 8.
Although reference be made herein to the utility model is described in multiple explanatory embodiments of the utility model, still,
It should be understood that those skilled in the art can be designed that a lot of other modification and implementations, these modifications and implementations
It will fall within scope and spirit disclosed in the present application.More specifically, it discloses in the application, drawings and claims
In range, a variety of variations and modifications can be carried out to the building block and/or layout of theme combination layout.In addition to building block
And/or outside the modification and improvement of layout progress, to those skilled in the art, other purposes also will be apparent.
Claims (6)
1. a kind of raising boiler heat utilization rate boiler steam condensate reflux, it is characterised in that:Including condensing babinet(1),
The condensation babinet(1)Inside it is provided with condensation chamber(2)With wind chamber excessively(3), described to cross wind chamber(3)It is arranged in condensation chamber(2)It is upper
Side, and cross wind chamber(3)And condensation chamber(2)Between be provided with cold plate(4), the cold plate(4)It is obliquely installed, the cold plate
(4)On offer condensation hole(5), wherein condensing hole(5)Aperture by condensation chamber(2)To wind chamber excessively(3)It is gradually reduced;
It is described to cross wind chamber(3)The condensation babinet at place(1)On be provided with air inlet(6)And thermovent(7), wherein air inlet(6)Place
Cooling blower is installed;
The condensation chamber(2)The condensation babinet at place(1)On be provided with steam inlet(8)With condensing hot air furnace mouth(9).
2. raising boiler heat utilization rate boiler steam condensate reflux according to claim 1, it is characterised in that:Institute
State steam inlet(8)It is opened in condensation babinet(1)Lateral wall on, and steam inlet(8)Axis perpendicular to cold plate(4)Plate
Face is arranged;
The condensation chamber(2)Bottom be in inverted cone, wherein the condensing hot air furnace mouth(9)Positioned at condensation chamber(2)'s
The cone tip part of bottom.
3. raising boiler heat utilization rate boiler steam condensate reflux according to claim 2, it is characterised in that:Institute
State air inlet(6)It is arranged in the cold plate being obliquely installed(4)Lower end, and along cold plate(4)It is obliquely installed upwards, the heat dissipation
Mouthful(7)It is arranged in the cold plate being obliquely installed(4)High-end place, and and air inlet(6)Alignment setting.
4. raising boiler heat utilization rate boiler steam condensate reflux according to claim 3, it is characterised in that:Institute
State condensation babinet(1)Including outer-layer box body(10)With interior layer box body(11), the outer-layer box body(10)With interior layer box body(11)If
It is equipped with cavity, wherein the thermovent(7)It is opened in interior layer box body(11)Tank wall on, the outer-layer box body(10)Tank wall on
It is further opened with exhaust outlet(12), wherein exhaust outlet(12)Close to condensation chamber(2)Bottom setting.
5. raising boiler heat utilization rate boiler steam condensate reflux according to claim 4, it is characterised in that:Institute
State outer-layer box body(10)With interior layer box body(11)Between be provided with wind deflector(13), the wind deflector(13)Cavity is separated into and is enclosed
Around interior layer box body(11)Setting, and spiral air-guiding aisle(14), wherein air-guiding aisle(14)One end and thermovent(7)
Connection, the other end and exhaust outlet(12)Connection.
6. raising boiler heat utilization rate boiler steam condensate reflux according to claim 4, it is characterised in that:
The condensation chamber(2)It is interior, the steam inlet(8)The rainy eyebrow plate of top setting(15), the rain eyebrow plate(15)It is fixedly connected
In interior layer box body(11)Madial wall on;
The rain eyebrow plate(15)For heat-conducting plate, and rain eyebrow plate(15)One end pass through interior layer box body(11)And it is located at air-guiding aisle
(14)It is interior.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820384571.3U CN207962615U (en) | 2018-03-21 | 2018-03-21 | Improve boiler heat utilization rate boiler steam condensate reflux |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820384571.3U CN207962615U (en) | 2018-03-21 | 2018-03-21 | Improve boiler heat utilization rate boiler steam condensate reflux |
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Publication Number | Publication Date |
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CN207962615U true CN207962615U (en) | 2018-10-12 |
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ID=63725376
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CN201820384571.3U Expired - Fee Related CN207962615U (en) | 2018-03-21 | 2018-03-21 | Improve boiler heat utilization rate boiler steam condensate reflux |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110616308A (en) * | 2019-07-30 | 2019-12-27 | 芜湖铜冠电工有限公司 | Steam overflow and scattering prevention protection device for enameled wire annealing furnace |
CN111632466A (en) * | 2020-06-19 | 2020-09-08 | 苏州乐宏环保科技有限公司 | Waste hot water steam demisting device of sludge dryer |
-
2018
- 2018-03-21 CN CN201820384571.3U patent/CN207962615U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110616308A (en) * | 2019-07-30 | 2019-12-27 | 芜湖铜冠电工有限公司 | Steam overflow and scattering prevention protection device for enameled wire annealing furnace |
CN111632466A (en) * | 2020-06-19 | 2020-09-08 | 苏州乐宏环保科技有限公司 | Waste hot water steam demisting device of sludge dryer |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20181012 Termination date: 20200321 |