CN213901996U - Wave curved plate type evaporative cooler - Google Patents

Wave curved plate type evaporative cooler Download PDF

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Publication number
CN213901996U
CN213901996U CN202022459980.5U CN202022459980U CN213901996U CN 213901996 U CN213901996 U CN 213901996U CN 202022459980 U CN202022459980 U CN 202022459980U CN 213901996 U CN213901996 U CN 213901996U
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China
Prior art keywords
box body
water
heat exchange
water tank
assembly
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Active
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CN202022459980.5U
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Chinese (zh)
Inventor
高盟果
孔宁博
陈恩役
黄振洋
娄梦园
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Longhua Technology Group Luoyang Co ltd
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Longhua Technology Group Luoyang Co ltd
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Priority to CN202022459980.5U priority Critical patent/CN213901996U/en
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Abstract

A wave surface plate type evaporative cooler is characterized in that a box body is sequentially arranged into an upper box body and a lower box body from top to bottom, axial flow fans are uniformly distributed on the upper surface of the box body, a water collector is arranged at the upper end in the upper box body, a spray assembly is arranged below the water collector, a heat exchange assembly is arranged below the spray assembly, a water tank is uniformly distributed on a bottom plate in the lower box body, an air inlet grid is arranged above the water tank, a water pump is arranged on one side of the box body, and connecting pipelines are respectively arranged among the water pump, the water tank and the spray assembly; the utility model discloses water conservation, economize on electricity effect are showing, are difficult for blockking up, and the characteristics that running cost is low make it can reach the purpose that improves cooling condensation efficiency, energy saving and consumption reduction.

Description

Wave curved plate type evaporative cooler
Technical Field
The utility model relates to a gaseous and liquid cooling condensation equipment field especially relates to a wave curved plate formula evaporation formula cooler.
Background
The cooling and condensing modes of air cooling, water cooling and cooling towers are adopted in most of the industries such as metallurgy, electric power, petroleum refining, chemical engineering and the like, the efficiency is low, the energy consumption is large, and the evaporative cooling and condensing heat exchange mode is in the primary stage in the industries. For example, in the metallurgy and refining industries, energy conservation and emission reduction must be well grasped to construct the resource-saving and environment-friendly industry. In order to provide efficient equipment for high-energy-consumption industries and achieve the effect of reducing energy consumption, the product structure must be improved and the product performance must be improved.
At present, the problems of the existing closed cooling tower are as follows: 1. processing: in the wire blocking tower, an expansion joint process is adopted between a pipe box and a pipe, a heat exchange pipe needs to be configured with stainless steel, copper and other materials, the pipe box is difficult to process, and the cost is high; the old plate type closed tower has the defects that the plate has a sickle bay, the plate is pressed and deformed, the welding is difficult, and a plurality of leakage points exist; the coil pipe type heat exchanger has the advantages of large equipment weight, long period and large environmental restriction factor due to the fact that carbon steel needs to be subjected to hot dip galvanizing, and the cost of stainless steel corrugated pipe branch pipes and heat exchange elements is high; 2. operation: the tower is blocked by the wire, water stored in the pipe is difficult to drain in winter, and the problem of freezing the pipe exists; the old plate type closed tower has a single-flow structure, insufficient heat exchange, poor cooling effect and low market prospect; 3. the plate pipe and the toothed plate need to be welded manually, the workload is large, the leakage points are easy to appear, and the repair is troublesome.
For the above reasons, a wave-shaped plate type evaporative cooler has been developed.
SUMMERY OF THE UTILITY MODEL
The utility model aims at overcoming the not enough among the prior art, provide a wave curved plate formula evaporation formula cooler, water conservation, economize on electricity effect are showing, are difficult for blockking up, characteristics that running cost is low make it can reach the purpose that improves cooling condensation efficiency, energy saving and consumption reduction.
The utility model discloses a realize above-mentioned purpose, adopt following technical scheme: a wave-curved plate type evaporative cooler comprises: the water-saving device comprises a box body, an axial flow fan, a water tank, an air inlet grid, a water collector, a spraying assembly, a heat exchange assembly, a water pump, a steel pipe and a plate; the box sets gradually to last box, lower box from top to bottom, the upper surface evenly distributed axial fan of box, last internal upper end of box set up and receive the hydrophone, receive the below of hydrophone and set up spray assembly, spray assembly's below sets up heat exchange assemblies, the bottom plate evenly distributed water tank in the lower box, the water tank top sets up the air inlet grid, box one side sets up the water pump, sets up the connecting tube between water pump and water tank, the spray assembly respectively.
The box body is rectangular.
The box in set up the frame, be even as an organic whole through the connecting piece between frame and the box, set up the backplate on the frame, enclose into cooling cavity between frame and the backplate, receive hydrophone, spray assembly and heat exchange assembly set up in cooling cavity in.
The heat exchange assembly is of a D-shaped tube box structure formed by combining steel tubes and plate pieces, the flow is more than one flow, round concave surfaces are uniformly distributed on the plate pieces, and the round concave surfaces on the plate pieces are arranged in a triangular or rectangular mode.
The working principle is as follows: high-temperature process fluid enters the heat exchange assembly from the upper part of the wave-curved-surface plate type evaporative cooler, spray water is delivered to the spray assembly by a water pump for providing circulating water and then is uniformly sprayed onto the surface of the heat exchange assembly by a nozzle of the spray assembly to form a thin water film, the circular concave surface on the plate sheet of the heat exchange assembly can slow down the flow velocity of a medium in the heat exchange assembly, the heat exchange is more sufficient, the medium in the heat exchange assembly exchanges heat with water and air outside the heat exchange assembly, and the axial flow fan forces the air to pass through the heat exchange assembly and the spray water; the spray water outside the heat exchange component is evaporated to take away heat, water droplets are recovered by the water receiver after water vapor passes through the water receiver, and saturated wet air is discharged out of the wave-surface plate type evaporative cooler; the water which is not evaporated is cooled by the inlet air in the falling process and uniformly falls into the water tank for recycling; the water inlet valve automatically replenishes cooling water in the water tank to keep a certain water level, and the normal operation of the circulating water pump is ensured.
The utility model has the advantages that: the heat exchange component is in a structure that upper and lower connecting pipes at one end of a plurality of plate pipe fittings are communicated by a pipe box, the flow is more than one flow, the heat exchange area at the side of the plate pipe is increased, and meanwhile, the manufacturing and the installation of an evaporation heat exchange part are facilitated, so that the efficiency is increased; the cooler takes spray water as a cooling medium, forms a water film outside a plate pipe fitting by water to evaporate and absorb the heat of process fluid in the plate pipe, takes away the heat in evaporated water vapor by forced exhaust of an axial flow fan, achieves the aim of cooling or condensing the process fluid in the plate pipe, and can achieve the aims of improving cooling and condensing efficiency, saving energy and reducing consumption.
Drawings
The present invention will be further explained with reference to the accompanying drawings:
FIG. 1 is a schematic view of the assembly structure;
FIG. 2 is a schematic left side view of the structure of FIG. 1;
FIG. 3 is a schematic view of a heat exchange assembly;
in fig. 1, 2, 3: the device comprises a box body 1, an axial flow fan 2, a water tank 3, an air inlet grid 4, a water collector 5, a spraying assembly 6, a heat exchange assembly 7, a water pump 8, a steel pipe 9 and a plate 10.
Detailed Description
The present invention will be described in further detail with reference to the following detailed description and accompanying drawings:
the box 1 sets gradually to last box, lower box from top to bottom, the upper surface evenly distributed axial fan 2 of box 1, last internal upper end of box set up and receive hydrophone 5, receive the below of hydrophone 5 and set up spray set 6, the below of spray set 6 sets up heat exchange assemblies 7, bottom plate evenly distributed water tank 3 in the lower box, 3 tops of water tank set up air inlet grid 4, 1 one side of box sets up water pump 8, sets up the connecting tube between water pump 8 and water tank 3, the spray set 6 respectively.
The box body 1 is rectangular.
The water-cooling type solar water heater is characterized in that a frame is arranged in the box body 1, the frame and the box body 1 are connected into a whole through a connecting piece, a guard plate is arranged on the frame, a cooling cavity is defined between the frame and the guard plate, and the water receiver 5, the spray assembly 6 and the heat exchange assembly 7 are arranged in the cooling cavity.
The heat exchange assembly 7 is of a D-shaped tube box structure formed by combining a steel tube 9 and plate pieces 10, the flow is more than one flow, round concave surfaces are uniformly distributed on the plate pieces 10, and the round concave surfaces on the plate pieces 10 are arranged in a triangular or rectangular mode.

Claims (4)

1. A wave-curved plate type evaporative cooler comprises: the device comprises a box body (1), an axial flow fan (2), a water tank (3), an air inlet grid (4), a water collector (5), a spraying assembly (6), a heat exchange assembly (7), a water pump (8), a steel pipe (9) and plates (10); the method is characterized in that: the water tank is characterized in that the upper box body and the lower box body are sequentially arranged on the box body (1) from top to bottom, the axial flow fan (2) is uniformly distributed on the upper surface of the box body (1), the water collector (5) is arranged at the upper end of the upper box body, the spray assembly (6) is arranged below the water collector (5), the heat exchange assembly (7) is arranged below the spray assembly (6), the water tank (3) is uniformly distributed on the bottom plate of the lower box body, the air inlet grid (4) is arranged above the water tank (3), the water pump (8) is arranged on one side of the box body (1), and connecting pipelines are respectively arranged between the water pump (8) and the water tank (3) and between the spray assembly (6).
2. The wavy plate evaporative cooler of claim 1, wherein: the box body (1) is rectangular.
3. The wavy plate evaporative cooler of claim 1, wherein: the water-cooling type solar water heater is characterized in that a frame is arranged in the box body (1), the frame and the box body (1) are connected into a whole through a connecting piece, a guard plate is arranged on the frame, a cooling cavity is defined between the frame and the guard plate, and a water collector (5), a spray assembly (6) and a heat exchange assembly (7) are arranged in the cooling cavity.
4. The wavy plate evaporative cooler of claim 1, wherein: the heat exchange assembly (7) is of a D-shaped tube box structure formed by combining a steel tube (9) and plates (10), the flow is more than one flow, round concave surfaces are uniformly distributed on the plates (10), and the round concave surfaces on the plates (10) are arranged in a triangular or rectangular manner.
CN202022459980.5U 2020-10-29 2020-10-29 Wave curved plate type evaporative cooler Active CN213901996U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022459980.5U CN213901996U (en) 2020-10-29 2020-10-29 Wave curved plate type evaporative cooler

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022459980.5U CN213901996U (en) 2020-10-29 2020-10-29 Wave curved plate type evaporative cooler

Publications (1)

Publication Number Publication Date
CN213901996U true CN213901996U (en) 2021-08-06

Family

ID=77116518

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022459980.5U Active CN213901996U (en) 2020-10-29 2020-10-29 Wave curved plate type evaporative cooler

Country Status (1)

Country Link
CN (1) CN213901996U (en)

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