CN216432578U - Free outflow water supply energy-saving cooling tower - Google Patents
Free outflow water supply energy-saving cooling tower Download PDFInfo
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- CN216432578U CN216432578U CN202122462433.7U CN202122462433U CN216432578U CN 216432578 U CN216432578 U CN 216432578U CN 202122462433 U CN202122462433 U CN 202122462433U CN 216432578 U CN216432578 U CN 216432578U
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- cooling tower
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Abstract
The utility model discloses a freely flow water supply energy-saving cooling tower that flows, including first cooling tower, second cooling tower and connection the water supply system of first cooling tower and second cooling tower, water supply system include the gravity pipeline, with the excessive pipeline of gravity pipeline complex, locate manometer on the gravity pipeline, locate control valve and steady voltage water distribution device on the gravity pipeline, the mounting height of first cooling tower is greater than the mounting height of second cooling tower, gravity pipeline one end links to each other with first cooling tower, and the other end links to each other with the second cooling tower.
Description
Technical Field
The utility model belongs to the technical field of the cooling tower, especially, relate to a freely flow water supply energy-saving cooling tower that outflows.
Background
The cooling towers applied to the existing circulating cooling water system are basically arranged on a roof platform and the ground of a house, one cooling tower is arranged on the roof platform of the house, each cooling tower is matched with a water pump to supply water to a water distribution device, the temperature of cooling water required by some unit equipment is low, low-temperature water is used for ensuring the safe operation of the unit equipment and prolonging the service life of the unit equipment, but the safe operation of the unit equipment and the service life of the unit equipment cannot be completed by one cooling tower, more than two cooling towers are required to be cooled to be reduced to the required water temperature in times so as to reach the cooling water temperature required by the unit equipment, each cooling tower needs to be supplied with water by the water pump, but the principle of free outflow of a water outlet of a water collecting tank of a high-position cooling tower and the free inflow of an inlet of a water distribution system of a low-position cooling tower is not utilized in the existing integral engineering design, namely, one cooling tower is not arranged at a high position, and the other cooling tower is arranged at a low position, the water outlets and the water inlets of the two cooling towers are communicated for supplying water, the mounting mode is not zero in engineering, water pressure water supply energy-saving resources which freely flow out are not utilized, the water pressure water supply energy-saving resources which freely flow out are wasted, a water pump is additionally purchased in the engineering, the construction cost is increased, and the running electricity consumption cost is increased.
SUMMERY OF THE UTILITY MODEL
The utility model discloses an overcome prior art not enough, provide a freely flow out water supply energy-saving cooling tower.
In order to achieve the above purpose, the utility model adopts the following technical scheme: a free outflow water supply energy-saving cooling tower comprises a first cooling tower, a second cooling tower and a water supply system for connecting the first cooling tower and the second cooling tower, wherein the water supply system comprises a gravity pipeline, a transition pipeline matched with the gravity pipeline, a pressure gauge arranged on the gravity pipeline, a control valve arranged on the gravity pipeline and a pressure stabilizing and water distributing device; the pressure of the freely outflowing water of the first cooling tower is supplied to a pressure stabilizing water distribution device of a freely inflowing second cooling tower for water distribution, the first cooling tower and the second cooling tower form a hydraulic pressure difference, the pressure of the difference can meet the pressure required by a water distribution nozzle, water is uniformly sprayed, the thermal performance of the cooling tower is ensured, and the engineering investment and the operation power consumption cost are saved for customers.
Preferably, the pressure stabilizing water distribution device comprises a water distribution main pipe, a water distribution branch pipe connected with the water distribution main pipe, a water distribution branch pipe arranged on the water distribution branch pipe, a pressure stabilizing pipe connected with the water distribution branch pipe and a water distribution spray head arranged on the water distribution branch pipe; the pressure stabilizing water distribution device ensures that water spraying and distribution of each splashing water are uniform, and the cooling capacity of the cooling tower is improved.
Preferably, the second cooling tower comprises a tower body frame, an air duct arranged on the tower body frame, a fan, a motor used for driving the fan, a speed reducer arranged on the motor, a water collector, a water spraying filler, a water collecting tank and a peripheral panel.
In summary, the water pressure of the free effluent of the first cooling tower is supplied to the pressure stabilizing and water distributing device of the free inflow second cooling tower for water distribution, the hydraulic pressure difference between the first cooling tower and the second cooling tower is formed, the pressure difference can meet the pressure required by the water distributing nozzle, the water is uniformly sprayed, the thermal performance of the cooling tower is ensured, and the engineering investment and the operation power consumption cost are saved for customers.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of a water supply system.
Fig. 3 is a schematic structural view of a pressure stabilizing water distribution device.
Detailed Description
As shown in fig. 1-3, a free outflow water supply energy-saving cooling tower comprises a first cooling tower 13, a second cooling tower 12 and a water supply system connecting the first cooling tower and the second cooling tower, wherein the water supply system comprises a gravity pipeline 2, a transition pipeline 4 matched with the gravity pipeline 2, a pressure gauge 1 arranged on the gravity pipeline 2, a control valve 5 arranged on the gravity pipeline 2 and a pressure stabilizing and water distributing device, the installation height of the first cooling tower is greater than that of the second cooling tower, one end of the gravity pipeline is connected with the first cooling tower, and the other end of the gravity pipeline is connected with the second cooling tower; the pressure of the freely outflowing water of the first cooling tower is supplied to a pressure stabilizing water distribution device of a freely inflowing second cooling tower for water distribution, the first cooling tower and the second cooling tower form a hydraulic pressure difference, the pressure of the difference can meet the pressure required by a water distribution nozzle, water is uniformly sprayed, the thermal performance of the cooling tower is ensured, and the engineering investment and the operation power consumption cost are saved for customers.
Preferably, the pressure stabilizing water distribution device comprises a water distribution main 61, a water distribution branch pipe 62 connected with the water distribution main, a water distribution branch pipe 63 arranged on the water distribution branch pipe, a pressure stabilizing pipe 64 connected with the water distribution branch pipe, and a water distribution spray head 65 arranged on the water distribution branch pipe; the pressure stabilizing water distribution device ensures that water spraying and distribution of each splashing water are uniform, and the cooling capacity of the cooling tower is improved.
Preferably, the second cooling tower comprises a tower body frame 9, an air duct 4 arranged at the top of the tower body frame 9, a water collecting tank 10 arranged at the bottom of the tower body frame 9, a peripheral panel 11 arranged around the tower body frame 9, a motor 14, a speed reducer 3 matched with the motor, a fan 2 matched with the motor, a water collector 7 arranged below the speed reducer 3 and a water pouring filler 8, wherein an air inlet window 81 is arranged below the water pouring filler 8.
Claims (3)
1. The utility model provides a freely flow out energy-saving cooling tower of water supply, includes first cooling tower, second cooling tower and connects the water supply system of first cooling tower and second cooling tower which characterized in that: the water supply system comprises a gravity pipeline, a transition pipeline matched with the gravity pipeline, a pressure gauge arranged on the gravity pipeline, a control valve arranged on the gravity pipeline and a pressure-stabilizing water distribution device, wherein the installation height of the first cooling tower is greater than that of the second cooling tower, one end of the gravity pipeline is connected with the first cooling tower, and the other end of the gravity pipeline is connected with the second cooling tower.
2. The free-outflow water-supply energy-saving cooling tower of claim 1, wherein: the stable pressure water distribution device comprises a water distribution header pipe, a water distribution branch pipe connected with the water distribution header pipe, a water distribution branch pipe arranged on the water distribution branch pipe, a pressure stabilizing pipe connected with the water distribution branch pipe and a water distribution spray head arranged on the water distribution branch pipe.
3. The free-outflow water-supply energy-saving cooling tower of claim 1, wherein: the second cooling tower comprises a tower body frame, an air duct, a fan, a motor, a speed reducer, a water collector, a water spraying filler, a water collecting tank and a peripheral panel, wherein the air duct, the fan and the motor are arranged on the tower body frame, the speed reducer is arranged on the motor, and the water collecting tank and the peripheral panel are arranged on the water collecting tank.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122462433.7U CN216432578U (en) | 2021-10-13 | 2021-10-13 | Free outflow water supply energy-saving cooling tower |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122462433.7U CN216432578U (en) | 2021-10-13 | 2021-10-13 | Free outflow water supply energy-saving cooling tower |
Publications (1)
Publication Number | Publication Date |
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CN216432578U true CN216432578U (en) | 2022-05-03 |
Family
ID=81331298
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202122462433.7U Active CN216432578U (en) | 2021-10-13 | 2021-10-13 | Free outflow water supply energy-saving cooling tower |
Country Status (1)
Country | Link |
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CN (1) | CN216432578U (en) |
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2021
- 2021-10-13 CN CN202122462433.7U patent/CN216432578U/en active Active
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