Novel anti-explosion gas storage tank with condensation function
By designing a detachable condensation device and a spiral guide groove, the problems of high power consumption and uneven heat dissipation in the condensation method of the gas storage tank are solved, and efficient and stable condensation effect is achieved, reducing working costs.
Patent Information
- Application Number
- CN202421902678.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-07
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-07
AI Technical Summary
The existing gas storage tank condensation method has problems such as high fan power consumption and unbalanced heat dissipation, resulting in high working costs and poor heat dissipation effect.
A new explosion-proof gas storage tank with condensation function is designed, and a detachable condensation device is used, combined with a spiral guide groove and multiple condensation fans, and fixed by bolts and reinforcement components to realize the circumferential flow of air in the condensation device and the synchronous discharge of thermal energy, combined with water cooling and cooling.
It improves the working efficiency and stability of the gas storage tank, reduces power consumption, and achieves uniform heat dissipation and continuous condensation effects.
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Figure CN223076744U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of explosion-proof gas storage tank condensation, in particular to a new type of explosion-proof gas storage tank with a condensation function. Background Technique
[0002] A gas storage tank refers to a device specifically used to store gas, and at the same time plays a role in stabilizing the system pressure. According to the different pressures that the gas storage tank can withstand, it can be divided into high-pressure gas storage tanks, low-pressure gas storage tanks, and atmospheric-pressure gas storage tanks. When the gas storage tank is working, the internal pressure will gradually increase. If the pressure relief treatment is not carried out in time, it may explode due to excessive pressure, which has certain potential safety hazards. Therefore, the condensation of the gas storage tank is an essential and important step when the gas storage tank is working.
[0003] At present, most of the existing gas storage tank condensation methods are to install a fan on one side of the gas storage tank to condense the whole gas storage tank and natural condensation. For natural condensation, the gas storage tank is placed in a place with air circulation, so that the external air condenses the whole gas storage tank. However, the natural wind cannot continuously condense the gas storage tank. Therefore, in the case of no wind, the gas storage tank cannot be effectively cooled. The fan condensation can continuously condense the whole gas storage tank, reducing the occurrence of the phenomenon that the gas storage tank cannot be condensed. Moreover, the fan condensation can continuously maintain a relatively large wind force, so that it can better condense the gas storage tank when it is in urgent need of condensation, and it can be turned off when not in use.
[0004] However, the above gas storage tank with fan condensation still has certain deficiencies. Because the fan has a relatively large wind force, a large amount of electricity is consumed during long-term use, resulting in a relatively high working cost. Since the fan is installed on one side of the gas storage tank to dissipate heat from the gas storage tank, the whole gas storage tank cannot be evenly cooled, only one side of the gas storage tank is cooled, so that a good heat dissipation effect cannot be achieved. Therefore, it is urgently necessary to improve on the basis of the gas storage tank with fan condensation. Content of the Utility Model
[0005] Based on this, the purpose of the present utility model is to provide a new type of explosion-proof gas storage tank with a condensation function to solve the technical problems mentioned in the above background technique.
[0006] To achieve the above object, the present utility model provides the following technical solution: a novel explosion-proof gas storage tank with a condensation function, including a gas storage tank main body, a condensation device is installed on the outer wall of the gas storage tank main body, and the condensation device is detachably composed of an upper shell and a lower shell. And a condensation fan for condensation is fixedly installed on the outer wall of the upper shell. A through hole 1 corresponding to the condensation fan is opened on the outer wall of the upper shell. And guide grooves for air flow are opened on the inner walls of the upper shell and the lower shell. And the guide grooves are communicated with the through hole 1. Connecting ears are fixedly installed on the outer walls of the upper shell and the lower shell. And bolts are rotatably installed in the connecting ears. And an air outlet for exhausting the air inside the condensation device is opened on the outer wall of the lower shell. The air outlet is communicated with the guide groove. And a reinforcement component for fixing the condensation device is fixedly installed on the outer wall of the gas storage tank main body.
[0007] By adopting the above technical solution, under the action of the connecting ears, bolts and through hole 2, the upper shell and the lower shell are detachably composed, so that when replacement is carried out, it is more convenient for workers to replace. Under the action of the condensation fan, the external air is guided into the guide groove on the inner wall of the condensation device, so as to contact the outer wall of the gas storage tank main body. When the air flows out along the air outlet, the heat energy is taken out synchronously, so that the air can continuously circulate in the condensation device under the operation of the condensation fan, so as to better condense the gas storage tank main body, so that the gas storage tank main body can work better, thereby improving the work efficiency.
[0008] The present utility model is further arranged such that the inner wall of the condensation device fits the outer wall of the gas storage tank main body, and the guide groove is of a spiral design, and a plurality of flow grooves for air flow are opened on the outer wall of the condensation device.
[0009] By adopting the above technical solution, when the air enters the guide groove, it will flow around the outer wall of the gas storage tank main body along the spiral design of the guide groove, so that the outer wall of the gas storage tank main body can achieve the heat dissipation effect, so as to better enable the gas storage tank main body to work stably.
[0010] The present utility model is further arranged such that a plurality of condensation fans are symmetrically installed on the outer wall of the condensation device, and the condensation fans drive the air flow from the outside to the inside to dissipate heat from the gas storage tank main body.
[0011] By adopting the above technical solution, under the action of the condensation fans, the air can flow better inside the condensation device, so that when the air is discharged through the air outlet, the heat energy generated on the outer wall of the gas storage tank main body will be driven to be discharged synchronously, so as to achieve the heat dissipation effect on the outer wall of the gas storage tank main body.
[0012] The present utility model is further arranged such that a through hole 2 is opened on the outer wall of the connecting ear, and the upper shell and the lower shell are fixed by the connection of the bolts and the connecting ears.
[0013] By adopting the above technical solution, when connecting the upper shell and the lower shell, align and connect the connecting ears on the outer walls of the upper shell and the lower shell, and then through the setting of bolts and through holes II, the upper shell and the lower shell are installed, so that the condensation device can be fixed on the outer wall of the gas storage tank main body.
[0014] The present utility model is further arranged such that the reinforcement assembly is divided into an upper reinforcement block and a lower reinforcement block, and a plurality of upper reinforcement blocks are symmetrically installed on the outer wall of the end of the gas storage tank main body, and a plurality of lower reinforcement blocks are equidistantly installed on the outer wall of the bottom of the gas storage tank main body.
[0015] By adopting the above technical solution, under the action of the reinforcement assembly, the condensation device is further reinforced, so that the condensation device can be stably fixed on the outer wall of the gas storage tank main body, and when the condensation device dissipates heat from the outer wall of the gas storage tank main body, it is more stable.
[0016] The present utility model is further arranged such that a condensation device is installed on the outer wall of the gas storage tank main body, and the condensation device is composed of a convex connection block and a concave connection block, and a convex block is fixedly installed on the outer wall of the end of the convex connection block, and a groove corresponding to the convex block is provided on the outer wall of the end of the concave connection block.
[0017] By adopting the above technical solution, under the action of the condensation device, water is poured into the condensation device, thereby performing water-cooling cooling on the outer wall of the gas storage tank main body, so that when the gas storage tank main body is working, heat is dissipated from the gas storage tank main body, and the gas storage tank main body can operate more stably, thereby improving work efficiency.
[0018] The present utility model is further arranged such that a plurality of condensation devices are equidistantly installed on the gas storage tank main body.
[0019] By adopting the above technical solution, under the setting of the number of the condensation devices, a good cooling effect on the gas storage tank main body is achieved, so that when the gas storage tank main body is working, it can operate more stably, thereby ensuring a certain stability when the gas storage tank main body is working.
[0020] The present utility model is further arranged such that both the convex block and the groove are designed in a "T" shape, and the groove is not penetrating at the end of the concave water storage tank.
[0021] By adopting the above technical solution, under the "T" shape design, the convex connection block and the concave connection block are better connected, so that the condensation device is better connected to the outer wall of the gas storage tank main body to perform cooling treatment on the gas storage tank main body.
[0022] In summary, the present utility model mainly has the following beneficial effects:
[0023] The utility model is provided with a condensation device. Under the action of the connecting ear, the bolt and the through hole II, the upper shell and the lower shell are detachably assembled, so that it is more convenient for workers to replace when replacement is needed. Under the action of the condensation fan, the external air is guided into the guiding groove on the inner wall of the condensation device, so as to contact the outer wall of the gas storage tank body. When the air flows out along the air outlet, the heat energy is taken out synchronously, so that the air can continuously circulate in the condensation device under the operation of the condensation fan, thereby better condensing the gas storage tank body, enabling the gas storage tank body to work better, and thus improving the work efficiency. Description of the Drawings
[0024] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0025] Figure 2 It is a schematic diagram of the internal structure of the upper shell of the utility model;
[0026] Figure 3 It is a schematic diagram of the internal structure of the lower shell of the utility model;
[0027] Figure 4 It is a schematic diagram of the structure composed of the gas storage tank body and the reinforcement assembly of the utility model;
[0028] Figure 5 It is a schematic diagram of the overall structure of the second embodiment of the utility model;
[0029] Figure 6 It is a schematic diagram of the overall structure of the condensation device of the second embodiment of the utility model.
[0030] In the figure: 1. Gas storage tank body; 2. Condensation device; 3. Upper shell; 4. Lower shell; 5. Condensation fan; 6. Through hole I; 7. Guiding groove; 8. Connecting ear; 9. Bolt; 10. Air outlet; 11. Reinforcement assembly; 12. Convex connecting block; 13. Concave connecting block; 14. Convex block; 15. Groove; 111. Upper reinforcement block; 112. Lower reinforcement block; 201. Flow groove. Detailed Embodiment
[0031] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present utility model, and should not be construed as a limitation to the present utility model.
[0032] Next, the embodiments of the present utility model will be described according to its overall structure.
[0033] Embodiment 1
[0034] A new type of explosion-proof gas storage tank with a condensation function, as Figure 1- Figure 4 As shown, it includes a gas storage tank body 1.
[0035] Specifically, a condensation device 2 is installed on the outer wall of the gas storage tank main body 1. When the gas storage tank main body 1 is working, heat energy will be generated. Through the setting of the condensation device 2, the gas storage tank main body 1 is cooled, so that the air pressure in the gas storage tank main body 1 is maintained at a stable value, avoiding the occurrence of the phenomenon that the gas storage tank main body 1 explodes due to excessive internal pressure. And the condensation device 2 is detachably composed of an upper shell 3 and a lower shell 4. Since the condensation device 2 is detachably composed, it is more convenient for workers to disassemble and install the condensation device 2 when disassembling it, thus making it more convenient for workers to use. And a condensation fan 5 for condensation is fixedly installed on the outer wall of the upper shell 3. The condensation device 2 is fixed on the outer wall of the gas storage tank main body 1. Through the setting of the condensation fan 5, air flows from the outside to the inside of the condensation device 2, so that the heat energy generated on the outer wall of the gas storage tank main body 1 is dissipated along with the flow of air, cooling the outer wall of the gas storage tank main body 1 and enabling the gas storage tank main body 1 to work better. A through hole 1 6 corresponding to the condensation fan 5 is opened on the outer wall of the upper shell 3. Under the action of the through hole 1 6, the condensation fan 5 blows air into the condensation device 2 through the through hole 1 6, so that the air flows between the inner wall of the condensation device 2 and the outer wall of the gas storage tank main body 1, thus dissipating heat from the gas storage tank main body 1. And guide grooves 7 for air flow are opened on the inner walls of both the upper shell 3 and the lower shell 4. Under the action of the condensation fan 5, the air is driven to the outer wall of the gas storage tank main body 1, and the air passes through the guide grooves 7 in the condensation device 2, so that the air flow surrounds the outer wall of the gas storage tank main body 1, thus enabling the gas storage tank main body 1 to dissipate heat evenly and enabling the gas storage tank main body 1 to operate better, thereby improving work efficiency. And the guide groove 7 is communicated with the through hole 1 6. When the condensation fan 5 blows air, the air is communicated into the condensation device 2 along with the through hole 1 6. Under the action of the through hole 1 6 and the guide groove 7, when the air enters the through hole 1 6, it also enters the guide groove 7, so that the air flows around the outer wall of the gas storage tank main body 1 under the action of the guide groove 7, cooling the gas storage tank main body 1. Connecting ears 8 are fixedly installed on the outer walls of both the upper shell 3 and the lower shell 4. Under the action of the connecting ears 8, the upper shell 3 and the lower shell 4 are connected to form the condensation device 2, dissipating heat from the outer wall of the gas storage tank main body 1 and enabling the gas storage tank to operate better. And a bolt 9 is rotatably installed in the connecting ear 8, fitting the upper shell 3 and the lower shell 4 together, so that the connecting ears 8 are synchronously fitted. Through the setting of the bolt 9, the upper shell 3 and the lower shell 4 are fixedly connected, making the condensation device 2 adhere to the outer wall of the gas storage tank main body 1 to dissipate heat from the gas storage tank main body 1. And an air outlet 10 for exhausting the air inside the condensation device 2 is opened on the outer wall of the lower shell 4. Through the setting of the air outlet 10, the air circulates around the outer wall of the gas storage tank main body 1 in the guide groove 7, and the air inside the condensation device 2 is exhausted through the air outlet 10, so that the air drives the heat energy on the outer wall of the gas storage tank main body 1 to be discharged synchronously, thus forming a phenomenon that air circulates on the outer wall of the gas storage tank main body 1.Thus, heat dissipation is continuously carried out on the outer wall of the gas storage tank main body 1, making the gas storage tank main body 1 more stable during operation. The air outlet 10 is communicated with the guide groove 7. Since the air outlet 10 is communicated with the guide groove 7, when the air flows to the air outlet 10, it will be discharged outward along with the air outlet 10, so that the air inside the condensation device 2 can flow, thus continuously dissipating heat from the gas storage tank main body 1. And a reinforcing component 11 for fixing the condensation device 2 is fixedly installed on the outer wall of the gas storage tank main body 1. After the condensation device 2 is fixedly installed on the outer wall of the gas storage tank main body 1, under the action of the reinforcing component 11, the condensation device 2 is better fixed on the outer wall of the gas storage tank main body 1, so that the gas storage tank main body 1 can dissipate heat better during operation.,
[0036] Please refer to Figure 1 - Figure 4 , the inner wall of the condensation device 2 is attached to the outer wall of the gas storage tank main body 1, so that the air flowing inside the condensation device 2 is in direct contact with the outer wall of the gas storage tank main body 1, thus better dissipating heat from the gas storage tank main body 1. And the guide groove 7 is of a spiral design, so that when the air enters the guide groove 7, it will flow around the outer wall of the gas storage tank main body 1 along with the spiral design of the guide groove 7, so that the outer wall of the gas storage tank main body 1 can achieve the heat dissipation effect, and thus the gas storage tank main body 1 can work more stably. And a plurality of flow grooves 201 for air flow are opened on the outer wall of the condensation device 2. Under the action of the flow grooves 201, when the natural wind flows, the contact area with the outer wall of the condensation device 2 is increased, thus dissipating heat from the outer wall of the condensation device 2.
[0037] Please refer to Figure 1 - Figure 4 , a plurality of condensation fans 5 are symmetrically installed on the outer wall of the condensation device 2. Under the action of the condensation fans 5, the air can flow better inside the condensation device 2. When the air is discharged through the air outlet 10, the heat energy generated on the outer wall of the gas storage tank main body 1 will be driven to be discharged synchronously, thus realizing the heat dissipation effect on the outer wall of the gas storage tank main body 1. And the condensation fans 5 drive the air flow from the outside to the inside to dissipate heat from the gas storage tank main body 1.
[0038] Please refer to Figure 1 - Figure 4 , a through hole two 81 is opened on the outer wall of the connecting ear 8, and the upper shell 3 and the lower shell 4 are fixed by the connection of the bolt 9 and the connecting ear 8. When the upper shell 3 and the lower shell 4 are connected, the connecting ears 8 on the outer walls of the upper shell 3 and the lower shell 4 are aligned and connected, and then through the setting of the bolt 9 and the through hole two 81, the upper shell 3 and the lower shell 4 are installed, so that the condensation device 2 can be fixed on the outer wall of the gas storage tank main body 1.
[0039] Please refer to Figure 1 - Figure 4, the reinforcement component 11 is divided into an upper reinforcement block 111 and a lower reinforcement block 112. A plurality of upper reinforcement blocks 111 are symmetrically installed on the outer wall of the end of the gas storage tank main body 1, and a plurality of lower reinforcement blocks 112 are installed at equal distances on the outer wall of the bottom of the gas storage tank main body 1. Under the action of the reinforcement component 11, the condensation device 2 is further reinforced, so that the condensation device 2 can be stably fixed on the outer wall of the gas storage tank main body 1, making the condensation device 2 more stable when dissipating heat from the outer wall of the gas storage tank main body 1.
[0040] Embodiment Two
[0041] A new type of explosion-proof gas storage tank with a condensation function, as Figure 5 - Figure 6 shown. The technical solution and parts of this embodiment are basically the same as those of Embodiment One, and the same technical parts will not be elaborated here. The difference lies in that a condensation device 2 is installed on the outer wall of the gas storage tank main body 1, and the condensation device 2 is composed of a convex connecting block 12 and a concave connecting block 13. Under the action of the condensation device 2, water is poured into the condensation device 2 to cool the outer wall of the gas storage tank main body 1 by water cooling, so that when the gas storage tank main body 1 is working, heat is dissipated from the gas storage tank main body 1, making the gas storage tank main body 1 operate more stably, thereby improving work efficiency. Moreover, a convex block 14 is fixedly installed on the outer wall of the end of the convex connecting block 12, and a groove 15 corresponding to the convex block 14 is formed on the outer wall of the end of the concave connecting block 13. Under the action of the convex block 14 and the groove 15, the convex connecting block 12 and the concave connecting block 13 are fitted together, so that the condensation device 2 can be stably fixed on the outer wall of the gas storage tank main body 1, enabling the condensation device 2 to better cool the outer wall of the gas storage tank main body 1 and making the gas storage tank main body 1 operate stably.
[0042] Please refer to Figure 5 - Figure 6 , a plurality of condensation devices 2 are installed at equal intervals on the gas storage tank main body 1. With the setting of the number of the condensation devices 2, the condensation devices 2 have a good cooling effect on the gas storage tank main body 1, so that when the gas storage tank main body 1 is working, it can operate more stably, thereby ensuring a certain stability of the gas storage tank main body 1 during operation.
[0043] Please refer to Figure 5 - Figure 6 , both the convex block 14 and the groove 15 are designed in a "T" shape. With this "T" - shaped design, the convex connecting block 12 and the concave connecting block 13 can be better connected, so that the condensation device 2 can be better connected to the outer wall of the gas storage tank main body 1 to cool the gas storage tank main body 1, and the groove 15 is not a through - hole design at the end of the concave connecting block 13.
[0044] The working principle of the present utility model is as follows: When in use, the upper shell 3 is installed on the outer wall of the gas storage tank main body 1, so that the upper shell 3 is fixed between the upper reinforcing block 111 and the lower reinforcing block 112. Subsequently, the lower shell 4 is fixed between the upper reinforcing block 111 and the lower reinforcing block 112, so that the connecting ears 8 on the outer wall of the lower shell 4 are fitted with the connecting ears 8 on the outer wall of the upper shell 3 and are connected by bolts 9. Under the action of the bolts 9 and the through holes two 81, the upper shell 3 and the lower shell 4 are tightly fixed, so that the inner wall of the condensation device 2 is fitted with the outer wall of the gas storage tank main body 1. The condensation fan 5 rotates to allow external air to enter the condensation device 2 through the through hole one 6, and then through the guiding groove 7 inside the condensation device 2, the air entering through the through hole one 6 condenses around the outer wall of the gas storage tank main body 1 along the guiding groove 7, so as to better evenly condense the gas storage tank main body 1. At the same time, when the air circulates to the bottom in the guiding groove 7, it flows out through the air outlet 10, thereby synchronously driving the heat energy generated on the outer wall of the gas storage tank main body 1 to flow out from the air outlet 10, so as to better condense the heat energy generated by the gas storage tank main body 1, so that the gas storage tank main body 1 is condensed during operation, and thus the gas storage tank can operate better.
[0045] Although the embodiments of the present utility model have been shown and described, the specific embodiments are only explanations of the present utility model and do not limit the utility model. The specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. After reading this specification, those skilled in the art can make modifications, substitutions and variations that do not make creative contributions to the embodiments as needed, but as long as they are within the scope of the claims of the present utility model, they are protected by the patent law.
Claims
1. A new type of explosion-proof gas storage tank with a condensation function, comprising a gas storage tank main body (1), characterized in that: A condensing device (2) is installed on the outer wall of the gas storage tank main body (1), and the condensing device (2) is detachably composed of an upper shell (3) and a lower shell (4). A condensing fan (5) for condensation is fixedly installed on the outer wall of the upper shell (3). A through hole one (6) corresponding to the condensing fan (5) is opened on the outer wall of the upper shell (3). Guide grooves (7) for air flow are opened on the inner walls of both the upper shell (3) and the lower shell (4). The guide grooves (7) are communicated with the through hole one (6). Connecting ears (8) are fixedly installed on the outer walls of both the upper shell (3) and the lower shell (4). Bolts (9) are rotatably installed in the connecting ears (8). An air outlet (10) for exhausting the air inside the condensing device (2) is opened on the outer wall of the lower shell (4). The air outlet (10) is communicated with the guide groove (7). A reinforcing component (11) for fixing the condensing device (2) is fixedly installed on the outer wall of the gas storage tank main body (1).
2. The novel explosion-proof gas storage tank with a condensation function according to claim 1, characterized in that: The inner wall of the condensing device (2) is attached to the outer wall of the gas storage tank main body (1). The guide groove (7) is designed in a spiral shape. A plurality of flow grooves (201) for air flow are opened on the outer wall of the condensing device (2).
3. A novel explosion-proof gas storage tank with a condensation function according to claim 1, characterized in that: A plurality of condensing fans (5) are symmetrically installed on the outer wall of the condensing device (2). The condensing fans (5) drive the air flow from the outside to the inside to dissipate heat from the gas storage tank main body (1).
4. A novel explosion-proof gas storage tank with a condensation function according to claim 1, characterized in that: A through hole two (81) is opened on the outer wall of the connecting ear (8). The upper shell (3) and the lower shell (4) are fixed by the connection of the bolts (9) and the connecting ears (8).
5. The novel explosion-proof gas storage tank with a condensation function according to claim 1, characterized in that: The reinforcing component (11) is divided into an upper reinforcing block (111) and a lower reinforcing block (112). A plurality of upper reinforcing blocks (111) are symmetrically installed on the outer wall of the end of the gas storage tank main body (1). A plurality of lower reinforcing blocks (112) are installed at equal distances on the outer wall of the bottom of the gas storage tank main body (1).
6. A novel explosion-proof gas storage tank with a condensation function according to claim 1, characterized in that: A condensing device (2) is installed on the outer wall of the gas storage tank main body (1). The condensing device (2) is composed of a convex connecting block (12) and a concave connecting block (13). A convex block (14) is fixedly installed on the outer wall of the end of the convex connecting block (12). A groove (15) corresponding to the convex block (14) is opened on the outer wall of the end of the concave connecting block (13).
7. The novel explosion-proof gas storage tank with a condensation function according to claim 6, characterized in that: A plurality of condensing devices (2) are installed on the gas storage tank main body (1) at equal intervals.
8. The novel explosion-proof gas storage tank with a condensation function according to claim 6, characterized in that: Both the convex block (14) and the groove (15) are designed in a "T" shape. The groove (15) is not designed to penetrate at the end of the concave connecting block (13).