Temperature-controllable petroleum additive cooling tower

By designing a temperature-controllable petroleum additive cooling tower, the combination of water storage tank, water pump and air pump is used to realize the recycling of cooling water and the recovery of steam heat, solving the problem of heat and water waste in the existing cooling tower and improving resource utilization efficiency.

CN223204634UActive Publication Date: 2025-08-08TIANJIN MAKER NEW ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422511884.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-17
Publication Date
2025-08-08
Estimated Expiration
2034-10-17

AI Technical Summary

Technical Problem

The existing petroleum additive cooling towers have problems of waste of heat and water when emitting heat-containing steam, and have not been effectively recycled.

Method used

A temperature-controllable petroleum additive cooling tower is designed. By setting up components such as water storage tank, shell, cooling tower body, water pump, air pump, coil and stirring rod, the recycling of cooling water and heat recovery of steam is realized. With the cooperation of water pump and air pump, the circulation flow and heat exchange of cooling water and steam are realized.

Benefits of technology

It realizes efficient cooling and heat recovery of petroleum additives, avoids waste of heat and water, and improves resource utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of petroleum additive cooling, in particular to a temperature-controllable petroleum additive cooling tower. According to the technical scheme, the cooling tower comprises a bearing base, a water storage tank and a shell, the water storage tank, a storage box and a cooling tower body are mounted on the top end face of the bearing base, the shell is mounted on the bearing base through a mounting frame, and a mounting block is welded to the bottom end face of the bearing base; an inner container is mounted in the shell, and a driving motor is mounted on the inner container through a mounting plate; a water pump is mounted in the water storage tank and is in liquid communication with the shell through a water outlet pipe; a liquid outlet pipe is fixedly embedded in the bottom end face of the cooling tower body, and the end, away from the cooling tower body, of the liquid outlet pipe is fixedly embedded in the water storage tank. A coil pipe is mounted in the storage box; an air pump is installed on the side end face of the cooling tower body, and a first connecting pipe and a second connecting pipe are arranged on the air pump. The petroleum additive cooling device meets the requirement for cooling petroleum additives, and steam and heat can be recycled during cooling.
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Description

Technical Field

[0001] The utility model relates to the technical field of petroleum additive cooling, in particular to a temperature-controllable petroleum additive cooling tower. Background Art

[0002] In the process of oil production and refining, petroleum additives are used. The main function of petroleum additives is to remove wax in oil field drilling, inhibit corrosion, prevent swelling, and remove blockages.

[0003] During the production and processing of petroleum additives, they will be heated and stirred. They also need to be cooled during production. However, most existing petroleum additive cooling towers directly discharge the heat-containing steam after air intake, which will cause waste of heat-containing gas and water in the steam during discharge. Therefore, it needs to be improved. Utility Model Content

[0004] The purpose of the utility model is to provide a temperature-controllable petroleum additive cooling tower to solve the problems raised in the above background technology.

[0005] To achieve the above purpose, the present invention provides the following technical solutions: a temperature-controllable petroleum additive cooling tower, comprising a bearing base, a water storage tank and a shell,

[0006] The top surface of the supporting base is equipped with a water storage tank, a storage box and a cooling tower body, and the supporting base is equipped with a shell through a mounting frame, and the bottom surface of the supporting base is welded with a mounting block;

[0007] An inner liner is installed in the outer shell, and a driving motor is installed on the inner liner through a mounting plate;

[0008] A water pump is installed in the water storage tank, and the water pump is in liquid communication with the housing through a water outlet pipe;

[0009] A liquid outlet pipe is embedded and fixed on the bottom end surface of the cooling tower body, and one end of the liquid outlet pipe facing away from the cooling tower body is embedded and fixed in the water storage tank;

[0010] A coil is installed in the storage box;

[0011] An air pump is installed on the side end surface of the cooling tower body, and a connecting pipe 1 and a connecting pipe 2 are provided on the air pump.

[0012] Preferably, an air outlet pipe is embedded and fixed on the top surface of the storage box, and the air outlet pipe is in gas communication with the storage box, so that the gas entering the storage box can be discharged through the air outlet pipe.

[0013] Preferably, a drain pipe is embedded and fixed on the side end surface of the storage box, the drain pipe is in liquid communication with the storage box, and a valve is installed on the drain pipe via a flange. The drain pipe is in liquid communication with the storage box so that the drain pipe can discharge condensed water generated in the storage box.

[0014] Preferably, a water injection pipe is embedded and fixed on the top surface of the water storage tank, and the water injection pipe is in liquid communication with the water storage tank. Cooling water can be injected into the water storage tank for storage through the water injection pipe.

[0015] Preferably, a rotating shaft is provided on the output shaft of the driving motor, and a stirring rod is installed on the rotating shaft. By installing the stirring rod on the rotating shaft, a person can turn on the driving motor with an external power supply to drive the stirring rod to rotate via the rotating shaft.

[0016] Preferably, a return pipe is embedded and fixed at the end of the housing facing away from the outlet pipe, and the end of the return pipe facing away from the housing is embedded and fixed in the cooling tower body. By embedding and fixing the end of the return pipe facing away from the housing in the cooling tower body, the cooling water entering the housing can be discharged into the cooling tower body through the return pipe.

[0017] Preferably, the end of the second connecting pipe facing away from the air pump is embedded and fixed in the cooling tower body, and the cooling tower body is in gas communication with the air pump via the second connecting pipe. By embedding and fixing the end of the second connecting pipe facing away from the air pump in the cooling tower body, steam generated by cooling in the cooling tower body can be extracted through the second connecting pipe when the air pump is turned on.

[0018] Preferably, the end of the connecting pipe 1 facing away from the air pump is embedded and fixed in the storage box, and the storage box is in gas communication with the air pump via the connecting pipe 1. By embedding and fixing the end of the connecting pipe 1 facing away from the air pump in the storage box, the steam gas extracted by the air pump is discharged into the storage box via the connecting pipe 1.

[0019] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0020] 1. The utility model is provided with an outer shell. When personnel are producing and processing petroleum combustion improver, they can discharge the heated petroleum combustion improver material into the inner tank. After discharging, the personnel can turn on the drive motor with an external power supply to drive the stirring rod to rotate through the rotating shaft, so that the stirring rod stirs the petroleum combustion improver material. During processing, the personnel can turn on the water pump to extract the cooling water in the water storage tank and inject it into the outer shell through the outlet pipe, so that the cooling water enters the outer shell to cool the petroleum combustion improver processed in the inner tank. The water generated during cooling can be injected into the cooling tower body through the reflux pipe for cooling. After cooling, it is discharged back to the water storage tank through the liquid outlet pipe for reuse, thereby meeting the production and cooling of petroleum combustion improver.

[0021] 2. The utility model sets a cooling tower body. After the water generated when personnel produce and process petroleum combustion aid is injected into the cooling tower body for cooling, the water is embedded and fixed in the cooling tower body through the end of the connecting pipe 2 facing away from the air pump, so that when the air pump is turned on, the steam generated by the cooling in the cooling tower body can be extracted through the connecting pipe 2, and the end of the connecting pipe 1 facing away from the air pump is embedded and fixed in the storage box, so that the steam gas extracted by the air pump is discharged into the storage box through the connecting pipe 1. When the steam is discharged into the storage box, personnel can connect a water pipe to one end of the coil to allow the cooling water to enter the coil to exchange heat with the incoming steam, and can connect a pipe to the other end of the coil to discharge the water after heat exchange, so that the steam heats the water to recover the heat, and the steam can be stored in the storage box after condensation through heat exchange, and the heat-exchanged gas in the storage box can be discharged through the outlet pipe, thereby avoiding waste of heat and water. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 This is a schematic diagram of the main structure of the utility model;

[0023] Figure 2 This is a schematic diagram of the top structure of the utility model;

[0024] Figure 3 This is a schematic cross-sectional view of the water storage tank of the present utility model;

[0025] Figure 4 This is a schematic diagram of the main structure of the utility model;

[0026] Figure 5 This is a schematic cross-sectional view of the storage box of the present invention.

[0027] In the figure: 1. Mounting block; 2. Support base; 3. Water injection pipe; 4. Water storage tank; 5. Air outlet pipe; 6. Discharge pipe; 7. Storage box; 8. Connecting pipe 1; 9. Air pump; 10. Connecting pipe 2; 11. Cooling tower body; 12. Water outlet pipe; 13. Rotating shaft; 14. Drive motor; 15. Mounting plate; 16. Stirring rod; 17. Inner tank; 18. Outer shell; 19. Return pipe; 20. Mounting frame; 21. Water pump; 22. Coil; 23. Liquid outlet pipe. DETAILED DESCRIPTION

[0028] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0029] Example 1

[0030] like Figure 1-Figure 5 As shown, the present invention proposes a temperature-controllable petroleum additive cooling tower, which includes a supporting base 2, a water storage tank 4 and a shell 18.

[0031] The top surface of the supporting base 2 is mounted with a water storage tank 4, a storage box 7 and a cooling tower body 11, and the supporting base 2 is mounted with a housing 18 via a mounting frame 20, and the bottom surface of the supporting base 2 is welded with a mounting block 1;

[0032] An inner container 17 is installed in the outer shell 18, and a driving motor 14 is installed on the inner container 17 via a mounting plate 15;

[0033] A water pump 21 is installed in the water storage tank 4, and the water pump 21 is in liquid communication with the housing 18 through the water outlet pipe 12;

[0034] A liquid outlet pipe 23 is embedded and fixed on the bottom end surface of the cooling tower body 11, and the end of the liquid outlet pipe 23 facing away from the cooling tower body 11 is embedded and fixed in the water storage tank 4;

[0035] A coil 22 is installed in the storage box 7;

[0036] An air pump 9 is installed on the side end surface of the cooling tower body 11, and a connecting pipe 1 8 and a connecting pipe 2 10 are provided on the air pump 9.

[0037] A water injection pipe 3 is embedded and fixed on the top surface of the water tank 4, and the water injection pipe 3 is in liquid communication with the water tank 4. Cooling water can be injected into the water tank 4 for storage through the water injection pipe 3, and a sealing cover can be installed on the water injection pipe 3 after injection to close it.

[0038] A rotating shaft 13 is provided on the output shaft of the driving motor 14, and a stirring rod 16 is installed on the rotating shaft 13. By installing the stirring rod 16 on the rotating shaft 13, a person can turn on the driving motor 14 with an external power supply to drive the stirring rod 16 to rotate through the rotating shaft 13.

[0039] A return pipe 19 is embedded and fixed at one end of the outer shell 18 away from the water outlet pipe 12, and the end of the return pipe 19 away from the outer shell 18 is embedded and fixed in the cooling tower body 11. By embedding and fixing the end of the return pipe 19 away from the outer shell 18 in the cooling tower body 11, the cooling water entering the outer shell 18 can be discharged into the cooling tower body 11 through the return pipe 19.

[0040] Based on Example 1: When personnel are producing and processing petroleum combustion improvers, they can discharge the heated petroleum combustion improver material into the inner tank 17. After discharging, the personnel can turn on the drive motor 14 with an external power supply to drive the stirring rod 16 to rotate through the rotating shaft 13, so that the stirring rod 16 stirs and processes the petroleum combustion improver material. During processing, the personnel can turn on the water pump 21 to extract the cooling water in the water tank 4 and inject it into the outer shell 18 through the outlet pipe 12, so that the cooling water enters the outer shell 18 to cool the petroleum combustion improver processed in the inner tank 17. The water generated during cooling can be injected into the cooling tower body 11 through the reflux pipe 19 for cooling. After cooling, it is discharged back to the water tank 4 through the liquid outlet pipe 23 for reuse.

[0041] Example 2

[0042] like Figure 1-Figure 5 As shown, the temperature-controllable petroleum additive cooling tower proposed by the present invention, compared with the first embodiment, further comprises: a supporting base 2, a water storage tank 4 and a shell 18,

[0043] The top surface of the supporting base 2 is mounted with a water storage tank 4, a storage box 7 and a cooling tower body 11, and the supporting base 2 is mounted with a housing 18 via a mounting frame 20, and the bottom surface of the supporting base 2 is welded with a mounting block 1;

[0044] An inner container 17 is installed in the outer shell 18, and a driving motor 14 is installed on the inner container 17 via a mounting plate 15;

[0045] A water pump 21 is installed in the water storage tank 4, and the water pump 21 is in liquid communication with the housing 18 through the water outlet pipe 12;

[0046] A liquid outlet pipe 23 is embedded and fixed on the bottom end surface of the cooling tower body 11, and the end of the liquid outlet pipe 23 facing away from the cooling tower body 11 is embedded and fixed in the water storage tank 4;

[0047] The storage box 7 is provided with a coil 22;

[0048] An air pump 9 is installed on the side end surface of the cooling tower body 11, and a connecting pipe 1 8 and a connecting pipe 2 10 are provided on the air pump 9.

[0049] An air outlet pipe 5 is embedded and fixed on the top surface of the storage box 7 , and the air outlet pipe 5 is in gas communication with the storage box 7 . The air outlet pipe 5 is in gas communication with the storage box 7 , so that the gas entering the storage box 7 can be discharged through the air outlet pipe 5 .

[0050] A discharge pipe 6 is embedded and fixed on the side end surface of the storage box 7. The discharge pipe 6 is in liquid communication with the storage box 7, and a valve is installed on the discharge pipe 6 through a flange. The discharge pipe 6 is in liquid communication with the storage box 7, so that the discharge pipe 6 can discharge the condensed water generated in the storage box 7, and the discharge can be controlled by the valve.

[0051] The end of the connecting pipe 2 10 facing away from the air pump 9 is embedded and fixed in the cooling tower body 11, and the cooling tower body 11 is in gas communication with the air pump 9 through the connecting pipe 2 10. The end of the connecting pipe 2 10 facing away from the air pump 9 is embedded and fixed in the cooling tower body 11, so that when the air pump 9 is turned on, the steam generated by cooling in the cooling tower body 11 can be extracted through the connecting pipe 2 10.

[0052] The end of the connecting pipe 8 facing away from the air pump 9 is embedded and fixed in the storage box 7, and the storage box 7 is in gas communication with the air pump 9 through the connecting pipe 8. The end of the connecting pipe 8 facing away from the air pump 9 is embedded and fixed in the storage box 7, so that the steam gas extracted by the air pump 9 is discharged into the storage box 7 through the connecting pipe 8.

[0053] Based on Example 2: After the water generated during the production and processing of petroleum combustion aids is injected into the cooling tower body 11 for cooling, the end of the connecting pipe 2 10 facing away from the air pump 9 is embedded and fixed in the cooling tower body 11, so that when the air pump 9 is turned on, the steam generated by the cooling in the cooling tower body 11 can be extracted through the connecting pipe 2 10, and the end of the connecting pipe 1 8 facing away from the air pump 9 is embedded and fixed in the storage box 7, so that the steam gas extracted by the air pump 9 is discharged into the storage box 7 through the connecting pipe 1 8. When the steam is discharged into the storage box 7, the personnel can connect a water pipe to one end of the coil 22 to allow the cooling water to enter the coil 22 for heat exchange with the incoming steam, and can connect a pipe to the other end of the coil 22 to discharge the water after heat exchange, so that the steam heats the water to recover the heat, and the steam can be stored in the storage box 7 after condensation through heat exchange, and the heat-exchanged gas in the storage box 7 can be discharged through the outlet pipe 5.

[0054] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

Claims

1. A temperature-controllable petroleum additive cooling tower, comprising a bearing base (2), a water storage tank (4) and a housing (18), characterized in that: The top surface of the supporting base (2) is mounted with a water storage tank (4), a storage box (7) and a cooling tower body (11), and a housing (18) is mounted on the supporting base (2) via a mounting frame (20), and a mounting block (1) is welded to the bottom surface of the supporting base (2); An inner liner (17) is installed in the outer shell (18), and a driving motor (14) is installed on the inner liner (17) via a mounting plate (15); A water pump (21) is installed in the water storage tank (4), and the water pump (21) is in liquid communication with the housing (18) via a water outlet pipe (12); A liquid outlet pipe (23) is embedded and fixed in the bottom end surface of the cooling tower body (11), and one end of the liquid outlet pipe (23) facing away from the cooling tower body (11) is embedded and fixed in the water storage tank (4); A coil (22) is installed in the storage box (7); An air pump (9) is installed on the side end surface of the cooling tower body (11), and a connecting pipe 1 (8) and a connecting pipe 2 (10) are provided on the air pump (9).

2. A temperature-controllable petroleum additive cooling tower according to claim 1, characterized in that: An air outlet pipe (5) is embedded and fixed on the top surface of the storage box (7), and the air outlet pipe (5) is in gas communication with the storage box (7).

3. A temperature-controllable petroleum additive cooling tower according to claim 1, characterized in that: A discharge pipe (6) is embedded and fixed in the side end surface of the storage box (7), the discharge pipe (6) is in liquid communication with the storage box (7), and a valve is installed on the discharge pipe (6) via a flange.

4. A temperature-controllable petroleum additive cooling tower according to claim 1, characterized in that: A water injection pipe (3) is embedded and fixed in the top surface of the water storage tank (4), and the water injection pipe (3) is in liquid communication with the water storage tank (4).

5. The temperature-controllable petroleum additive cooling tower according to claim 1, characterized in that: A rotating shaft (13) is provided on the output shaft of the driving motor (14), and a stirring rod (16) is installed on the rotating shaft (13).

6. The temperature-controllable petroleum additive cooling tower according to claim 1, characterized in that: A return pipe (19) is embedded and fixed in one end of the outer shell (18) away from the water outlet pipe (12), and an end of the return pipe (19) away from the outer shell (18) is embedded and fixed in the cooling tower body (11).

7. The temperature-controllable petroleum additive cooling tower according to claim 1, characterized in that: The end of the second connecting pipe (10) facing away from the air pump (9) is embedded and fixed in the cooling tower body (11), and the cooling tower body (11) is in gas communication with the air pump (9) through the second connecting pipe (10).

8. The temperature-controllable petroleum additive cooling tower according to claim 1, characterized in that: The end of the connecting pipe 1 (8) facing away from the air pump (9) is embedded and fixed in the storage box (7), and the storage box (7) is in gas communication with the air pump (9) through the connecting pipe 1 (8).