Multi-angle coverage oil field visual video monitoring device and monitoring method
By designing a multi-angle-covered oilfield visual video monitoring device, the problem of inconvenience in full-angle coverage and maintenance in the prior art is solved, and efficient video monitoring and the effect of reducing maintenance costs is achieved.
Patent Information
- Application Number
- CN202311667555.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-06
- Publication Date
- 2025-06-06
AI Technical Summary
The existing oilfield visual video monitoring devices cannot achieve full-angle coverage without blind spots, and are inconvenient to maintain, resulting in high maintenance costs.
A multi-angle-covered oilfield visual video monitoring device is designed, including multiple display components, support components, communication components and control components. The display components are distributed in a rectangular array, the support components are used to install and maintain the display components, the communication components are used to receive and process video signals, and the control components are used to integrate and send video data.
Multi-angle coverage of oilfield video monitoring has been achieved, reducing the labor intensity of staff and improving the convenience and cost-effectiveness of maintenance.
Smart Images

Figure CN120111292A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of oilfield video monitoring equipment, and more specifically, to a multi-angle covered oilfield visual video monitoring device and a monitoring method. Background Art
[0002] At present, the overall safety production situation in my country's oil and gas industry is improving, but it is still in a period of frequent accidents, prone to occurrence and strict supervision. The state and local governments require enterprises to establish a dual prevention mechanism, innovate safety technologies and management methods, promote the integrated application of industrial Internet in safety production, and improve the safety development level of oil and gas fields. In recent years, the new generation of information technology represented by big data, cloud computing, and artificial intelligence has developed rapidly, and has become an important guarantee for changing production organization methods, reducing safety risks, and improving production efficiency. It has provided a solid foundation for the in-depth research and application of digital and intelligent safety technologies.
[0003] However, the existing oilfield visual video monitoring device cannot achieve full-angle coverage without blind spots when in use, and it is inconvenient to replace and maintain the visual display screen. Therefore, we propose a multi-angle coverage oilfield visual video monitoring device and monitoring method to solve the above problems. Summary of the invention
[0004] 1. Technical issues to be solved
[0005] In view of the problems existing in the prior art, the purpose of the present invention is to provide an oilfield visual video monitoring device and monitoring method with multi-angle coverage, which can not only facilitate the staff to view the video screens of various locations in the oilfield with multi-angle coverage, but also facilitate the staff to maintain it, thereby reducing the maintenance cost.
[0006] 2. Technical solution
[0007] To solve the above problems, the present invention adopts the following technical solutions.
[0008] A multi-angle coverage oilfield visual video monitoring device, comprising:
[0009] A display component, wherein a plurality of the display components are provided and the plurality of the display components are distributed in a rectangular array, and the display component is used to display oil field on-site videos at multiple angles;
[0010] A support assembly, the support assembly is arranged outside the display assembly, and the support assembly is used to install multiple display assemblies;
[0011] A communication component, the communication component is arranged at an upper middle position on one side of the back of the support component, and the communication component is used to receive oilfield video signals;
[0012] A control component is arranged at one side of the bottom back of the support component, and is used to process the oilfield video signal received by the communication component and send it to each display component.
[0013] Furthermore, the display assembly includes a display screen, a limiting portion is fixedly arranged in the middle of the back of the display screen, and the limiting portion is connected to the supporting assembly;
[0014] The limiting part comprises a positioning plate arranged in the middle of the back of the display screen, and a supporting block is fixedly arranged in the middle of the positioning plate, and a mortise and tenon groove is provided on one side wall of the supporting block at a lower middle position.
[0015] Furthermore, the support assembly includes a positioning frame, the inner cavity of the positioning frame is provided with three cross bars, and the three cross bars are distributed in parallel in the transverse direction, each cross bar surface is provided with a plug-in portion, and the plug-in portion is connected to the limiting portion;
[0016] Each of the crossbars is provided with vertical poles at the top and bottom, a stabilizing frame is fixedly provided on one side of the bottom of the positioning frame, and wheels are provided at the four corners of the bottom surface of the stabilizing frame.
[0017] Furthermore, the plug-in portion includes a tenon disposed on the surface of the crossbar, and one end of the crossbar is plug-connected to the tenon groove.
[0018] Furthermore, a slot is provided in the middle of the surface of one end of the tenon, and a spring pin is provided in the inner cavity of the slot. A locking hole for engaging the telescopic end of the spring pin is provided in the inner cavity of the tenon slot and in the mating surface of the tenon.
[0019] Furthermore, the support assembly also includes a shielding part, and three shielding parts are provided. The three shielding parts are arranged in the inner cavity of the positioning frame, and both side walls of the inner cavity of the positioning frame are provided with limiting grooves for engaging the two ends of the shielding parts.
[0020] The shielding portion comprises a baffle bar, and buckle grooves are provided on the surface of the baffle bar near both ends.
[0021] Furthermore, grooves are provided on both sides of the back side of the baffle bar and near the end portions, and suction cups are provided in the inner cavities of the grooves.
[0022] Furthermore, the communication component includes a communication antenna, a base is provided on the bottom surface of the communication antenna, and the top end of the base is connected to the top end of the middle part of the back side of the support component.
[0023] Furthermore, the control component includes a storage box and a box door, the inner cavity of the storage box is provided with a PLC controller, the top surface of the storage box is provided with multiple transmission ports, and the multiple transmission ports are electrically connected to the PLC controller, and the surface of the box door is provided with a touch screen.
[0024] A multi-angle coverage oilfield visual video monitoring method includes the following steps:
[0025] S1: First, through the communication component, wireless communication can be established with monitoring equipment deployed in various parts of the oil field, so that monitoring data can be transmitted to the communication component;
[0026] S2: Then, the monitoring data information can be sent to the control component through the communication component, so that the control component can integrate and process the sent data information;
[0027] S3: Then the control component can send the processed monitoring data information of each oil field to the corresponding display component. Since there are multiple display components, the multiple display components can facilitate the staff to split the screen for monitoring of the synchronous position, and then facilitate the staff to view the site in the monitoring center. The whole process does not require personnel patrol, which reduces the labor intensity of the staff;
[0028] S4: Finally, the support component can not only be used to install each display component, communication component and control component, but also facilitate the staff to quickly replace the damaged display component, thereby improving the convenience of its maintenance, so as to save its maintenance cost, and at the same time make it convenient for the staff to move it and use it.
[0029] 3. Beneficial effects
[0030] Compared with the prior art, the advantages of the present invention are:
[0031] In this solution, when visual monitoring of various parts of the oil field is required, the communication component can first be used to wirelessly connect with the monitoring equipment deployed in various parts of the oil field, so that the monitoring data can be transmitted to the communication component, and then the communication component can send the monitoring data information to the control component, so that the control component can integrate and process the sent data information, and then the control component can send the processed monitoring data information of each oil field to the corresponding display component;
[0032] Since there are multiple display components, multiple display components can facilitate the staff to perform split-screen playback for monitoring of synchronized positions, and thus can facilitate the staff to view the site in the monitoring center. The entire process does not require personnel patrols, which reduces the labor intensity of the staff. Through the support components, it can not only play the role of installing each display component, communication component and control component, but also facilitate the staff to quickly replace damaged display components, thereby improving the convenience of its maintenance, so as to save its maintenance costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 It is a structural schematic diagram of the present invention;
[0034] Figure 2 It is a side structural schematic diagram of the present invention;
[0035] Figure 3 It is a schematic diagram of the structure of the display assembly of the present invention;
[0036] Figure 4 It is a schematic diagram of the structure of the limiting part of the present invention;
[0037] Figure 5 It is a schematic diagram of the support assembly structure of the present invention;
[0038] Figure 6 It is a schematic diagram of the exploded structure of the support assembly of the present invention;
[0039] Figure 7 It is a schematic diagram of the structure of the plug-in portion of the present invention;
[0040] Figure 8 It is a schematic diagram of the shielding part structure of the present invention;
[0041] Fig. 9 It is a schematic diagram of the structure of the communication component of the present invention;
[0042] Fig.10 It is a schematic diagram of the control component structure of the present invention.
[0043] Description of the numbers in the figure:
[0044] 1. Display component; 11. Display screen; 12. Limiting part; 121. Positioning plate; 122. Support block; 123. Tenon; 124. Lock hole; 2. Support component; 21. Positioning frame; 22. Cross bar; 23. Connecting part; 231. Tenon; 232. Slot; 233. Spring pin; 24. Vertical pole; 25. Stabilizing frame; 26. Wheel; 27. Limiting groove; 28. Shielding part; 281. Baffle bar; 282. Groove; 283. Suction cup; 284. Buckle groove; 3. Communication component; 31. Communication antenna; 32. Base; 4. Control component; 41. Storage box; 42. Box door; 43. PLC controller; 44. Transmission port; 45. Touch screen. DETAILED DESCRIPTION
[0045] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention; it is obvious that the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments, and all other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making creative work are within the scope of protection of the present invention.
[0046] Embodiment 1:
[0047] See also Figure 1-2 , a multi-angle covered oilfield visual video monitoring device, comprising: a display component 1, a plurality of display components 1 are provided, and the plurality of display components 1 are distributed in a rectangular array, and the display component 1 is used to display oilfield on-site videos at multiple angles; a support component 2, the support component 2 is provided outside the display component 1, and the support component 2 is used to install the plurality of display components 1; a communication component 3, the communication component 3 is provided at an upper middle position on one side of the back of the support component 2, and the communication component 3 is used to receive oilfield video signals; a control component 4, the control component 4 is provided on one side of the bottom of the back of the support component 2, and the control component 4 is used to process the oilfield video signals received by the communication component 3, and send them to each display component 1;
[0048] When visual monitoring of various locations in the oil field is required, first, the communication component 3 can be used to wirelessly connect with the monitoring equipment deployed in various locations in the oil field, so that the monitoring data can be transmitted to the communication component 3, and then the monitoring data information can be sent to the control component 4 through the communication component 3, so that the control component 4 can integrate and process the sent data information, and then the control component 4 can send the processed oil field monitoring data information to the corresponding display component 1. Since there are multiple display components 1, multiple display components 1 can facilitate the staff to perform split-screen playback for the monitoring of the synchronized position, and then facilitate the staff to view the site in the monitoring center. The whole process does not require personnel inspection, which reduces the labor intensity of the staff. The support component 2 can not only play the installation of each display component 1, communication component 3 and control component 4, but also facilitate the staff to quickly replace the damaged display component 1, thereby improving the convenience of its maintenance, so as to save its maintenance cost.
[0049] See also Figure 1 , Figure 3 and Figure 4 The display assembly 1 includes a display screen 11, a limiting portion 12 is fixedly arranged at the middle of the back of the display screen 11, and the limiting portion 12 is connected to the supporting assembly 2; the limiting portion 12 includes a positioning plate 121 arranged at the middle of the back of the display screen 11, and a supporting block 122 is fixedly arranged at the middle of the positioning plate 121, and a mortise and tenon groove 123 is opened at a lower middle position on one side wall of the supporting block 122;
[0050] Through the display screen 11 in the display component 1, the data information sent by the control component 4 can be received and presented, so that the staff can view it conveniently, and the positioning plate 121 can be installed at the same time, and then the support block 122 can be installed and fixed through the positioning plate 121, and then the support block 122 can be connected to the support component 2 through the mortise and tenon 123. Therefore, when the display screen 11 needs to be disassembled, the display screen 11 can be removed by sliding the display screen 11 upwards, so as to improve the convenience of disassembly and maintenance of the display screen 11.
[0051] See also Figure 2 , Figure 4-Figure 7The support assembly 2 includes a positioning frame 21, and the inner cavity of the positioning frame 21 is provided with three cross bars 22, and the three cross bars 22 are distributed in parallel in the transverse direction, and the surface of each cross bar 22 is provided with a plug-in portion 23, and the plug-in portion 23 is connected to the limiting portion 12; each cross bar 22 is provided with a vertical rod 24 at the top and bottom, and a stabilizing frame 25 is fixedly provided on one side of the bottom of the positioning frame 21, and wheels 26 are provided at the four corners of the bottom surface of the stabilizing frame 25, and the plug-in portion 23 includes a tenon 231 provided on the surface of the cross bar 22, and one end of the cross bar 22 is plugged and connected with the tenon groove 123, and a card slot 232 is provided in the middle position of the surface of one end of the tenon 231, and a spring pin 233 is provided in the inner cavity of the card slot 232, and a lock hole 124 for locking the telescopic end of the spring pin 233 is provided in the inner cavity of the tenon groove 123 and the fitting surface with the tenon 231;
[0052] Through the positioning frame 21 in the support assembly 2, multiple plug-in parts 23 can be installed through three cross bars 22, and the wheels 26 can be installed through the stabilizing frame 25. Then the tenon 231 on each plug-in part 23 can be conveniently plugged into the tenon groove 123 by the staff, so as to achieve the purpose of installing and supporting the display screen 11, thereby improving the stability of the display screen 11. When the tenon 231 is plugged into the tenon groove 123, the telescopic end of the spring pin 233 on the tenon 231 can be engaged with the lock hole 124 in the inner cavity of the tenon groove 123, thereby enabling the tenon 231 to limit the support block 122, so as to reduce the support block 122 from falling off the tenon 231, thereby ensuring the stability of the installation of the display screen 11.
[0053] See also Figure 2 , Fig. 9 The communication component 3 includes a communication antenna 31, a base 32 is provided on the bottom surface of the communication antenna 31, and the top of the base 32 is connected to the top of the middle part of the back of the support component 2;
[0054] Through the communication antenna 31 in the communication component 3, wireless communication can be achieved with the monitoring equipment deployed in various places in the oil field, so that the monitoring data can be transmitted to the communication antenna 31, and then through the communication antenna 31, the monitoring data information can be sent to the control component 4, thereby completing the data transmission. Through the base 32, the communication antenna 31 can be fixed at the top position in the middle of the back side of the support component 2, thereby improving the stability of the use of the communication antenna 31.
[0055] See also Figure 2 , Fig.10 The control component 4 includes a storage box 41 and a box door 42. A PLC controller 43 is disposed in the inner cavity of the storage box 41. A plurality of transmission ports 44 are disposed on the top surface of the storage box 41, and the plurality of transmission ports 44 are electrically connected to the PLC controller 43. A touch screen 45 is disposed on the surface of the box door 42.
[0056] Through the storage box 41 and the box door 42 in the control component 4, the PLC controller 43 can be protected, and multiple transmission ports 44 and the touch screen 45 can be installed. Then, through the PLC controller 43, the data information sent by the communication antenna 31 can be received, and the received data information can be processed. The processed data is then sent to each display screen 11 through multiple transmission ports 44, which makes it convenient for the staff to view. Through the touch screen 45, the staff can debug each display screen 11 and the communication antenna 31 through the PLC controller 43, thereby improving the convenience of using the equipment.
[0057] Embodiment 2:
[0058] See also Figure 1-2 , a multi-angle covered oilfield visual video monitoring device, comprising: a display component 1, a plurality of display components 1 are provided, and the plurality of display components 1 are distributed in a rectangular array, and the display component 1 is used to display oilfield on-site videos at multiple angles; a support component 2, the support component 2 is provided outside the display component 1, and the support component 2 is used to install the plurality of display components 1; a communication component 3, the communication component 3 is provided at an upper middle position on one side of the back of the support component 2, and the communication component 3 is used to receive oilfield video signals; a control component 4, the control component 4 is provided on one side of the bottom of the back of the support component 2, and the control component 4 is used to process the oilfield video signals received by the communication component 3, and send them to each display component 1;
[0059] When visual monitoring of various locations in the oil field is required, first, the communication component 3 can be used to wirelessly connect with the monitoring equipment deployed in various locations in the oil field, so that the monitoring data can be transmitted to the communication component 3, and then the monitoring data information can be sent to the control component 4 through the communication component 3, so that the control component 4 can integrate and process the sent data information, and then the control component 4 can send the processed oil field monitoring data information to the corresponding display component 1. Since there are multiple display components 1, multiple display components 1 can facilitate the staff to perform split-screen playback for the monitoring of the synchronized position, and then facilitate the staff to view the site in the monitoring center. The whole process does not require personnel inspection, which reduces the labor intensity of the staff. The support component 2 can not only play the installation of each display component 1, communication component 3 and control component 4, but also facilitate the staff to quickly replace the damaged display component 1, thereby improving the convenience of its maintenance, so as to save its maintenance cost.
[0060] See also Figure 1 , Figure 3 and Figure 4The display assembly 1 includes a display screen 11, a limiting portion 12 is fixedly arranged at the middle of the back of the display screen 11, and the limiting portion 12 is connected to the supporting assembly 2; the limiting portion 12 includes a positioning plate 121 arranged at the middle of the back of the display screen 11, and a supporting block 122 is fixedly arranged at the middle of the positioning plate 121, and a mortise and tenon groove 123 is opened at a lower middle position on one side wall of the supporting block 122;
[0061] Through the display screen 11 in the display component 1, the data information sent by the control component 4 can be received and presented, so that the staff can view it conveniently, and the positioning plate 121 can be installed at the same time, and then the support block 122 can be installed and fixed through the positioning plate 121, and then the support block 122 can be connected to the support component 2 through the mortise and tenon 123. Therefore, when the display screen 11 needs to be disassembled, the display screen 11 can be removed by sliding the display screen 11 upwards, so as to improve the convenience of disassembly and maintenance of the display screen 11.
[0062] See also Figure 2 , Figure 4-Figure 7 The support assembly 2 includes a positioning frame 21, and the inner cavity of the positioning frame 21 is provided with three cross bars 22, and the three cross bars 22 are distributed in parallel in the transverse direction, and the surface of each cross bar 22 is provided with a plug-in portion 23, and the plug-in portion 23 is connected to the limiting portion 12; each cross bar 22 is provided with a vertical rod 24 at the top and bottom, and a stabilizing frame 25 is fixedly provided on one side of the bottom of the positioning frame 21, and wheels 26 are provided at the four corners of the bottom surface of the stabilizing frame 25, and the plug-in portion 23 includes a tenon 231 provided on the surface of the cross bar 22, and one end of the cross bar 22 is plugged and connected with the tenon groove 123, and a card slot 232 is provided in the middle position of the surface of one end of the tenon 231, and a spring pin 233 is provided in the inner cavity of the card slot 232, and a lock hole 124 for locking the telescopic end of the spring pin 233 is provided in the inner cavity of the tenon groove 123 and the fitting surface with the tenon 231;
[0063] Through the positioning frame 21 in the support assembly 2, multiple plug-in parts 23 can be installed through three cross bars 22, and the wheels 26 can be installed through the stabilizing frame 25. Then the tenon 231 on each plug-in part 23 can be conveniently plugged into the tenon groove 123 by the staff, so as to achieve the purpose of installing and supporting the display screen 11, thereby improving the stability of the display screen 11. When the tenon 231 is plugged into the tenon groove 123, the telescopic end of the spring pin 233 on the tenon 231 can be engaged with the lock hole 124 in the inner cavity of the tenon groove 123, thereby enabling the tenon 231 to limit the support block 122, so as to reduce the support block 122 from falling off the tenon 231, thereby ensuring the stability of the installation of the display screen 11.
[0064] See also Figure 6 , Figure 8The support assembly 2 further includes a shielding portion 28, and three shielding portions 28 are provided. The three shielding portions 28 are arranged in the inner cavity of the positioning frame 21, and both side walls of the inner cavity of the positioning frame 21 are provided with limiting grooves 27 for engaging the two ends of the shielding portion 28; the shielding portion 28 includes a blocking bar 281, and buckle grooves 284 are provided on the surface of the blocking bar 281 and near the two ends;
[0065] The baffle 281 in the shielding portion 28 can be plugged into the limiting groove 27 in the inner cavity of the positioning frame 21, so that the upper and lower display screens 11 can be separated and limited. When the damaged display screen 11 needs to be disassembled, at this time, just insert your fingers into the buckle groove 284 of the baffle 281 on the damaged display screen 11, so that the baffle 281 can be pulled out from the limiting groove 27, and then the staff can slide the display screen 11 upwards to separate the tenon 231 from the tenon groove 123, and complete the replacement and maintenance of the damaged display screen 11. When the replacement and maintenance of the display screen 11 is completed, the baffle 281 can be installed back to its original position, thereby improving the convenience of replacing the display screen 11.
[0066] See also Figure 2 , Fig. 9 The communication component 3 includes a communication antenna 31, a base 32 is provided on the bottom surface of the communication antenna 31, and the top of the base 32 is connected to the top of the middle part of the back of the support component 2;
[0067] Through the communication antenna 31 in the communication component 3, wireless communication can be achieved with the monitoring equipment deployed in various places in the oil field, so that the monitoring data can be transmitted to the communication antenna 31, and then through the communication antenna 31, the monitoring data information can be sent to the control component 4, thereby completing the data transmission. Through the base 32, the communication antenna 31 can be fixed at the top position in the middle of the back side of the support component 2, thereby improving the stability of the use of the communication antenna 31.
[0068] See also Figure 2 , Fig.10 The control component 4 includes a storage box 41 and a box door 42. A PLC controller 43 is disposed in the inner cavity of the storage box 41. A plurality of transmission ports 44 are disposed on the top surface of the storage box 41, and the plurality of transmission ports 44 are electrically connected to the PLC controller 43. A touch screen 45 is disposed on the surface of the box door 42.
[0069] Through the storage box 41 and the box door 42 in the control component 4, the PLC controller 43 can be protected, and multiple transmission ports 44 and the touch screen 45 can be installed. Then, through the PLC controller 43, the data information sent by the communication antenna 31 can be received, and the received data information can be processed. The processed data is then sent to each display screen 11 through multiple transmission ports 44, which makes it convenient for the staff to view. Through the touch screen 45, the staff can debug each display screen 11 and the communication antenna 31 through the PLC controller 43, thereby improving the convenience of using the equipment.
[0070] Embodiment 3:
[0071] See also Figure 1-2 , a multi-angle covered oilfield visual video monitoring device, comprising: a display component 1, a plurality of display components 1 are provided, and the plurality of display components 1 are distributed in a rectangular array, and the display component 1 is used to display oilfield on-site videos at multiple angles; a support component 2, the support component 2 is provided outside the display component 1, and the support component 2 is used to install the plurality of display components 1; a communication component 3, the communication component 3 is provided at an upper middle position on one side of the back of the support component 2, and the communication component 3 is used to receive oilfield video signals; a control component 4, the control component 4 is provided on one side of the bottom of the back of the support component 2, and the control component 4 is used to process the oilfield video signals received by the communication component 3, and send them to each display component 1;
[0072] When visual monitoring of various locations in the oil field is required, first, the communication component 3 can be used to wirelessly connect with the monitoring equipment deployed in various locations in the oil field, so that the monitoring data can be transmitted to the communication component 3, and then the monitoring data information can be sent to the control component 4 through the communication component 3, so that the control component 4 can integrate and process the sent data information, and then the control component 4 can send the processed oil field monitoring data information to the corresponding display component 1. Since there are multiple display components 1, multiple display components 1 can facilitate the staff to perform split-screen playback for the monitoring of the synchronized position, and then facilitate the staff to view the site in the monitoring center. The whole process does not require personnel inspection, which reduces the labor intensity of the staff. The support component 2 can not only play the installation of each display component 1, communication component 3 and control component 4, but also facilitate the staff to quickly replace the damaged display component 1, thereby improving the convenience of its maintenance, so as to save its maintenance cost.
[0073] See also Figure 1 , Figure 3 and Figure 4The display assembly 1 includes a display screen 11, a limiting portion 12 is fixedly arranged at the middle of the back of the display screen 11, and the limiting portion 12 is connected to the supporting assembly 2; the limiting portion 12 includes a positioning plate 121 arranged at the middle of the back of the display screen 11, and a supporting block 122 is fixedly arranged at the middle of the positioning plate 121, and a mortise and tenon groove 123 is opened at a lower middle position on one side wall of the supporting block 122;
[0074] Through the display screen 11 in the display component 1, the data information sent by the control component 4 can be received and presented, so that the staff can view it conveniently, and the positioning plate 121 can be installed at the same time, and then the support block 122 can be installed and fixed through the positioning plate 121, and then the support block 122 can be connected to the support component 2 through the mortise and tenon 123. Therefore, when the display screen 11 needs to be disassembled, the display screen 11 can be removed by sliding the display screen 11 upwards, so as to improve the convenience of disassembly and maintenance of the display screen 11.
[0075] See also Figure 2 , Figure 4-Figure 7 The support assembly 2 includes a positioning frame 21, and the inner cavity of the positioning frame 21 is provided with three cross bars 22, and the three cross bars 22 are distributed in parallel in the transverse direction, and the surface of each cross bar 22 is provided with a plug-in portion 23, and the plug-in portion 23 is connected to the limiting portion 12; each cross bar 22 is provided with a vertical rod 24 at the top and bottom, and a stabilizing frame 25 is fixedly provided on one side of the bottom of the positioning frame 21, and wheels 26 are provided at the four corners of the bottom surface of the stabilizing frame 25, and the plug-in portion 23 includes a tenon 231 provided on the surface of the cross bar 22, and one end of the cross bar 22 is plugged and connected with the tenon groove 123, and a card slot 232 is provided in the middle position of the surface of one end of the tenon 231, and a spring pin 233 is provided in the inner cavity of the card slot 232, and a lock hole 124 for locking the telescopic end of the spring pin 233 is provided in the inner cavity of the tenon groove 123 and the fitting surface with the tenon 231;
[0076] Through the positioning frame 21 in the support assembly 2, multiple plug-in parts 23 can be installed through three cross bars 22, and the wheels 26 can be installed through the stabilizing frame 25. Then the tenon 231 on each plug-in part 23 can be conveniently plugged into the tenon groove 123 by the staff, so as to achieve the purpose of installing and supporting the display screen 11, thereby improving the stability of the display screen 11. When the tenon 231 is plugged into the tenon groove 123, the telescopic end of the spring pin 233 on the tenon 231 can be engaged with the lock hole 124 in the inner cavity of the tenon groove 123, thereby enabling the tenon 231 to limit the support block 122, so as to reduce the support block 122 from falling off the tenon 231, thereby ensuring the stability of the installation of the display screen 11.
[0077] See also Figure 6 , Figure 8The support assembly 2 further includes a shielding portion 28, and three shielding portions 28 are provided. The three shielding portions 28 are arranged in the inner cavity of the positioning frame 21, and both side walls of the inner cavity of the positioning frame 21 are provided with limiting grooves 27 for engaging the two ends of the shielding portion 28; the shielding portion 28 includes a blocking bar 281, and buckle grooves 284 are provided on the surface of the blocking bar 281 and near the two ends, and grooves 282 are provided on both sides of the back of the blocking bar 281 and near the end positions, and a suction cup 283 is provided in the inner cavity of the groove 282;
[0078] The blocking bar 281 in the shielding portion 28 can be plugged into the limiting groove 27 in the inner cavity of the positioning frame 21, so that the upper and lower display screens 11 can be separated and limited. When the damaged display screen 11 needs to be disassembled, the blocking bar 281 on the damaged display screen 11 can be pulled out of the limiting groove 27 by inserting a finger, so that the blocking bar 281 can be pulled out of the limiting groove 27, and the display screen 11 can be slid upwards to facilitate the staff to separate the tenon 231 from the tenon groove 123. The damaged display screen 11 can be replaced and maintained. After the replacement and maintenance of the display screen 11 is completed, the blocking bar 281 can be installed back to its original position, which improves the convenience of replacing the display screen 11. Since grooves 282 are provided on both sides of the back side of the blocking bar 281 and near the end positions, and a suction cup 283 is provided in the inner cavity of the groove 282, the suction cup 283 can be adsorbed on the inner cavity of the limiting groove 27, thereby preventing the blocking bar 281 from automatically falling off from the limiting groove 27, thereby ensuring the stability of the use of the blocking bar 281.
[0079] See also Figure 2 , Fig. 9 The communication component 3 includes a communication antenna 31, a base 32 is provided on the bottom surface of the communication antenna 31, and the top of the base 32 is connected to the top of the middle part of the back of the support component 2;
[0080] Through the communication antenna 31 in the communication component 3, wireless communication can be achieved with the monitoring equipment deployed in various places in the oil field, so that the monitoring data can be transmitted to the communication antenna 31, and then through the communication antenna 31, the monitoring data information can be sent to the control component 4, thereby completing the data transmission. Through the base 32, the communication antenna 31 can be fixed at the top position in the middle of the back side of the support component 2, thereby improving the stability of the use of the communication antenna 31.
[0081] See also Figure 2 , Fig.10 The control component 4 includes a storage box 41 and a box door 42. A PLC controller 43 is disposed in the inner cavity of the storage box 41. A plurality of transmission ports 44 are disposed on the top surface of the storage box 41, and the plurality of transmission ports 44 are electrically connected to the PLC controller 43. A touch screen 45 is disposed on the surface of the box door 42.
[0082] Through the storage box 41 and the box door 42 in the control component 4, the PLC controller 43 can be protected, and multiple transmission ports 44 and the touch screen 45 can be installed. Then, through the PLC controller 43, the data information sent by the communication antenna 31 can be received, and the received data information can be processed. The processed data is then sent to each display screen 11 through multiple transmission ports 44, which makes it convenient for the staff to view. Through the touch screen 45, the staff can debug each display screen 11 and the communication antenna 31 through the PLC controller 43, thereby improving the convenience of using the equipment.
[0083] Embodiment 4:
[0084] See also Figure 1-2 , a multi-angle covered oilfield visual video monitoring device, comprising: a display component 1, a plurality of display components 1 are provided, and the plurality of display components 1 are distributed in a rectangular array, and the display component 1 is used to display oilfield on-site videos at multiple angles; a support component 2, the support component 2 is provided outside the display component 1, and the support component 2 is used to install the plurality of display components 1; a communication component 3, the communication component 3 is provided at an upper middle position on one side of the back of the support component 2, and the communication component 3 is used to receive oilfield video signals; a control component 4, the control component 4 is provided on one side of the bottom of the back of the support component 2, and the control component 4 is used to process the oilfield video signals received by the communication component 3, and send them to each display component 1;
[0085] When visual monitoring of various locations in the oil field is required, first, the communication component 3 can be used to wirelessly connect with the monitoring equipment deployed in various locations in the oil field, so that the monitoring data can be transmitted to the communication component 3, and then the monitoring data information can be sent to the control component 4 through the communication component 3, so that the control component 4 can integrate and process the sent data information, and then the control component 4 can send the processed oil field monitoring data information to the corresponding display component 1. Since there are multiple display components 1, multiple display components 1 can facilitate the staff to perform split-screen playback for the monitoring of the synchronized position, and then facilitate the staff to view the site in the monitoring center. The whole process does not require personnel inspection, which reduces the labor intensity of the staff. The support component 2 can not only play the installation of each display component 1, communication component 3 and control component 4, but also facilitate the staff to quickly replace the damaged display component 1, thereby improving the convenience of its maintenance, so as to save its maintenance cost.
[0086] See also Figure 1 , Figure 3 and Figure 4The display assembly 1 includes a display screen 11, a limiting portion 12 is fixedly arranged at the middle of the back of the display screen 11, and the limiting portion 12 is connected to the supporting assembly 2; the limiting portion 12 includes a positioning plate 121 arranged at the middle of the back of the display screen 11, and a supporting block 122 is fixedly arranged at the middle of the positioning plate 121, and a mortise and tenon groove 123 is opened at a lower middle position on one side wall of the supporting block 122;
[0087] Through the display screen 11 in the display component 1, the data information sent by the control component 4 can be received and presented, so that the staff can view it conveniently, and the positioning plate 121 can be installed at the same time, and then the support block 122 can be installed and fixed through the positioning plate 121, and then the support block 122 can be connected to the support component 2 through the mortise and tenon 123. Therefore, when the display screen 11 needs to be disassembled, the display screen 11 can be removed by sliding the display screen 11 upwards, so as to improve the convenience of disassembly and maintenance of the display screen 11.
[0088] See also Figure 2 , Figure 4-Figure 7 The support assembly 2 includes a positioning frame 21, and the inner cavity of the positioning frame 21 is provided with three cross bars 22, and the three cross bars 22 are distributed in parallel in the transverse direction, and the surface of each cross bar 22 is provided with a plug-in portion 23, and the plug-in portion 23 is connected to the limiting portion 12; each cross bar 22 is provided with a vertical pole 24 at the top and bottom, and a stabilizing frame 25 is fixedly provided on one side of the bottom of the positioning frame 21, and wheels 26 are provided at the four corners of the bottom surface of the stabilizing frame 25, and the plug-in portion 23 includes a tenon 231 provided on the surface of the cross bar 22, one end of the cross bar 22 is plugged and connected with the tenon 123, and a card slot 232 is provided in the middle position of the surface of one end of the tenon 231, and a magnet block is provided in the inner cavity of the card slot 232, and an iron sheet for magnetically attracting the magnet block is inlaid in the inner cavity of the tenon 123 and the fitting surface with the tenon 231;
[0089] Through the positioning frame 21 in the support component 2, multiple plug-in parts 23 can be installed through three cross bars 22, and the wheels 26 can be installed through the stabilizing frame 25. Then the tenon 231 on each plug-in part 23 can be conveniently plugged into the tenon groove 123 by the staff, so as to achieve the purpose of installing and supporting the display screen 11, thereby improving the stability of the display screen 11. When the tenon 231 is plugged into the tenon groove 123, the magnet block on the tenon 231 can be magnetically attracted to the iron sheet in the inner cavity of the tenon groove 123, thereby enabling the tenon 231 to limit the support block 122, so as to reduce the support block 122 from falling off the tenon 231, thereby ensuring the stability of the installation of the display screen 11.
[0090] See also Figure 6 , Figure 8The support assembly 2 further includes a shielding portion 28, and three shielding portions 28 are provided. The three shielding portions 28 are arranged in the inner cavity of the positioning frame 21, and both side walls of the inner cavity of the positioning frame 21 are provided with limiting grooves 27 for engaging the two ends of the shielding portion 28; the shielding portion 28 includes a blocking bar 281, and buckle grooves 284 are provided on the surface of the blocking bar 281 and near the two ends, and grooves 282 are provided on both sides of the back of the blocking bar 281 and near the end positions, and a suction cup 283 is provided in the inner cavity of the groove 282;
[0091] The blocking bar 281 in the shielding portion 28 can be plugged into the limiting groove 27 in the inner cavity of the positioning frame 21, so that the upper and lower display screens 11 can be separated and limited. When the damaged display screen 11 needs to be disassembled, the blocking bar 281 on the damaged display screen 11 can be pulled out of the limiting groove 27 by inserting a finger, so that the blocking bar 281 can be pulled out of the limiting groove 27, and the display screen 11 can be slid upwards to facilitate the staff to separate the tenon 231 from the tenon groove 123. The damaged display screen 11 can be replaced and maintained. After the replacement and maintenance of the display screen 11 is completed, the blocking bar 281 can be installed back to its original position, which improves the convenience of replacing the display screen 11. Since grooves 282 are provided on both sides of the back side of the blocking bar 281 and near the end positions, and a suction cup 283 is provided in the inner cavity of the groove 282, the suction cup 283 can be adsorbed on the inner cavity of the limiting groove 27, thereby preventing the blocking bar 281 from automatically falling off from the limiting groove 27, thereby ensuring the stability of the use of the blocking bar 281.
[0092] See also Figure 2 , Fig. 9 The communication component 3 includes a communication antenna 31, a base 32 is provided on the bottom surface of the communication antenna 31, and the top of the base 32 is connected to the top of the middle part of the back of the support component 2;
[0093] Through the communication antenna 31 in the communication component 3, wireless communication can be achieved with the monitoring equipment deployed in various places in the oil field, so that the monitoring data can be transmitted to the communication antenna 31, and then through the communication antenna 31, the monitoring data information can be sent to the control component 4, thereby completing the data transmission. Through the base 32, the communication antenna 31 can be fixed at the top position in the middle of the back side of the support component 2, thereby improving the stability of the use of the communication antenna 31.
[0094] See also Figure 2 , Fig.10 The control component 4 includes a storage box 41 and a box door 42. A PLC controller 43 is disposed in the inner cavity of the storage box 41. A plurality of transmission ports 44 are disposed on the top surface of the storage box 41, and the plurality of transmission ports 44 are electrically connected to the PLC controller 43. A touch screen 45 is disposed on the surface of the box door 42.
[0095] Through the storage box 41 and the box door 42 in the control component 4, the PLC controller 43 can be protected, and multiple transmission ports 44 and the touch screen 45 can be installed. Then, through the PLC controller 43, the data information sent by the communication antenna 31 can be received, and the received data information can be processed. The processed data is then sent to each display screen 11 through multiple transmission ports 44, which makes it convenient for the staff to view. Through the touch screen 45, the staff can debug each display screen 11 and the communication antenna 31 through the PLC controller 43, thereby improving the convenience of using the equipment.
[0096] A multi-angle coverage oilfield visual video monitoring method includes the following steps:
[0097] S1: First, through the communication component 3, wireless communication can be established with monitoring equipment deployed in various parts of the oil field, so that monitoring data can be transmitted to the communication component 3;
[0098] S2: Then, the monitoring data information can be sent to the control component 4 through the communication component 3, so that the control component 4 can integrate and process the sent data information;
[0099] S3: Then the control component 4 can send the processed monitoring data information of each oil field to the corresponding display component 1. Since there are multiple display components 1, the multiple display components 1 can facilitate the staff to perform split-screen playback for the monitoring of the synchronous position, and then facilitate the staff to view the site in the monitoring center. The whole process does not require personnel patrol, which reduces the labor intensity of the staff;
[0100] S4: Finally, the support component 2 can not only be used to install each display component 1, communication component 3 and control component 4, but also facilitate the staff to quickly replace the damaged display component 1, thereby improving the convenience of its maintenance, so as to save its maintenance cost, and at the same time facilitate the staff to move it and use it.
[0101] During use: When visual monitoring of various locations in the oil field is required, first, the communication component 3 can be used to wirelessly connect with the monitoring equipment deployed in various locations in the oil field, so that the monitoring data can be transmitted to the communication component 3, and then the monitoring data information can be sent to the control component 4 through the communication component 3, so that the control component 4 can integrate and process the sent data information, and then the control component 4 can send the processed oil field monitoring data information to the corresponding display component 1. Since there are multiple display components 1, multiple display components 1 can facilitate the staff to perform split-screen playback for the monitoring of the synchronized position, and then facilitate the staff to view the site in the monitoring center. The whole process does not require personnel inspection, which reduces the labor intensity of the staff. Through the support component 2, it can not only play the role of installing each display component 1, communication component 3 and control component 4, but also facilitate the staff to quickly replace the damaged display component 1, thereby improving the convenience of its maintenance, so as to save its maintenance cost.
[0102] Through the display screen 11 in the display component 1, the data information sent by the control component 4 can be received and presented, so that the staff can view it conveniently, and the positioning plate 121 can be installed at the same time, and then the support block 122 can be installed and fixed through the positioning plate 121, and then the support block 122 can be connected to the support component 2 through the mortise and tenon 123. Therefore, when the display screen 11 needs to be disassembled, the display screen 11 can be removed by sliding the display screen 11 upwards, so as to improve the convenience of disassembly and maintenance of the display screen 11.
[0103] Through the positioning frame 21 in the support assembly 2, multiple plug-in parts 23 can be installed through three cross bars 22, and the wheels 26 can be installed through the stabilizing frame 25. Then the tenon 231 on each plug-in part 23 can be conveniently plugged into the tenon groove 123 by the staff, so as to achieve the purpose of installing and supporting the display screen 11, thereby improving the stability of the display screen 11. When the tenon 231 is plugged into the tenon groove 123, the telescopic end of the spring pin 233 on the tenon 231 can be engaged with the lock hole 124 in the inner cavity of the tenon groove 123, thereby enabling the tenon 231 to limit the support block 122, so as to reduce the support block 122 from falling off the tenon 231, thereby ensuring the stability of the installation of the display screen 11.
[0104] The blocking bar 281 in the shielding portion 28 can be plugged into the limiting groove 27 in the inner cavity of the positioning frame 21, so that the upper and lower display screens 11 can be separated and limited. When the damaged display screen 11 needs to be disassembled, the blocking bar 281 on the damaged display screen 11 can be pulled out of the limiting groove 27 by inserting a finger, so that the blocking bar 281 can be pulled out of the limiting groove 27, and the display screen 11 can be slid upwards to facilitate the staff to separate the tenon 231 from the tenon groove 123. The damaged display screen 11 can be replaced and maintained. After the replacement and maintenance of the display screen 11 is completed, the blocking bar 281 can be installed back to its original position, which improves the convenience of replacing the display screen 11. Since grooves 282 are provided on both sides of the back side of the blocking bar 281 and near the end positions, and a suction cup 283 is provided in the inner cavity of the groove 282, the suction cup 283 can be adsorbed on the inner cavity of the limiting groove 27, thereby preventing the blocking bar 281 from automatically falling off from the limiting groove 27, thereby ensuring the stability of the use of the blocking bar 281.
[0105] Through the communication antenna 31 in the communication component 3, wireless communication can be achieved with the monitoring equipment deployed in various places in the oil field, so that the monitoring data can be transmitted to the communication antenna 31, and then through the communication antenna 31, the monitoring data information can be sent to the control component 4, thereby completing the data transmission. Through the base 32, the communication antenna 31 can be fixed at the top position in the middle of the back side of the support component 2, thereby improving the stability of the use of the communication antenna 31.
[0106] Through the storage box 41 and the box door 42 in the control component 4, the PLC controller 43 can be protected, and multiple transmission ports 44 and the touch screen 45 can be installed. Then, through the PLC controller 43, the data information sent by the communication antenna 31 can be received, and the received data information can be processed. The processed data is then sent to each display screen 11 through multiple transmission ports 44, which makes it convenient for the staff to view. Through the touch screen 45, the staff can debug each display screen 11 and the communication antenna 31 through the PLC controller 43, thereby improving the convenience of using the equipment.
[0107] The above are only preferred specific implementations of the present invention; however, the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical solutions and improved concepts of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A visual video monitoring device for oil fields with multi-angle coverage, Features: include: A display component (1), wherein a plurality of the display components (1) are provided, and the plurality of the display components (1) are distributed in a rectangular array, and the display component (1) is used to display oil field on-site videos at multiple angles; A support assembly (2), the support assembly (2) being arranged outside the display assembly (1), and the support assembly (2) being used to install a plurality of display assemblies (1); A communication component (3), the communication component (3) being arranged at an upper middle position on one side of the back side of the support component (2), the communication component (3) being used for receiving oilfield video signals; A control component (4), the control component (4) being arranged on the bottom side of the back side of the support component (2), the control component (4) being used to process the oilfield video signal received by the communication component (3) and send it to each display component (1).
2. The oilfield visual video monitoring device with multi-angle coverage according to claim 1, Features: The display assembly (1) comprises a display screen (11), a limiting portion (12) is fixedly arranged in the middle of the back side of the display screen (11), and the limiting portion (12) is connected to the support assembly (2); The limiting portion (12) comprises a positioning plate (121) arranged in the middle of the back side of the display screen (11), a supporting block (122) is fixedly arranged in the middle of the positioning plate (121), and a tongue and tongue groove (123) is provided on one side wall of the supporting block (122) at a lower middle position.
3. The oilfield visual video monitoring device with multi-angle coverage according to claim 2, Features: The support assembly (2) comprises a positioning frame (21), the inner cavity of the positioning frame (21) is provided with three cross bars (22), and the three cross bars (22) are distributed in parallel in the transverse direction, and a plug-in portion (23) is provided on the surface of each cross bar (22), and the plug-in portion (23) is connected to the limiting portion (12); Each of the cross bars (22) is provided with a vertical rod (24) at the top and bottom, a stabilizing frame (25) is fixedly provided on one side of the bottom of the positioning frame (21), and wheels (26) are provided at the four corners of the bottom surface of the stabilizing frame (25).
4. The oilfield visual video monitoring device with multi-angle coverage according to claim 3, Features: The plug-in portion (23) comprises a tenon (231) arranged on the surface of the cross bar (22), and one end of the cross bar (22) is plug-connected with the tenon groove (123).
5. The oilfield visual video monitoring device with multi-angle coverage according to claim 4, Features: A slot (232) is provided in the middle of one end surface of the tenon (231), and a spring pin (233) is provided in the inner cavity of the slot (232). A locking hole (124) for locking the telescopic end of the spring pin (233) is provided in the inner cavity of the tenon slot (123) and on the mating surface with the tenon (231).
6. The oilfield visual video monitoring device with multi-angle coverage according to claim 3, Features: The support assembly (2) further comprises a shielding portion (28), three shielding portions (28) are provided, the three shielding portions (28) are arranged in the inner cavity of the positioning frame (21), and both side walls of the inner cavity of the positioning frame (21) are provided with limiting grooves (27) for engaging the two ends of the shielding portion (28). The shielding portion (28) comprises a blocking bar (281), and buckle grooves (284) are provided on the surface of the blocking bar (281) near both ends.
7. The oilfield visual video monitoring device with multi-angle coverage according to claim 6, Features: Grooves (282) are provided on both sides of the back side of the blocking bar (281) and close to the end positions, and a suction cup (283) is provided in the inner cavity of the groove (282).
8. The oilfield visual video monitoring device with multi-angle coverage according to claim 1, Features: The communication component (3) comprises a communication antenna (31), a base (32) is provided on the bottom surface of the communication antenna (31), and the top end of the base (32) is connected to the top end of the middle part of the back side of the support component (2).
9. The oilfield visual video monitoring device with multi-angle coverage according to claim 1, Features: The control component (4) comprises a storage box (41) and a box door (42); a PLC controller (43) is arranged in the inner cavity of the storage box (41); a plurality of transmission ports (44) are arranged on the top surface of the storage box (41), and the plurality of transmission ports (44) are electrically connected to the PLC controller (43); and a touch screen (45) is arranged on the surface of the box door (42).
10. A method for visualizing oilfield video monitoring with multi-angle coverage. Features: The method is applied to the oilfield visual video monitoring device with multi-angle coverage according to any one of claims 1 to 9, and the method comprises the following steps: S1: First, the communication component (3) can be wirelessly connected to the monitoring equipment deployed in various parts of the oil field, so that the monitoring data can be transmitted to the communication component (3); S2: The monitoring data information can then be sent to the control component (4) through the communication component (3), so that the control component (4) can integrate and process the sent data information; S3: Then the control component (4) can send the processed oil field monitoring data information to the corresponding display component (1). Since a plurality of display components (1) are provided, the plurality of display components (1) can facilitate the staff to perform split-screen playback for monitoring of synchronous positions, thereby facilitating the staff to view the site in the monitoring center. The whole process does not require staff patrol, thereby reducing the labor intensity of the staff; S4: Finally, the support component (2) can not only be used to install each display component (1), communication component (3) and control component (4), but also facilitate the staff to quickly replace the damaged display component (1), thereby improving the convenience of its maintenance, so as to save its maintenance cost, and at the same time facilitate the staff to move it and use it.