CN204414425U - Unpowered energy-saving circulating cooling pond - Google Patents

Unpowered energy-saving circulating cooling pond Download PDF

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Publication number
CN204414425U
CN204414425U CN201520017633.3U CN201520017633U CN204414425U CN 204414425 U CN204414425 U CN 204414425U CN 201520017633 U CN201520017633 U CN 201520017633U CN 204414425 U CN204414425 U CN 204414425U
Authority
CN
China
Prior art keywords
cooling pond
lead
pond
saving circulating
cooling
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 - Fee Related
Application number
CN201520017633.3U
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Chinese (zh)
Inventor
陈军敏
夏威
徐喜龙
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.)
Kuitun Tian Ce Scientific & Trading Co Ltd
Original Assignee
Kuitun Tian Ce Scientific & Trading 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 Kuitun Tian Ce Scientific & Trading Co Ltd filed Critical Kuitun Tian Ce Scientific & Trading Co Ltd
Priority to CN201520017633.3U priority Critical patent/CN204414425U/en
Application granted granted Critical
Publication of CN204414425U publication Critical patent/CN204414425U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to EPS layered product and produces cooling device, especially a kind of Unpowered energy-saving circulating cooling pond.A kind of Unpowered energy-saving circulating cooling pond, it is characterized in that comprising lead, cooling pond, lead is located at the both sides of cooling pond, lead is connected with thermal water source, lead near thermal water source side is many, its road tail communicates formation " Z " type water channel, the termination that " Z " type water channel walks around cooling pond is connected with the lead of opposite side, the end of lead is provided with dewatering outlet, dewatering outlet is connected with cooling pond, many blowoff basins partition wall is interval with in cooling pond, every blowoff basin partition wall is provided with priming hole, priming hole is multiple and interval is arranged.The utility model, without the need to the cooling of traditional cooling tower, utilizes plate-like lead Temperature fall, reaches the cooling requirement of production technology, and saved electric energy.It is rationally distributed, structure is simple, economical and practical, can meet EPS layered product produce actual needs.

Description

Unpowered energy-saving circulating cooling pond
Technical field
The utility model relates to EPS layered product and produces cooling device, especially a kind of Unpowered energy-saving circulating cooling pond.
Background technology
In the production process of EPS layered product, before the finished product demoulding, have individual process for cooling, and most process for cooling is all the mode adopting water-cooled.Traditional cooling pond is all adopt cooling tower to reduce water temperature, and power consumption is large, and production cost expenditure is larger.
Summary of the invention
It is simple, economical and practical that the purpose of this utility model is to provide a kind of structure, can meet the requirement of the cooling process of EPS layered product production equipment completely, saved the small-sized auto feed broken arch hopper of the expense expenditure of electric energy and cooling tower.
The utility model discloses a kind of Unpowered energy-saving circulating cooling pond, it is characterized in that comprising lead 7, cooling pond 2, described lead 7 is located at the both sides of cooling pond 2, lead 7 is connected with thermal water source 1, lead 7 near thermal water source 1 side is many, its road tail communicates formation " Z " type water channel, the lead 7 of a termination and opposite side that " Z " type water channel walks around cooling pond 2 is connected, the end of lead 7 is provided with dewatering outlet 4, dewatering outlet 4 is connected with cooling pond 2, many blowoff basins partition wall 5 is interval with in described cooling pond 2, every blowoff basin partition wall 5 is provided with priming hole 6, priming hole 6 is multiple and interval is arranged, on the described pond partition wall 5 be disposed adjacent, the position of set priming hole 6 is different, and the priming hole 6 of one of them is located at the top of pond partition wall 5, then another priming hole 6 is located at the bottom of pond partition wall 5, cooling pond 2 tail end is provided with takes out cold water pipe 11, takes out cold water pipe 11 and is connected with water pump 12.
Along the flow direction of water, described lead 7 is preferably set to the slope of 13 ~ 18% from the bottom of origin-to-destination.Described lead 7 is set to the slope of 15% for best from the bottom of origin-to-destination.
Taking out on cold water pipe 11 set by described cooling pond 2 tail end is preferably provided with pressure relief opening 10.
The bottom of described cooling pond 2 tail end is preferably provided with sand sediment trap 8, and being connected with described sand sediment trap 8 is provided with blow-off pipe 9.
Described cooling pond 2 is preferably communicated with and is provided with steam-condensation water inlet 3.Steam condensate (SC) in workshop, cooled remaining water can be reclaimed, recycle.
Lead of the present utility model, along the flow direction of current, preferably has the gradient of 15% from high to low, makes current more smooth and easy like this from origin-to-destination.Pond partition wall is preferably provided with three rows, also can require that actual needs establishes a few row according to cooling more, be respectively equipped with priming hole, first row divides into priming hole at the water surface, second row is provided with priming hole in basin bottom, and the 3rd arranges again face side under water establishes priming hole, in order to current downflow on water flow energy.
Can require lead is lengthened or adds a few road according to site condition and cooling.Open pressure relief opening and mounted valve, so both adjustable pressure and sizes of taking out cold water pipe taking out in cold water pipe, unnecessary water can be sprayed in pond again and increase cooling effect.In pond, sand sediment trap is established at rear portion, to facilitate desilting.Pond afterbody installs blow-off pipe.
Compared with prior art, the utility model the design adopts flowing water circulating cooling to reach cooling effect, and its cooling effect can meet the requirement of the cooling process of EPS layered product production equipment completely, has saved the expense expenditure of electric energy and cooling tower.
The utility model is used in the cooling process of the production lines such as EPS packaging, sheet material, and this device, without the need to the cooling of traditional cooling tower, utilizes plate-like lead Temperature fall, reaches the cooling requirement of production technology, and saved electric energy.By carrying out recycling use to steam condensate (SC), cooled remaining water, save water resource.It is rationally distributed, structure is simple, economical and practical, can meet EPS layered product produce actual needs.
Accompanying drawing explanation
Fig. 1 is the plan structure schematic diagram of the utility model embodiment.
Fig. 2 is Fig. 1 perspective view.
Shown in figure: 1 is thermal water source, 2 is cooling pond, and 3 is steam condensate (SC), and 4 is dewatering outlet, and 5 is pond partition wall, and 6 is priming hole, and 7 is lead, and 8 is sand sediment trap, and 9 is blow-off pipe, and 10 is pressure relief opening, and 11 for taking out cold water pipe, and 12 is water pump.In figure, dotted arrow direction is water (flow) direction.
Detailed description of the invention
Embodiment 1:
With reference to Fig. 1, Fig. 2, for a kind of Unpowered energy-saving circulating cooling pond, it is characterized in that comprising lead 7, cooling pond 2, described lead 7 is located at the both sides of cooling pond 2, lead 7 is connected with thermal water source 1, lead 7 near thermal water source 1 side is many, its road tail communicates formation " Z " type water channel, the lead 7 of a termination and opposite side that " Z " type water channel walks around cooling pond 2 is connected, the end of lead 7 is provided with dewatering outlet 4, dewatering outlet 4 is connected with cooling pond 2, three blowoff basin partition walls 5 are interval with in described cooling pond 2, every blowoff basin partition wall 5 is provided with priming hole 6, priming hole 6 is multiple and interval is arranged, on the described pond partition wall 5 be disposed adjacent, the position of set priming hole 6 is different, and the priming hole 6 of one of them is located at the top of pond partition wall 5, then another priming hole 6 is located at the bottom of pond partition wall 5, cooling pond 2 tail end is provided with takes out cold water pipe 11, takes out cold water pipe 11 and is connected with water pump 12.
Embodiment 2:
Compared with embodiment 1, the difference of the present embodiment is the flow direction along water, and described lead 7 is set to the slope of 13% from the bottom of origin-to-destination.Cold water pipe 11 of taking out set by described cooling pond 2 tail end is provided with pressure relief opening 10.
Embodiment 3:
Compared with embodiment 1, the difference of the present embodiment is the described flow direction along water, and described lead 7 is set to the slope of 15% from the bottom of origin-to-destination.
Embodiment 4:
Compared with embodiment 2, the difference of the present embodiment is the described flow direction along water, and described lead 7 is set to the slope of 18% from the bottom of origin-to-destination.
Embodiment 5:
Compared with embodiment 4, the difference of the present embodiment is that the bottom of described cooling pond 2 tail end is provided with sand sediment trap 8, and being connected with described sand sediment trap 8 is provided with blow-off pipe 9.
Embodiment 6:
Compared with embodiment 5, the difference of the present embodiment is that described cooling pond 2 is communicated with and is provided with steam-condensation water inlet 3.
Embodiment 7:
Compared with embodiment 6, the difference of the present embodiment is that described pond partition wall is provided with four rows.

Claims (10)

1. a Unpowered energy-saving circulating cooling pond, it is characterized in that comprising lead (7), cooling pond (2), described lead (7) is located at the both sides of cooling pond (2), lead (7) is connected with thermal water source (1), lead (7) near thermal water source (1) side is many, its road tail communicates formation " Z " type water channel, the lead (7) of a termination and opposite side that " Z " type water channel walks around cooling pond (2) is connected, the end of lead (7) is provided with dewatering outlet (4), dewatering outlet (4) is connected with cooling pond (2), many blowoff basins partition wall (5) is interval with in described cooling pond (2), every blowoff basin partition wall (5) is provided with priming hole (6), priming hole (6) is arranged for multiple and interval, the position of the upper set priming hole (6) in described pond partition wall (5) be disposed adjacent is different, the priming hole (6) of one of them is located at the top of pond partition wall (5), then another priming hole (6) is located at the bottom of pond partition wall (5), cooling pond (2) tail end is provided with takes out cold water pipe (11), takes out cold water pipe (11) and is connected with water pump (12).
2. Unpowered energy-saving circulating cooling pond as claimed in claim 1, it is characterized in that the flow direction along water, described lead (7) is set to the slope of 13 ~ 18% from the bottom of origin-to-destination.
3. Unpowered energy-saving circulating cooling pond as claimed in claim 2, it is characterized in that the flow direction along water, described lead (7) is set to the slope of 15% from the bottom of origin-to-destination.
4. the Unpowered energy-saving circulating cooling pond as described in claim 1,2 or 3, is characterized in that the cold water pipe (11) of taking out set by described cooling pond (2) tail end is provided with pressure relief opening (10).
5. the Unpowered energy-saving circulating cooling pond as described in claim 1,2 or 3, it is characterized in that the bottom of described cooling pond (2) tail end is provided with sand sediment trap (8), being connected with described sand sediment trap (8) is provided with blow-off pipe (9).
6. Unpowered energy-saving circulating cooling pond as claimed in claim 4, it is characterized in that the bottom of described cooling pond (2) tail end is provided with sand sediment trap (8), being connected with described sand sediment trap (8) is provided with blow-off pipe (9).
7. the Unpowered energy-saving circulating cooling pond as described in claim 1,2 or 3, is characterized in that described cooling pond (2) is communicated with and is provided with steam-condensation water inlet (3).
8. Unpowered energy-saving circulating cooling pond as claimed in claim 4, is characterized in that described cooling pond (2) is communicated with and is provided with steam-condensation water inlet (3).
9. Unpowered energy-saving circulating cooling pond as claimed in claim 6, is characterized in that described cooling pond (2) is communicated with and is provided with steam-condensation water inlet (3).
10. Unpowered energy-saving circulating cooling pond as claimed in claim 6, is characterized in that described pond partition wall is provided with three rows.
CN201520017633.3U 2015-01-09 2015-01-09 Unpowered energy-saving circulating cooling pond Expired - Fee Related CN204414425U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520017633.3U CN204414425U (en) 2015-01-09 2015-01-09 Unpowered energy-saving circulating cooling pond

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520017633.3U CN204414425U (en) 2015-01-09 2015-01-09 Unpowered energy-saving circulating cooling pond

Publications (1)

Publication Number Publication Date
CN204414425U true CN204414425U (en) 2015-06-24

Family

ID=53464827

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520017633.3U Expired - Fee Related CN204414425U (en) 2015-01-09 2015-01-09 Unpowered energy-saving circulating cooling pond

Country Status (1)

Country Link
CN (1) CN204414425U (en)

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Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20150624

Termination date: 20160109