CN217330775U - Device for eliminating visual steam and converting visual steam into condensed water - Google Patents
Device for eliminating visual steam and converting visual steam into condensed water Download PDFInfo
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- CN217330775U CN217330775U CN202221010098.5U CN202221010098U CN217330775U CN 217330775 U CN217330775 U CN 217330775U CN 202221010098 U CN202221010098 U CN 202221010098U CN 217330775 U CN217330775 U CN 217330775U
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Abstract
The utility model relates to an environmental protection administers technical field, and a eliminate device of visual steam and turn into comdenstion water is disclosed, including the equipment principal who produces vapor, the upper end of equipment principal is connected with the condensing box, common intercommunication has the intake pipe between equipment principal and the condensing box, install the condensation subassembly in the condensing box, one side of equipment principal still is connected with the water storage box, the intercommunication has the drain pipe on the outer wall that the intake pipe was kept away from to the condensing box, the other end of drain pipe extends to directly over the case mouth of water storage box, the outer wall intercommunication that the intake pipe was kept away from to the condensing box has the breathing pipe, install the fan on the inner wall of breathing pipe, the other end of breathing pipe is connected with the outlet duct through cooling subassembly, the one end that the condensing box was kept away from to the outlet duct extends to in the water storage box. The utility model discloses eliminate visual vaporific gas for the construction of modernization mill realizes abandonment resource recovery cyclic utilization, avoids vapor direct discharge to cause thermal pollution.
Description
Technical Field
The utility model relates to an environmental protection is administered technical field, especially relates to a device that eliminates visual steam and converts to the comdenstion water.
Background
Steam and smoke dust are visual symbolic signs of enterprises at present. According to the requirements of the state on environmental protection treatment in recent years, enterprises have good effect on smoke dust treatment by putting in advanced equipment, and the steam emission also reaches the national emission standard.
However, the direct discharge of the water vapor not only causes thermal pollution but also is high in waste, a large amount of water vapor is discharged after desulfurization and denitrification, the water vapor is directly discharged and wasted, the water vapor is in a sublimation state of the water, the water is bought by enterprises and is a necessary accounting cost share, and the direct discharge of the water vapor causes unnecessary waste.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the prior art in order to directly discharge vapor, not only can cause thermal pollution, caused extravagant problem moreover, and the device of visual steam of elimination and conversion to the comdenstion water that proposes.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides an eliminate device of visual steam and change into comdenstion water, includes the equipment main part that produces vapor, the upper end of equipment main part is connected with the condensing box, common intercommunication has the intake pipe between equipment main part and the condensing box, install the condensation subassembly in the condensing box, one side of equipment main part still is connected with the water storage box, the intercommunication has the drain pipe on the outer wall that the intake pipe was kept away from to the condensing box, the other end of drain pipe extends to directly over the case mouth of water storage box, the outer wall intercommunication that the intake pipe was kept away from to the condensing box has the breathing pipe, install the fan on the inner wall of breathing pipe, the other end of breathing pipe is connected with the outlet duct through cooling assembly, the one end that the condensing box was kept away from to the outlet duct extends to in the water storage box.
Preferably, the condensation subassembly is including the condensation chamber that is equipped with the comdenstion water, the outer container top at the condensing box is connected to the condensation chamber, along the even equidistance a plurality of condensation copper that are equipped with of horizontal straight line direction in the condensation chamber, the lower extreme of condensation copper runs through in proper order the bottom of condensation chamber and the top of condensing box and to extend in the condensing box, be located be the even equidistance of matrix on the condensation copper in the condensing box and seted up a plurality of ventilation hole.
Preferably, the cooling subassembly is including the cooling case that is equipped with liquid water, cooling case fixed connection is kept away from the outer wall of intake pipe at the condensing box, the one end that the condensing box was kept away from to the breathing pipe runs through the roof of cooling case and extends to liquid water in, the one end intercommunication that the water storage box was kept away from to the outlet duct is on cooling case outer wall, the outer container roof of cooling case has the filling tube that is used for adding the dry ice along vertical direction intercommunication.
Preferably, one end of the air outlet pipe, which is far away from the condensing box, is connected with an air distribution disc for dispersing air.
Preferably, a water guide pipe is communicated between the bottom of the cooling box and the outer wall of the water discharge pipe, and a valve is mounted on the water guide pipe.
Preferably, the upper end mouth of pipe of filling tube is connected with the feeder hopper, it has the fill lid to articulate on the fill mouth of feeder hopper.
Compared with the prior art, the utility model provides an eliminate visual steam and change the device of comdenstion water into possesses following beneficial effect:
1. this eliminate visual steam and change device into comdenstion water, produce water vapor with equipment principal and carry out the condensation, collect simultaneously and cool down, the water that the condensation produced can circulate and use, eliminates visual vaporific gas for the construction of modern factory realizes abandonment resource recovery cyclic utilization, avoids the direct emission of vapor to cause thermal pollution.
2. This eliminate visual steam and change the device of comdenstion water, increased the area of contact of condensation copper and vapor through the ventilation hole, the contact of condensation copper and comdenstion water is cooled down moreover to the condensation effect of condensation copper to vapor has been improved.
3. This eliminate visual steam and turn into device of comdenstion water, the air after the dehydration is transported the liquid aquatic of cooling box through the breathing pipe and is cooled down, when the temperature of the liquid water of cooling box was too high, puts in the dry ice through the filling tube to the liquid aquatic of cooling box, and the dry ice takes place to sublimate with the contact of liquid water, carries out rapid cooling to liquid water.
The part that does not relate to in the device all is the same with prior art or can adopt prior art to realize, the utility model discloses eliminate visual vaporific gas for the construction of modernized mill realizes waste resource recovery cyclic utilization, avoids vapor direct discharge to cause thermal pollution.
Drawings
Fig. 1 is a schematic structural diagram of a device for eliminating visual steam and converting the visual steam into condensed water according to the present invention;
fig. 2 is a schematic view of a condensation copper plate in the device for eliminating visual steam and converting the steam into condensation water provided by the utility model;
fig. 3 is the utility model provides an eliminate cooling assembly structure schematic diagram in visual steam of and turn into device of comdenstion water.
In the figure: 1. an apparatus main body; 2. a condenser tank; 3. an air inlet pipe; 4. a water storage tank; 5. a drain pipe; 6. an air intake duct; 7. a fan; 8. an air outlet pipe; 9. a condensing chamber; 10. condensing the copper plate; 11. a vent hole; 12. a cooling box; 13. a feed tube; 14. a gas distribution disc; 15. a water conduit; 16. a feed hopper.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
Referring to fig. 1-2, a device for eliminating visual steam and converting the visual steam into condensed water comprises a device body 1 generating steam, a condensing tank 2 is connected to the upper end of the device body 1, and an air inlet pipe 3 is communicated between the device body 1 and the condensing tank 2.
Install the condensation subassembly in the condensing box 2, the condensation subassembly is including the condensation chamber 9 that is equipped with the comdenstion water, the outer container top at condensing box 2 is connected to condensation chamber 9, along the even equidistance of horizontal linear direction be equipped with a plurality of condensation copper 10 in the condensation chamber 9, the lower extreme of condensation copper 10 runs through the bottom of condensation chamber 9 and the top of condensing box 2 in proper order and extends to condensing box 2 in, be located and be the even equidistance of matrix and seted up a plurality of ventilation hole 11 on the condensation copper 10 of condensing box 2, ventilation hole 11 on through condensation copper 10, the area of contact of condensation copper 10 and vapor has been increased, and the one end of condensation copper 10 is inserted and is cooled down with the comdenstion water contact in the condensation chamber 9, thereby the condensation effect of condensation copper 10 to vapor has been improved.
Referring to fig. 1 and 3, one side of the equipment main body 1 is further connected with a water storage tank 4, a drain pipe 5 is communicated with the outer wall of the condensation tank 2 far away from the air inlet pipe 3, the other end of the drain pipe 5 extends to the position right above the tank opening of the water storage tank 4, an air suction pipe 6 is communicated with the outer wall of the condensation tank 2 far away from the air inlet pipe 3, and a fan 7 is installed on the inner pipe wall of the air suction pipe 6.
The other end of breathing pipe 6 is connected with outlet duct 8 through the cooling subassembly, the cooling subassembly is including the cooling case 12 that is equipped with liquid water, still install the thermometer that is used for carrying out the detection to the temperature of liquid water on the cooling case 12, cooling case 12 fixed connection is at the outer wall that intake pipe 3 was kept away from to condenser box 2, it has aqueduct 15 to communicate jointly between the bottom of the case of cooling case 12 and the outer wall of drain pipe 5, install the valve on aqueduct 15, open the valve, can be through in aqueduct 15 with cooling case 12 liquid water drainage pipe 5.
The one end that condenser box 2 was kept away from to breathing pipe 6 runs through the roof of cooling box 12 and extends in to liquid water, the air after the dehydration is cooled down through the liquid aquatic of breathing pipe 6 transportation in cooling box 12, the one end intercommunication that water storage box 4 was kept away from to outlet duct 8 is on cooling box 12 outer wall, cooling box 12's outer container top has the filling tube 13 that is used for adding the dry ice along vertical direction intercommunication, put in the dry ice to the liquid aquatic in cooling box 12 through filling tube 13, the sublimation takes place for the dry ice and the contact of liquid water, carry out rapid cooling to liquid water.
Referring to fig. 1 and 3, the upper end mouth of pipe of filling tube 13 is connected with feeder hopper 16, is convenient for add the dry ice to filling tube 13 through feeder hopper 16, can supply liquid water to cooling box 12 through filling tube 13 simultaneously, and it has the fill lid to articulate on the fill mouth of feeder hopper, closes the fill lid when not using filling tube 13, avoids the dust to get into.
The one end that condenser box 2 was kept away from to outlet duct 8 extends to in the water storage box 4, the one end that condenser box 2 was kept away from to outlet duct 8 is connected with the branch gas dish 14 that is used for the dispersed air, and the air after the cooling in the outlet duct 8 is through dividing 14 evenly distributed in the bottom of the case position of water storage box 4, not only carries out abundant contact with water accumulation in the water storage box 4 and cools down, and the air stirs water accumulation in the water storage box 4 at the come-up in-process moreover, improves its self cooling rate.
The working principle is as follows: when the equipment main body 1 generates water vapor, the fan 7 is started, the water vapor generated by the equipment main body 1 is conveyed into the condensation box 2 through the air inlet pipe 3, the water vapor is contacted with the condensation copper plate 10, the contact area between the condensation copper plate 10 and the water vapor is increased through the vent holes 11 on the condensation copper plate 10, one end of the condensation copper plate 10 is inserted into the condensation chamber 9 to be contacted with the condensation water for cooling, thereby the condensation effect of the condensation copper plate 10 on the water vapor is improved, the water generated after condensation flows into the water storage box 4 through the drain pipe 5, the dehydrated air is conveyed into the liquid water in the cooling box 12 through the air suction pipe 6 for cooling, when the temperature of the liquid water in the cooling box 12 is overhigh, dry ice is put into the liquid water in the cooling box 12 through the feed pipe 13, the dry ice is contacted with the liquid water for sublimation, the liquid water is rapidly cooled, the cooled air is discharged into the water in the water storage box 4 through the air outlet pipe 8, the air that gets into the aquatic cools down the water after the condensation, has improved the cooling rate of water in the water storage box 4, makes it get back to normal atmospheric temperature state fast, can circulate and use, eliminates visual vaporific gas for the construction of modern factory realizes waste resource recovery cyclic utilization, avoids vapor direct discharge to cause thermal pollution.
The above, only be the embodiment of the preferred of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, which are designed to be replaced or changed equally, all should be covered within the protection scope of the present invention.
Claims (6)
1. The utility model provides an eliminate device of visual steam and change into comdenstion water, includes the equipment main part that produces vapor, its characterized in that, the upper end of equipment main part is connected with the condensing box, common intercommunication has the intake pipe between equipment main part and the condensing box, install the condensation subassembly in the condensing box, one side of equipment main part still is connected with the water storage box, the intercommunication has the drain pipe on the outer wall that the intake pipe was kept away from to the condensing box, the other end of drain pipe extends to directly over the case mouth of water storage box, the outer wall intercommunication that the intake pipe was kept away from to the condensing box has the breathing pipe, install the fan on the inner pipe wall of breathing pipe, the other end of breathing pipe is connected with the outlet duct through cooling down the subassembly, the one end that the condensing box was kept away from to the outlet duct extends to in the water storage box.
2. The device for eliminating visual steam and converting the visual steam into condensed water according to claim 1, wherein the condensing assembly comprises a condensing chamber filled with condensed water, the condensing chamber is connected to the top of an outer box of the condensing box, a plurality of condensing copper plates are uniformly and equidistantly arranged in the condensing chamber along a horizontal straight line direction, the lower ends of the condensing copper plates sequentially penetrate through the bottom of the condensing chamber and the top of the condensing box and extend into the condensing box, and a plurality of ventilation holes are uniformly and equidistantly formed in a matrix on the condensing copper plates in the condensing box.
3. The device for eliminating visual steam and converting the visual steam into condensed water according to claim 1, wherein the cooling assembly comprises a cooling box filled with liquid water, the cooling box is fixedly connected to the outer box wall of the cooling box, which is far away from the air inlet pipe, one end of the air inlet pipe, which is far away from the cooling box, penetrates through the box top of the cooling box and extends into the liquid water, one end of the air outlet pipe, which is far away from the water storage box, is communicated with the outer box wall of the cooling box, and the outer box top of the cooling box is vertically communicated with a feeding pipe used for adding dry ice.
4. The device for eliminating visual steam and converting the visual steam into condensed water as claimed in claim 1, wherein one end of the air outlet pipe, which is far away from the condensation tank, is connected with an air distribution disc for dispersing air.
5. The device for eliminating visual steam and converting the steam into condensed water according to claim 3, wherein a water guide pipe is commonly communicated between the bottom of the cooling box and the outer wall of the water discharge pipe, and a valve is mounted on the water guide pipe.
6. The device for eliminating visual steam and converting the steam into condensed water as claimed in claim 3, wherein a feed hopper is connected to an upper end orifice of the feed pipe, and a hopper cover is hinged to a hopper opening of the feed hopper.
Priority Applications (1)
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CN202221010098.5U CN217330775U (en) | 2022-04-28 | 2022-04-28 | Device for eliminating visual steam and converting visual steam into condensed water |
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CN202221010098.5U CN217330775U (en) | 2022-04-28 | 2022-04-28 | Device for eliminating visual steam and converting visual steam into condensed water |
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CN217330775U true CN217330775U (en) | 2022-08-30 |
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CN202221010098.5U Active CN217330775U (en) | 2022-04-28 | 2022-04-28 | Device for eliminating visual steam and converting visual steam into condensed water |
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