CN206572661U - The device of cold wind is produced in a kind of two-stage standpipe evaporation cooling - Google Patents

The device of cold wind is produced in a kind of two-stage standpipe evaporation cooling Download PDF

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Publication number
CN206572661U
CN206572661U CN201621492346.9U CN201621492346U CN206572661U CN 206572661 U CN206572661 U CN 206572661U CN 201621492346 U CN201621492346 U CN 201621492346U CN 206572661 U CN206572661 U CN 206572661U
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standpipe
heat exchanger
indirect heat
water
level
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CN201621492346.9U
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周理
张新利
樊江峰
薛小宁
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Xinjiang Huayi New Energy Technology Co ltd
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Yangzhou Huayi Communication Equipment Co Ltd
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Abstract

The device of cold wind is produced in a kind of two-stage standpipe evaporation cooling, is belonged at technical field of air conditioner refrigeration, including device import and device outlet, device import and is set filtering and purifying, device exit sets pressure fan;The device for producing cold wind is made up of first order standpipe indirect heat exchanger, water-locator, water circulating pump, cyclic water tank, exhaust blower, second level standpipe indirect heat exchanger, wet filter and direct evaporating-cooling movement;Apparatus structure is novel, and operation principle is clear, and the present apparatus uses horizontal structure and two-stage standpipe indirect heat exchange, and floor space is obviously reduced, and the air themperature after processing is lower, and equipment performance is obviously improved.

Description

The device of cold wind is produced in a kind of two-stage standpipe evaporation cooling
Technical field
The utility model belongs to technical field of air conditioner refrigeration, is related to a kind of device for producing cold wind, particularly relates to one Plant the device that cold wind is produced in the evaporation cooling of two-stage standpipe.
Background technology
In western China, outdoor air summer is dried, and the purpose for producing cold wind, mesh can be realized using evaporation cooling Front evaporator cooling air conditioning group has obtained extensive popularization in the industry in the area such as NORTHWEST CHINA, agricultural and civil buildings And use.But the cold wind temperature that traditional evaporative cooling air conditioning machine group is produced is high, and evaporative cooling equipment volume is big, in most projects Middle equipment, which places place, turns into problem.
Utility model content
The purpose of this utility model is, in order in view of the above-mentioned drawbacks of the prior art and not enough, to propose that a kind of two-stage is stood Pipe evaporation cooling produces the device of cold wind and produces the method for cold wind, using horizontal structure and two-stage standpipe indirect heat exchange, Temperature lower cold wind can be produced while energy-conservation, equipment performance can be also obviously improved.
The technical solution of the utility model is:The device of cold wind is produced in a kind of two-stage standpipe evaporation cooling, including device enters Filtering and purifying is set at mouth and device outlet, described device import, described device exit sets pressure fan;Its feature exists In:The device for producing cold wind by first order standpipe indirect heat exchanger, water-locator, water circulating pump, cyclic water tank, exhaust blower, Second level standpipe indirect heat exchanger, wet filter and direct evaporating-cooling movement are constituted;
The lower section of the first order standpipe indirect heat exchanger is provided with first circulation water tank, the first order standpipe indirect heat exchange The top of device is provided with the first water-locator and the first water fender, and the top of first water fender is provided with first order exhaust blower, described First water-locator is connected by first circulation water pump with the first circulation water tank;
The second level standpipe indirect heat exchanger is disposed proximate to the first order standpipe indirect heat exchanger, the second level The lower section of standpipe indirect heat exchanger is provided with second circulation water tank, and the top of the second level standpipe indirect heat exchanger is provided with the second cloth Hydrophone and second flap, the top of the second flap are provided with second level exhaust blower, and second water-locator passes through second Water circulating pump is connected with the second circulation water tank;
The wet filter is arranged under the right side of the second level standpipe indirect heat exchanger, the wet filter Side is provided with the 3rd cyclic water tank, and the top of the wet filter is provided with the 3rd water-locator, and the 3rd water-locator passes through the 3rd Water circulating pump is connected with the 3rd cyclic water tank;
The direct evaporating-cooling movement is arranged on the right side of the wet filter, the direct evaporating-cooling movement Lower section is provided with the 4th cyclic water tank, and the top of the direct evaporating-cooling movement is provided with the 4th water-locator, the 4th water-locator It is connected by the 4th water circulating pump with the 4th cyclic water tank, the pressure fan is placed in the right side of the direct evaporating-cooling movement Side, the air outlet of the pressure fan is corresponding with device outlet to be connected.
The series of the wet filter is 1~3 grade.
The first order standpipe indirect heat exchanger is highly more than second level standpipe indirect heat exchanger, and first order standpipe is changed indirectly With being flushed at the top of the standpipe indirect heat exchanger of the second level at the top of hot device, demarcation strip is provided with first order standpipe indirect heat exchanger, is separated Plate is flushed with second level standpipe indirect heat exchanger bottom.
Standpipe in the first order standpipe indirect heat exchanger and second level standpipe indirect heat exchanger is circular aluminum pipe, standpipe Caliber is 16~25mm, and standpipe is arranged in blossom type, and standpipe horizontal spacing is 35mm, and standpipe longitudinal pitch is 30mm.
The beneficial effects of the utility model are:The utility model proposes a kind of two-stage standpipe evaporation cooling produce cold wind Device, apparatus structure is novel, and operation principle is clear, and the present apparatus uses horizontal structure, by filtering and purifying, first order standpipe The critical components such as indirect heat exchanger, second level standpipe indirect heat exchanger, direct evaporating-cooling movement, pressure fan are constituted, outdoor empty Gas is first passed through after filtering and purifying filtering, is cooled into first order standpipe indirect heat exchanger, indirect by first order standpipe Air after heat exchanger cooling is cooled again by second level standpipe indirect heat exchanger again, by wet filter mistake After filter, delivered to after carrying out adiabatic humidiflcation into direct evaporating-cooling movement by pressure fan in room, due to being changed indirectly using standpipe Hot device, floor space is obviously reduced, and two-stage standpipe indirect heat exchange is used again, and the air themperature after processing is lower, equipment It can be obviously improved.
Specific advantage is as follows:
1) device uses two-stage standpipe indirect evaporating-cooling, and the cold wind temperature produced is lower;
2) due to being reduced using standpipe indirect heat exchanger occupation area of equipment, the placement for equipment in engineering site is provided More convenience;
3) it is water-tight, leak out due to using standpipe indirect heat exchanger, it is easier to ensure the sealing of heat exchanger end face;
4) due to being not easily blocked using the passage of standpipe indirect heat exchanger, heat exchanger, heat exchange property is stable;
5) air purity after device processing is higher.
Brief description of the drawings
Fig. 1 is the overall structure diagram of the utility model device.
Fig. 2 is the utility model device standpipe indirect heat exchanger neutral tube distributed architecture schematic diagram.
Fig. 3 be in the utility model device air stream through standpipe indirect heat exchanger internal and external channel schematic diagram.
In figure:Filtering and purifying 1, first order standpipe indirect heat exchanger 2, demarcation strip 3, the first water-locator 4, the first dash Plate 5, first order exhaust blower 6, second level exhaust blower 7, second flap 8, the second water-locator 9, second level standpipe indirect heat exchanger 10th, the 3rd water-locator 11, wet filter 12, the 4th water-locator 13, direct evaporating-cooling movement 14, pressure fan 15, air outlet 16th, the 4th water circulating pump 17, the 4th cyclic water tank 18, the 3rd cyclic water tank 19, the 3rd water circulating pump 20, second circulation water pump 21st, second circulation water tank 22, first circulation water tank 23, first circulation water pump 24.
Embodiment
The utility model is described in further detail below in conjunction with the accompanying drawings:
As Figure 1-3, the device of cold wind is produced in a kind of two-stage standpipe evaporation cooling, including device import and device go out Mouthful, filtering and purifying 1 is set at described device import, and device exit sets pressure fan 15;The device of cold wind is produced by It is one-level standpipe indirect heat exchanger 2, water-locator, water circulating pump, cyclic water tank, exhaust blower, second level standpipe indirect heat exchanger 10, wet Formula filter 12 and direct evaporating-cooling movement 14 are constituted;The lower section of first order standpipe indirect heat exchanger 2 is provided with first circulation water Case 23, the top of first order standpipe indirect heat exchanger 2 is provided with the first water-locator 4 and the first water fender 5, the first water fender 5 it is upper Side is provided with first order exhaust blower 6, and the first water-locator 4 is connected by first circulation water pump 24 with first circulation water tank 23;The second level Standpipe indirect heat exchanger 10 is disposed proximate to first order standpipe indirect heat exchanger 2, the lower section of second level standpipe indirect heat exchanger 10 Provided with second circulation water tank 22, the top of second level standpipe indirect heat exchanger 10 is provided with the second water-locator 9 and second flap 8, The top of second flap 8 is provided with second level exhaust blower 7, and the second water-locator 9 passes through second circulation water pump 21 and second circulation water Case 22 is connected;Wet filter 12 is arranged on the right side of second level standpipe indirect heat exchanger 10, and the lower section of wet filter 12 is set There is the 3rd cyclic water tank 19, the top of wet filter 12 is provided with the 3rd water-locator 11, and the 3rd water-locator 11 passes through the 3rd circulation Water pump 20 is connected with the 3rd cyclic water tank 19;Direct evaporating-cooling movement 14 is arranged on the right side of wet filter 12, directly steams The feel cold lower section of but movement 14 is provided with the 4th cyclic water tank 18, and the top of direct evaporating-cooling movement 14 is provided with the 4th water-locator 13, the 4th water-locator 13 is connected by the 4th water circulating pump 17 with the 4th cyclic water tank 18, and pressure fan 15, which is placed in, directly evaporates cold But the right side of movement 14, the air outlet 16 of pressure fan 15 is corresponding with device outlet to be connected.
As Figure 1-3, the device of cold wind, the series of the wet filter 12 are produced in a kind of two-stage standpipe evaporation cooling For 1~3 grade;The height of first order standpipe indirect heat exchanger 2 is more than second level standpipe indirect heat exchanger 10, and first order standpipe is changed indirectly The hot top of device 2 is flushed with the top of second level standpipe indirect heat exchanger 10, and demarcation strip 3 is provided with first order standpipe indirect heat exchanger 2, Demarcation strip 3 is flushed with the second level standpipe indirect heat exchanger (10) bottom;Between first order standpipe indirect heat exchanger and second level standpipe It is circular aluminum pipe to connect the standpipe in heat exchanger, and standpipe caliber is 16~25mm, and standpipe arranges that standpipe horizontal spacing is in blossom type 35mm, standpipe longitudinal pitch is 30mm.
As Figure 1-3, a kind of operation principle for the device that cold wind is produced in two-stage standpipe evaporation cooling is as follows:
Outdoor air enters after being filtered by filtering and purifying 1 to be led in the pipe of the bottom of first order standpipe indirect heat exchanger 2 Road, is discharged by first order exhaust blower 6;The first order through the bottom of demarcation strip 3 is stood after outdoor air is filtered by filtering and purifying 1 The pipe outer tunnel of pipe indirect heat exchange device 2 enters the pipe internal channel of the bottom of second level standpipe indirect heat exchanger 10, by second level exhaust blower 7 Discharge;The first order standpipe indirect heat exchanger 2 through the top of demarcation strip 3 is managed outer after outdoor air is filtered by filtering and purifying 1 Passage, the pipe outer tunnel of second level standpipe indirect heat exchanger 10, first order wet filter 12 and direct evaporating-cooling movement 14, most System is sent into by pressure fan 15 afterwards;Water in first circulation water tank 23 is sprayed by first circulation water pump 24 by the first water-locator 4 First order standpipe indirect heat exchanger 2, flows back to first circulation water tank 23 by the pipe internal channel of first order standpipe indirect heat exchanger 2, follows Ring is reciprocal;Water in second circulation water tank 22 sprays second level standpipe indirect by second circulation water pump 21 by the second water-locator 9 Heat exchanger 10, flows back to second circulation water tank 22 by the pipe internal channel of second level standpipe indirect heat exchanger 10, moves in circles;3rd follows Water in ring water tank 19 sprays wet filter 12 by the 3rd water-locator 11, then flows back to the 3rd by the 3rd water circulating pump 20 Cyclic water tank 19, moves in circles;Water in 4th cyclic water tank 18 is sprayed by the 4th water circulating pump 17 by the 4th water-locator 13 Direct evaporating-cooling movement 14, then flows back to the 4th cyclic water tank 18, moves in circles, produce cold wind.

Claims (4)

1. the device of cold wind, including device import and device outlet, described device import are produced in a kind of two-stage standpipe evaporation cooling Place sets filtering and purifying (1), and described device exit sets pressure fan (15);It is characterized in that:The cold wind produced Device is also between first order standpipe indirect heat exchanger (2), water-locator, water circulating pump, cyclic water tank, exhaust blower, second level standpipe Heat exchanger (10), wet filter (12) and direct evaporating-cooling movement (14) is connect to constitute;
The lower section of the first order standpipe indirect heat exchanger (2) is provided with first circulation water tank (23), and the first order standpipe is indirect The top of heat exchanger (2) is provided with the first water-locator (4) and the first water fender (5), and the top of first water fender (5) is provided with the One-level exhaust blower (6), first water-locator (4) passes through first circulation water pump (24) and first circulation water tank (23) phase Even;
The second level standpipe indirect heat exchanger (10) is disposed proximate to the first order standpipe indirect heat exchanger (2), and described The lower section of two grades of standpipe indirect heat exchangers (10) is provided with second circulation water tank (22), the second level standpipe indirect heat exchanger (10) Top be provided with the second water-locator (9) and second flap (8), the top of the second flap (8) is provided with second level air draft Machine (7), second water-locator (9) is connected by second circulation water pump (21) with the second circulation water tank (22);
The wet filter (12) is arranged on the right side of the second level standpipe indirect heat exchanger (10), the wet filter (12) lower section is provided with the 3rd cyclic water tank (19), and the top of the wet filter (12) is provided with the 3rd water-locator (11), institute The 3rd water-locator (11) is stated by the 3rd water circulating pump (20) with the 3rd cyclic water tank (19) to be connected;
The direct evaporating-cooling movement (14) is arranged on the right side of the wet filter (12), the direct evaporating-cooling machine The lower section of core (14) is provided with the 4th cyclic water tank (18), and the top of the direct evaporating-cooling movement (14) is provided with the 4th water-locator (13), the 4th water-locator (13) is connected by the 4th water circulating pump (17) with the 4th cyclic water tank (18), described to send Blower fan (15) is placed in the right side of the direct evaporating-cooling movement (14), and the air outlet (16) of the pressure fan (15) goes out with device Mouth correspondence is connected.
2. the device of cold wind is produced in a kind of two-stage standpipe evaporation cooling according to claim 1, it is characterised in that:It is described wet The series of formula filter (12) is 1~3 grade.
3. the device of cold wind is produced in a kind of two-stage standpipe evaporation cooling according to claim 1, it is characterised in that:Described One-level standpipe indirect heat exchanger (2) is highly more than second level standpipe indirect heat exchanger (10), first order standpipe indirect heat exchanger (2) Top is provided with demarcation strip with being flushed at the top of second level standpipe indirect heat exchanger (10) in first order standpipe indirect heat exchanger (2) (3), demarcation strip (3) is flushed with the second level standpipe indirect heat exchanger (10) bottom.
4. the device of cold wind is produced in a kind of two-stage standpipe evaporation cooling according to claim 1, it is characterised in that:Described Standpipe in one-level standpipe indirect heat exchanger and second level standpipe indirect heat exchanger is circular aluminum pipe, standpipe caliber is 16~ 25mm, standpipe arranges that standpipe horizontal spacing is 35mm in blossom type, and standpipe longitudinal pitch is 30mm.
CN201621492346.9U 2016-12-30 2016-12-30 The device of cold wind is produced in a kind of two-stage standpipe evaporation cooling Active CN206572661U (en)

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CN201621492346.9U CN206572661U (en) 2016-12-30 2016-12-30 The device of cold wind is produced in a kind of two-stage standpipe evaporation cooling

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Application Number Priority Date Filing Date Title
CN201621492346.9U CN206572661U (en) 2016-12-30 2016-12-30 The device of cold wind is produced in a kind of two-stage standpipe evaporation cooling

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106765772A (en) * 2016-12-30 2017-05-31 扬州华奕通讯设备有限公司 A kind of two-stage standpipe evaporation cooling is produced the device of cold wind and produces the method for cold wind
CN107894044A (en) * 2017-10-26 2018-04-10 西安工程大学 Suitable for the natural cooling air-conditioner set of data center of the Northwest

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106765772A (en) * 2016-12-30 2017-05-31 扬州华奕通讯设备有限公司 A kind of two-stage standpipe evaporation cooling is produced the device of cold wind and produces the method for cold wind
CN107894044A (en) * 2017-10-26 2018-04-10 西安工程大学 Suitable for the natural cooling air-conditioner set of data center of the Northwest

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TR01 Transfer of patent right

Effective date of registration: 20180321

Address after: Swan Lake Road Economic Development Zone the Xinjiang Uygur Autonomous Region 830022 Urumqi City No. 2 building 25 layer.

Patentee after: Xinjiang Hua Yi Xin Energy Technology Co.,Ltd.

Address before: 225200 Yangzhou District, Jiangdu City, Jiangsu Province, the central business district of the city's three District, three street,

Patentee before: YANGZHOU HUAYI TELECOM EQUIPMENT CO.,LTD.

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CP03 Change of name, title or address

Address after: 25/F, Aidi Building, No. 2, Swan Lake Road, Urumqi Economic and Technological Development Zone, 830000 Xinjiang Uygur Autonomous Region

Patentee after: Xinjiang Huayi New Energy Technology Co.,Ltd.

Country or region after: China

Address before: 830022, 25th Floor, Aidi Building, No. 2 Tian'e Lake Road, Urumqi Economic Development Zone, Xinjiang Uygur Autonomous Region

Patentee before: Xinjiang Hua Yi Xin Energy Technology Co.,Ltd.

Country or region before: China

CP03 Change of name, title or address