A wind measurement radar mounting

By designing an adjustable mounting bracket, the problem of fixing the scanning area of ​​the laser wind radar was solved, enabling measurement of a wider scanning area and supporting the monitoring of wind turbine blade status.

CN224593008UActive Publication Date: 2026-08-04SHANGHAI YUANAN ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI YUANAN ENVIRONMENTAL PROTECTION TECH CO LTD
Filing Date
2025-09-15
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

Existing laser wind radar equipment is large in size and weight, resulting in a fixed laser scanning area that cannot meet the measurement requirements of a wide scanning area.

Method used

A mounting bracket including a mounting base plate, a first axial adjustment bracket, and a second axial adjustment bracket is designed. By rotating the first axial adjustment bracket in the horizontal direction and adjusting the second axial adjustment bracket in the vertical direction, multi-angle scanning of the wind measuring radar can be achieved.

Benefits of technology

The scanning area of ​​the wind-measuring radar has been increased, enabling it to provide more wind speed and direction information to external devices and support the monitoring of the operating status of wind turbine blades.

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Abstract

The utility model discloses a kind of wind measuring radar mounting rack, including installation bottom plate (1), first axial adjusting support (2) and second axial adjusting support (3);The installation bottom plate (1), first axial adjusting support (2) and second axial adjusting support (3) are sequentially connected;The first axial adjusting support (2) rotates in horizontal direction;The second axial adjusting support (3) is adjusted to rotate in vertical direction.The wind measuring radar mounting rack disclosed in the utility model is connected with wind measuring radar (4) and second axial adjusting support (3), by the rotation of first axial adjusting support (2) and second axial adjusting support (3), so that the scanning area of wind measuring radar (4) can be greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of wind measurement equipment installation technology, and in particular to a wind measurement radar mounting bracket. Background Technology

[0002] Atmospheric wind field detection is an important tool for studying atmospheric dynamics and climate change, playing a crucial role in many fields such as wind power, military, environment, aviation, meteorology, and oceanography. Currently, atmospheric wind field detection mainly employs laser wind radar. Because laser wind radar uses short-wavelength infrared lasers, it detects wind signals by detecting the scattering signals from atmospheric molecules and aerosols. Its detection performance is less affected by weather conditions and has high temporal and spatial resolution, resulting in higher reliability.

[0003] Existing laser wind radars are not small in size and weight, and most of them cannot meet the measurement requirements of a wide scanning area after installation because the laser scanning area of ​​the equipment is relatively fixed. Utility Model Content

[0004] This utility model specifically provides a wind measurement radar mounting bracket.

[0005] The wind measuring radar mounting bracket provided by this utility model includes a mounting base plate 1, a first axial adjustment bracket 2, and a second axial adjustment bracket 3; the mounting base plate 1, the first axial adjustment bracket 2, and the second axial adjustment bracket 3 are connected in sequence; the first axial adjustment bracket 2 rotates in the horizontal direction; and the second axial adjustment bracket 3 adjusts and rotates in the vertical direction.

[0006] Preferably, the first axial adjustment bracket 2 includes a first adjustment component 21; the first adjustment component 21 includes a first fixing plate 212; the first fixing plate 212 has a trapezoidal structure; the first upper bottom surface 2122 and the first lower bottom surface 2125 of the first fixing plate 212 are both flat, and its two first side surfaces 2124 are arc-shaped surfaces; the first lower bottom surface 2125 of the first fixing plate 212 is provided with two first threaded through holes 2126; the mounting base plate 1 is provided with four second threaded through holes 12; the first fixing plate 212 and the mounting base plate 1 are locked together by inserting bolts into the first threaded through holes 2126 and the second threaded through holes 12.

[0007] Preferably, the first adjusting component 21 further includes a first movable plate 211; the first movable plate 211 has a trapezoidal structure; the second upper bottom surface 2116 and the second lower bottom surface 2114 of the first movable plate 211 are both planes, and its two second side surfaces 2115 are arc-shaped joints; a first through hole 2123 is provided on the side near the first upper bottom surface 2122 of the first fixed plate 212; a second through hole 2111 is provided on the side near the second upper bottom surface 2116 of the first movable plate 211; the first through hole 2123 and the second through hole 2111 are coaxially arranged; after the bolt is inserted into the first through hole 2123 and the second through hole 2111, the bolt is locked by the nut, thereby locking the first movable plate 211 and the first fixed plate 212.

[0008] Preferably, the first adjustment component 21 further includes a pointer 213; the first movable plate 211 is also provided with an arc-shaped third through hole 2112; the third through hole 2112 is provided with evenly distributed scales 2113; one end of the pointer 213 is fixed to the first fixed plate 212, and the other end passes through the third through hole 2112 and points to the scale 2113.

[0009] Preferably, the first fixing plate 212 is further provided with a plurality of fixing holes 2121; the plurality of fixing holes 2121 are arranged in an arc around the first through hole 2123; the arc value of the arc formed by the plurality of fixing holes 2121 is the same as the arc value of the arc-shaped third through hole 2112, and the two are at the same arc center.

[0010] Preferably, the first axial adjustment bracket 2 further includes a first top plate 214; a third threaded hole is provided at each of the four top corners near the first top plate 214; two fourth threaded holes 2117 are provided on the second lower bottom surface 2114 of the first movable plate 211; the first top plate 214 and the first movable plate 211 are locked together by inserting bolts into the third threaded holes and the fourth threaded holes 2117.

[0011] Preferably, the first axial adjustment bracket 2 further includes a second adjustment component 22; the structure and size of the second adjustment component 22 are the same as those of the first adjustment component 21; the second adjustment component 22 is fixed between the first top plate 214 and the mounting base plate 1, and is symmetrically arranged with the first adjustment component 21.

[0012] Preferably, the structure and size of the second axial adjustment bracket 3 are the same as those of the first axial adjustment bracket 2; the two first fixing plates 212 of the second axial adjustment bracket 3 are fixed on the other side of the first top plate 214, and the second axial adjustment bracket 3 and the first axial adjustment bracket 2 are perpendicular to each other.

[0013] Preferably, the mounting base plate 1 is further provided with four sets of fourth through holes 11.

[0014] The wind measuring radar mounting bracket provided by this utility model connects the wind measuring radar 4 and the second axial adjustment bracket 3. By rotating the first axial adjustment bracket 2 and the second axial adjustment bracket 3, the scanning area of ​​the wind measuring radar 4 can be greatly increased, thereby providing external equipment with more information on wind speed and wind direction in more areas, so that external equipment can monitor the operating status of the wind turbine blades. Attached Figure Description

[0015] Figure 1 A first-view structural schematic diagram of the wind measuring radar mounting bracket provided by this utility model; Figure 2 This is a second-view structural schematic diagram of the wind measuring radar mounting bracket provided by this utility model. Figure 3 This is a schematic diagram of the structure of the first adjustment component provided in an embodiment of the present utility model; Figure 4 A structural schematic diagram of the first movable plate provided in an embodiment of this utility model from a first perspective; Figure 5 A second-view structural schematic diagram of the first movable plate provided in an embodiment of this utility model; Figure 6 This is a schematic diagram of the structure of the mounting base plate provided in an embodiment of the present utility model; Figure 7 A structural schematic diagram of the first fixing plate provided in an embodiment of the present utility model from a first perspective; Figure 8 A second-view structural schematic diagram of the first fixing plate provided in an embodiment of this utility model; Figure 9 This is a schematic diagram of the pointer provided in an embodiment of the present utility model. Detailed Implementation

[0016] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0017] like Figures 1-9As shown, the wind measuring radar mounting bracket provided in this embodiment includes a mounting base plate 1, a first axial adjustment bracket 2, and a second axial adjustment bracket 3; the mounting base plate 1, the first axial adjustment bracket 2, and the second axial adjustment bracket 3 are connected in sequence; the first axial adjustment bracket 2 rotates in the horizontal direction; and the second axial adjustment bracket 3 adjusts its rotation in the vertical direction. Those skilled in the art will understand that the connection between the wind measuring radar 4 and the second axial adjustment bracket 3, and the rotation of the first axial adjustment bracket 2 and the second axial adjustment bracket 3, can greatly increase the scanning area of ​​the wind measuring radar 4.

[0018] Furthermore, the first axial adjustment bracket 2 includes a first adjustment component 21; the first adjustment component 21 includes a first fixing plate 212; the first fixing plate 212 has a trapezoidal structure; the first upper bottom surface 2122 and the first lower bottom surface 2125 of the first fixing plate 212 are both flat, and its two first side surfaces 2124 are arc-shaped surfaces; the first lower bottom surface 2125 of the first fixing plate 212 is provided with two first threaded through holes 2126; the mounting base plate 1 is provided with four second threaded through holes 12; the first fixing plate 212 and the mounting base plate 1 are locked together by inserting bolts into the first threaded through holes 2126 and the second threaded through holes 12.

[0019] Furthermore, the first adjusting assembly 21 also includes a first movable plate 211; the first movable plate 211 has a trapezoidal structure; the second upper bottom surface 2116 and the second lower bottom surface 2114 of the first movable plate 211 are both flat, and its two second side surfaces 2115 are arc-shaped joint surfaces; a first through hole 2123 is provided on the side near the first upper bottom surface 2122 of the first fixed plate 212; a second through hole 2111 is provided on the side near the second upper bottom surface 2116 of the first movable plate 211; the first through hole 2123 and the second through hole 2111 are coaxially arranged; after the bolt is inserted into the first through hole 2123 and the second through hole 2111, the bolt is locked by the nut, thereby locking the first movable plate 211 and the first fixed plate 212. Those skilled in the art will understand that the first movable plate 211 can rotate around the bolt, and after rotating to the desired position, the nut is tightened, thereby fixing the positions of the first fixed plate 212 and the first movable plate 211.

[0020] Furthermore, the first adjustment component 21 also includes a pointer 213; the first movable plate 211 is also provided with an arc-shaped third through hole 2112; uniformly distributed scales 2113 are provided beside the third through hole 2112; one end of the pointer 213 is fixed to the first fixed plate 212, and the other end passes through the third through hole 2112 and points to the scale 2113. Those skilled in the art will understand that when the first movable plate 211 rotates, the rotation value of the first movable plate 211 can be observed through the pointer 213.

[0021] Furthermore, the first fixing plate 212 is also provided with a plurality of fixing holes 2121; the plurality of fixing holes 2121 are arranged in an arc around the first through hole 2123; the arc value of the arc formed by the plurality of fixing holes 2121 is the same as the arc value of the arc-shaped third through hole 2112, and the two are concentric. Those skilled in the art will understand that when the first movable plate 211 is rotated to a suitable position, after the bolts are inserted into the fixing holes 2121 and the third through hole 2112, and then locked with nuts, the first fixing plate 212 and the first movable plate 211 are further fixed together.

[0022] Furthermore, the first axial adjustment bracket 2 also includes a first top plate 214; a third threaded hole is provided at each of the four top corners near the first top plate 214; two fourth threaded holes 2117 are provided on the second lower bottom surface 2114 of the first movable plate 211; the first top plate 214 and the first movable plate 211 are locked together by inserting bolts into the third threaded holes and the fourth threaded holes 2117.

[0023] Furthermore, the first axial adjustment bracket 2 also includes a second adjustment component 22; the structure and size of the second adjustment component 22 are the same as those of the first adjustment component 21; the second adjustment component 22 is fixed between the first top plate 214 and the mounting base plate 1, and is symmetrically arranged with the first adjustment component 21. Those skilled in the art will understand that the stability of the rotation of the first axial adjustment bracket 2 can be improved by using two sets of adjustment components.

[0024] Furthermore, the structure and size of the second axial adjustment bracket 3 are the same as those of the first axial adjustment bracket 2; both first fixing plates 212 of the second axial adjustment bracket 3 are fixed to the other side of the first top plate 214, and the second axial adjustment bracket 3 is perpendicular to the first axial adjustment bracket 2. Those skilled in the art will understand that the first axial adjustment bracket 2 is used to increase the scanning area of ​​the wind measuring radar 4 in the horizontal direction, and the second axial adjustment bracket 3 is used to increase the scanning area of ​​the wind measuring radar 4 in the vertical direction.

[0025] Furthermore, the mounting base plate 1 is also provided with four sets of fourth through holes 11. Those skilled in the art will understand that the fourth through holes 11 are used for fixing to external objects.

[0026] Those skilled in the art will understand that the wind measuring radar 4 mounting bracket provided in this embodiment can increase the scanning area of ​​the wind measuring radar 4, thereby providing external equipment with more information such as wind speed and wind direction in more areas, so as to facilitate external equipment to monitor the operating status of the wind turbine blades.

[0027] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

Claims

1. A wind finding radar mount, characterized by, The system includes a mounting base plate (1), a first axial adjustment bracket (2), and a second axial adjustment bracket (3); the mounting base plate (1), the first axial adjustment bracket (2), and the second axial adjustment bracket (3) are connected in sequence; the first axial adjustment bracket (2) rotates in the horizontal direction; the second axial adjustment bracket (3) adjusts the rotation in the vertical direction; the first axial adjustment bracket (2) includes a first adjustment component (21); the first adjustment component (21) includes a first fixing plate (212); the first fixing plate (212) has a trapezoidal structure; the first upper bottom surface (2122) and the first lower bottom surface (2125) of the first fixing plate (212) are both flat, and its two first side surfaces (2124) are arc-shaped; the first lower bottom surface (2125) of the first fixing plate (212) is provided with two first threaded through holes (2126); the mounting base plate (1) is provided with four second threaded through holes (12); bolts are inserted into the first threaded through holes. (2126) and the second threaded through hole (12) lock the first fixing plate (212) and the mounting base plate (1) together; the first adjusting assembly (21) also includes a first movable plate (211); the first movable plate (211) has a trapezoidal structure; the second upper bottom surface (2116) and the second lower bottom surface (2114) of the first movable plate (211) are both planes, and its two second side surfaces (2115) are arc-shaped joints; near the first fixing plate (212) A first through hole (2123) is provided on one side of the first upper bottom surface (2122) of the first movable plate (211); a second through hole (2111) is provided on one side of the second upper bottom surface (2116) near the first movable plate (211); the first through hole (2123) and the second through hole (2111) are coaxially arranged; after the bolt is inserted into the first through hole (2123) and the second through hole (2111), the bolt is locked by the nut, thereby locking the first movable plate (211) and the first fixed plate (212).

2. The wind finding radar mount of claim 1, wherein, The first adjustment component (21) also includes a pointer (213); the first movable plate (211) is also provided with an arc-shaped third through hole (2112); the third through hole (2112) is provided with evenly distributed scales (2113); one end of the pointer (213) is fixed to the first fixed plate (212), and the other end passes through the third through hole (2112) and points to the scale (2113).

3. The wind finding radar mount of claim 2, wherein, The first fixing plate (212) is also provided with a plurality of fixing holes (2121); the plurality of fixing holes (2121) are arranged in an arc around the first through hole (2123); the arc value of the arc formed by the plurality of fixing holes (2121) is the same as the arc value of the arc-shaped third through hole (2112), and the two are at the same arc center.

4. The wind finding radar mount of claim 3, wherein, The first axial adjustment bracket (2) also includes a first top plate (214); a third threaded hole is provided at each of the four top corners near the first top plate (214); two fourth threaded holes (2117) are provided on the second bottom surface (2114) of the first movable plate (211); the first top plate (214) and the first movable plate (211) are locked together by inserting bolts into the third threaded holes and the fourth threaded holes (2117).

5. The wind finding radar mount of claim 4, wherein, The first axial adjustment bracket (2) also includes a second adjustment component (22); the structure and size of the second adjustment component (22) are the same as those of the first adjustment component (21); the second adjustment component (22) is fixed between the first top plate (214) and the mounting base plate (1), and is symmetrically arranged with the first adjustment component (21).

6. The wind finding radar mount of claim 5, wherein, The structure and size of the second axial adjustment bracket (3) are the same as those of the first axial adjustment bracket (2); the two first fixing plates (212) of the second axial adjustment bracket (3) are fixed on the other side of the first top plate (214), and the second axial adjustment bracket (3) and the first axial adjustment bracket (2) are perpendicular to each other.

7. The wind finding radar mount of claim 6, wherein, The mounting base plate (1) is also provided with four sets of fourth through holes (11).