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CN104121792B - Indirect evaporating-cooling core body - Google Patents

Indirect evaporating-cooling core body Download PDF

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Publication number
CN104121792B
CN104121792B CN201410372650.9A CN201410372650A CN104121792B CN 104121792 B CN104121792 B CN 104121792B CN 201410372650 A CN201410372650 A CN 201410372650A CN 104121792 B CN104121792 B CN 104121792B
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China
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corrugated plate
wet channel
dry passage
wet
core body
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CN201410372650.9A
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CN104121792A (en
Inventor
叶立英
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Hunan Yali Technology Development Co ltd
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Individual
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Abstract

The open a kind of indirect evaporating-cooling core body of the present invention, formed by dry passage and wet channel interlaced arrangement, the side of dry passage/wet channel is the first corrugated plate, opposite side is the second corrugated plate, and the corrugation direction of the first corrugated plate and the second corrugated plate is different, and corrugated plate is fluid-tight material, the two ends, left and right of wet channel are disposed with seal, dry passage upper and lower two ends seal is closed, and air is cooled at dry passage, wet at wet channel get Re get.The present invention utilizes corrugated structure, i.e. wet curtain structure fabrication indirect evaporating-cooling core body, has making simple, technical maturity, low cost, efficiency advantages of higher.

Description

Indirect evaporating-cooling core body
Technical field
The present invention relates to a kind of indirect evaporating-cooling core body, particularly relate to a kind of indirect evaporating-cooling core body utilizing corrugated plate to form.
Background technology
The heat conductive wall of indirect evaporating-cooling core body is the most relatively thin and individual area is relatively big, and its intensity is low, especially with papery or non-woven fabrics or plastic material etc., all the more so;Even metal material, for above-mentioned reasons, its intensity is the lowest.Corrugated plate, its intensity substantially relatively plain film is high, and direct evaporating-cooling core body, i.e. wet curtain are corrugated plate structure, although using paper material, its core body intensity is higher.
Summary of the invention
It is an object of the invention to for the deficiencies in the prior art, it is provided that a kind of indirect evaporating-cooling core body.
It is an object of the invention to be achieved through the following technical solutions: a kind of indirect evaporating-cooling core body, formed by dry passage and wet channel interlaced arrangement, the side of dry passage/wet channel is the first corrugated plate, opposite side is the second corrugated plate, the corrugation direction of the first corrugated plate and the second corrugated plate is different, corrugated plate is fluid-tight material, two ends, the left and right seal of wet channel is closed, dry passage upper and lower two ends seal is closed, first air is cooled by dry passage, second air is wet by wet channel get Re get, water enters wet channel from wet channel upper end, at the second air evaporation.
A kind of indirect evaporating-cooling core body, indirect evaporating-cooling core body is formed by dry passage and wet channel interlaced arrangement, the side of dry passage/wet channel is the first corrugated plate, opposite side is the second corrugated plate, the corrugation direction of the first corrugated plate and the second corrugated plate is different, corrugated plate is fluid-tight material, the left end seal of wet channel is closed, dry passage upper and lower two ends seal is closed, air enters dry passage from dry passage left end and is cooled, the partial air leaving dry passage is wet from the right-hand member entrance wet channel get Re get of wet channel, water enters wet channel from wet channel upper end, evaporate in atmosphere.
A kind of indirect evaporating-cooling core body, indirect evaporating-cooling core body is formed by dry passage and wet channel interlaced arrangement, the side of dry passage/wet channel is the first corrugated plate, opposite side is the second corrugated plate, the corrugation direction of the first corrugated plate and the second corrugated plate is different, corrugated plate is fluid-tight material, two ends, the left and right part seal of wet channel is closed, dry passage upper and lower two ends seal is closed, air enters dry passage from dry passage left end and is cooled, the partial air leaving dry passage enters wet channel from wet channel right-hand member, air is directly entered wet channel from wet channel left end simultaneously, water enters wet channel from wet channel upper end, evaporate in atmosphere, the wet rear discharge of air get Re get of wet channel.
Further, described corrugated plate (including the first corrugated plate and the second corrugated plate) is made up of the impermeable material of two layers of paper and centre, or, the material of corrugated plate (including the first corrugated plate and the second corrugated plate) is film non-woven fabrics.
The present invention utilizes corrugated structure, i.e. wet curtain structure fabrication indirect evaporating-cooling core body, has making simple, technical maturity, low cost, efficiency advantages of higher.
Accompanying drawing explanation
Fig. 1 is the first implementation of the present invention;
Fig. 2 is the explosive view of the first implementation of the present invention;
Fig. 3 is the second implementation of the present invention;
Fig. 4 is the explosive view of the second implementation of the present invention;
Fig. 5 is the first form of the third implementation of the present invention;
Fig. 6 is the explosive view of the first form of the third implementation of the present invention;
Fig. 7 is the second form of the third implementation of the present invention;
Fig. 8 is the explosive view of the second form of the third implementation of the present invention;
Fig. 9 is the third form of the third implementation of the present invention;
Figure 10 is the explosive view of the third form of the third implementation of the present invention.
In figure, first corrugated plate the 11, second corrugated plate 12, seal 2;Dry passage GT, wet channel ST, water W, air A, the first air A1, the second air A2.
Detailed description of the invention
Such as Fig. 1, shown in Fig. 2, indirect evaporating-cooling core body is formed by dry passage GT and wet channel ST interlaced arrangement, the side of dry passage GT/ wet channel ST is the first corrugated plate 11, and opposite side is the second corrugated plate 12, and the corrugation direction of the first corrugated plate 11 and the second corrugated plate 12 is angled, corrugated plate is fluid-tight material, two ends, the left and right seal 2 of wet channel ST is closed, and dry passage GT upper and lower two ends seal 2 is closed, seal 2 generally fluid sealant.
First air A1 is cooled by dry passage GT, second air A2 is wet by wet channel ST get Re get, wet channel ST is entered from wet channel ST upper end, second air A2 evaporates, first air A1 and the second air A2 can be same air, as being all surrounding air, or is different air, if the first air A1 is surrounding air, the second air A2 is indoor exhaust wind.
Fig. 3, Fig. 4 from Fig. 1 Fig. 2 structure is different to be, in Fig. 3 and Fig. 4, wet channel ST simply seals in left side, and unsealing on the right side of wet channel ST communicates with dry passage GT, air A enters dry passage GT from dry passage GT left end and is cooled, the partial air leaving dry passage GT is wet from the right-hand member entrance wet channel ST get Re get of wet channel, and water W enters wet channel from wet channel ST upper end, evaporates in atmosphere.It it is the air first passing through dry passage GT precooling owing to entering the air of wet channel ST, it is possible to achieve the evaporation cooling of so-called dew point.
Fig. 5, Fig. 6 and Fig. 3, Fig. 4 difference is, wet channel ST left side central portion unsealing, only middle part unsealing on the right side of wet channel ST, and Fig. 3, in Fig. 4, hermetically sealed on the left of wet channel ST, right side unsealing.
Air A enters dry passage GT from dry passage GT left end and is cooled, the partial air leaving dry passage GT enters wet channel ST from wet channel ST right-hand member, air A is directly entered wet channel ST from wet channel ST left end simultaneously, water W enters wet channel from wet channel ST upper end, evaporate in atmosphere, the wet rear discharge of air get Re get of wet channel ST.
Owing to there being partial air directly to enter wet channel on the right side of wet channel ST in Fig. 5, Fig. 6, core body resistance can be reduced, simultaneously because still there is air first to be entered back into wet channel ST after precooling, it is also possible to realize the evaporation cooling of so-called dew point.
Fig. 7 and Fig. 8, and Fig. 9 and Figure 10, identical with the basic mode of Fig. 5 with Fig. 6, difference is, in Fig. 5, Fig. 6, the middle part unsealing at wet channel ST two ends, Fig. 7, the bottom unsealing at wet channel ST two ends in Fig. 8, the top unsealing at wet channel ST two ends in Fig. 9, Figure 10.
The material of above-mentioned corrugated plate (including the first corrugated plate 11 and the second corrugated plate 12) can have multiple choices, including the material being made up of the impermeable material of two layers of paper and centre;Film non-woven fabrics;The material that two-layer nonwoven is composited, middle composite bed is waterproof;Centre is plastic sheet, and both sides are the materials that paper is composited;Centre is plastic sheet, and both sides are non-woven fabric compounded materials etc..

Claims (3)

  1. null1. an indirect evaporating-cooling core body,It is characterized in that: indirect evaporating-cooling core body is formed by dry passage and wet channel interlaced arrangement,The side of dry passage/wet channel is the first corrugated plate (11),Opposite side is the second corrugated plate (12),First corrugated plate (11) is different with the corrugation direction of the second corrugated plate (12),First corrugated plate (11) and the second corrugated plate (12) are fluid-tight material,Two ends, a left and right part for wet channel seal (2) is closed,Dry passage upper and lower two ends seal (2) are closed,Air (A) enters dry passage from dry passage left end and is cooled,The partial air leaving dry passage enters wet channel from wet channel right-hand member,Air (A) is directly entered wet channel from wet channel left end simultaneously,Water (W) enters wet channel from wet channel upper end,Evaporate in atmosphere,The wet rear discharge of air get Re get of wet channel.
  2. Core body the most according to claim 1, it is characterised in that: described the first corrugated plate (11) and the second corrugated plate (12) are formed by the impermeable material of two layers of paper and centre.
  3. Core body the most according to claim 1, it is characterised in that: described the first corrugated plate (11) and the material of the second corrugated plate (12) are film non-woven fabrics.
CN201410372650.9A 2014-07-31 2014-07-31 Indirect evaporating-cooling core body Active CN104121792B (en)

Priority Applications (1)

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CN104121792B true CN104121792B (en) 2016-08-24

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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106595355B (en) * 2016-12-08 2018-09-28 澳蓝(福建)实业有限公司 A kind of indirect evaporation cooler
CN106767051B (en) * 2017-01-14 2022-06-10 陈祖卫 Indirect evaporation heat exchanger and cooling tower thereof
FR3084454B1 (en) * 2018-07-25 2020-10-09 Association Pour La Rech Et Le Developpement Des Methodes Et Processus Industriels Armines HEAT AND MATERIAL EXCHANGER

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01169255A (en) * 1987-12-25 1989-07-04 Matsushita Seiko Co Ltd Air-conditioning fan
CN101240957A (en) * 2007-10-16 2008-08-13 何淦明 Cascade multi-stage evaporation core
CN102165268A (en) * 2008-01-25 2011-08-24 可持续能源联盟有限责任公司 Indirect evaporative cooler using membrane-contained, liquid desiccant for dehumidification
JP2013050240A (en) * 2011-08-30 2013-03-14 Mitsubishi Electric Corp Plate heat exchanger and method for manufacturing the same

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8827249B2 (en) * 2011-11-07 2014-09-09 Spx Cooling Technologies, Inc. Air-to-air atmospheric exchanger

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01169255A (en) * 1987-12-25 1989-07-04 Matsushita Seiko Co Ltd Air-conditioning fan
CN101240957A (en) * 2007-10-16 2008-08-13 何淦明 Cascade multi-stage evaporation core
CN102165268A (en) * 2008-01-25 2011-08-24 可持续能源联盟有限责任公司 Indirect evaporative cooler using membrane-contained, liquid desiccant for dehumidification
JP2013050240A (en) * 2011-08-30 2013-03-14 Mitsubishi Electric Corp Plate heat exchanger and method for manufacturing the same

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Effective date of registration: 20201009

Address after: 415000 3rd floor, Jinkun Business Hotel, Renmin Road, Liantang community, jiangjiazui Town, Hanshou County, Changde City, Hunan Province

Patentee after: Hunan Yali Technology Development Co.,Ltd.

Address before: Hangzhou City, Zhejiang province Xiaoshan District 311212 North Street star garden 10 room 604

Patentee before: Ye Liying

EE01 Entry into force of recordation of patent licensing contract

Application publication date: 20141029

Assignee: Hanshou County Xinmeijia Decoration Co.,Ltd.

Assignor: Hunan Yali Technology Development Co.,Ltd.

Contract record no.: X2023980036970

Denomination of invention: Indirect evaporative cooling core

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Denomination of invention: Indirect evaporative cooling core

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