CN201561670U - Cooling mechanism of fume separation device - Google Patents

Cooling mechanism of fume separation device Download PDF

Info

Publication number
CN201561670U
CN201561670U CN2009202846762U CN200920284676U CN201561670U CN 201561670 U CN201561670 U CN 201561670U CN 2009202846762 U CN2009202846762 U CN 2009202846762U CN 200920284676 U CN200920284676 U CN 200920284676U CN 201561670 U CN201561670 U CN 201561670U
Authority
CN
China
Prior art keywords
cooling
water
backwater
distributing pipe
group
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Lifetime
Application number
CN2009202846762U
Other languages
Chinese (zh)
Inventor
潘永明
潘熠
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Changshu Sanlong Electric Control Co Ltd
Original Assignee
Changshu Sanlong Electric Control Co Ltd
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 Changshu Sanlong Electric Control Co Ltd filed Critical Changshu Sanlong Electric Control Co Ltd
Priority to CN2009202846762U priority Critical patent/CN201561670U/en
Application granted granted Critical
Publication of CN201561670U publication Critical patent/CN201561670U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Abstract

The utility model relates to a cooling mechanism of a fume separation device, which belongs to the technical field of environmental-friendly facilities. The cooling mechanism comprises a cooling box body with a cooling chamber, a group of circulating water reflux coolers arranged in the cooling chamber and a circulating water supply device connected with a water source pipeline; the group of the circulating water reflux coolers comprise a first cooling pipe seat with a cavity, a second cooling pipe seat which is divided into a water inlet chamber and a water return chamber by a partition board, a group of first cooling pipes, a group of second cooling pipes, a water inlet interface and a water return interface. The technical scheme not only can reduce the use cost of a use unit but also can ensure smooth fabric forming.

Description

The cooling body of oil-fume separating device
Technical field
The utility model belongs to technical field of environmental protection facilities, be specifically related to a kind of cooling body of oil-fume separating device, be applied to textile printing and dyeing industry, the high-temperature oil smoke cooling that produces when forming machine is finalized the design, cooled oil smoke is by the static separation oil remover oil removing of oil-fume separating device.
Background technology
Owing to be not directed to the special facilities that high temperature oil flue gas that dyeing produced is handled so far specially to the fabric high-temperature shaping time, again because the high temperature oil-containing flue gas that produces when not allowing high-temperature shaping because of environmental requirement directly drains into the external world, the therefore dyeing cooking fume remover that generally uses catering industry such as hotel and wineshop etc. widely to use at present.The technical scheme of the cooking fume remover that catering industry uses particularly is seen in the Chinese patent literature to some extent at document.For example: Chinese utility model patent Granted publication CN2614788Y has recommended a kind of electrostatic oil and smoke cleaner; And for example: CN2715011Y has introduced a kind of high efficiency electrostatic composite oil smoke cleaning device; Also as: CN2838717Y has disclosed cooking fume remover.The disclosed cooking fume remover of above-mentioned patent can both be applied to the forming machine of dyeing basically.Particularly CN2614788Y and CN2715011Y have all adopted electrostatic separator, thereby have comparatively desirable oil smoke separating effect, and the Instructions Page 3 the 2nd~18 of concrete visible CN2614788Y is gone and seen that the Instructions Page 3 the 12nd~31 of CN2715011Y is capable.
But, because the oil smoke temperature that forming machine produced to fabric typing usefulness is higher, oil smoke concentration and composition relative complex, therefore when oil-fume separating device separates, fire situation often can't be avoided, and in fact is no lack of to hear of and medium publications has the fire report that is caused by the oil-fume separating device that is matched in forming machine.
In view of above-mentioned unsafe factor, industry is other or claim preceding road to add cooler bin at the oil smoke separator box casing that is provided with electrostatic oil and smoke cleaner usually, to give cooling earlier by the high temperature oil flue gas that blower fan is incorporated in the cooler bin by cooler bin, and enter oil smoke separator box casing then and implement the oil smoke separation for electrostatic oil and smoke cleaner.Yet, the cooling body ubiquity of the oil-fume separating device in the prior art the problem that the recirculated water reflux cooler damages easily, and this can be confirmed by the deciphering to Chinese utility model patent Granted publication CN201346408Y (cooling body of oil-fume separating device).Because what the recirculated water reflux cooler adopted all is structures of enterprising water outlet under water, when water supply line is cut off the water, water in the recirculated water reflux cooler is in the water outlet interface emptying of bottom, and the water inlet interface on top can not get replenishing because of cutting off the water, constantly enter in the case chamber of cooler bin because of the high temperature oil flue gas this moment, not only can not bring into play but high-temperature oil smoke air cooling, make the static separation oil remover in road, back be difficult to bring into play due electrostatic separation deoiling effect, and the high temperature oil flue gas damages the recirculated water reflux cooler after cutting off the water supply, and makes the cooling tube explosion.The applicant thinks, causes the people that have its source in of above-mentioned phenomenon to be subjected to due to the influence of traditional design thinking, and so-called traditional design thinking influence is meant: think that all the time enterprising water outlet under water is highly preferred scheme, Water seeks its own level is axiom out of question.And facts have proved, as long as the water source takes place to cut off the water, so almost cause the recirculated water reflux cooler to damage without any exception, because cutting off the water generally, the water source discovers can not be for workman's utmost point the time, then late once discovering, can only change the recirculated water reflux cooler, not only can cause user cost to increase, and the order of influence production (to the fabric high-temperature shaping) is carried out and change the recirculated water reflux cooler.In view of this, be necessary the cooling body of the oil-fume separating device in the prior art is improved, with protection recirculated water reflux cooler.
Summary of the invention
Task of the present utility model is to provide a kind of can preventing effectively to ensure carrying out smoothly of producing and avoid the user to increase the cooling body of the oil-fume separating device of equipment use cost because of the water source cuts off the water suddenly to cause the recirculated water reflux cooler to damage to use.
Task of the present utility model is finished like this, a kind of cooling body of oil-fume separating device, comprise cooler bin casing with cooling chamber, the one group of recirculated water reflux cooler that is located in the cooling chamber provides cooling water and recirculated water water supply installation that be connected with water supply line with being used for to the recirculated water reflux cooler, described one group of recirculated water reflux cooler comprises the first cooling base with cavity, be separated with into by the dividing plate branch, the second cooling base of backwater cavity, one group of first cooling tube, one group of second cooling tube and advancing, the backwater interface, first, the second cooling base is parallel longitudinal each other, one group of first cooling tube is positioned at the top of one group of second cooling tube, one end of each first cooling tube is connected with the first cooling base and communicates with described cavity, the other end is connected with the second cooling base and communicates with described backwater cavity, one end of one group of second cooling tube is connected with the first cooling base and communicates with described cavity, the other end is connected with the second cooling base and communicates with described intake antrum, described backwater cavity is positioned at the top of intake antrum, advance, the backwater interface is fixed on the second cooling base, wherein, the backwater interface communicates with backwater cavity, and the water inlet interface communicates with intake antrum.
In a specific embodiment of the present utility model, described recirculated water water supply installation comprises and is used for the water inlet manifold that connects with water supply line, hot water backwater's case, water inlet distributing pipe and backwater distributing pipe, water inlet manifold is fixed on the described cooler bin casing, hot water backwater's case is fixed on the top of cooler bin casing, water inlet distributing pipe and water inlet manifold connect, on the water inlet distributing pipe, receive the first distributing pipe joint that equates with the quantity of described recirculated water reflux cooler and communicate at interval with the tube chamber of water inlet distributing pipe, the first distributing pipe joint is taken over described water inlet interface by first transition and is connected, receive at interval equate and the second distributing pipe joint that communicate with the tube chamber of backwater distributing pipe of quantity with described recirculated water reflux cooler on the backwater distributing pipe, the second distributing pipe joint is taken over described backwater interface by second transition and is connected.
The technical scheme that the utility model provides connects owing to the lower end of interface with the second cooling base that will intake and communicates with intake antrum, the upper end of backwater interface with the second cooling base connected and communicate with backwater cavity, even therefore the recirculated water water supply installation stops because of the water source cuts off the water supplying water to the recirculated water reflux cooler, so because the backwater interface is in the into top of water interface, therefore still can be full of water in one group of first cooling tube and one group of second cooling tube, can do not caused damage by the high temperature oil flue gas, not only can alleviate the use cost of applying unit, and can ensure carrying out smoothly fabric typing work.
Description of drawings
Accompanying drawing is an example structure figure of the present utility model.
The specific embodiment
Ask for an interview accompanying drawing, though provide two cooler bin casings 1 of the cooling body that constitutes oil-fume separating device among the figure, and two cooler bin casings 1 connect each other, that is to say two cooler bin casing 1 combinations with one another together, but the actual quantity of cooler bin casing 1 is not subjected to illustrated restriction, because can increase and decrease according to the state of forming machine.Each cooler bin casing 1 is divided into the cooling chamber 11 on top and the cooling chamber 11 of bottom, be provided with recirculated water reflux cooler 2 no matter be in top or the cooling chamber of bottom 11, there is shown last, eight water recirculators 2 respectively are set in the cooling chamber 11 of bottom, because the structure of the recirculated water reflux cooler 2 in the superposed cooling chamber 11, mounting means and pipeline docked mode are identical with recirculated water reflux cooler 2 in the cooling chamber 11 that is installed in the bottom, so the applicant only elaborates at the recirculated water reflux cooler 2 in the cooling chamber 11 of bottom below.
The one group of water recirculator 2 (present embodiment is eight) that is arranged in the cooling chamber 11 of bottom of cooler bin casing 1 respectively comprises first, the second cooling base 21,26, one group of first cooling tube 22, one group of second cooling tube 25 and advancing, backwater interface 23,24, the first cooling base 21 has cavity 211, and the second cooling base 26 is separated into the backwater cavity 263 on top and the intake antrum 262 of bottom by dividing plate 261, one group of first cooling tube 22 keeping parallelism and be fixed on first, the second cooling base 21, between 26, that is to say, to be illustrated right-hand member fixing with the first cooling base 21 and communicate with the cavity 211 of the first cooling base 21 for one end of each first cooling tube 22, and the other end of each first cooling tube 22 to be illustrated left end and second cool off that base 26 fixes and communicate with backwater cavity 263.One group of second cooling tube 25 keeping parallelism and fix first, second the cooling base 21,26 between, that is to say, one end of each second cooling tube 25 is that the illustrated right-hand member and the first cooling base 21 are fixing, and communicate with cavity 211, and the other end of each second cooling tube 25 is that the illustrated left end and the second cooling base 26 are fixing, and communicates with intake antrum 262.For improve each first, second cooling tube 22,25 heat exchange effect, promptly improve cooling effect to the high temperature oil flue gas, each is first years old, second cooling tube 22, has the heat exchange fin on the outer wall of 25 length direction, by the heat exchange fin with first, second cooling tube 22, the cold of the cold water in 25 is propagated (transmission) and is given the high temperature oil flue gas that enters in the cooling chamber 11, the temperature of the high temperature oil flue gas that enters into cooling chamber 11 is reduced, and the oil smoke gas after temperature reduces is implemented oil smoke by the electrostatic oil and smoke cleaner in and the electrostatic separation box body that communicates that connect with cooler bin casing 1 and is separated.Upper end at the second cooling base 26 connects the backwater interface 24 that communicates with backwater cavity 263, and so-called backwater interface 24 is the water outlet interface, connects a water inlet interface 23 that communicates with intake antrum 262 in the lower end of the second cooling base 26.Because backwater interface 24 is last, and water inlet interface 23 is following, therefore be filled with water all the time in the tube chamber of one group of first cooling tube 22 and one group of second cooling tube 25, even if recirculated water water supply installation 3 because of the water source cuts off the water, the situation of first, second cooling tube 22,25 so can not occur being damaged by the high temperature oil flue gas yet.
If painstakingly the cavity 211 with the first cooling base 21 changes on the second cooling base 26, simultaneously the dividing plate 261 in the second cooling base 26 is transposed on the first cooling base 21, and will advance, backwater interface 23,24 change to first the cooling base 21 on, should be considered as the equivalence conversion so.Again,, be not subjected to illustrating the restriction of quantity, can increase and decrease as required although the quantity of applicant's one group of first, second cooling tube 22,25 shown in the drawings respectively is four.
Recirculated water water supply installation 3 comprises water inlet manifold 31, hot water backwater's case 32 and advancing, backwater distributing pipe 33,34, water inlet manifold 31 and hot water backwater's case 32 all are fixed on the outer wall of cooler bin casing 1, the interface 311 of water inlet manifold 31 is connected with water supply line, water inlet distributing pipe 33 is connected on the water inlet manifold 31, at the water inlet first distributing pipe joint 331 that quantity equates with the quantity of recirculated water reflux cooler 2 and that communicate with the tube chamber of water inlet distributing pipe 33 that continues on the distributing pipe 33, each first distributing pipe joint 331 is connected with the water inlet interface 23 of the corresponding recirculated water reflux cooler 2 that is arranged in cooling chamber 11 by first transition adapter 3311.Equate and the second distributing pipe joint 341 that communicate with the tube chamber of backwater distributing pipe 34 of the same quantity with recirculated water reflux cooler 2 of the quantity that continues on backwater distributing pipe 34, each second distributing pipe joint is connected with the backwater interface 24 of the corresponding recirculated water backwater cooler 2 that is arranged in cooling chamber 11 by second transition adapter 3411.The hot water of return in hot water backwater's case 32 is drawn by house steward hot water backwater 321 who receives on hot water backwater's case 32.By the signal of accompanying drawing, can understand connecting of recirculated water reflux cooler 2 and circulating water device 3 in the cooling chamber 11 on the top that to be located at cooler bin casing 1 fully and connect the identical reason of situation in the cooling chamber 11 that is and is located at the bottom.
When using the utility model, under the effect of negative-pressure air fan, the high temperature oil flue gas of the forming machine when coming from the fabric high-temperature shaping is introduced the cooling chamber 11 of cooler bin casing 1 of the present utility model by the road, open the valve on the water supply line this moment, the water inlet distributing pipe 33 that makes recirculated water water supply installation 3 with cooling water successively through the first distributing pipe joint 331, first transition adapter 3311 and water inlet interface 23 enter intake antrum 262, and then enter one group of second cooling tube 25, enter first cooling tube 22 through cavity 211 again and then successively, enter backwater cavity 263 again, by backwater interface 24, second transition takes over 3411, the second distributing pipe joint 341 and backwater distributing pipe 34 enter hot water backwater's case 32, so circulation and by the high-temperature oil smoke air cooling in 2 pairs of cooling chambers 11 of recirculated water reflux cooler, cooled low temperature oil smoke gas is implemented oil smoke by the electrostatic oil and smoke cleaner in the follow-up electrostatic separation box body and separated.
In said process, in case cutting off the water appears in the water source, recirculated water water supply installation 3 stops to supply water to recirculated water reflux cooler 2, in this case, because of backwater interface 24 occupy the into top of water interface 23, again because the plane of backwater interface 24 is higher than uppermost one first cooling tube 22 in one group of first cooling tube 22, therefore, remained water in first, second cooling tube 22,25, can and even not cause explosion by the bright damage of high temperature oil flue gas, Here it is, and the applicant has overcome the technique effect that the prejudice in the prior art is brought.

Claims (2)

1. the cooling body of an oil-fume separating device, comprise the have cooling chamber cooler bin casing (1) of (11), the one group of recirculated water reflux cooler (2) that is located in the cooling chamber (11) provides recirculated water water supply installation cooling water and that be connected with water supply line (3) with being used for to recirculated water reflux cooler (2), it is characterized in that described one group of recirculated water reflux cooler (2) comprise have cavity (211) first the cooling base (21), be separated with into by dividing plate (261) branch, backwater cavity (262,263) the second cooling base (26), one group of first cooling tube (22), one group of second cooling tube (25) and advancing, backwater interface (23,24), first, the second cooling base (21,26) parallel longitudinal each other, one group of first cooling tube (22) is positioned at the top of one group of second cooling tube (25), one end of each first cooling tube (22) is connected with the first cooling base (21) and communicates with described cavity (211), the other end is connected with the second cooling base (26) and communicates with described backwater cavity (263), one end of one group of second cooling tube (25) is connected with the first cooling base (21) and communicates with described cavity (211), the other end is connected with the second cooling base (26) and communicates with described intake antrum (262), described backwater cavity (263) is positioned at the top of intake antrum (262), advance, backwater interface (23,24) be fixed on the second cooling base (26), wherein, backwater interface (24) communicates with backwater cavity (263), and water inlet interface (23) communicates with intake antrum (262).
2. the cooling body of oil-fume separating device according to claim 1, it is characterized in that described recirculated water water supply installation (3) comprises is used for the water inlet manifold (31) that connects with water supply line, hot water backwater's case (32), water inlet distributing pipe (33) and backwater distributing pipe (34), water inlet manifold (31) is fixed on the described cooler bin casing (1), hot water backwater's case (32) is fixed on the top of cooler bin casing (1), water inlet distributing pipe (33) connects with water inlet manifold (31), go up the equal and first distributing pipe joint of receiving at interval with described recirculated water reflux cooler (2) (331) that communicate with the tube chamber of water inlet distributing pipe (33) of quantity at water inlet distributing pipe (33), the first distributing pipe joint (331) is taken over (3311) by first transition and is connected with described water inlet interface (23), go up equate and the second distributing pipe joint of receiving at interval with described recirculated water reflux cooler (2) (341) that communicate with the tube chamber of backwater distributing pipe (34) of quantity at backwater distributing pipe (34), the second distributing pipe joint (341) is taken over (3411) by second transition and is connected with described backwater interface (24).
CN2009202846762U 2009-12-18 2009-12-18 Cooling mechanism of fume separation device Expired - Lifetime CN201561670U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009202846762U CN201561670U (en) 2009-12-18 2009-12-18 Cooling mechanism of fume separation device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009202846762U CN201561670U (en) 2009-12-18 2009-12-18 Cooling mechanism of fume separation device

Publications (1)

Publication Number Publication Date
CN201561670U true CN201561670U (en) 2010-08-25

Family

ID=42626816

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2009202846762U Expired - Lifetime CN201561670U (en) 2009-12-18 2009-12-18 Cooling mechanism of fume separation device

Country Status (1)

Country Link
CN (1) CN201561670U (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101722105B (en) * 2009-12-18 2012-05-23 常熟市三龙电控有限公司 Cooling mechanism of oil-fume separating device
CN104043529A (en) * 2014-05-23 2014-09-17 灵璧鸿峰科技环保设备有限责任公司 Industrial smoke purification device
CN106311468A (en) * 2015-06-29 2017-01-11 宝山钢铁股份有限公司 Cooling and electric agglomeration device and cooling and electric agglomeration method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101722105B (en) * 2009-12-18 2012-05-23 常熟市三龙电控有限公司 Cooling mechanism of oil-fume separating device
CN104043529A (en) * 2014-05-23 2014-09-17 灵璧鸿峰科技环保设备有限责任公司 Industrial smoke purification device
CN106311468A (en) * 2015-06-29 2017-01-11 宝山钢铁股份有限公司 Cooling and electric agglomeration device and cooling and electric agglomeration method
CN106311468B (en) * 2015-06-29 2018-03-09 宝山钢铁股份有限公司 One kind cooling coagulation and device and method

Similar Documents

Publication Publication Date Title
CN101598507B (en) Heat exchange device of complete isolation sewage pipe casing of single-layer flat pipe
CN201561670U (en) Cooling mechanism of fume separation device
CN103542396B (en) Boiler for vessel
CN201575735U (en) Heat pipe exchanger and energy-saving showering system adopting same
CN105953620A (en) Serial efficient floating heat exchanger
CN201521951U (en) External mixed flowing heat exchange device for circulating fluidized bed boiler
CN101722105B (en) Cooling mechanism of oil-fume separating device
CN101890404B (en) Oven system of vertical gluing machine
CN201377995Y (en) Single-layer flat-pipe full-isolation sewage pipe shell heat exchange device
CN101797441A (en) Oil and gas recovery device
CN207035205U (en) A kind of air preheater
CN111256382A (en) Industrial waste heat recycling system
CN210291376U (en) Marine double-cooling type lubricating oil cooler
CN205679099U (en) A kind of series connection high efficiency movable tube sheets heat exchanger
CN203731904U (en) Intermediate heat exchanger
CN209558587U (en) A kind of split-type wind-cooled module machine
CN103912981B (en) A kind of water tank heating system of aluminium section bar processing industry
CN203489748U (en) Drier heat exchanger
CN202745813U (en) Mine well ventilation air and water drainage heat energy comprehensive utilization system
CN207481742U (en) Air-conditioner outdoor unit and shelter vehicle
CN206330325U (en) A kind of evaporator
CN201346408Y (en) Cooling mechanism for oil-fume separating device
CN205332869U (en) Twin formula oil water chiller
CN204786418U (en) Be applied to I type two -stage heat exchanger of radiant tube nozzle
CN215572323U (en) Energy-saving heat exchange system

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20100825

Effective date of abandoning: 20091218