CN206974227U - A kind of spray-type hot water cooling device - Google Patents

A kind of spray-type hot water cooling device Download PDF

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Publication number
CN206974227U
CN206974227U CN201720907530.3U CN201720907530U CN206974227U CN 206974227 U CN206974227 U CN 206974227U CN 201720907530 U CN201720907530 U CN 201720907530U CN 206974227 U CN206974227 U CN 206974227U
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Prior art keywords
inlet pipe
water
annular
column body
hot water
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CN201720907530.3U
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Chinese (zh)
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黄增乐
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Guangxi sugar group Honghe Sugar Co., Ltd
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Red River Sugaring Co Ltd Of Land-Reclaimable Sugar Industry Group In Guangxi
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Abstract

It the utility model is related to a kind of spray-type hot water cooling device, including cooling column body, annular water inlet pipe, first annular blast pipe and the second circular air inlet pipe;The side of cooling column body bottom is provided with delivery port;Annular water inlet pipe is placed in the inside upper part of cooling column body, and multiple water inflow nozzle groups are provided with annular water inlet pipe, and each water inflow nozzle group connects with annular water inlet pipe;First annular blast pipe is looped around cooling column body outer circumferential side, and multiple first air intake nozzles are provided with first annular blast pipe, and multiple first air intake nozzles connect with first annular blast pipe;First air intake nozzle is stretched into cooling column body;Second circular air inlet pipe is placed in cooling column body;The multiple second air intake nozzles set on second circular air inlet pipe connect with the second circular air inlet pipe.Compared with the prior art, the utility model can increase the hot water of atomization and the contact surface of cold air so that hot water contacts more full and uniform, quickening heat exchange with cold air, lifts the cooling effectiveness of hot water.

Description

A kind of spray-type hot water cooling device
Technical field
Cooling technology field is the utility model is related to, more particularly to a kind of spray-type hot water cooling device.
Background technology
Substantial amounts of hot water can be produced in industries such as chemical industry, steel, sugarings, in order to recycle, it is necessary to be carried out to hot water cold But.Such as the cooling tower that current sugar refinery uses all is induced air type cooling tower mostly, i.e., some water inlet sprays are disposed with cooling tower Mouth, hot water jet is atomized, tower top is provided with air-introduced machine (11), and hot gas is drawn and gone, reaches the purpose of cooling.Steamed to reduce Steam caused by hair, which is drawn, influences environmental pollution, and this cooling tower sets water collection device above water inflow nozzle, the water collection device passage Area is small, and resistance is big, and ventilation is small, and cooling effectiveness is low.Cause hot water chilling temperature difference low.Meanwhile steam easily causes air inducing Machine shakes, and reduces equipment life.And easily block, cause cooling effectiveness lower, maintenance cost is high.
Utility model content
The purpose of this utility model is to provide a kind of spray-type hot water cooling device, and technical problem to be solved is:It is cold But efficiency is low, easily blocks, and maintenance cost is high.
The technical scheme that the utility model solves above-mentioned technical problem is as follows:A kind of spray-type hot water cooling device, including Cooling column body, annular water inlet pipe, first annular blast pipe and the second circular air inlet pipe;
The side of the cooling column body bottom is provided with delivery port;The annular water inlet pipe is placed in the interior of the cooling column body Upper lateral part, multiple water inflow nozzle groups are provided with above the annular water inlet pipe, each water inflow nozzle group passes through water inlet Branch pipe connects with annular water inlet pipe;
The first annular blast pipe is looped around the cooling column body outer circumferential side, in the inner ring of the first annular blast pipe Multiple first air intake nozzles are provided with, multiple first air intake nozzles connect with the first annular blast pipe;Multiple institutes State the first air intake nozzle and both pass through the side wall of the cooling column body and stretch into the cooling column body;
The second circular air inlet pipe is placed in the cooling column body, and the lower section in the annular water inlet pipe;It is described Multiple second air intake nozzles are provided with second circular air inlet pipe, multiple second air intake nozzles enter with second annular Airduct connects.
The beneficial effects of the utility model are:Annular water inlet pipe introduces hot water, and is sprayed by multiple water inflow nozzle groups, makes Must be hot water atomized, increase the area of dissipation of hot water, first annular blast pipe can be blown a cold wind over from top to the hot water of atomization, the Second ring blast pipe blowing cold air from below, increases the hot water of atomization and the contact surface of cold air so that the hot water and cold air of atomization Contact is more full and uniform, and accelerate heat exchange, lifts the cooling effectiveness of hot water.
On the basis of above-mentioned technical proposal, the utility model can also do following improvement.
Further, multiple water inflow nozzle groups form the top that cyclic structure is in the annular water inlet pipe, each The water inflow nozzle group includes multiple water inflow nozzles, and multiple water inflow nozzles connect with the water inlet pipe.
It is using the above-mentioned further beneficial effect of scheme:Multiple water inflow nozzle groups form cyclic structure, can make more The area that the individual water inflow nozzle group sprays hot water is bigger, more uniformly, carries out heat exchange, lifts the cooling effectiveness of hot water;Often One water inflow nozzle group includes multiple water inflow nozzles, is sprayed water by multiple water inflow nozzles so that water spray is more equal It is even, accelerate hot water cooling effectiveness.
Further, the side of the cooling column body is provided with centrifugal water pump, and the water side of the centrifugal water pump passes through water pipe Connected with the annular water inlet pipe.
It is using the above-mentioned further beneficial effect of scheme:Centrifugal water pump can extract hot water, and be passed hot water by water pipe Transport to annular water inlet pipe to be sprayed, be easy to control water-jet velocity, ensure hot water cooling effectiveness.
Further, the side of the cooling column body is provided with blower fan, and the air outlet of the blower fan is by airduct respectively with One circular air inlet pipe and the connection of the second circular air inlet pipe.
It is using the above-mentioned further beneficial effect of scheme:By blower fan simultaneously to first annular blast pipe and the second annular Blast pipe exports cold wind, can make first annular blast pipe and the second circular air inlet pipe synchronism output cold wind, is easy to control output cold Wind velocity, ensure hot water cooling effectiveness.
Further, inner ring of multiple first air intake nozzles along the first annular blast pipe is sequentially arranged composition ring-type Structure;The end that multiple first air intake nozzles are stretched into the cooling column body is formed towards multiple first air intake nozzles At the center of cyclic structure.
It is using the above-mentioned further beneficial effect of scheme:Multiple first air intake nozzles to spraying cold wind at center, So that the cold wind that sprays of multiple first air intake nozzles from periphery to center at blow out so that cold wind is more equal with hot water contacts Even, more abundant, hot water cooling effectiveness is higher.
Further, the second circular air inlet pipe is in the cooling column body at the center of cross section.
It is using the above-mentioned further beneficial effect of scheme:Second circular air inlet pipe passes through blowing cold air at center so that Cold wind upward or horizontal peripheral diffusion at center, and the cold wind for coordinating multiple first air intake nozzles to spray so that atomization Hot water afterwards contacts evenly, more fully with cold wind, and hot water cooling effectiveness is higher.
Further, the second circular air inlet pipe includes external air inlet pipe and interior blast pipe, the external air inlet pipe and interior air intake Pipe structure annular in shape, the interior blast pipe are placed in the ring of the external air inlet pipe;The external air inlet pipe connects with interior blast pipe.
It is using the above-mentioned further beneficial effect of scheme:External air inlet pipe and interior blast pipe carry out cold wind output, energy simultaneously Increase cold wind delivery efficiency, while make it that cold wind output is more uniform.
Further, the lower end of the external air inlet pipe is connected with multiple second air intake nozzles in communication;The interior air intake The lower end of pipe is connected with multiple second air intake nozzles in communication.
It is using the above-mentioned further beneficial effect of scheme:Multiple second air intake nozzles are disposed with external air inlet pipe, are inside entered Multiple second air intake nozzles are disposed with airduct, cold wind is sprayed by multiple second air intake nozzles, cold wind delivery efficiency can be increased, Cause that cold wind output is more uniform simultaneously.
Further, the inside top of the cooling column body is provided with fan leaf type water collection device, outside the top of the cooling column body Side is provided with drive device, and the output shaft of the drive device is stretched into the cooling column body to be connected with the fan leaf type water collection device Connect, and drive the fan leaf type water collection device to rotate.
It is using the above-mentioned further beneficial effect of scheme:Drive device can drive fan leaf type water collection device to be rotated, fan Leaf formula water collection device can adjust rotating speed according to cooling water flow, it is received water effect to water vapour and keep good;Fan leaf type water collection device It will not block, greatly save maintenance cost.
Further, the delivery port is liquid-seal type delivery port.
Brief description of the drawings
Fig. 1 is a kind of structural representation of spray-type hot water cooling device of the utility model.
In accompanying drawing, the list of parts representated by each label is as follows:
1st, cooling column body, 2, annular water inlet pipe, 3, first annular blast pipe;
4th, the second circular air inlet pipe, 401, external air inlet pipe, 402, interior blast pipe;
5th, delivery port, 6, water inflow nozzle group, the 7, first air intake nozzle, the 8, second air intake nozzle, 9, centrifugal water pump, 10, water Pipe, 11, blower fan, 12, airduct, 13, fan leaf type water collection device, 14, drive device.
Embodiment
Principle of the present utility model and feature are described below in conjunction with accompanying drawing, example is served only for explaining this practicality It is new, it is not intended to limit the scope of the utility model.
As shown in figure 1, a kind of spray-type hot water cooling device, including cooling column body 1, annular water inlet pipe 2, it is first annular enter The circular air inlet pipe 4 of airduct 3 and second;
The side of the bottom of cooling column body 1 is provided with delivery port 5;The annular water inlet pipe 2 is placed in the cooling column body 1 Inside upper part, the top of the annular water inlet pipe 2 is provided with multiple water inflow nozzle groups 6, and each water inflow nozzle group 6 is logical Water inlet pipe is crossed to connect with annular water inlet pipe 2;
The first annular blast pipe 3 is looped around the outer circumferential side of cooling column body 1, the first annular blast pipe 3 it is interior Multiple first air intake nozzles 7 are provided with ring, multiple first air intake nozzles 7 connect with the first annular blast pipe 3; The side wall that multiple first air intake nozzles 7 both pass through the cooling column body 1 is stretched into the cooling column body 1;
The second circular air inlet pipe 4 is placed in the cooling column body 1, and the lower section in the annular water inlet pipe 2;Institute State and multiple second air intake nozzles 8 are provided with the second circular air inlet pipe 4, multiple second air intake nozzles 8 are with described second Circular air inlet pipe 4 connects.
Annular water inlet pipe 2 introduces hot water, and is sprayed by multiple water inflow nozzle groups 6 so that and it is hot water atomized, increase hot water Area of dissipation, first annular blast pipe 3 can be blown a cold wind over from top to the hot water of atomization, and the second circular air inlet pipe 4 is from below Blowing cold air, increase the hot water of atomization and the contact surface of cold air so that the hot water of atomization contacts more full and uniform with cold air, adds It is fast to carry out heat exchange, lift the cooling effectiveness of hot water.
In above-described embodiment, multiple water inflow nozzle groups 6 form cyclic structure and are in the upper of the annular water inlet pipe 2 Side, each described water inflow nozzle group 6 include multiple water inflow nozzles, and multiple water inflow nozzles connect with the water inlet pipe It is logical.
Multiple water inflow nozzle groups 6 form cyclic structure, and multiple water inflow nozzle groups 6 can be made to spray the area of hot water It is bigger, more uniformly, heat exchange is carried out, lift the cooling effectiveness of hot water;Each described water inflow nozzle group 6 include it is multiple enter (operating) water nozzle, sprayed water by multiple water inflow nozzles so that water spray is more uniform, accelerates hot water cooling effectiveness.
In above-described embodiment, the side of the cooling column body 1 is provided with centrifugal water pump 9, the water side of the centrifugal water pump 9 Connected by water pipe 10 with the annular water inlet pipe 2.
Centrifugal water pump 9 can extract hot water, and be sprayed hot water delivery to annular water inlet pipe 2 by water pipe 10, be easy to Water-jet velocity is controlled, ensures hot water cooling effectiveness.
In above-described embodiment, the side of the cooling column body 1 is provided with blower fan 11, and the air outlet of the blower fan 11 passes through wind Pipe 12 connects with the first annular circular air inlet pipe 4 of blast pipe 3 and second respectively.
Cold wind is exported to the first annular circular air inlet pipe 4 of blast pipe 3 and second simultaneously by blower fan 11, can be made first annular The synchronism output cold wind of 3 and second circular air inlet pipe of blast pipe 4, it is easy to control output cold wind speed, ensures hot water cooling effectiveness.
In above-described embodiment, inner ring of multiple first air intake nozzles 7 along the first annular blast pipe 3 is sequentially arranged Form cyclic structure;The end that multiple first air intake nozzles 7 are stretched into the cooling column body 1 is entered towards multiple described first Wind nozzle 7 is formed at the center of cyclic structure.
Multiple first air intake nozzles 7 are to spraying cold wind at center so that what multiple first air intake nozzles 7 sprayed Cold wind from periphery to center at blow out so that evenly, more fully, hot water cooling effectiveness is higher by cold wind and hot water contacts.
In above-described embodiment, the second circular air inlet pipe 4 is in the cooling column body 1 at the center of cross section.
Second circular air inlet pipe 4 passes through blowing cold air at center so that cold wind upward or horizontal peripheral diffusion at center, And the cold wind for coordinating multiple first air intake nozzles 7 to spray so that the hot water after atomization contacts with cold wind evenly, more to be filled Point, hot water cooling effectiveness is higher.
In above-described embodiment, the second circular air inlet pipe 4 includes external air inlet pipe 401 and interior blast pipe 402, described to enter outside Airduct 401 and the structure annular in shape of interior blast pipe 402, the interior blast pipe 402 are placed in the ring of the external air inlet pipe 401;Institute External air inlet pipe 401 is stated to connect with interior blast pipe 402.
External air inlet pipe 401 and interior blast pipe 402 carry out cold wind output simultaneously, can increase cold wind delivery efficiency, cause simultaneously Cold wind output is more uniform.
In above-described embodiment, the lower end of the external air inlet pipe 401 is connected with multiple second air intake nozzles 8 in communication; The lower end of the interior blast pipe 402 is connected with multiple second air intake nozzles 8 in communication.
Multiple second air intake nozzles 8 are disposed with external air inlet pipe 401, multiple second air intakes are disposed with interior blast pipe 402 Nozzle 8, cold wind is sprayed by multiple second air intake nozzles 8, cold wind delivery efficiency can be increased, while make it that cold wind output is more equal It is even.
In above-described embodiment, the inside top of the cooling column body 1 is provided with fan leaf type water collection device 13, the cooling column body 1 top outer is provided with drive device 14, and the output shaft of the drive device 14 stretches into the cooling column body 1 and the fan Leaf formula water collection device 13 connects, and drives the fan leaf type water collection device 13 to rotate, and drive device 14 is motor.
Drive device 14 can drive fan leaf type water collection device 13 to be rotated, and fan leaf type water collection device 13 can be according to cooling water flow Rotating speed is adjusted, it is received water effect to water vapour and keeps good;Fan leaf type water collection device 13 will not block, and greatly save maintenance expense With.
In above-described embodiment, the delivery port 5 is liquid-seal type delivery port.
Preferred embodiment of the present utility model is the foregoing is only, it is all in this practicality not to limit the utility model Within new spirit and principle, any modification, equivalent substitution and improvements made etc., guarantor of the present utility model should be included in Within the scope of shield.

Claims (10)

  1. A kind of 1. spray-type hot water cooling device, it is characterised in that:Including cooling column body (1), annular water inlet pipe (2), the first ring Shape blast pipe (3) and the second circular air inlet pipe (4);
    The side of cooling column body (1) bottom is provided with delivery port (5);The annular water inlet pipe (2) is placed in the cooling tower The inside upper part of body (1), multiple water inflow nozzle groups (6) are provided with above the annular water inlet pipe (2), each water inlet spray Mouth group (6) is connected by water inlet pipe with annular water inlet pipe (2);
    The first annular blast pipe (3) is looped around the cooling column body (1) outer circumferential side, the first annular blast pipe (3) Be provided with multiple first air intake nozzles (7) in inner ring, multiple first air intake nozzles (7) with the first annular blast pipe (3) connect;The side wall that multiple first air intake nozzles (7) both pass through the cooling column body (1) stretches into the cooling column body (1) It is interior;
    The second circular air inlet pipe (4) is placed in the cooling column body (1), and the lower section in the annular water inlet pipe (2); Be provided with multiple second air intake nozzles (8) on the second circular air inlet pipe (4), multiple second air intake nozzles (8) with Second circular air inlet pipe (4) connection.
  2. A kind of 2. spray-type hot water cooling device according to claim 1, it is characterised in that:Multiple water inflow nozzle groups (6) top that cyclic structure is in the annular water inlet pipe (2) is formed, each described water inflow nozzle group (6) includes multiple Water inflow nozzle, multiple water inflow nozzles connect with the water inlet pipe.
  3. A kind of 3. spray-type hot water cooling device according to claim 2, it is characterised in that:The one of the cooling column body (1) Side is provided with centrifugal water pump (9), and the water side of the centrifugal water pump (9) is connected by water pipe (10) and the annular water inlet pipe (2) It is logical.
  4. A kind of 4. spray-type hot water cooling device according to claim 1, it is characterised in that:The one of the cooling column body (1) Side is provided with blower fan (11), the air outlet of the blower fan (11) by airduct (12) respectively with first annular blast pipe (3) and Second ring blast pipe (4) connects.
  5. A kind of 5. spray-type hot water cooling device according to claim 1, it is characterised in that:Multiple first air intake nozzles (7) it is sequentially arranged composition cyclic structure along the inner ring of the first annular blast pipe (3);Multiple first air intake nozzles (7) The end in the cooling column body (1) is stretched into form at the center of cyclic structure towards multiple first air intake nozzles (7).
  6. A kind of 6. spray-type hot water cooling device according to claim 5, it is characterised in that:The second circular air inlet pipe (4) at the center in the cooling column body (1) interior cross section.
  7. A kind of 7. spray-type hot water cooling device according to claim 6, it is characterised in that:The second circular air inlet pipe (4) external air inlet pipe (401) and interior blast pipe (402) are included, the external air inlet pipe (401) and interior blast pipe (402) are annular in shape Structure, the interior blast pipe (402) are placed in the ring of the external air inlet pipe (401);The external air inlet pipe (401) and interior blast pipe (402) connect.
  8. A kind of 8. spray-type hot water cooling device according to claim 7, it is characterised in that:The external air inlet pipe (401) Lower end is connected with multiple second air intake nozzles (8) in communication;The lower end of the interior blast pipe (402) is connected with communication Multiple second air intake nozzles (8).
  9. 9. according to a kind of any one of claim 1 to 8 spray-type hot water cooling device, it is characterised in that:The cooling tower The inside top of body (1) is provided with fan leaf type water collection device (13), and the top outer of the cooling column body (1) is provided with drive device (14), the output shaft of the drive device (14) is stretched into the cooling column body (1) and is connected with the fan leaf type water collection device (13), And the fan leaf type water collection device (13) is driven to rotate.
  10. A kind of 10. spray-type hot water cooling device according to claim 9, it is characterised in that:The delivery port (5) is fluid-tight Formula delivery port.
CN201720907530.3U 2017-07-25 2017-07-25 A kind of spray-type hot water cooling device Active CN206974227U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720907530.3U CN206974227U (en) 2017-07-25 2017-07-25 A kind of spray-type hot water cooling device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720907530.3U CN206974227U (en) 2017-07-25 2017-07-25 A kind of spray-type hot water cooling device

Publications (1)

Publication Number Publication Date
CN206974227U true CN206974227U (en) 2018-02-06

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CN201720907530.3U Active CN206974227U (en) 2017-07-25 2017-07-25 A kind of spray-type hot water cooling device

Country Status (1)

Country Link
CN (1) CN206974227U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107300331A (en) * 2017-07-25 2017-10-27 广西农垦糖业集团红河制糖有限公司 A kind of spray-type hot water cooling device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107300331A (en) * 2017-07-25 2017-10-27 广西农垦糖业集团红河制糖有限公司 A kind of spray-type hot water cooling device

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Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CP01 Change in the name or title of a patent holder

Address after: Mongolia the Guangxi Zhuang Autonomous Region Laibin City District village 546128 red sugar Ltd

Patentee after: Guangxi sugar group Honghe Sugar Co., Ltd

Address before: Mongolia the Guangxi Zhuang Autonomous Region Laibin City District village 546128 red sugar Ltd

Patentee before: GUANGXI NONGKEN SUGAR INDUSTRY GROUP HONGHE SUGAR Co.,Ltd.

CP01 Change in the name or title of a patent holder