Auxiliary device for probing and observing urban bird nests

By designing a telescopic combination rod body and endoscope bird's nest exploration device, the problem of insufficient flexibility of existing equipment is solved, flexible adjustment and efficient monitoring are achieved, and it is suitable for bird's nest observation of different heights and shapes.

CN223191390UActive Publication Date: 2025-08-05NORTHEAST INST OF GEOGRAPHY & AGRIECOLOGY C A S
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Patent Information

Application Number
CN202422453959.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-11
Publication Date
2025-08-05
Estimated Expiration
2034-10-11

AI Technical Summary

Technical Problem

The existing bird's nest detection equipment is low in flexibility and is not targeted, and cannot meet the needs of field monitoring and investigation work, and cannot deeply observe the bird's nest to obtain comprehensive environmental data.

Method used

A telescopic combination structure including a vertical pole, an upper telescopic pole, a middle telescopic pole and a lower telescopic pole are designed. It adopts a stainless steel hollow tube nesting with a reduced bottom-up diameter in turn, combined with a three-leg support of the magnetic suction piece, a hinge groove and a foot, and is equipped with an endoscope and a display to achieve height adjustment and multi-angle observation.

Benefits of technology

It realizes a flexible adjustment and easy-to-operate observation device, improves monitoring efficiency and quality, adapts to the needs of bird nest exploration of different heights and shapes, and is suitable for diversified monitoring of forest and urban bird nests.

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Abstract

The utility model relates to the field of bird nest exploration and observation, and discloses an auxiliary device for urban bird nest exploration and observation, which comprises a vertical rod and a middle-section rod body, the rod body of the vertical rod is a telescopic combination and comprises the middle-section rod body, an upper-section telescopic rod and a lower-section rod body, the middle-section rod body and the upper-section telescopic rod are nested layer by layer, and the middle-section rod body and the lower-section rod body are nested layer by layer. A locking bolt is fixedly connected between the upper-section telescopic rod and the vertical rod, the middle-section rod body and the lower-section rod body are screwed and fixed through threads, and scales are machined on the outer wall of the upper-section telescopic rod. According to the auxiliary device for probing and observing the urban bird nests, the vertical rod is arranged, the vertical rod is of a stainless steel hollow pipe nesting structure with the diameters sequentially reduced from bottom to top, the height can be adjusted to meet the probing and observing requirements of nests with different heights, the flexibility of the device is improved through the telescopic combined rod, field monitoring and investigation work is facilitated, and the practicability is high. The problems of low flexibility and no targeted detection equipment are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of bird nest detection and observation, in particular to an auxiliary device for detecting and observing urban bird nests. Background Art

[0002] Bird nests are important and primary habitats for nesting birds and a crucial vehicle for bird conservation. Detecting bird nests is of great significance for ecological protection and scientific research, not only at the national level but also as a crucial component of global ecological conservation. As part of the development of an ecological civilization, ecological progress is crucial for protecting wildlife resources, maintaining ecological balance, and protecting and improving the human living environment. Furthermore, China is a key global migratory corridor for migratory birds. Detecting bird nests and strengthening bird protection contributes to the implementation of international environmental conventions and enhances China's image and influence in global ecological and environmental protection.

[0003] At present, a lot of bird nest data is mainly obtained through remote sensing and traditional monitoring, which often have the characteristics of inaccurate data, high interference, and difficulty in data acquisition. Modern detection technology can also be used to explore and observe bird nests to obtain data, but the following problems still exist. For example, the existing detection equipment has low flexibility and lacks targeted detection equipment, which cannot meet the needs of field monitoring and investigation work; it is impossible to observe bird nests in depth and obtain comprehensive bird nest environment data, such as nest depth, nest diameter, nesting materials, and temperature and humidity environment.

[0004] Therefore, there is a need for an auxiliary device for detecting and observing urban bird nests to solve the above technical problems. Utility Model Content

[0005] The purpose of the present utility model is to provide an auxiliary device for detecting and observing urban bird nests, so as to solve the problem in the above background technology that some detection equipment has low flexibility, no targeted detection equipment, and cannot meet the needs of field monitoring and investigation work.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an auxiliary device for detecting and observing bird nests in cities, comprising a vertical pole and a middle section pole body, the pole body of the vertical pole is a telescopic combination, comprising a middle section pole body, an upper telescopic rod and a lower section pole body, the middle section pole body and the upper telescopic rod, the middle section pole body and the lower section pole body are nested in layers, a locking bolt is fixedly connected between the upper telescopic rod and the vertical pole, the middle section pole body and the lower section pole body are fixed by screwing with a thread, the outer wall of the upper telescopic rod is machined with a scale, the outer wall of the lower pole body is provided with three groups of side grooves, a magnetic sheet is welded on the top of each group of side grooves, and a hinge groove is provided at the bottom of the side groove, a hinge seat is respectively fixed in the hinge groove, a support foot is hinged at the hinge seat, and a magnetic block is machined at the bottom end of the support foot.

[0007] Preferably, the scale is marked every 2 cm and 10 cm.

[0008] Preferably, the bottom ends of the two walls of the upper telescopic rod are equipped with balls, and a reserved groove is processed in the middle rod body, and the balls are embedded in the reserved groove and move.

[0009] Preferably, the length and shape of the support legs match the side grooves, and the support legs are provided in three groups and are distributed around the outer wall of the lower rod section.

[0010] Preferably, a bottom groove is formed at the bottom end of the lower rod body, a pull rod is movably sleeved in the bottom groove, and the bottom of the pull rod is hemispherical.

[0011] Preferably, a detection arm is fixedly connected to the top of the upper telescopic rod, an endoscope lens is installed at the front end of the detection arm, a side lens and a front lens are arranged inside the endoscope lens, and a circle of surrounding fill light is arranged outside the front lens.

[0012] Preferably, the outside of the lower section of the rod body is clamped with a buckle, a display is installed at the front end of the buckle, a storage card and a charging port are provided in the display, a data cable is connected between the display and the endoscope lens, and a wiring harness for fixing the data cable is provided at the upper section of the telescopic rod.

[0013] Preferably, the detection arm is an aluminum hinge structure, which can be adjusted to any angle, and a screw is fixedly connected between the bottom end of the detection arm and the top end of the upper telescopic rod.

[0014] Compared with the existing technology, the beneficial effects of the present invention are: the auxiliary device for urban bird nest detection and observation not only realizes flexible adjustment, is easy to operate, realizes real-time monitoring, improves the overall observation efficiency and observation quality, but also realizes lightweight and easy to carry, meeting the needs of diverse monitoring scenarios;

[0015] (1) The pole is divided into an upper telescopic rod, a middle rod body, a lower rod body, a locking bolt, a scale, a side groove, a support leg, a pull rod, and a bottom groove. The pole adopts a nested structure of stainless steel hollow tubes with decreasing diameters from bottom to top. The connection between the upper telescopic rod and the lower rod body is rotated for fixation. The upper telescopic rod and the middle rod body are fixed by a locking bolt. The height can be adjusted to meet the needs of nest exploration and observation at different heights. The scale on the upper telescopic rod facilitates highly accurate positioning. The support leg can be flipped out in the three sets of side grooves at the lower rod body, and the pull rod can be pulled out from the bottom groove. The tripod support structure makes it easy to stand the device on the ground for easy operation by personnel. The retractable combination rod improves the flexibility of the equipment and is helpful for field monitoring and investigation work.

[0016] (2) The endoscope lens, the detection arm, the charging port, the storage card, the data cable, the front lens and the side lens are provided. The endoscope lens is fixed on the detection arm which can change the angle at will. The charging port for operating the endoscope lens has a storage card. The display is connected to the endoscope lens through the data cable to realize the independent collection and storage of bird nest data. The endoscope lens has a front lens and a side lens which can be switched at will. A circle of surrounding fill light is provided outside the front lens. The display can view the observation situation of the detection arm in real time. The button on the right can be used to adjust the angle of the endoscope lens, control the zooming and switching of the picture, thereby improving the overall observation efficiency and quality, and meeting the needs of exploring nests of different angles and shapes.

[0017] (3) By setting up a vertical pole and an endoscope lens, the entire monitoring device has a simple and beautiful structure, flexible adjustment, easy maintenance, convenient installation and disassembly, and is lightweight and easy to carry. It uses normal materials and is cost-effective. On the premise of saving costs, it can fully meet the actual needs of exploring and observing nests of different heights. It is suitable for monitoring bird nests in forests and cities, and can meet the diverse needs of long-term fixed-point or timed mobile monitoring scenarios. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the front cross-sectional structure of the present utility model;

[0019] Figure 2 This is a schematic diagram of the side structure of the display of the present invention;

[0020] Figure 3 This is a rear view structural diagram of the upper telescopic rod of the utility model;

[0021] Figure 4 This is a front view enlarged structural diagram of the endoscope lens of the present invention.

[0022] In the figure: 1. Endoscope lens; 2. Detection arm; 3. Data cable; 4. Screw; 5. Wire harness; 6. Upper telescopic rod; 7. Scale; 8. Vertical pole; 9. Middle rod body; 10. Ball bearing; 11. Display; 12. Lower rod body; 13. Magnetic sheet; 14. Side groove; 15. Hinge groove; 16. Hinge seat; 17. Support foot; 18. Magnetic block; 19. Bottom groove; 20. Pull rod; 21. Memory card; 22. Charging port; 23. Buckle; 24. Locking bolt; 25. Side lens; 26. Front lens; 27. Surround fill light. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0024] See also Figure 1-4 , the utility model provides an embodiment: an auxiliary device for urban bird nest exploration and observation, including a vertical pole 8 and a middle rod body 9, the rod body of the vertical pole 8 is a telescopic combination, including a middle rod body 9, an upper telescopic rod 6 and a lower rod body 12, the middle rod body 9 and the upper telescopic rod 6, the middle rod body 9 and the lower rod body 12 are nested in layers, the upper telescopic rod 6 and the vertical pole 8 are fixedly connected with a locking bolt 24, the middle rod body 9 and the lower rod body 12 are fixed by screwing, the outer wall of the upper telescopic rod 6 is processed with a scale 7, the outer wall of the lower rod body 12 is opened with three groups of side grooves 14, the top of each group of side grooves 14 is welded with a magnetic suction piece 13, the side grooves 14 are provided with hinge grooves 15 at the bottom, hinge seats 16 are fixed in the hinge grooves 15, and support legs 17 are hinged at the hinge seats 16. The bottom ends of the support legs 17 are processed with magnetic blocks 18. The scale 7 is marked every 2cm and 10cm. The bottom ends of the two walls of the upper telescopic rod 6 are equipped with balls 10. A reserved groove is processed in the middle section rod body 9. The ball 10 is embedded in the reserved groove and moves. The length and shape of the support legs 17 match the side grooves 14. The support legs 17 are provided in three groups and are distributed around the outer wall of the lower section rod body 12. The bottom end of the lower section rod body 12 is provided with a bottom groove 19. A pull rod 20 is movably sleeved in the bottom groove 19. The bottom of the pull rod 20 is hemispherical.

[0025] Specifically, if Figure 1 and Figure 3 As shown, the vertical pole 8 is divided into an upper telescopic rod 6, a middle rod body 9 and a lower rod body 12, and adopts a nested structure of stainless steel hollow tubes with decreasing diameters from bottom to top. The connection between the upper telescopic rod 6 and the lower rod body 12 is rotated for fixation, and the upper telescopic rod 6 and the middle rod body 9 are fixed by locking bolts 24. The height is adjustable to meet the needs of nest exploration and observation at different heights. The scale 7 on the upper telescopic rod 6 is convenient for highly accurate positioning and extension. The support legs 17 can be flipped out of the three sets of side grooves 14 at the lower rod body 12, and the pull rod 20 can be pulled out of the bottom groove 19. The tripod support structure makes it easy to stand the device on the ground for easy operation by personnel.

[0026] The top of the upper telescopic rod 6 is fixedly connected to the detection arm 2, and the front end of the detection arm 2 is installed with an endoscope lens 1. The endoscope lens 1 is provided with a side lens 25 and a front lens 26. The front lens 26 is provided with a circle of surrounding fill light 27. The outside of the lower rod body 12 is clamped with a buckle 23, and the front end of the buckle 23 is installed with a display 11. The display 11 is provided with a storage card 21 and a charging port 22. A data cable 3 is connected between the display 11 and the endoscope lens 1. A harness 5 for fixing the data cable 3 is provided at the upper telescopic rod 6;

[0027] Specifically, if Figure 1 、 Figure 2 and Figure 4 As shown, the endoscope lens 1 is fixed on a detection arm 2 whose angle can be arbitrarily changed. The charging port 22 for operating the endoscope lens 1 has a storage card 21. The display 11 is connected to the endoscope lens 1 through a data cable 3 to realize independent collection and storage of bird's nest data. The endoscope lens 1 has a front lens 26 and a side lens 25, which can be switched at will, and a circle of surrounding fill light 27 is set outside the front lens 26. The display 11 can view the observation situation of the detection arm 2 in real time. The button on the right can be used to adjust the angle of the endoscope lens 1 and control the zoom and switching of the picture.

[0028] The detection arm 2 is an aluminum hinge structure that can be adjusted to any angle. A screw 4 is fixed between the bottom end of the detection arm 2 and the top end of the upper telescopic rod 6;

[0029] Specifically, if Figure 1 、 Figure 2 、 Figure 3 and Figure 4 As shown, the entire monitoring device has a simple and beautiful structure, flexible adjustment, easy maintenance, convenient installation and disassembly, and is lightweight and easy to carry. It uses normal materials and is cost-effective. While saving costs, it can fully meet the actual needs of exploring and observing nests of different heights and types. It is suitable for monitoring bird nests in forests and cities, and can meet the needs of various long-term fixed-point or timed mobile monitoring scenarios.

[0030] Working principle: The vertical pole 8 is divided into an upper telescopic rod 6, a middle rod body 9 and a lower rod body 12. It adopts a stainless steel hollow tube nesting structure with decreasing diameters from bottom to top. The connection between the upper telescopic rod 6 and the lower rod body 12 is rotated for fixation. The upper telescopic rod 6 and the middle rod body 9 are fixed by locking bolts 24. The height can be adjusted to meet the needs of nest exploration and observation at different heights. The scale 7 on the upper telescopic rod 6 is convenient for highly accurate positioning and extension. The support legs 17 can be flipped out of the three sets of side grooves 14 at the lower rod body 12, and the pull rod 20 can be pulled out from the bottom groove 19. The tripod support structure It is convenient to stand the device on the ground for easy operation. The endoscope lens 1 is fixed on the detection arm 2 whose angle can be changed at will. The charging port 22 for operating the endoscope lens 1 is equipped with a storage card 21. The display 11 is connected to the endoscope lens 1 through a data cable 3 to realize independent collection and storage of bird's nest data. The endoscope lens 1 has a front lens 26 and a side lens 25, which can be switched at will, and a circle of surrounding fill light 27 is set outside the front lens 26. The display 11 can view the observation situation of the detection arm 2 in real time. The button on the right can be used to adjust the angle of the endoscope lens 1 and control the zoom and switching of the picture.

[0031] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

Claims

1. An auxiliary device for detecting and observing urban bird nests, comprising a vertical pole (8) and a middle pole body (9), characterized in that: The rod body of the vertical rod (8) is a telescopic combination, comprising a middle rod body (9), an upper telescopic rod (6) and a lower rod body (12), wherein the middle rod body (9) and the upper telescopic rod (6), the middle rod body (9) and the lower rod body (12) are nested in layers, and a locking bolt (24) is fixedly connected between the upper telescopic rod (6) and the vertical rod (8), and the middle rod body (9) and the lower rod body (12) are screwed together by a thread, and the upper telescopic rod (6) and the vertical rod (8) are fixed together by a locking bolt (24). The outer wall of the telescopic rod (6) is processed with a scale (7), the outer wall of the lower rod body (12) is provided with three groups of side grooves (14), the top of each group of side grooves (14) is welded with a magnetic attraction sheet (13), the bottom of each side groove (14) is provided with a hinge groove (15), the hinge seat (16) is fixed in each hinge groove (15), the hinge seat (16) is hinged with a support leg (17), and the bottom of the support leg (17) is processed with a magnetic attraction block (18).

2. The auxiliary device for detecting and observing urban bird nests according to claim 1, characterized in that: The scale (7) is marked every 2 cm and 10 cm.

3. The auxiliary device for detecting and observing urban bird nests according to claim 1, characterized in that: The bottom ends of the two walls of the upper telescopic rod (6) are equipped with balls (10), and a reserved groove is processed in the middle rod body (9), and the balls (10) are embedded in the middle rod body (9) and move.

4. The auxiliary device for detecting and observing urban bird nests according to claim 1, characterized in that: The length and shape of the supporting legs (17) match the side grooves (14), and the supporting legs (17) are provided in three groups and distributed around the outer wall of the lower rod body (12).

5. The auxiliary device for detecting and observing urban bird nests according to claim 1, characterized in that: A bottom groove (19) is provided at the bottom end of the lower rod body (12), a pull rod (20) is movably sleeved in the bottom groove (19), and the bottom end of the pull rod (20) is fixedly connected to the pull rod (20), and the bottom of the pull rod (20) is hemispherical.

6. The auxiliary device for detecting and observing urban bird nests according to claim 1, characterized in that: The top of the upper telescopic rod (6) is fixedly connected to a detection arm (2), and an endoscope lens (1) is installed at the front end of the detection arm (2). A side lens (25) and a front lens (26) are arranged inside the endoscope lens (1), and a circle of surrounding fill light (27) is arranged outside the front lens (26).

7. The auxiliary device for detecting and observing urban bird nests according to claim 1, characterized in that: The lower section of the rod body (12) is externally connected with a buckle (23), a display (11) is installed at the front end of the buckle (23), a storage card (21) and a charging port (22) are provided in the display (11), a data line (3) is connected between the display (11) and the endoscope lens (1), and a wire harness (5) for fixing the data line (3) is provided at the upper section of the telescopic rod (6).

8. The auxiliary device for detecting and observing urban bird nests according to claim 6, characterized in that: The detection arm (2) is an aluminum hinge structure and can be adjusted to any angle. A screw (4) is fixedly connected between the bottom end of the detection arm (2) and the top end of the upper telescopic rod (6).

Citation Information

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