CN204840992U - Organic vapour cooling device - Google Patents
Organic vapour cooling device Download PDFInfo
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- CN204840992U CN204840992U CN201520530236.6U CN201520530236U CN204840992U CN 204840992 U CN204840992 U CN 204840992U CN 201520530236 U CN201520530236 U CN 201520530236U CN 204840992 U CN204840992 U CN 204840992U
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- cooling device
- primary cooler
- storage tank
- oil storage
- organic vapor
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Abstract
The utility model discloses an organic vapour cooling device aims at providing a simple structure, low in manufacturing cost, organic vapour cooling device that the treatment effect is good. The utility model discloses a cooling tank (1), elementary cooler (2), second grade cooler (3), with the air inlet of elementary cooler (2) is connected with admission line (4), the gas outlet of elementary cooler (2) with pipeline (5) in the middle of being connected with between the air inlet of second grade cooler (3), the gas outlet of second grade cooler (3) is connected with the pipeline of giving vent to anger (6), organic vapour cooling device still includes oil storage tank (7), the top of oil storage tank (7) still is provided with manage to find time tub (8), it is linked together to manage to find time tub (8) and vacuum pumping system (9). The utility model discloses be applied to the technical field of the organic vapour cure in the junked tire processing.
Description
Technical field
The utility model relates to a kind of cooling device, particularly a kind of organic vapor cooling device.
Background technology
In the processing procedure of junked tire, combustion furnace is after using junked tire cracking mist out, although combustion furnace self can process a large amount of pernicious gases, but it is abundant also to there is incomplete combustion in combustion furnace, also containing materials such as oil smoke inside flue gas, therefore also need to process the organic vapor of combustion furnace.
A publication number is had to be the Chinese patent of 104514598A at present, it discloses a kind of organic vapor treating apparatus, there is the inlet tube and discharge burning organic vapor outlet of introducing burning organic vapor, substantially airtight inner housing, its fluid is communicated with the inlet tube of side and the outlet of opposite side, for holding particulate filter, Connection Element is arranged in the join domain according to the inner housing flowing to export-oriented pipe, for being mechanically connected particulate filter and inner housing, be arranged on the oxidation catalyst of the upstream of the particulate filter in inner housing, the oxidation reaction of catalytic combustion organic vapor.Back-pressure measurement point realizes the back-pressure monitoring of flexible structure, and it is arranged between oxidation catalyst and Connection Element in the flowing direction, for measuring the back-pressure applied by particulate filter in the operating process of organic vapor treating apparatus.As can be seen here, this organic vapor treating apparatus complex structure, low cost of manufacture, is unfavorable for the extensive development of enterprise.
Utility model content
Technical problem to be solved in the utility model overcomes the deficiencies in the prior art, provides the organic vapor cooling device that a kind of structure is simple, low cost of manufacture, treatment effect are good.
The technical scheme that the utility model adopts is: the utility model comprises cooling bay, be arranged on the primary cooler in described cooling bay, be arranged on the secondary coolers below described primary cooler, admission line is connected with the air inlet of described primary cooler, intermediate conduit is connected with between the gas outlet of described primary cooler and the air inlet of described secondary coolers, the gas outlet of described secondary coolers is connected with outlet pipe, described organic vapor cooling device also comprises oil storage tank, described outlet pipe is connected with described oil storage tank, the junction of described outlet pipe and described oil storage tank is positioned at the top of described oil storage tank, the top of described oil storage tank is also provided with evacuation tube, described evacuation tube is connected with pumped vacuum systems.
Described primary cooler and described secondary coolers are equipped with some cooling-water ducts.
Described primary cooler and described secondary coolers all tilt to one end of gas outlet.
Be provided with some heat absorbing fins in described primary cooler and described secondary coolers, some described heat absorbing fins comprise some upper fins and some lower fins, some described upper fins and some described lower fins arranged in a crossed manner.
The volume of described primary cooler is less than the volume of described secondary coolers.
The beneficial effects of the utility model are: because the utility model comprises cooling bay, be arranged on the primary cooler in described cooling bay, be arranged on the secondary coolers below described primary cooler, admission line is connected with the air inlet of described primary cooler, intermediate conduit is connected with between the gas outlet of described primary cooler and the air inlet of described secondary coolers, the gas outlet of described secondary coolers is connected with outlet pipe, described organic vapor cooling device also comprises oil storage tank, described outlet pipe is connected with described oil storage tank, the junction of described outlet pipe and described oil storage tank is positioned at the top of described oil storage tank, the top of described oil storage tank is also provided with evacuation tube, described evacuation tube is connected with pumped vacuum systems, so, the utility model structure is simple, low cost of manufacture, effectively the mode of the fuel oil in organic vapor by condensation can also be separated, and obtain the chance again utilized, greatly can reduce the energy consumption in the whole processing procedure of junked tire, waste resource obtains fully effective utilization.
Accompanying drawing explanation
Fig. 1 is perspective view of the present utility model;
Fig. 2 is the perspective view at another visual angle of the utility model;
Fig. 3 is the internal structure schematic diagram of described primary cooler 2 or described secondary coolers 3.
Detailed description of the invention
As depicted in figs. 1 and 2, the utility model comprises cooling bay 1, be arranged on the primary cooler 2 in described cooling bay 1, be arranged on the secondary coolers 3 below described primary cooler 2, admission line 4 is connected with the air inlet of described primary cooler 2, intermediate conduit 5 is connected with between the gas outlet of described primary cooler 2 and the air inlet of described secondary coolers 3, the gas outlet of described secondary coolers 3 is connected with outlet pipe 6, described organic vapor cooling device also comprises oil storage tank 7, described outlet pipe 6 is connected with described oil storage tank 7, described outlet pipe 6 and the junction of described oil storage tank 7 are positioned at the top of described oil storage tank 7, the top of described oil storage tank 7 is also provided with evacuation tube 8, described evacuation tube 8 is connected with pumped vacuum systems 9, gas in described oil storage tank 7 is constantly extracted out by described pumped vacuum systems 9.
In the present embodiment, described primary cooler 2 and described secondary coolers 3 are equipped with some cooling-water ducts 10.
In the present embodiment, described primary cooler 2 and described secondary coolers 3 all tilt to one end of gas outlet.
As shown in Figure 3, in the present embodiment, some heat absorbing fins are provided with in described primary cooler 2 and described secondary coolers 3, some described heat absorbing fins comprise some upper fins 11 and some lower fins 12, some described upper fins 11 and some described lower fins 12 arranged in a crossed manner, simultaneously the volume of described primary cooler 2 is less than the volume of described secondary coolers 3.The condensation process that effectively can extend organic vapor arranged in a crossed manner of described upper fin 11 and described lower fin 12.
Workflow of the present utility model is as follows: first organic vapor enters described primary cooler 2 and tentatively cool, enter described secondary coolers 3 by described intermediate conduit 5 again and carry out time condensation, oil gas in organic vapor becomes liquid by gas in described secondary coolers 3, and liquid oil enters described oil storage tank 7 at the flows by action of described pumped vacuum systems 9.
The utility model is applied to the technical field of the organic vapor process in junked tire process.
Although embodiment of the present utility model describes with practical solution, but the restriction do not formed the utility model implication, for those skilled in the art, according to this description to the amendment of its embodiment and and the combination of other schemes be all apparent.
Claims (5)
1. an organic vapor cooling device, it is characterized in that: described organic vapor cooling device comprises cooling bay (1), be arranged on the primary cooler (2) in described cooling bay (1), be arranged on the secondary coolers (3) of described primary cooler (2) below, admission line (4) is connected with the air inlet of described primary cooler (2), intermediate conduit (5) is connected with between the gas outlet of described primary cooler (2) and the air inlet of described secondary coolers (3), the gas outlet of described secondary coolers (3) is connected with outlet pipe (6), described organic vapor cooling device also comprises oil storage tank (7), described outlet pipe (6) is connected with described oil storage tank (7), described outlet pipe (6) is positioned at the top of described oil storage tank (7) with the junction of described oil storage tank (7), the top of described oil storage tank (7) is also provided with evacuation tube (8), described evacuation tube (8) is connected with pumped vacuum systems (9).
2. organic vapor cooling device according to claim 1, is characterized in that: described primary cooler (2) and described secondary coolers (3) are equipped with some cooling-water ducts (10).
3. organic vapor cooling device according to claim 1, is characterized in that: described primary cooler (2) and described secondary coolers (3) all tilt to one end of gas outlet.
4. the organic vapor cooling device according to any one of claims 1 to 3, it is characterized in that: in described primary cooler (2) and described secondary coolers (3), be provided with some heat absorbing fins, some described heat absorbing fins comprise some upper fins (11) and some lower fins (12), some described upper fins (11) and some described lower fins (12) arranged in a crossed manner.
5. organic vapor cooling device according to claim 4, is characterized in that: the volume of described primary cooler (2) is less than the volume of described secondary coolers (3).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520530236.6U CN204840992U (en) | 2015-07-21 | 2015-07-21 | Organic vapour cooling device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520530236.6U CN204840992U (en) | 2015-07-21 | 2015-07-21 | Organic vapour cooling device |
Publications (1)
Publication Number | Publication Date |
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CN204840992U true CN204840992U (en) | 2015-12-09 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201520530236.6U Active CN204840992U (en) | 2015-07-21 | 2015-07-21 | Organic vapour cooling device |
Country Status (1)
Country | Link |
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CN (1) | CN204840992U (en) |
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2015
- 2015-07-21 CN CN201520530236.6U patent/CN204840992U/en active Active
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