Safety measuring device for operation well of gas station
By designing a safety measurement device for gas station operating wells that adapts to different depths and widths, the problem of traditional climbing frames being unable to adapt to depth changes has been solved, achieving stable support and lighting, and improving safety and convenience in the operating wells.
Patent Information
- Application Number
- CN202520677658.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-03-17
- Estimated Expiration
- 2035-04-11
AI Technical Summary
The varying depths of traditional gas station operating wells make traditional fixed climbing frames unsuitable, causing inconvenience and safety hazards for workers operating in wells at different depths.
A safety measuring device comprising a first climbing frame and a second climbing frame was designed. Through components such as locking bolts, clamps, guide rails, support rods, and LED lights, the climbing frame can be folded and adjusted to adapt to wellheads of different depths and widths, and provides stable support and lighting.
It improves the safety and ease of operation for staff in the well, ensures stable support and lighting requirements at wellheads of different depths and widths, and reduces the risk of falling into the abyss.
Smart Images

Figure CN224002649U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of gas station operating well measurement technology, and in particular to a safety measurement device for gas station operating wells. Background Technology
[0002] In the daily operation of a gas station, operators need to periodically enter the operating well to measure the oil and water levels in the tanks and collect oil samples. However, the current operating well has the following problems:
[0003] The depth of operating wells varies between different gas stations, and even different operating wells within the same gas station may differ in depth. Traditional fixed climbing frames cannot accommodate these depth variations, potentially causing inconvenience for workers operating in both shallow and deep wells. The working environment inside the operating well is complex, requiring workers to perform measurements and inspections from different locations. Traditional simple support structures cannot provide sufficient stability, easily causing workers to lose their balance during operations, posing safety hazards.
[0004] To address the above issues, a safety measurement device for gas station operating wells needs to be designed to overcome these problems. Utility Model Content
[0005] The main purpose of this utility model is to provide a safety measuring device for gas station operating wells, which can effectively solve the problems in the background art.
[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0007] A safety measurement device for a gas station operating well includes a first climbing frame and a second climbing frame, wherein a measurement auxiliary component is provided at one end of the second climbing frame;
[0008] The measurement auxiliary component includes a locking block disposed at one end of the second climbing frame near the first climbing frame. Locking bolts are connected to both ends of the second climbing frame. A second guide rail is connected to one end of the inner side of the second climbing frame. Second moving blocks are provided on the inner walls of the second guide rails. A second support rod is installed between two of the second moving blocks. Trapezoidal reinforcing blocks are connected to both ends of the top of the second support rod. Locking shafts are connected to one end of each of the two trapezoidal reinforcing blocks via fastening bolts. Auxiliary support rods are connected to the ends of the two locking shafts away from the trapezoidal reinforcing blocks. LED light tubes are installed at both ends of the outer walls of the two auxiliary support rods. Adjustment frames are threadedly fixed to both ends of the second climbing frame away from the second guide rail. Adjustment clamps are slidably connected to the ends of the adjustment frames away from the second climbing frame. Adjustment support arms are connected between two adjacent adjustment clamps via fastening bolts. A support plate is connected to the end of the adjustment frame away from the adjustment frame via fastening bolts.
[0009] As a preferred embodiment of this utility model, an adjustable storage component is provided at one end of the first climbing frame. The adjustable storage component includes a locking rod disposed at the end of the first climbing frame away from the second climbing frame, a first universal joint at the end of the locking rod away from the first climbing frame, a cross shaft connected to the inner side of the first universal joint, a second universal joint connected to the end of the cross shaft away from the first universal joint, a movable ball connected to the outer wall of the cross shaft, and a storage box connected to the second universal joint via a connecting rod.
[0010] As a preferred embodiment of this utility model, the top of the first climbing frame is connected to an auxiliary handle by fastening bolts, and trapezoidal blocks are installed at both ends of the auxiliary handle by connecting plates. The tops of the two trapezoidal blocks are connected to warning signs by connecting rods. A first guide rail is provided at one end of the inner side of the first climbing frame, and a first moving block is engaged on the inner side of the two first guide rails.
[0011] As a preferred embodiment of this utility model, a first support rod is installed at one end of the first moving block, and adjustment grooves are provided on the inner sides of both the first climbing frame and the second climbing frame. Multiple first support rods and second support rods are respectively installed on the inner sides of both the first climbing frame and the second climbing frame by fastening bolts.
[0012] As a preferred embodiment of this utility model, the locking block is fixedly connected to the sliding groove threaded on the outer wall of the first climbing frame by a locking bolt, the second climbing frame is fixedly connected by the locking block and the locking bolt thread, and both second guide rails are movably connected to the adjustment groove on the inner side of the second climbing frame by fastening bolts.
[0013] As a preferred embodiment of this utility model, the second support rod is threadedly fixedly connected to the two trapezoidal reinforcing blocks, the two trapezoidal reinforcing blocks are threadedly fixedly connected to the auxiliary support rod through the two locking shafts, the auxiliary support rod is movably connected to the LED tube, and the bottom of the two auxiliary support rods contacts the top of the support plate.
[0014] In a preferred embodiment of this utility model, the locking rod is rotatably connected to the first universal joint, the first universal joint is threadedly fixedly connected to the second universal joint via a cross shaft, the cross shaft is rotatably connected to the movable ball, and the second universal joint is threadedly fixedly connected to the storage box via a connecting rod.
[0015] Beneficial effects
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] This safety measuring device for the gas station's operating well utilizes a first and second climbing frame. Locking bolts secure the frame to an adjusting groove, allowing for foldable use of the first and second climbing frames. The device can be adjusted according to different well depths. A second movable block moves within a second guide rail, adjusting the distance between the two second support rods. Two trapezoidal reinforcing blocks are locked to the two auxiliary support rods with locking shafts, providing support for workers. LED lights provide illumination in low-light conditions, preventing workers from slipping and falling. To enhance safety, two adjustable clamps are connected to the adjustable support arm with bolts to support and adjust the angle of the support plate. The clamps can be folded at the end of the second climbing frame near the second support rod, while also supporting the two auxiliary support rods. Two trapezoidal blocks are connected to warning signs via mounting rods for warning purposes. A locking rod fixes the first universal joint to one end of the first climbing frame. The first universal joint is movably connected to the second universal joint via a cross shaft, allowing the storage box to be adjusted in angle by rotating a movable ball to the desired position, facilitating the storage of measuring tools. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0019] Figure 2 This is a schematic diagram of the overall disassembled structure of this utility model;
[0020] Figure 3 This is a schematic diagram of the measurement auxiliary component structure of this utility model;
[0021] Figure 4 This is a schematic diagram of the adjustable storage component structure of this utility model.
[0022] In the diagram: 1. First climbing frame; 2. Second climbing frame; 3. Measurement auxiliary component; 4. Adjustable storage component; 5. Trapezoidal locking block; 6. Auxiliary handle; 7. First guide rail; 8. First moving block; 9. First support rod; 10. Adjustment groove; 301. Locking block; 302. Locking bolt; 303. Second guide rail; 304. Second moving block; 305. Second support rod; 306. Trapezoidal reinforcing block; 307. Locking shaft; 308. Auxiliary support rod; 309. LED light tube; 310. Adjustment frame; 311. Adjustment clamp; 312. Adjustment support arm; 313. Support plate; 401. Locking rod; 402. First universal joint; 403. Cross shaft; 404. Moving ball; 405. Second universal joint; 406. Storage box. Detailed Implementation
[0023] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the following is a detailed description.
[0024] The above description and illustration of the basic embodiments of this utility model further elaborates on this utility model.
[0025] like Figures 1-4 As shown, a safety measuring device for a gas station operating well includes a first climbing frame 1 and a second climbing frame 2, with a measuring auxiliary component 3 installed at one end of the second climbing frame 2;
[0026] The measurement auxiliary component 3 includes a locking block 301 located at one end of the second climbing frame 2 near the first climbing frame 1. Locking bolts 302 are connected to both ends of the second climbing frame 2. A second guide rail 303 is connected to one end of the inner side of the second climbing frame 2. Second moving blocks 304 are provided on the inner walls of the second guide rails 303. A second support rod 305 is installed between the two second moving blocks 304. Trapezoidal reinforcing blocks 306 are connected to both ends of the top of the second support rod 305. Locking shafts 307 are connected to one end of each trapezoidal reinforcing block 306 via fastening bolts. The locking shaft 307 is connected to an auxiliary support rod 308 at one end away from the trapezoidal reinforcing block 306. LED tubes 309 are installed at both ends of the outer wall of the two auxiliary support rods 308. Adjustment frames 310 are threadedly fixed to both ends of the second climbing frame 2 away from the second guide rail 303. Adjustment clamps 311 are slidably connected to one end of the adjustment frame 310 away from the second climbing frame 2. Adjustment support arms 312 are connected between two adjacent adjustment clamps 311 by fastening bolts. Support plate 313 is connected to one end away from the adjustment frame 310 by fastening bolts.
[0027] The locking block 301 is threadedly fixed to the sliding groove on the outer wall of the first climbing frame 1 by the locking bolt 302. The second climbing frame 2 is threadedly fixed to the locking block 301 and the locking bolt 302. The two second guide rails 303 are movably connected to the adjustment groove 10 on the inner side of the second climbing frame 2 by fastening bolts. The second support rod 305 is threadedly fixed to the two trapezoidal reinforcing blocks 306. The two trapezoidal reinforcing blocks 306 are threadedly fixed to the auxiliary support rod 308 by the two locking shafts 307. The auxiliary support rod 308 is movably connected to the LED tube 309. The bottom of the two auxiliary support rods 308 contacts the top of the support plate 313.
[0028] The process involves moving the second moving block 304 along the second guide rail 303, adjusting the distance between the two second support rods 305 according to the width of the operating well, and then re-fixing the second moving block 304. The two trapezoidal reinforcing blocks 306 are then placed in suitable positions, typically between the two second support rods 305, ensuring the second support rods 305 are securely installed and perpendicular to the ground. An auxiliary support rod 308 is inserted into the pre-drilled hole in the trapezoidal reinforcing block 306, and the auxiliary support rod 308 is securely fixed to the trapezoidal reinforcing block 306 using the locking shaft 307. The locking shaft 307 is ensured to be fully inserted and in place. Finally, an inspection is performed. The stability of the auxiliary support rod 308 is ensured to support the weight of the workers. The adjustment frame 310 is fixedly connected to the two ends of the second climbing frame 2 away from the second guide rail 303 by threads. The adjustment clamp 311 is slidably connected to the end of the adjustment frame 310 away from the second climbing frame 2. The two adjacent adjustment clamps 311 are connected by fastening bolts to the adjustment support arm 312. The support plate 313 is connected to the end of the adjustment support arm 312 away from the adjustment frame 310 by fastening bolts. The support plate 313 can provide additional support, and its angle can be adjusted by the adjustment clamp 311 and the adjustment support arm 312.
[0029] An adjustable storage component 4 is provided at one end of the first climbing frame 1. The adjustable storage component 4 includes a locking rod 401 located at the end of the first climbing frame 1 away from the second climbing frame 2, a first universal joint 402 at the end of the locking rod 401 away from the first climbing frame 1, a cross shaft 403 connected to the inner side of the first universal joint 402, a second universal joint 405 connected to the end of the cross shaft 403 away from the first universal joint 402, a movable ball 404 connected to the outer wall of the cross shaft 403, and a storage box 406 connected to the second universal joint 405 via a connecting rod.
[0030] As a preferred embodiment of this utility model, the locking rod 401 is rotatably connected to the first universal joint 402, the first universal joint 402 is threadedly fixedly connected to the second universal joint 405 through the cross shaft 403, the cross shaft 403 is rotatably connected to the movable ball 404, and the second universal joint 405 is threadedly fixedly connected to the storage box 406 through the connecting rod.
[0031] The storage box 406 is connected to the first climbing frame 1 via a combination of the first universal joint 402, the cross shaft 403, and the second universal joint 405. After adjusting the angle, the first universal joint 402 is firmly fixed to the first climbing frame 1 by the locking rod 401. Measuring tools or other items that need to be stored are placed inside the storage box 406, ensuring that the lid or door of the storage box 406 is closed to prevent items from falling out.
[0032] The top of the first climbing frame 1 is connected to an auxiliary handle 6 by fastening bolts. Both ends of the auxiliary handle 6 are fitted with trapezoidal blocks 5 by connecting plates. The tops of the two trapezoidal blocks 5 are connected to warning signs by connecting rods. One end of the inner side of the first climbing frame 1 is provided with a first guide rail 7. The inner sides of the two first guide rails 7 are fitted with first moving blocks 8. One end of the first moving block 8 is fitted with a first support rod 9. The inner sides of the first climbing frame 1 and the second climbing frame 2 are provided with adjustment grooves 10. Multiple first support rods 9 and second support rods 305 are respectively installed on the inner sides of the first climbing frame 1 and the second climbing frame 2 by fastening bolts.
[0033] The process involves locating the first guide rail 7 on the inner side of the first climbing frame 1, moving the first moving block 8 along the first guide rail 7 to adjust it to a suitable position, and then re-fixing the first moving block 8 to ensure that the first support rod 9 is securely installed and perpendicular to the ground. The trapezoidal block 5 is then installed to both ends of the auxiliary handle 6 via the connecting plate, and the warning sign is installed to the top of the trapezoidal block 5 via the connecting rod, ensuring that the content of the warning sign is clearly visible and can effectively remind surrounding personnel to pay attention to safety.
[0034] It should be noted that this utility model is a safety measuring device for gas station operating wells. In use, by loosening the locking bolt 302, the locking block 301 is released from the adjusting groove 10, thereby folding the first climbing frame 1 and the second climbing frame 2 for easy storage and transportation. The first climbing frame 1 and the second climbing frame 2 are then unfolded to the required length, and the locking bolt 302 is used to fix the locking block 301 in the adjusting groove 10 to ensure the stability of the climbing frame. Depending on the depth of the operating well, the positions of the first support rod 9 and the second support rod 305 on the first climbing frame 1 and the second climbing frame 2 are adjusted to accommodate wellheads of different depths. The first support rod 9 is positioned via the first guide rail 7 and the first moving block 8, and the second support rod 305 is positioned via the second guide rail 303 and the second moving block 304. The distance between the second support rods 305 is adjusted by the movement of the second moving block 304 within the second guide rail 303 to accommodate wellheads of different widths. The trapezoidal reinforcing block 306 uses the locking shaft 307 to support the auxiliary support rods. 308 is locked in place, providing a stable support platform for easy stepping by workers. The LED light tube 309 provides illumination when there is insufficient light inside the well, assisting workers in their work, preventing them from falling into the ground, and improving safety. The adjusting clamp 311 near the adjusting frame 310 slides on the inner wall. The adjusting arm 312 drives the adjusting clamp 311 to adjust the angle of the support plate 313, supporting the support plate 313. Its top contacts the bottom of the two auxiliary support rods 308 for support. The angle of the storage box 406 is adjusted by a combination of the first universal joint 402, the cross shaft 403, the second universal joint 405, and the movable ball 404. Large angle adjustment is achieved by rotating the first universal joint 402, and small angle fine adjustment is achieved by rotating the movable ball 404. The locking rod 401 fixes the first universal joint 402 to one end of the first climbing frame 1, ensuring that the storage box 406 is stable in the required position. The storage box 406 is used to store measuring tools, making it convenient for workers to access and store them.
[0035] Principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A filling station operating well safety measuring device, comprising a first climbing frame (1), a second climbing frame (2), characterized in that: One end of the second climbing frame (2) is provided with a measuring auxiliary assembly (3); The measuring auxiliary assembly (3) comprises a clamping block (301) arranged at one end of the second climbing frame (2) close to the first climbing frame (1), lock bolts (302) connected to both ends of the second climbing frame (2), a second guide rail (303) connected to one end of the inner side of the second climbing frame (2), second moving blocks (304) formed in the inner walls of the second guide rail (303), a second support rod (305) installed between the two second moving blocks (304), trapezoidal reinforcing blocks (306) connected to both ends of the top of the second support rod (305), lock shafts (307) connected to one end of the two trapezoidal reinforcing blocks (306) through fastening bolts, auxiliary support rods (308) connected to one end of the two lock shafts (307) away from the trapezoidal reinforcing blocks (306), LED lamp tubes (309) installed on both ends of the outer walls of the two auxiliary support rods (308), and adjustment frames (310) threadedly and fixedly connected to both ends of the second climbing frame (2) away from the second guide rail (303).
2. A fuel dispensing site operating well safety measurement device according to claim 1, wherein: One end of the first climbing frame (1) is provided with an adjustable storage assembly (4), the adjustable storage assembly (4) comprises a locking rod (401) arranged at one end of the first climbing frame (1) away from the second climbing frame (2), a first universal joint (402) at one end of the locking rod (401) away from the first climbing frame (1), a cross shaft (403) connected to the inner side of the first universal joint (402), a second universal joint (405) connected to one end of the cross shaft (403) away from the first universal joint (402), a movable ball (404) connected to the outer wall of the cross shaft (403), and a storage box (406) connected to the second universal joint (405) through a connecting rod.
3. A fuel dispensing site operating well safety measurement device according to claim 1, wherein: The top of the first climbing frame (1) is connected to an auxiliary handle (6) through fastening bolts, trapezoidal clamping blocks (5) are installed on both ends of the auxiliary handle (6) through connecting plates, warning signs are connected to the top of the two trapezoidal clamping blocks (5) through connecting rods, first guide rails (7) are arranged at one end of the inner side of the first climbing frame (1), and first moving blocks (8) are clamped to the inner sides of the two first guide rails (7).
4. A well site operating well safety measurement apparatus according to claim 3, wherein: One end of the first moving block (8) is provided with a first support rod (9), and adjustment grooves (10) are formed in the inner sides of the first climbing frame (1) and the second climbing frame (2). The inner sides of the first climbing frame (1) and the second climbing frame (2) are respectively provided with a plurality of first support rods (9) and second support rods (305) through fastening bolts.
5. A fuel dispensing site operating well safety measurement device according to claim 1, wherein: The clamping block (301) is fixedly connected with the first climbing frame (1) through the locking bolt (302) and the sliding groove thread, the second climbing frame (2) is fixedly connected through the clamping block (301) and the locking bolt (302), and the two second guide rails (303) are movably connected with the adjusting groove (10) of the inner side of the second climbing frame (2) through the fastening bolt.
6. A fuel dispensing site operating well safety measurement device according to claim 1, wherein: The second supporting rod (305) is fixedly connected with the two trapezoidal reinforcing blocks (306) through threads, the two trapezoidal reinforcing blocks (306) are fixedly connected with the auxiliary supporting rod (308) through the two locking shafts (307), the auxiliary supporting rod (308) is movably connected with the LED lamp tube (309), and the bottom of the two auxiliary supporting rods (308) is in contact with the top of the supporting plate (313).
7. A fuel dispensing site operating well safety measurement apparatus according to claim 2, wherein: The locking rod (401) is rotatably connected with the first universal joint (402), the first universal joint (402) is fixedly connected with the second universal joint (405) through a cross shaft (403), the cross shaft (403) is rotatably connected with the movable ball (404), and the second universal joint (405) is fixedly connected with the storage box (406) through a connecting rod.