Carbon monitoring data acquisition equipment

By designing carbon monitoring data acquisition equipment for back frame and rotary calibration mechanism, the problem of insufficient portability of existing equipment is solved, and flexible portable and directional rotation functions are realized without handheld, adapting to various operating modes.

CN223259700UActive Publication Date: 2025-08-22SHANDONG WANQING ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202422463677.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-12
Publication Date
2025-08-22
Estimated Expiration
2034-10-12

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Abstract

The utility model discloses carbon monitoring data acquisition equipment, and relates to the technical field of gas data acquisition, a rotary position correction mechanism is arranged at the upper end of a bracket of a back frame, a data acquisition unit is arranged above a supporting table of the rotary position correction mechanism, a back plate of the bracket of the back frame is provided with straps, and the back plate of the bracket of the back frame is provided with a power supply. And the front plate of the bracket of the back frame is provided with a tightening belt for annularly sleeving the data collector. Based on the combination of the back frame and the straps, acquisition equipment can be carried and used in a front-back mode, two hands of a worker do not need to be occupied, flexibility and portability are better, and when the acquisition equipment is carried and used in the front-back mode, directional deflection adjustment is conducted on the inclination angle of the data acquisition unit based on directional rotation of the rotary position correction mechanism so as to keep a proper angle, and the data acquisition equipment is convenient to carry and use. The portable carbon monitoring data acquisition device is simple in structure, convenient for workers to operate and observe, capable of flexibly acquiring carbon monitoring data on site in a portable operation mode, better in portability and usability, better in flexible adaptability and capable of being adapted to different workers to operate and use.
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Description

Technical Field

[0001] The utility model relates to the field of gas data collection, in particular to a carbon monitoring data collection device. Background Art

[0002] Carbon monitoring is a carbon measurement technology that primarily monitors greenhouse gas emissions from typical sources, such as energy activities and industrial processes, through manual or automatic monitoring methods. Existing carbon data monitoring often uses corresponding data collection equipment for data collection, such as a carbon monitoring data collection device disclosed on the China Patent Network (publication announcement number CN219104871U). During use, this type of device opens a door to expose a fixing device, and then fixes the monitoring probe to the fixing device. This eliminates the need for workers to manually remove the monitoring probe during work, reducing the limitations of the equipment while also reducing manpower and material costs.

[0003] However, the aforementioned patents and existing carbon monitoring data collection devices still have some shortcomings: the existing method of fixing the monitoring probe and the monitoring instrument together to free the hands for data monitoring and collection still requires handheld operation to monitor carbon content at different locations, which is not flexible and portable enough. To address this issue, those skilled in the art have provided a carbon monitoring data collection device to address the problems raised in the above background technology. Utility Model Content

[0004] In view of the deficiencies of the existing technology, the present invention provides a carbon monitoring data collection device, which solves the problem that the existing carbon monitoring data collection device proposed in the above background technology is not flexible and portable enough in use and is not efficient enough.

[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions: A carbon monitoring data acquisition device includes a back frame;

[0006] The upper end of the support frame of the backpack is provided with a rotation calibration mechanism, and a data collector is provided above the support platform of the rotation calibration mechanism;

[0007] The back plate of the back frame is provided with a shoulder strap, and the front plate of the back frame is provided with a tightening belt for encircling the data collector;

[0008] The rotation calibration mechanism includes a rotating seat symmetrically arranged on both sides of the back frame bracket and a locking seat arranged in the middle of the back frame bracket. The support of the rotating seat is rotatably connected to a rotating shaft inside, and a support platform supporting a data collector is arranged on the outside of the shaft of the rotating shaft, and a locking opening and closing component opposite to the locking seat is arranged in the middle of the shaft of the rotating shaft.

[0009] As a further technical solution of the present invention: the locking opening and closing assembly includes a locking gear sleeve arranged inside the locking seat and a brake sleeve arranged in the middle of the rotating shaft shaft, the brake sleeve is rotatably connected to the inside of the cylinder sleeve, and the outer side of the brake screw shaft is symmetrically sleeved with two groups of transmission sleeves, the outer sides of the sleeves of the two groups of transmission sleeves are symmetrically connected with arm force support rods, and the top end of the arm rod of each group of arm force support rods is connected to a locking gear seat engaged with the locking gear sleeve.

[0010] As a further technical solution of the present invention: a brake shaft passing through the rotating shaft is provided at one end of the shaft of the brake screw, and a locking handwheel is provided at the other end of the shaft of the brake shaft. The brake screw is bounded by the center line, and positive and negative thread teeth that are compatible with two sets of transmission thread sleeves are symmetrically provided on both sides of the center line.

[0011] As a further technical solution of the present invention: a rotating handwheel is provided at one end of the shaft of the rotating shaft.

[0012] As a further technical solution of the present invention: the tightening belt and the shoulder strap are both elastic belts.

[0013] As a further technical solution of the present invention: the data collector includes a device collection body, a collection probe arranged on the upper end of the device collection body, and an electric control panel arranged on the back panel of the device collection body.

[0014] The present invention provides a carbon monitoring data collection device, which has the following advantages compared with the prior art:

[0015] The carbon monitoring data acquisition device designed in this invention is based on a combination of a backpack and a shoulder strap. The acquisition device can be carried in front of the back without occupying the hands of the staff, and has better portability. While being carried in front of the back, the tilt angle of the data collector is directional-adjusted based on the directional rotation of the rotary calibration mechanism to maintain a suitable angle, which is convenient for the staff to operate and observe. In a portable operation mode, the carbon monitoring data can be flexibly collected on site. While having better portability and usability, it is more flexible and adaptable and can be adapted to the operation and use of different staff. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a structural diagram of a carbon monitoring data collection device;

[0017] Figure 2 This is a schematic diagram of an expanded carbon monitoring data collection device;

[0018] Figure 3 This is a structural diagram of a rotary calibration mechanism in a carbon monitoring data acquisition device;

[0019] Figure 4 This is a structural schematic diagram of a locking and opening and closing component in a carbon monitoring data acquisition device.

[0020] In the figure: 1. Back frame; 2. Tightening belt; 3. Shoulder strap; 4. Rotating seat; 5. Locking seat; 6. Locking handwheel; 7. Rotating handwheel; 8. Support platform; 9. Data collector; 91. Equipment collection body; 92. Collection probe; 93. Electric control panel; 10. Rotating shaft; 11. Brake sleeve; 12. Locking gear sleeve; 13. Brake shaft; 14. Brake screw; 15. Transmission screw sleeve; 16. Arm support rod; 17. Locking gear seat. DETAILED DESCRIPTION

[0021] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0022] See also Figure 1-4 The utility model provides a technical solution for a carbon monitoring data collection device: a carbon monitoring data collection device, comprising a backpack 1, a back plate of the backpack 1 being provided with a shoulder strap 3, and a front plate of the backpack 1 being provided with a tightening belt 2 for looping a data collector 9, the tightening belt 2 and the shoulder strap 3 being both elastic belts, the tightening belt 2 being used to position the hoop of the data collector 9, which is opened when in use and re-hooped after use for easy backpack carrying, and the shoulder strap 3 being used by the staff to operate and use it in a front-carrying manner, or to carry it in a back-carrying manner.

[0023] The upper end of the back frame 1 is provided with a rotation calibration mechanism, which includes a rotating seat 4 symmetrically arranged on both sides of the back frame 1 and a locking seat 5 arranged in the middle of the back frame 1. The support of the rotating seat 4 is internally connected to a rotating shaft 10, and a support platform 8 supporting a data collector 9 is provided on the outside of the shaft of the rotating shaft 10, and a locking opening and closing component opposite to the locking seat 5 is provided in the middle of the shaft of the rotating shaft 10. The locking opening and closing component includes a locking gear sleeve 12 arranged inside the locking seat 5 and a brake sleeve 11 arranged in the middle of the shaft of the rotating shaft 10. The cylinder sleeve of the brake sleeve 11 is internally connected to a brake screw 14, and the outside of the shaft of the brake screw 14 is rotatable. Two groups of transmission wire sleeves 15 are symmetrically provided, one end of the shaft of the brake screw 14 is provided with a brake shaft 13 that passes through the rotating shaft 10, and the other end of the shaft of the brake shaft 13 is provided with a locking handwheel 6. The brake screw 14 is bounded by the center line, and the two sides of the center line are symmetrically provided with positive and negative threads that are compatible with the two groups of transmission wire sleeves 15. By fixing the rotating handwheel 7 with one hand to limit and fix the rotating shaft 10, and using the other hand to rotate the combination of the locking handwheel 6 and the brake shaft 13, the brake screw 14 is driven to rotate, and its positive and negative threads are used to push the two groups of transmission wire sleeves 15 on the outside of its shaft to slide symmetrically along the locking gear sleeve 12 as a braking source to drive the locking opening and closing assembly to lock and open.

[0024] The outer sides of the shaft sleeves of the two groups of transmission wire sleeves 15 are connected with arm force support rods 16 in a symmetrical manner, and the top end of the arm rod of each group of arm force support rods 16 is connected with a locking gear seat 17 that meshes with the locking gear sleeve 12. When the transmission wire sleeves 15 slide symmetrically, they push the arm force support rods 16 to rotate diagonally, converting the horizontal tension into longitudinal tension, pulling the locking gear seat 17 away from the locking gear sleeve 12, and releasing the locked fixed state, so as to facilitate the regulation of the swing angle of the data collector 9 and facilitate the operation and use by the staff.

[0025] A rotating handwheel 7 is provided at one end of the shaft of the rotating shaft 10. After the locking and opening and closing assembly is unlocked, the combination of the rotating handwheel 7 and the rotating shaft 10 is rotated to push the data collector 9 on the support platform 8 to rotate and swing, and the electric control panel 93 on the data collector 9 is rotated to a certain angle to expose the electric control panel 93 for easy operation by the staff. After the angle adjustment is completed, the locking and opening and closing assembly can be locked again.

[0026] A data collector 9 is provided above the support platform of the rotation calibration mechanism. The data collector 9 includes an equipment collection body 91, a collection probe 92 provided on the upper end of the equipment collection body 91, and an electrical control panel 93 provided on the back panel of the equipment collection body 91. By providing the collection probe 92 on the data collector 9, when the staff carries the collection equipment to move, the collection probe 92 is used to perform mobile data collection work, and by providing the electrical control panel 93 on the data collector 9, it is convenient for the staff to operate and use the collection equipment.

[0027] The working principle of the present invention is as follows: when using the carbon monitoring data acquisition device to monitor and collect carbon content, the staff can carry the strap 3 on their back and place the data collector 9 on their chest. Then, they can fix the rotating hand wheel 7 with one hand to limit and fix the rotating shaft 10, and use the other hand to rotate the combination of the locking hand wheel 6 and the brake shaft 13 to drive the brake screw 14 to rotate. The two sets of transmission wire sleeves 15 on the outer side of the shaft are pushed symmetrically along the locking gear sleeve 12 by using the positive and negative thread teeth. While the transmission wire sleeve 15 slides symmetrically, it pushes The arm support rod 16 rotates diagonally to convert the horizontal tension into a longitudinal tension, pulling the locking gear seat 17 away from the locking gear sleeve 12 to release the locked fixed state. After further unlocking the locking opening and closing component, the combination of the rotating hand wheel 7 and the rotating shaft 10 is rotated to push the data collector 9 on the support platform 8 to rotate and swing, and the electric control panel 93 on the data collector 9 is rotated to a certain angle to expose the electric control panel 93 for easy operation by the staff. After the angle adjustment is completed, the locking opening and closing component can be locked again.

[0028] After the data collector 9 is turned on, the staff can carry the data collection device on their backs and move it flexibly to monitor the carbon content data. It is more portable and more adaptable, and can be adapted to the operation and use of different staff. After use, the data collection device can be carried on the back.

[0029] The above description is merely a preferred embodiment of the present invention. It should be noted that those skilled in the art may make various improvements and modifications without departing from the principles of the present invention, and such improvements and modifications should be considered within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described or explained in this invention shall, unless otherwise specified or limited, be implemented in accordance with conventional means in the art.

Claims

1. A carbon monitoring data collection device, characterized in that: including a back frame (1); A rotation calibration mechanism is provided at the upper end of the support of the back frame (1), and a data collector (9) is provided above the support platform of the rotation calibration mechanism; The back plate of the back frame (1) is provided with a shoulder strap (3), and the front plate of the back frame (1) is provided with a tightening belt (2) for the loop data collector (9); The rotation calibration mechanism comprises a rotating seat (4) symmetrically arranged on both sides of the back frame (1) bracket and a locking seat (5) arranged in the middle of the back frame (1) bracket, the support of the rotating seat (4) is rotatably connected to a rotating shaft (10), a support platform (8) supporting a data collector (9) is arranged on the outside of the shaft of the rotating shaft (10), and a locking opening and closing component opposite to the locking seat (5) is arranged in the middle of the shaft of the rotating shaft (10).

2. A carbon monitoring data acquisition device according to claim 1, characterized in that: The locking opening and closing assembly comprises a locking tooth sleeve (12) arranged inside the locking seat (5) and a brake sleeve (11) arranged in the middle of the shaft of the rotating shaft (10), the cylinder sleeve of the brake sleeve (11) is rotatably connected to a brake screw (14), and the outer side of the shaft of the brake screw (14) is symmetrically sleeved with two groups of transmission wire sleeves (15), the outer sides of the shaft sleeves of the two groups of transmission wire sleeves (15) are symmetrically connected to arm force support rods (16), and the top end of the arm of each group of arm force support rods (16) is connected to a locking tooth seat (17) meshing with the locking tooth sleeve (12).

3. The carbon monitoring data collection device according to claim 2, characterized in that: A brake shaft (13) passing through the rotating shaft (10) is provided at one end of the shaft of the brake screw (14), and a locking handwheel (6) is provided at the other end of the shaft of the brake shaft (13). The brake screw (14) is bounded by a center line, and positive and negative thread teeth adapted to two sets of transmission thread sleeves (15) are symmetrically provided on both sides of the center line.

4. The carbon monitoring data collection device according to claim 1, characterized in that: A rotating hand wheel (7) is provided at one end of the shaft of the rotating shaft (10).

5. The carbon monitoring data collection device according to claim 1, characterized in that: The tightening belt (2) and the shoulder strap (3) are both elastic belts.

6. The carbon monitoring data collection device according to claim 1, characterized in that: The data collector (9) comprises a device collection body (91), a collection probe (92) arranged on the upper end of the device collection body (91), and an electric control panel (93) arranged on the back panel of the device collection body (91).

Citation Information

Patent Citations

  • Carbon monitoring data acquisition equipment

    CN219104871U