A multifunction integrated outdoor weather monitoring device
Patent Information
- Application Number
- CN202611349511.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-09-02
- Publication Date
- 2026-09-29
AI Technical Summary
现有户外气象监测设备大多采用一体化固定支架,体积较大,转运和搬运过程中需要拆分组装,不仅操作繁琐,还容易因频繁拆装造成部件磨损,影响设备整体布设的稳定性;同时多数可折叠设备的支架展开后无法根据野外复杂的地形调整支撑高度,针对凹凸不平的地面难以保持设备整体的水平稳定性,会对后续气象监测数据的准确性造成影响
1.本发明通过设置可联动折叠展开的调节支架,在需要转运设备时,转动螺纹环带动套环下移,即可拉动多组第一支撑杆向内收拢,同时联动将第二支撑杆自动锁定收纳在第一支撑杆内部,无需手动逐根调整支撑杆长度,收纳后设备整体体积紧凑,便于户外转运和携带,有效降低了拆装操作的复杂度。
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Figure CN122834757A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of meteorological monitoring technology, specifically to a multifunctional integrated outdoor meteorological monitoring device. Background Technology
[0002] Meteorological monitoring equipment, also known as weather stations, are industrial instruments and equipment used for real-time monitoring of meteorological environmental elements. They are mainly used in agriculture, transportation, emergency management, scientific research, and outdoor exploration. In the prior art, Chinese utility model patent CN221631716U discloses a meteorological monitoring device, including a fixed base, a power supply box mounted on the fixed base, a support rod mounted on the power supply box, a first monitoring mechanism mounting seat mounted on the support rod, and a second and third monitoring mechanism mounting seats below the first monitoring mechanism mounting seat. The first monitoring mechanism mounting seat is equipped with a temperature sensor, a humidity sensor, a rainfall sensor, and a barometric pressure sensor; the second and third monitoring mechanism mounting seats are respectively equipped with a wind direction sensor and a wind speed sensor. The support rod has a first crossbar and a second crossbar. A rotating shaft is mounted on the first crossbar, one end of which is connected to a stepper motor, and the other end is connected to a protective cover located above the first monitoring mechanism mounting seat. A controller is mounted on the second crossbar. This device is easy to move, simple to install, and has good stability, effectively preventing damage to the monitoring mechanism in severe weather. Most existing outdoor meteorological monitoring equipment uses integrated fixed brackets, which are large in size and require disassembly and reassembly during transportation and handling. This is not only cumbersome to operate, but also prone to wear and tear on components due to frequent disassembly and reassembly, affecting the overall stability of the equipment deployment. At the same time, the brackets of most foldable equipment cannot be adjusted to support the complex terrain in the field after being unfolded. It is difficult to maintain the overall horizontal stability of the equipment on uneven ground, which will affect the accuracy of subsequent meteorological monitoring data. Summary of the Invention
[0003] The purpose of this invention is to provide a multifunctional integrated outdoor meteorological monitoring device to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention provides the following technical solution: A multifunctional integrated outdoor meteorological monitoring device, comprising: A monitoring bracket, on which a rainwater monitoring device and a wind speed monitoring device are installed; A first connecting rod is installed at the lower end of the monitoring bracket, and a second connecting rod is slidably sleeved on the outside of the first connecting rod, and a fixing bolt is screwed onto the outer wall of the second connecting rod at a position corresponding to the first connecting rod; An adjusting bracket is installed below the first connecting rod. The adjusting bracket includes multiple sets of first support rods, and a second support rod is slidably connected to the lower end of each first support rod.
[0005] Furthermore, the outer wall of the first connecting rod is provided with multiple sets of fixing holes spaced vertically at the positions corresponding to the fixing bolts; One end of the fixing bolt passes through the second connecting rod and is inserted into the corresponding fixing hole.
[0006] Furthermore, the adjusting bracket also includes a connecting plate installed at the lower end of the second connecting rod; The first support rod is provided in multiple sets, and the multiple sets of the first support rod are distributed in a circle with the axis of the connecting plate as the center, and one end of each first support rod is hinged to the connecting plate.
[0007] Furthermore, a guide screw is installed at the center of the lower end of the connecting plate, and a limit plate is provided at the lower end of the guide screw; A threaded ring is screwed onto the guide screw, and a collar is slidably disposed on the guide screw at a position above the threaded ring; A support rod is hinged between the collar and each of the first support rods.
[0008] Furthermore, each of the first support rods has a telescopic groove at its end, and a second support rod is inserted into the inside of each telescopic groove. A second return spring is fixedly installed between the end of the second support rod and the top of the inside of the telescopic groove. The second support rod is elastically connected to the first support rod through the cooperation of the second return spring. A second groove is provided on one side of the upper end of the second support rod, and a second storage groove is provided on the inner side wall of the telescopic groove at the position corresponding to the second groove. A limiting block is inserted into the inner side of the second storage groove, and a third return spring is provided between the limiting block and the inner top of the second storage groove. When the second support rod is stored inside the first support rod, the limiting block is elastically inserted into the inner side of the second groove through the cooperation of the third return spring.
[0009] Furthermore, each of the support rods has a slot at its end, and the first support rod has a first storage slot at the position corresponding to the slot, and a first insert block is inserted into the inside of the first storage slot. A first reset spring is fixedly provided between the end of the first insert block and the inner top of the first storage groove. When the first support rod is opened, the first insert block is elastically inserted into the inside of the slot through the first reset spring.
[0010] Furthermore, a first through hole is provided between the first storage slot and the second storage slot, and a first pull rope is provided inside the first through hole. The two ends of the first pull rope are respectively connected to the limiting block and the first insert block. The elastic force of the first reset spring is greater than that of the third reset spring.
[0011] Furthermore, a third storage groove is formed on the outer surface of one end of the second support rod that is housed inside the telescopic groove. A second insert is slidably disposed inside the third storage groove, and a fourth return spring is fixedly disposed between the lower end of the second insert and the bottom end of the third storage groove. The second insert is elastically housed inside the third storage groove through the cooperation of the fourth return spring. The inner sidewall of the expansion groove is provided with multiple sets of spaced first grooves at the end positions corresponding to the second insert block.
[0012] Furthermore, a fixing rivet is inserted into the end of the second support rod away from the first support rod, and a fifth return spring is sleeved on the outer surface of the fixing rivet. The fixing rivet is elastically connected to the second support rod through the fifth return spring. The outer surface of the fixing rivet is provided with a third groove, and the interior of the second support rod is provided with a fourth storage groove at the position corresponding to the third groove. A third insert is inserted into the interior of the fourth storage groove, and a sixth return spring is fixedly provided between the end of the third insert and the top of the interior of the fourth storage groove. When the fixing rivet is inserted into the ground, the third insert is elastically inserted into the interior of the third groove through the cooperation of the sixth return spring. The lower end face of the third insert is inclined.
[0013] Furthermore, a second through hole is provided between the third storage slot and the fourth storage slot, and a second pull rope is provided inside the second through hole. The two ends of the second pull rope are respectively connected to the end of the third insert and the side wall of the second insert. The elastic force of the sixth reset spring is greater than that of the fourth reset spring.
[0014] Compared with the prior art, the beneficial effects of the present invention are: 1. This invention features an adjustable bracket that can be folded and unfolded in conjunction with the device. When the device needs to be transported, rotating the threaded ring causes the collar to move downward, which pulls multiple sets of first support rods inward. At the same time, the second support rods are automatically locked and stored inside the first support rods. This eliminates the need to manually adjust the length of each support rod individually. After being stored, the device is compact in size, making it easy to transport and carry outdoors, and effectively reducing the complexity of disassembly and assembly.
[0015] 2. During the process of opening the first support rod, the first support rod is automatically locked and the second support rod is popped out. The operation is completed in one step. It can also adjust the extension length of each second support rod relative to the first support rod according to the actual flatness of the outdoor ground, adapt to the support requirements of different terrains, ensure that the monitoring equipment remains stable as a whole, and will not tilt or shake due to uneven terrain, thus ensuring the accuracy of subsequent meteorological monitoring data.
[0016] 3. A fixing rivet is installed at the end of the second support rod. After the equipment is placed in place, pressing the fixing rivet will complete the extension of the second support rod beyond the first support rod, thereby improving the overall stability of the support structure. Attached Figure Description
[0017] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a schematic diagram of the adjusting bracket structure of the present invention; Figure 3 This is a cross-sectional view of the connection between the connecting plate and the first support rod structure of the present invention; Figure 4 This is a cross-sectional view of the connection between the support rod and the first support rod structure of the present invention; Figure 5 This is a cross-sectional schematic diagram of the connection between the first support rod and the second support rod of the present invention; Figure 6 for Figure 5 Enlarged schematic diagram of the structure at point A in the middle; Figure 7 for Figure 5 Enlarged schematic diagram of the structure at point B; Figure 8 for Figure 5 Enlarged schematic diagram of the structure at point C.
[0018] In the diagram: 1. Monitoring bracket; 2. Rainwater monitoring device; 3. Wind speed monitoring device; 4. First connecting rod; 5. Second connecting rod; 6. Fixing bolt; 7. Connecting plate; 8. First support rod; 9. Second support rod; 10. Guide screw; 11. Support rod; 12. Collar; 13. Threaded ring; 14. Limiting plate; 16. Slot; 17. First storage slot; 18. First insert block; 19. First return spring; 20. First through hole; 21. First pull rope; 22. Telescopic groove; 23. Second return spring; 24. Second storage slot; 25. Limiting block; 26. Third return spring; 27. First groove; 28. Second groove; 29. Third storage slot; 30. Fourth return spring; 31. Second insert block; 32. Second through hole; 33. Second pull rope; 34. Fixing rivet; 35. Fifth return spring; 36. Third groove; 37. Fourth storage slot; 38. Third insert block; 39. Sixth return spring. Detailed Implementation
[0019] To more clearly illustrate the overall concept of the present invention, a detailed description will be provided below with reference to the accompanying drawings and examples. Example 1:
[0020] Please see Figures 1 to 8 This invention provides a technical solution: a multifunctional integrated outdoor meteorological monitoring device, comprising: Monitoring bracket 1, on which a rainwater monitoring device 2 and a wind speed monitoring device 3 are installed; The first connecting rod 4 is installed at the lower end of the monitoring bracket 1, and the second connecting rod 5 is slidably sleeved on the outside of the first connecting rod 4, and the outer wall of the second connecting rod 5 is screwed with a fixing bolt 6 at the position corresponding to the first connecting rod 4; An adjustment bracket is installed below the first connecting rod 4. The adjustment bracket includes multiple sets of first support rods 8, and the lower end of the first support rod 8 is slidably connected to a second support rod 9.
[0021] In the above technical solution: the monitoring bracket 1 is installed and fixed by adjusting the bracket, and then the height of the monitoring bracket 1 is adjusted by the sliding cooperation of the first connecting rod 4 and the second connecting rod 5. After the height adjustment is completed, the wind speed and rainfall can be measured by the cooperation of the rainwater monitoring device 2 and the wind speed monitoring device 3. Example 2:
[0022] like Figure 1 As shown, the multifunctional integrated outdoor meteorological monitoring device disclosed in Embodiment 2 of the present invention has a structure that is basically the same as that in Embodiment 1, except that: The outer wall of the first connecting rod 4 has multiple sets of fixing holes spaced vertically at the positions corresponding to the fixing bolts 6; One end of the fixing bolt 6 passes through the second connecting rod 5 and is inserted into the corresponding fixing hole; In the above technical solution: after tightening the fixing bolt 6, the second connecting rod 5 is moved up and down along the first connecting rod 4 to adjust the overall deployment height of the monitoring equipment. After adjusting to the preset height, the fixing bolt 6 is tightened again so that its end is inserted into the fixing hole at the corresponding position, thus completing the height position locking. The operation is convenient and adaptable to the height requirements of different outdoor monitoring scenarios. Example 3:
[0023] like Figure 2 As shown, the multifunctional integrated outdoor meteorological monitoring device disclosed in Embodiment 3 of the present invention has a structure that is basically the same as that in Embodiment 2, except that: The adjusting bracket also includes a connecting plate 7 installed at the lower end of the second connecting rod 5; The first support rod 8 is provided in multiple sets, and the multiple sets of the first support rod 8 are distributed in a circle with the axis of the connecting plate 7 as the center, and one end of each first support rod 8 is hinged to the connecting plate 7. A guide screw 10 is installed at the center of the lower end of the connecting plate 7, and a limit plate 14 is provided at the lower end of the guide screw 10; A threaded ring 13 is screwed onto the guide screw 10, and a collar 12 is slidably disposed on the guide screw 10 at a position above the threaded ring 13. A support rod 11 is hinged between the collar 12 and each of the first support rods 8.
[0024] In the above technical solutions: Rotate the threaded ring 13 to move it up and down along the guide screw 10. When moving, the threaded ring 13 can push the collar 12 to slide up and down along the guide screw 10. The collar 12, through the cooperation of the support rod 11, makes multiple sets of first support rods 8 open outward or retract inward along the hinge position. When retracted, it is convenient to carry the whole equipment and improve the convenience of outdoor use. When opened, it is convenient to support it on the ground for use. Example 4:
[0025] like Figures 2-6 As shown, the multifunctional integrated outdoor meteorological monitoring device disclosed in Embodiment 4 of the present invention has a structure that is basically the same as that in Embodiment 3, except that: Each of the first support rods 8 has a telescopic groove 22 at its end. A second support rod 9 is inserted into the inside of each telescopic groove 22. A second return spring 23 is fixedly installed between the end of the second support rod 9 and the top of the inside of the telescopic groove 22. The second support rod 9 is elastically connected to the first support rod 8 through the cooperation of the second return spring 23. A second groove 28 is provided on one side of the upper end of the second support rod 9. A second storage groove 24 is provided on the inner side wall of the telescopic groove 22 at the position corresponding to the second groove 28. A limiting block 25 is inserted into the inner side of the second storage groove 24, and a third return spring 26 is provided between the limiting block 25 and the inner top of the second storage groove 24. When the second support rod 9 is stored inside the first support rod 8, the limiting block 25 is elastically inserted into the inner side of the second groove 28 through the cooperation of the third return spring 26. Each of the support rods 11 has a slot 16 at its end, and the first support rod 8 has a first storage slot 17 at the position corresponding to the slot 16. A first insert block 18 is inserted into the inside of the first storage slot 17. A first return spring 19 is fixedly provided between the end of the first insertion block 18 and the inner top of the first storage groove 17. When the first support rod 8 is opened, the first insertion block 18 is elastically inserted into the inside of the slot 16 through the first return spring 19. A first through hole 20 is provided between the first storage slot 17 and the second storage slot 24. A first pull rope 21 is provided inside the first through hole 20. The two ends of the first pull rope 21 are respectively connected to the limiting block 25 and the first insert block 18. The elastic force of the first return spring 19 is greater than that of the third return spring 26.
[0026] In the above technical solutions: When the rotating threaded ring 13 drives the collar 12 to move upward, pushing the multiple sets of first support rods 8 to fully open, the slot 16 at the end of the support rod 11 will gradually align with the opening of the first storage slot 17. At this time, the first insert block 18 pops out under the elastic force of the first reset spring 19 and inserts into the slot 16, completing the position locking of the support rod 11 and the first support rod 8, ensuring that the structure of the adjustment bracket is stable after being opened and will not shake at will. Since the first return spring 19 has a greater elastic force than the third return spring 26, during the pop-out process of the first insert block 18, the first pull rope 21 will pull the limiting block 25 back into the second storage groove 24. At this time, the limiting block 25 will disengage from the second groove 28, releasing the position lock of the second support rod 9. Under the action of the second return spring 23, the second support rod 9 will automatically pop out from the telescopic groove 22. It can automatically extend the support length without manual extraction, making the installation process smoother and more efficient. When the device needs to be stored, the reverse rotation of the threaded ring 13 causes the collar 12 to move downward, pulling multiple sets of first support rods 8 inward. The side wall of the slot 16 will squeeze the first insert block 18 back into the first storage slot 17. At this time, the limit block 25 loses the pulling force of the first pull rope 21 and is reinserted into the second groove 28 under the elastic force of the third reset spring 26, locking the second support rod 9 in the storage position. This realizes the linkage between the expansion bracket and the extension support rod, and the folding bracket and the storage support rod, simplifying the installation and storage operation steps. Example 5:
[0027] like Figures 5-8 As shown, the multifunctional integrated outdoor meteorological monitoring device disclosed in Embodiment 5 of the present invention has a structure that is basically the same as that in Embodiment 4, except that: The outer surface of one end of the second support rod 9, which is housed inside the telescopic groove 22, is provided with a third storage groove 29. A second insert 31 is slidably disposed inside the third storage groove 29, and a fourth return spring 30 is fixedly disposed between the lower end of the second insert 31 and the bottom end of the third storage groove 29. The second insert 31 is elastically housed inside the third storage groove 29 through the cooperation of the fourth return spring 30. The inner sidewall of the telescopic groove 22 is provided with multiple sets of spaced first grooves 27 at the end positions corresponding to the second insert block 31; A fixing rivet 34 is inserted into the end of the second support rod 9 away from the first support rod 8. A fifth return spring 35 is sleeved on the outer surface of the fixing rivet 34. The fixing rivet 34 is elastically connected to the second support rod 9 through the fifth return spring 35. The outer surface of the fixing rivet 34 is provided with a third groove 36, and the interior of the second support rod 9 is provided with a fourth storage groove 37 at the position corresponding to the third groove 36. A third insert block 38 is inserted into the interior of the fourth storage groove 37, and a sixth return spring 39 is fixedly provided between the end of the third insert block 38 and the top of the interior of the fourth storage groove 37. When the fixing rivet 34 is inserted into the ground, the third insert block 38 is elastically inserted into the interior of the third groove 36 through the cooperation of the sixth return spring 39. The lower end face of the third insert 38 is set in an inclined shape; A second through hole 32 is provided between the third storage slot 29 and the fourth storage slot 37. A second pull rope 33 is provided inside the second through hole 32. The two ends of the second pull rope 33 are respectively connected to the end of the third insert 38 and the side wall of the second insert 31. The elastic force of the sixth return spring 39 is greater than that of the fourth return spring 30.
[0028] In the above technical solution: after the second support rod 9 pops out, the extension length of each group of second support rods 9 relative to the first support rod 8 is adjusted according to the flatness of the ground. After adjusting to a suitable extension length, the fixing rivet 34 is pressed down to the ground for fixing. When the fixing rivet 34 moves to the position where the third groove 36 is aligned with the opening of the fourth storage groove 37, the third insert 38 pops out under the elastic force of the sixth return spring 39 and inserts into the third groove 36, thus completing the position locking of the fixing rivet 34. When the third insert 38 extends, the second insert 31 is lifted by the second pull rope 33. At this time, the second insert 31 is inserted into the first groove 27 at the corresponding position, completing the initial locking of the extension length of the second support rod 9, so that the equipment can be adapted to the ground with different flatness.
[0029] This invention is intended to cover all such substitutions, modifications, and variations that fall within the broad scope of the appended claims. Therefore, any omissions, modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this invention should be included within the scope of protection of this invention.
Claims
1. A multifunctional integrated outdoor meteorological monitoring device, characterized in that, include: A monitoring bracket (1) is provided, on which a rainwater monitoring device (2) and a wind speed monitoring device (3) are installed. The first connecting rod (4) is installed at the lower end of the monitoring bracket (1), and the second connecting rod (5) is slidably sleeved on the outside of the first connecting rod (4), and the outer wall of the second connecting rod (5) is screwed with a fixing bolt (6) at the position corresponding to the first connecting rod (4). An adjustment bracket is installed below the first connecting rod (4). The adjustment bracket includes multiple sets of first support rods (8), and the lower end of the first support rod (8) is slidably connected to a second support rod (9). Each of the first support rods (8) has a telescopic groove (22) at its end. The second support rod (9) has a third storage groove (29) on its outer surface at one end that is housed in the telescopic groove (22). A second insert (31) is slidably disposed inside the third storage groove (29). A fourth return spring (30) is fixedly disposed between the lower end of the second insert (31) and the bottom end of the third storage groove (29). The second insert (31) is elastically housed inside the third storage groove (29) through the cooperation of the fourth return spring (30). The inner sidewall of the telescopic groove (22) is provided with multiple sets of spaced first grooves (27) at the end position of the second insert (31). A fixing rivet (34) is inserted into one end of the second support rod (9) away from the first support rod (8). A fifth return spring (35) is sleeved on the outer surface of the fixing rivet (34). The fixing rivet (34) is elastically connected to the second support rod (9) through the fifth return spring (35). The outer surface of the fixing rivet (34) is provided with a third groove (36), and the second support rod (9) is provided with a fourth storage groove (37) at the position corresponding to the third groove (36). A third insert (38) is inserted into the fourth storage groove (37), and a sixth return spring (39) is fixedly provided between the end of the third insert (38) and the top of the fourth storage groove (37). When the fixing rivet (34) is inserted into the ground, the third insert (38) is elastically inserted into the third groove (36) through the cooperation of the sixth return spring (39). The lower end face of the third insert (38) is set in an inclined shape; A second through hole (32) is provided between the third storage slot (29) and the fourth storage slot (37). A second pull rope (33) is provided inside the second through hole (32). The two ends of the second pull rope (33) are respectively connected to the end of the third insert (38) and the side wall of the second insert (31). The elastic force of the sixth reset spring (39) is greater than that of the fourth reset spring (30).
2. The multifunctional integrated outdoor meteorological monitoring equipment according to claim 1, characterized in that, The outer wall of the first connecting rod (4) has multiple sets of fixing holes spaced vertically at the positions corresponding to the fixing bolts (6); One end of the fixing bolt (6) passes through the second connecting rod (5) and is inserted into the corresponding fixing hole.
3. The multifunctional integrated outdoor meteorological monitoring equipment according to claim 1, characterized in that, The adjusting bracket also includes a connecting plate (7) installed at the lower end of the second connecting rod (5); The first support rod (8) is provided in multiple sets. The multiple sets of the first support rod (8) are distributed in a circle with the axis of the connecting plate (7) as the center, and one end of each first support rod (8) is hinged to the connecting plate (7).
4. The multifunctional integrated outdoor meteorological monitoring equipment according to claim 3, characterized in that, A guide screw (10) is installed at the center of the lower end of the connecting plate (7), and a limit plate (14) is provided at the lower end of the guide screw (10). A threaded ring (13) is screwed onto the guide screw (10), and a collar (12) is slidably disposed on the guide screw (10) at a position above the threaded ring (13). A support rod (11) is hinged between the collar (12) and each of the first support rods (8).
5. The multifunctional integrated outdoor meteorological monitoring equipment according to claim 4, characterized in that, Each of the telescopic grooves (22) is provided with a second support rod (9) inserted inside, and a second return spring (23) is fixedly provided between the end of the second support rod (9) and the top of the inside of the telescopic groove (22). The second support rod (9) is elastically connected to the first support rod (8) through the cooperation of the second return spring (23). A second groove (28) is provided on one side of the upper end of the second support rod (9). A second storage groove (24) is provided on the inner side wall of the telescopic groove (22) at the position corresponding to the second groove (28). A limit block (25) is inserted into the inner side of the second storage groove (24). A third return spring (26) is provided between the limit block (25) and the inner top of the second storage groove (24). When the second support rod (9) is stored inside the first support rod (8), the limit block (25) is elastically inserted into the inner side of the second groove (28) through the cooperation of the third return spring (26).
6. The multifunctional integrated outdoor meteorological monitoring equipment according to claim 5, characterized in that, Each of the support rods (11) has a slot (16) at its end. The first support rod (8) has a first storage slot (17) at the position corresponding to the slot (16). A first insert block (18) is inserted into the first storage slot (17). A first reset spring (19) is fixedly provided between the end of the first insert (18) and the inner top of the first storage groove (17). When the first support rod (8) is opened, the first insert (18) is elastically inserted into the inside of the slot (16) through the first reset spring (19).
7. The multifunctional integrated outdoor meteorological monitoring equipment according to claim 6, characterized in that, A first through hole (20) is provided between the first storage slot (17) and the second storage slot (24). A first pull rope (21) is provided inside the first through hole (20). The two ends of the first pull rope (21) are respectively connected to the limiting block (25) and the first insert block (18). The elastic force of the first reset spring (19) is greater than that of the third reset spring (26).
Citation Information
Patent Citations
Meteorological monitoring device
CN221631716U