Air-cooled petroleum waste cooling device

By using an air-cooled petroleum waste cooling device, the petroleum waste is cooled down using an air-cooling mechanism and a fan system. This solves the problem of high-temperature waste affecting recycling and processing efficiency, and improves the cooling effect and subsequent processing efficiency.

CN223795596UActive Publication Date: 2026-01-13PANJIN YIYUAN ENVIRONMENTAL ENGINEERING CO LTD
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Patent Information

Application Number
CN202520227934.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2026-01-13
Estimated Expiration
2035-02-13

AI Technical Summary

Technical Problem

In the production processes of industries such as oil extraction and refining, coal chemical industry and light industry, the discharged oily wastewater is not recycled and reused, resulting in oil pollution of water bodies, and the high temperature of petroleum waste affects the recycling and treatment efficiency.

Method used

Design an air-cooled petroleum waste cooling device. The device uses an air-cooling mechanism to cool the petroleum waste on the material conveyor belt inside the waste cooling box. The air intake is achieved by using an air collection hood and an exhaust fan. After being cooled by a water storage tank, the air is guided into the air supply pipe by an exhaust fan and finally sprayed out from the air nozzle, increasing the contact area with the outside air to improve the cooling effect.

Benefits of technology

This improved the cooling effect of petroleum waste, indirectly enhancing subsequent processing efficiency and solving the problem of high-temperature waste affecting recycling efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223795596U_ABST
Patent Text Reader

Abstract

An air-cooled petroleum waste cooling device comprises a waste cooling box, a feeding port end and a discharging port end are arranged in the waste cooling box, a material conveying belt is installed between the feeding port end and the discharging port end, an air cooling mechanism is installed at one end of the top of the waste cooling box, and a cooling window is installed at the other end of the top of the waste cooling box. Petroleum waste on a material conveying belt in the waste cooling box is cooled through an air cooling mechanism installed at the top of the waste cooling box, and a large amount of air is fed in the installation box through cooperation of an air collecting cover and an exhaust fan. After being cooled by a water storage tank, the waste is guided into an air supply pipe through exhaust fans installed on the two sides and finally sprayed out from an air spraying nozzle in the transfer bin, meanwhile, a cooling window and a ventilation opening formed in the waste cooling box can facilitate air flowing, the contact area with outside air is increased, and the cooling effect of the petroleum waste is improved; the subsequent treatment efficiency of the petroleum waste is indirectly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to air cooling technical field, in particular to a kind of air-cooled petroleum waste cooling device. BACKGROUND

[0002] In the production process of oil exploitation and refining, coal chemical industry, petrochemical industry and light industry, a large amount of oily wastewater will be discharged, if not recycled and utilized, not only it is great waste, but also a large amount of oil products discharged into rivers, lakes or bays, which will cause serious pollution to water body. Therefore, it is necessary to recycle and utilize and treat the oil products in wastewater.

[0003] In the process of recycling petroleum waste, the treated waste will have a certain temperature, and the petroleum waste with high temperature is not convenient for subsequent recycling device recycling, which leads to low recycling efficiency and affects the treatment efficiency of petroleum waste.

[0004] Therefore, in view of the deficiencies of the prior art, it is necessary to provide an air-cooled petroleum waste cooling device to solve the deficiencies of the prior art. SUMMARY

[0005] The utility model discloses a kind of air-cooled petroleum waste cooling devices, which is to avoid the deficiencies of the prior art, and the petroleum waste in the material conveying belt inside waste cooling box is cooled by the air cooling mechanism installed on the top of waste cooling box, a large amount of air is realized by the cooperation of air collecting cover and air extractor in installation box, after cooling by water storage tank, exhaust fan is installed on both sides and introduced into air supply pipe, and finally sprayed from the air blowing nozzle inside the storage bin, while the cooling window and air vent set on waste cooling box can facilitate gas flow, improve the contact area with external air, increase the cooling effect of petroleum waste, and indirectly improve the subsequent treatment efficiency of petroleum waste.

[0006] The above-mentioned purposes of the utility model are achieved by the following technical means.

[0007] An air-cooled petroleum waste cooling device is provided, comprising a waste cooling box, a material conveying belt is installed between the inlet end and the outlet end inside the waste cooling box, an air cooling mechanism is installed at one end of the top of the waste cooling box, and a cooling window is installed at the other end.

[0008] The air-cooled mechanism includes a mounting box, which is fixedly installed on the top of the waste cooling box. The mounting box has a water storage tank inside and a ventilation opening. Two sets of air collection hoods are fixedly installed at the ventilation openings. An exhaust fan is installed inside the air collection hood. Exhaust fans are installed on both sides of the mounting box. The exhaust fans are connected to air supply pipes. The air supply pipes run through the top of the waste cooling box and are connected to a transfer chamber. A funnel connector is installed inside the transfer chamber. One end of the funnel connector is connected to the air supply pipe, and the other end of the funnel connector is connected to an exhaust pipe. Air nozzles are evenly connected to the exhaust pipe.

[0009] Specifically, the cooling window includes an opening slot, around which a rectangular frame is installed, and a filter screen is installed on the rectangular frame.

[0010] Specifically, the transfer bin is installed directly above the material conveyor belt, with the air nozzles perpendicular to the material conveyor belt.

[0011] Specifically, four sets of vents are provided on both sides of the bottom of the waste cooling box. The vents are located below the material conveyor belt and are equipped with baffles.

[0012] Specifically, cooling plates are installed on both sides of the waste cooling box, and heat exchange copper fins are evenly distributed inside the cooling plates.

[0013] This invention uses a wind-cooling mechanism installed on the top of the waste cooling box to cool the petroleum waste on the material conveyor belt inside the waste cooling box. The box is equipped with a wind collector and an exhaust fan to achieve a large amount of air intake. After being cooled by the water storage tank, the air is guided by exhaust fans installed on both sides into the air supply pipe and finally sprayed out from the nozzles inside the transfer chamber. At the same time, the cooling windows and vents on the waste cooling box facilitate gas flow, increase the contact area with the outside air, increase the cooling effect of the petroleum waste, and indirectly improve the efficiency of subsequent petroleum waste treatment. Attached Figure Description

[0014] The present invention will be further described with reference to the accompanying drawings, but the content of the drawings does not constitute any limitation on the present invention.

[0015] Fig. 1 This is a perspective view of an air-cooled petroleum waste cooling device according to this utility model.

[0016] Fig. 2 This is a schematic diagram of the structure of an air-cooled petroleum waste cooling device according to this utility model.

[0017] from Figs. 1-2 Including:

[0018] 1. Waste cooling box;

[0019] 2. Feed inlet end;

[0020] 3. Discharge port end;

[0021] 4. Material conveyor belt;

[0022] 5. Cooling window;

[0023] 6. Air-cooling mechanism;

[0024] 7. Installation box;

[0025] 8. Water storage tank;

[0026] 9. Ventilation openings;

[0027] 10. Air collector cover;

[0028] 11. Exhaust fan;

[0029] 12. Exhaust fan;

[0030] 13. Air supply duct;

[0031] 14. Transfer warehouse;

[0032] 15. Funnel connector;

[0033] 16. Exhaust ductwork;

[0034] 17. Air nozzle;

[0035] 18. Opening groove;

[0036] 19. Rectangular frame;

[0037] 20. Filter screen;

[0038] 21. Ventilation opening;

[0039] 22. Baffle;

[0040] 23. Cooling plate;

[0041] 24. Heat exchange copper plates. Detailed Implementation

[0042] The present invention will be further described in conjunction with the following embodiments.

[0043] Example 1:

[0044] like Figs. 1-2 As shown, an air-cooled petroleum waste cooling device includes a waste cooling box 1. The waste cooling box 1 is provided with an inlet end 2 and an outlet end 3. A material conveyor belt 4 is installed between the inlet end 2 and the outlet end 3. An air-cooling mechanism 6 is installed at one end of the top of the waste cooling box 1 and a cooling window 5 is installed at the other end.

[0045] When in use, petroleum waste is introduced into the waste cooling box 1 through the inlet end 2 and conveyed to the outlet end 3 via the material conveyor belt 4. At the same time, during the conveying process of the petroleum waste by the material conveyor belt 4, it passes through the cooling window 5 and the air-cooling mechanism 6 for cooling and temperature reduction, thereby improving the cooling efficiency of the petroleum waste.

[0046] The air-cooled mechanism 6 includes a mounting box 7, which is fixedly installed on the top of the waste cooling box 1. The mounting box 7 has a water storage tank 8 inside and a ventilation opening 9. Two sets of air collecting hoods 10 are fixedly installed at the ventilation opening 9. An exhaust fan 11 is installed inside the air collecting hood 10. Exhaust fans 12 are installed on both sides of the mounting box 7. The exhaust fans 12 are connected to an air supply pipe 13. The air supply pipe 13 passes through the top of the waste cooling box 1 and is connected to a transfer chamber 14. A funnel connector 15 is installed inside the transfer chamber 14. One end of the funnel connector 15 is connected to the air supply pipe 13, and the other end of the funnel connector 15 is connected to an exhaust pipe 16. Air nozzles 17 are evenly connected to the exhaust pipe 16. The transfer chamber 14 is installed directly above the material conveyor belt, and the air nozzles 17 are vertically aligned with the material conveyor belt 4.

[0047] During operation, the exhaust fan 11 inside the installation box 7 of the air-cooling mechanism 6 is operated by external control. It draws in external air through the ventilation port 9 and the air collection hood 10. The air collection hood 10 facilitates the air extraction by the exhaust fan 11, increasing the air intake efficiency. After the initial cooling by the medium inside the water storage tank 8, the external air is stored inside the installation box 7. At this time, the exhaust fans 12 installed on both sides inside the installation box 7 operate to guide the cooled air into the air supply pipe 13, which then enters the transfer chamber 14 installed inside the waste cooling box 1. The transfer chamber 14 uses a funnel connector 15 at the connection with the air supply pipe 13 to reduce the air supply diameter and increase the air pressure, so that the air enters the exhaust pipe 16 and is then sprayed out by the nozzles 17. The setting of multiple sets of nozzles 17 can increase the air supply area and improve the cooling effect of the waste cooling box 1.

[0048] The cooling window 5 includes an opening slot 18, a rectangular frame 19 is installed around the top of the opening slot 18, and a filter screen 20 is installed on the rectangular frame 19.

[0049] The opening slot 18 is designed to facilitate the contact and cooling of petroleum waste with the outside air. At the same time, the top rectangular frame 19 and the filter screen 20 can prevent petroleum waste from leaking out when the air-cooling mechanism 6 is cooling, and facilitate the airflow of the air-cooling mechanism 6.

[0050] Four sets of vents 21 are provided on both sides of the bottom of the waste cooling box 1. The vents 21 are located below the material conveyor belt 4. Baffles 22 are installed on the vents 21. The vents 21 allow air to circulate below the material conveyor belt 4, which facilitates the air cooling mechanism 6 to deliver air through, thereby increasing the airflow and improving the cooling effect of petroleum waste on the material conveyor belt 4.

[0051] Cooling plates 23 are installed on both sides of the waste cooling box 1. Heat exchange copper fins 24 are evenly distributed inside the cooling plates 23. The installation of heat exchange copper fins 24 inside the cooling plates 23 can exchange heat and cool down the waste cooling box 1, ensuring the cooling effect during the transportation of petroleum waste.

[0052] During the production process, the petroleum waste on the material conveyor belt 4 inside the waste cooling box 1 is cooled by the air-cooling mechanism 6 installed on the top of the waste cooling box 1. A large amount of air is introduced into the installation box 7 through the cooperation of the air collection hood 10 and the exhaust fan 11. After being cooled by the water storage tank 8, the air is introduced into the air supply pipe 13 by the exhaust fans 12 installed on both sides and finally sprayed out from the air nozzle 17 inside the transfer chamber 14. At the same time, the cooling window 5 and the vent 21 set on the waste cooling box 1 can facilitate the flow of gas, increase the contact area with the outside air, increase the cooling effect of petroleum waste, and indirectly improve the subsequent processing efficiency of petroleum waste.

[0053] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit the scope of protection of this utility model. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the essence and scope of the technical solutions of this utility model.

Claims

1. An air-cooled petroleum waste cooling device, characterized by: Including waste cooling box, the waste cooling box is internally provided with the feed port end and the discharge port end, the material conveying belt is installed between the feed port end and the discharge port end, one end of the top of the waste cooling box is installed with air cooling mechanism, and the other end is installed with cooling window. The air cooling mechanism includes a mounting box fixedly installed on the top of the waste cooling box, a water storage groove is arranged in the mounting box, a ventilation opening is formed in the mounting box, two groups of wind collecting covers are fixedly installed at the ventilation opening, an air extractor is installed in the wind collecting cover, exhaust fans are installed on the two sides of the mounting box, the exhaust fans are connected with air supply pipes, the air supply pipes penetrate the top of the waste cooling box, the air supply pipes are connected with storage bins, funnel joints are installed in the storage bins, one end of the funnel joint is connected with the air supply pipe, the other end of the funnel joint is connected with exhaust pipes, and air blowing nozzles are uniformly connected on the exhaust pipes.

2. An air-cooled petroleum waste cooling device according to claim 1, characterized in that: The cooling window includes an open slot, a rectangular frame is installed around the top of the open slot, and a filter screen is installed on the rectangular frame.

3. An air-cooled petroleum waste cooling device according to claim 2, characterized in that: The storage bin is installed directly above the material conveying belt, and the air blowing nozzles vertically correspond to the material conveying belt.

4. An air-cooled petroleum waste cooling device according to claim 3, characterized in that: Four groups of air vents are formed on the two sides of the bottom of the waste cooling box, the air vents are formed below the material conveying belt, and baffles are installed on the air vents.

5. An air-cooled petroleum waste cooling device according to claim 4, characterized in that: Cooling plates are installed on the two sides of the waste cooling box, and heat exchange copper sheets are uniformly distributed in the cooling plates.