Intermediate tank for heat conduction oil production
By installing anti-sloshing buffers and wave-damping plates on the intermediate tank of heat transfer oil, the impact problem caused by heat transfer oil sloshing is solved, and the stability and structural protection of the intermediate tank are achieved.
Patent Information
- Application Number
- CN202520300701.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-02-25
AI Technical Summary
Traditional intermediate tanks for heat transfer oil production generate huge impact loads and overturning moments due to shaking during transportation, resulting in poor stability and damage to the internal structure.
Anti-sloshing buffers are installed at both ends of the intermediate tank of heat transfer oil, and large and small wave-damping plates are installed at the top inside. The inclined oil pipe and buffers are used to disperse the sloshing heat transfer oil and reduce the impact force.
It improves the handling stability of intermediate tanks, reduces damage to internal structures, and extends service life.
Smart Images

Figure CN223765195U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of heat transfer oil production, specifically to an intermediate tank for heat transfer oil production. Background Technology
[0002] Heat transfer oil, also known as organic heat carrier or heat medium oil, is a type of specialized oil with good thermal stability used for indirect heat transfer. It belongs to organic heat carriers. Heat transfer oil can be classified according to its structure into hydrocarbon, ether, alcohol, silicone oil, halogenated hydrocarbon and nitrogen-containing heterocyclic oil, etc. It has the advantages of low pressure and high temperature, stable exothermic effect, good heat transfer effect and sustainable recycling. It is widely used in printing and dyeing, chemical fiber, petrochemical, chemical and other fields. Heat transfer oil has the properties of resisting thermal cracking and chemical oxidation, good heat transfer efficiency, fast heat dissipation and very good thermal stability.
[0003] Existing technologies for intermediate tanks in heat transfer oil production still have certain drawbacks in use. When traditional intermediate tanks are transported, the heat transfer oil inside will slosh around significantly. This violent sloshing will generate huge local impact loads and overturning moments, affecting the stability of the intermediate tank during transport and causing some damage to the interior of the intermediate tank. Utility Model Content
[0004] The purpose of this utility model is to provide a heat transfer oil production intermediate tank to solve the problem mentioned in the background art that, during the transportation of traditional intermediate tanks, the heat transfer oil inside will slosh around significantly. This violent sloshing will generate huge local impact loads and overturning moments, affecting the stability of the intermediate tank during transportation and causing certain damage to the interior of the intermediate tank.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a heat transfer oil production intermediate tank, comprising a heat transfer oil intermediate tank body, tank covers at both ends of the interior of the heat transfer oil intermediate tank body, an anti-sway buffer at the middle position of the outer side of the tank cover, an upper oil delivery pipe and a lower oil delivery pipe respectively at the upper and lower positions of the anti-sway buffer, a valve at the bottom surface of the lower oil delivery pipe, an upper assembly sleeve at the upper end of the upper oil delivery pipe, the upper assembly sleeve being positioned above an upper mounting plate, a lower assembly sleeve at the lower end of the lower oil delivery pipe, the lower assembly sleeve being positioned above a lower mounting plate, an upper opening and a lower opening respectively at the upper and lower positions of the inner wall of the tank cover, a large wave buffer and a small wave buffer sequentially provided at the top of the interior of the heat transfer oil intermediate tank body, an oil inlet at one end of the top of the heat transfer oil intermediate tank body, an oil outlet at the lower side of one side of the heat transfer oil intermediate tank body, a support frame at the bottom surface of the heat transfer oil intermediate tank body, and reinforcing ribs at both ends of the exterior of the heat transfer oil intermediate tank body.
[0006] In a further embodiment, the upper mounting plate and the can cover are fixedly connected by a first fixing bolt, and the upper assembly sleeve and the upper mounting plate are designed as an integral structure.
[0007] In a further embodiment, the upper oil pipeline and the upper assembly sleeve are fixedly connected by welding, and the upper oil pipeline is installed in an inclined structure with an inclination angle of 45°.
[0008] In a further embodiment, the lower mounting plate and the can cover are fixedly connected by a second fixing bolt, and the lower assembly sleeve and the lower mounting plate are designed as an integral structure.
[0009] In a further embodiment, the lower oil pipeline and the lower assembly sleeve are fixedly connected by welding, and the lower oil pipeline is installed in an inclined structure with an inclination angle of 45°.
[0010] In a further embodiment, the anti-sway buffer is cylindrical in shape, and both ends of the anti-sway buffer are provided with maintenance covers, which are fixedly connected to the anti-sway buffer by bolts.
[0011] Compared with the prior art, the beneficial effects of this utility model are:
[0012] In this utility model, both ends of the intermediate heat transfer oil tank are equipped with anti-sloshing buffers. When sloshing occurs, the anti-sloshing buffers can disperse and buffer the sloshing heat transfer oil, thereby reducing the impact force and the sloshing amplitude of the heat transfer oil. The intermediate tank has good stability during transportation. Furthermore, the top of the interior of the intermediate heat transfer oil tank is equipped with large and small wave-damping plates in sequence. The large and small wave-damping plates can break up the large waves generated by the heat transfer oil, reducing the impact of the waves on the inner wall and preventing damage to the inner wall of the intermediate tank, thereby extending the service life of the intermediate tank. Attached Figure Description
[0013] Figure 1 This is a schematic cross-sectional view of an intermediate tank for producing heat transfer oil according to the present invention.
[0014] Figure 2 This is a side view of an intermediate tank for producing heat transfer oil according to the present invention.
[0015] Figure 3 This is a front view of an intermediate tank for producing heat transfer oil according to this utility model;
[0016] Figure 4 This is a schematic diagram of the internal structure of the can lid of this utility model.
[0017] In the diagram: 1. Intermediate tank for heat transfer oil; 2. Large wave deflector; 3. Small wave deflector; 4. Upper inlet; 5. Upper assembly sleeve; 6. Upper oil delivery pipe; 7. Anti-sway buffer; 8. Tank cover; 9. Lower oil delivery pipe; 10. Valve; 11. Lower assembly sleeve; 12. Support legs; 13. Reinforcing ribs; 14. Oil inlet; 15. Oil outlet; 16. Upper mounting plate; 17. Inspection cover; 18. Lower mounting plate; 19. First fixing bolt; 20. Second fixing bolt; 21. Lower inlet. Detailed Implementation
[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0019] Please see Figure 1-4 This utility model provides an embodiment of a heat transfer oil production intermediate tank, comprising a heat transfer oil intermediate tank body 1. The interior of the intermediate tank body 1 has tank covers 8 at both ends. An anti-sway buffer 7 is located at the middle position of the outer side of the tank cover 8. An upper oil delivery pipe 6 and a lower oil delivery pipe 9 are respectively located above and below the anti-sway buffer 7. A valve 10 is located on the bottom surface of the lower oil delivery pipe 9. An upper assembly sleeve 5 is located at the upper end of the upper oil delivery pipe 6, positioned above an upper mounting plate 16. A lower assembly sleeve 11 is located at the lower end of the lower oil delivery pipe 9, positioned above a lower mounting plate 18. An upper opening 4 and a lower opening 21 are respectively located at the upper and lower positions of the inner wall of the tank cover 8. A large-sized wave buffer 2 and a small-sized wave buffer 3 are sequentially located at the top of the interior of the intermediate tank body 1. An oil inlet is located at one end of the top of the intermediate tank body 1. The intermediate heat transfer oil tank 1 has an outlet 14 and an oil outlet 15 located on the lower side of one side. The bottom surface of the intermediate heat transfer oil tank 1 is provided with a support bracket 12, and the two ends of the exterior of the intermediate heat transfer oil tank 1 are provided with reinforcing ribs 13. The tank cover 8 is used to seal both ends of the intermediate heat transfer oil tank 1. The intermediate heat transfer oil tank 1 is used to store heat transfer oil. The anti-sloshing buffer 7 is used to prevent the intermediate heat transfer oil tank 1 from sloshing. The upper oil supply pipe 6 is used to transport the heat transfer oil that has sloshed out to the anti-sloshing buffer 7. The lower oil supply pipe 9 is used to return the heat transfer oil stored in the anti-sloshing buffer 7 to the intermediate heat transfer oil tank 1. The large wave buffer 2 and the small wave buffer 3 are used to break up the waves generated by sloshing and reduce the impact force. The support bracket 12 is used to increase the stability of the intermediate heat transfer oil tank 1.
[0020] The upper mounting plate 16 is fixedly connected to the can lid 8 by the first fixing bolt 19, and the upper assembly sleeve 5 and the upper mounting plate 16 are integrated into one structure. The first fixing bolt 19 is used to install and fix the upper mounting plate 16 and the can lid 8. The lower mounting plate 18 is fixedly connected to the can lid 8 by the second fixing bolt 20, and the lower assembly sleeve 11 and the lower mounting plate 18 are integrated into one structure. The second fixing bolt 20 is used to install and fix the lower mounting plate 18 and the can lid 8.
[0021] The upper oil pipeline 6 and the upper assembly sleeve 5 are fixedly connected by welding. The upper oil pipeline 6 is installed in an inclined structure with an inclination angle of 45°. The welding connection is used to increase the stability of the installation of the upper oil pipeline 6 and the upper assembly sleeve 5. The lower oil pipeline 9 and the lower assembly sleeve 11 are fixedly connected by welding. The lower oil pipeline 9 is installed in an inclined structure with an inclination angle of 45°. The welding connection is used to increase the stability of the installation of the lower oil pipeline 9 and the lower assembly sleeve 11.
[0022] The anti-sway buffer 7 is designed with a cylindrical structure. Both ends of the anti-sway buffer 7 are provided with inspection covers 17, and the inspection covers 17 are fixedly connected to the anti-sway buffer 7 by bolts. The cylindrical structure can enhance the aesthetics. The inspection covers 17 are used to open or seal both ends of the anti-sway buffer 7 to facilitate internal cleaning.
[0023] Working principle: During use, heat transfer oil is poured into the interior of the intermediate heat transfer oil tank 1 through the oil inlet 14. When the intermediate heat transfer oil tank 1 is moved, it will shake significantly, causing large waves in the heat transfer oil. The large waves are broken up by the large wave deflector 2 and the small wave deflector 3, reducing the impact force. The heat transfer oil that has shaken and accumulated enters the upper assembly sleeve 5 through the upper outlet 4, and is then transported to the internal buffer of the anti-sway buffer 7 through the upper oil delivery pipe 6 to reduce internal shaking and make it more stable during transport. When the intermediate heat transfer oil tank 1 is stationary, the valve 10 is opened, and the heat transfer oil stored in the anti-sway buffer 7 is transported to the intermediate heat transfer oil tank 1 through the lower oil delivery pipe 9.
[0024] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A heat transfer oil production intermediate tank comprising a heat transfer oil intermediate tank body (1), characterized in that: The both ends of the inside of the heat conducting oil intermediate tank body (1) are equipped with tank covers (8), the middle position of the outside of the tank cover (8) is equipped with anti-sloshing buffers (7), the upper and lower positions of the anti-sloshing buffer (7) are respectively equipped with upper oil delivery pipes (6) and lower oil delivery pipes (9), the bottom surface of the lower oil delivery pipe (9) is equipped with a valve (10), the upper end of the upper oil delivery pipe (6) is equipped with an upper assembly cylinder sleeve (5), the upper assembly cylinder sleeve (5) is above an upper mounting plate (16), the lower end of the lower oil delivery pipe (9) is equipped with a lower assembly cylinder sleeve (11), the lower assembly cylinder sleeve (11) is above a lower mounting plate (18), the inner wall of the tank cover (8) is respectively equipped with an upper through hole (4) and a lower through hole (21), the top end of the inside of the heat conducting oil intermediate tank body (1) is sequentially equipped with a large-sized wave calming plate (2) and a small-sized wave calming plate (3), one end of the top of the heat conducting oil intermediate tank body (1) is equipped with an oil inlet (14), the lower side of one side of the heat conducting oil intermediate tank body (1) is equipped with an oil outlet (15), the bottom surface of the heat conducting oil intermediate tank body (1) is equipped with support legs (12), and the both ends of the outside of the heat conducting oil intermediate tank body (1) are equipped with reinforcing ribs (13).
2. The intermediate tank for heat transfer oil production according to claim 1, characterized in that: The upper mounting plate (16) and the tank cover (8) are fixedly connected through first fixing bolts (19), and the upper assembly cylinder sleeve (5) and the upper mounting plate (16) are an integral structure.
3. The intermediate tank for heat transfer oil production according to claim 1, characterized in that: The upper oil delivery pipe (6) and the upper assembly cylinder sleeve (5) are fixedly connected through welding, and the upper oil delivery pipe (6) is installed in an inclined structure, and the inclination angle is 45°.
4. The intermediate tank for heat transfer oil production according to claim 1, characterized in that: The lower mounting plate (18) and the tank cover (8) are fixedly connected through second fixing bolts (20), and the lower assembly cylinder sleeve (11) and the lower mounting plate (18) are an integral structure.
5. The heat transfer oil production intermediate tank according to claim 1, characterized in that: The lower oil delivery pipe (9) and the lower assembly cylinder sleeve (11) are fixedly connected through welding, and the lower oil delivery pipe (9) is installed in an inclined structure, and the inclination angle is 45°.
6. The heat transfer oil production intermediate tank according to claim 1, characterized in that: The anti-sloshing buffer (7) is in a cylindrical structure, the both ends of the anti-sloshing buffer (7) are equipped with maintenance covers (17), and the maintenance covers (17) and the anti-sloshing buffer (7) are fixedly connected through bolts.