Placement box for environment-friendly monitoring portable three-cup wind direction and wind speed meter

By designing a multi-stage support and storage mechanism anemometer placement box, the problems of low assembly efficiency and difficulty in high-altitude adjustment of the air cup type anemometer are solved, and rapid installation and safety improvement are achieved.

CN223132935UActive Publication Date: 2025-07-22SHANDONG JINTE TESTING TECH CO LTD
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Patent Information

Application Number
CN202422269408.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-07-22
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

The existing air cup type wind speed gauge has low assembly efficiency, many auxiliary tools are carried and difficult to adjust at high altitude, and is limited by the poles with a certain height.

Method used

A storage box for environmentally friendly monitoring of lightweight three-cup wind speed meter is designed, including a multi-stage support mechanism and a storage mechanism, adjusting the angle and height through the multi-stage support mechanism, and safely transporting and installing it using the storage mechanism.

Benefits of technology

It improves the installation speed and safety of the anemometer, adapts to the terrain needs of different regions, and achieves rapid assembly and angle adjustment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of three-cup wind direction and anemometer protectors, in particular to an environment-friendly monitoring portable three-cup wind direction and anemometer placing box which comprises a three-cup wind direction and anemometer, a multi-stage supporting mechanism installed on the three-cup wind direction and anemometer and a storage mechanism installed outside the multi-stage supporting mechanism. The storage mechanism comprises a first box plate arranged on the ground and a second box plate arranged on the outer side of the first box plate. The multi-stage supporting mechanism capable of automatically adjusting the angle is arranged, and the storage mechanism capable of safely storing the three-cup wind direction and wind speed indicator is arranged outside the multi-stage supporting mechanism, so that the three-cup wind direction and wind speed indicator is safely transferred to a designated to-be-assembled place through the storage mechanism; the anemometer is lifted to the required height through the multi-stage supporting mechanism, and the required angle is adjusted at the same time, so that the installation speed and safety of the three-cup wind direction and anemometer can be improved to a great extent.
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Description

Technical Field

[0001] The utility model relates to the technical field of protectors for three-cup anemometers and wind speed meters, and particularly relates to a placement box for an environmental monitoring portable three-cup anemometer and wind speed meter. Background Art

[0002] The cup anemometer and wind speed meter is mainly used for measuring five parameters, namely instantaneous wind speed, instantaneous wind grade, average wind speed, average wind grade, and corresponding wave height.

[0003] At present, the cup anemometer and wind speed meter needs to be assembled at multiple levels before it can be used at a designated position. However, this assembly method is inefficient and requires a lot of auxiliary tools. Selectively designating the cup anemometer and wind speed meter to a required high altitude is also limited by a specific height pole.

[0004] In view of this, a placement box for an environmental monitoring portable three-cup anemometer and wind speed meter is designed to solve the above problems. Content of the Utility Model

[0005] The utility model aims to solve one of the technical problems existing in the prior art or related technologies.

[0006] Therefore, the technical solution adopted by the utility model is as follows:

[0007] A placement box for an environmental monitoring portable three-cup anemometer and wind speed meter, comprising a three-cup anemometer and wind speed meter, a multi-stage support mechanism installed on the three-cup anemometer and wind speed meter, and a storage mechanism installed outside the multi-stage support mechanism; the storage mechanism includes a first box board placed on the ground and a second box board arranged outside the first box board; the multi-stage support mechanism includes a reinforcing beam installed in the middle of the first box board and the second box board, and a first support rod, a second support rod, and a third support rod stacked and arranged inside the reinforcing beam, and the number of the second support rods is seven; a pre-installed clamping seat is arranged at the bottom of the three-cup anemometer and wind speed meter.

[0008] In a preferred example of the utility model, it can be further configured that: the storage mechanism further includes two main stability-enhancing foot pads and two auxiliary stability-enhancing foot pads;

[0009] Both the main stability-enhancing foot pads and the auxiliary stability-enhancing foot pads are made of stainless steel materials. One set of the main stability-enhancing foot pads and the auxiliary stability-enhancing foot pads is movably installed in two grooves at the bottom of the first box board, and the other set of the main stability-enhancing foot pads and the auxiliary stability-enhancing foot pads is movably installed in two grooves at the bottom of the second box board.

[0010] In a preferred example of the utility model, it can be further configured that: a side door board is movably installed between the first box board and the second box board, and a top door board is movably installed at the other end of the side door board;

[0011] A handle is arranged at one end of the top door board away from the side door board.

[0012] In a preferred embodiment, the present utility model can be further configured as follows: drainage slots are provided inside both the first box board and the second box board, and a wear-resistant rubber layer is provided on the surfaces of the first box board and the second box board.

[0013] In a preferred embodiment, the present utility model can be further configured as follows: the multi-stage support mechanism further includes a first stud fixedly installed at the top of the reinforcing beam, and one end of the first support rod is movably installed on the first stud.

[0014] In a preferred embodiment, the present utility model can be further configured as follows: the multi-stage support mechanism further includes eight locking components;

[0015] The locking component further includes a U-shaped buckle and a gasket provided on the buckle;

[0016] The buckle is composed of an oval backing plate and two screw rods.

[0017] In a preferred embodiment, the present utility model can be further configured as follows: a second stud is installed inside the clamp seat at the bottom of the three-cup wind direction and speed meter, the outer end of the third support rod is movably installed on the second stud, and the outer end of the third support rod is adaptively clamped inside the clamp seat.

[0018] In a preferred embodiment, the present utility model can be further configured as follows: compression bolts are installed on the first stud, the second stud, and the screw rods.

[0019] By adopting the above technical solutions, the beneficial effects obtained by the present utility model are as follows:

[0020] 1. By providing a multi-stage support mechanism that is multi-stage and can autonomously adjust the angle, and a storage mechanism that can safely store the three-cup wind direction and speed meter outside the multi-stage support mechanism, after safely transporting the three-cup wind direction and speed meter to the designated installation location to be installed using the storage mechanism, the wind speed meter is lifted to the required height and the required angle is adjusted through the multi-stage support mechanism, thereby greatly improving the installation speed and safety of the three-cup wind direction and speed meter. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is a schematic diagram of the present utility model unfolded;

[0022] Figure 2 is a schematic diagram of the present utility model during use;

[0023] Figure 3 is an exploded schematic diagram of the storage mechanism of the present utility model;

[0024] Figure 4 is a schematic diagram of the multi-stage support mechanism of the present utility model;

[0025] Figure 5 This is a utility model Figure 4 An enlarged schematic view of part A in this utility model;

[0026] Figure 6 This is a utility model Figure 4 An enlarged schematic view of part B in this utility model.

[0027] Reference numerals:

[0028] 100, storage mechanism; 110, first box board; 120, second box board; 130, drain slot; 140, main stability-enhancing foot; 150, secondary stability-enhancing foot; 160, side door panel; 170, top door panel;

[0029] 200, multi-stage support mechanism; 210, strengthening beam; 220, first stud; 230, first strut; 240, second stud; 250, third strut; 260, second strut; 270, locking assembly; 271, buckle; 272, gasket;

[0030] 300, three-cup anemometer and wind vane. Specific embodiments

[0031] To make the objectives, technical solutions and advantages of the present utility model clearer and more understandable, the present utility model will be further described in detail below in conjunction with specific embodiments and with reference to the accompanying drawings. It should be noted that, without conflict, the embodiments of the present utility model and the features in the embodiments can be combined with each other.

[0032] It should be understood that these descriptions are only exemplary and are not intended to limit the scope of the present utility model.

[0033] The following describes a placement box for a portable three-cup anemometer and wind vane for environmental monitoring provided by some embodiments of the present utility model with reference to the accompanying drawings.

[0034] Embodiment 1:

[0035] Combined with Figures 1-6 As shown, a placement box for a portable three-cup anemometer and wind vane for environmental monitoring provided by the present utility model includes a three-cup anemometer and wind vane 300, a multi-stage support mechanism 200 installed on the three-cup anemometer and wind vane 300, and a storage mechanism 100 installed outside the multi-stage support mechanism 200.

[0036] The storage mechanism 100 includes a first box board 110, a second box board 120, a drainage notch 130, a main stability-enhancing foot 140, a secondary stability-enhancing foot 150, a side door board 160, and a locking assembly 270. The multi-stage support mechanism 200 includes a reinforcing beam 210, a first stud 220, a first strut 230, a second stud 240, a third strut 250, a second strut 260, and a locking assembly 270. The locking assembly 270 further includes a buckle 271 and a gasket 272.

[0037] Among them, the storage mechanism 100 includes two main stability-enhancing feet 140, two secondary stability-enhancing feet 150, the first box board 110 placed on the ground, and the second box board 120 arranged outside the first box board 110.

[0038] The multi-stage support mechanism 200 includes eight groups of locking assemblies 270, a reinforcing beam 210 installed in the middle of the first box board 110 and the second box board 120, and the first strut 230, the second strut 260, and the third strut 250 stacked and arranged inside the reinforcing beam 210. The number of the second struts 260 is seven. The first stud 220 is fixedly installed at the top of the reinforcing beam 210, and one end of the first strut 230 is movably installed on the first stud 220.

[0039] A pre-installed clamping seat is provided at the bottom of the three-cup anemometer 300.

[0040] The three-cup anemometer mainly measures the instantaneous wind speed, instantaneous wind grade, average wind speed, average wind grade, and corresponding wave height. However, the terrain varies in different regions. When assembling the three-cup anemometer, a strut of a specific height is required to support it. This method requires carrying more tools to set up the three-cup anemometer, and the erected instrument cannot be adjusted in height gradually at the set location. At the same time, it is also difficult to adjust the angle of the instrument's orientation.

[0041] This device provides a multi-stage support mechanism 200 for multi-stage regulation of the three-cup anemometer 300 and arranges the multi-stage support mechanism 200 in the cavity inside the first box board 110 and the second box board 120. After the two main stability-enhancing feet 140 and the two secondary stability-enhancing feet 150 are laid flat at the designated installation location, the two main stability-enhancing feet 140 and the two secondary stability-enhancing feet 150 are directly fixed to the installation location by using multiple bolts. At this time, the first box board 110, the second box board 120, and the reinforcing beam 210 as a whole can provide a sufficiently stable support platform for the first strut 230, the second strut 260, and the third strut 250 after folding and stretching. According to the detection requirements in different regions, the retention state of the three-cup anemometer 300 is controlled by adjusting the first stud 220, the second stud 240, and multiple compression bolts on the screw rod. At this time, the three-cup anemometer 300 retained at a high altitude can be conveniently assembled quickly in different regions and put into use rapidly.

[0042] Example 2:

[0043] Combined with Figures 2-4 As shown, on the basis of Example 1, both the main stability-enhancing foot pads 140 and the secondary stability-enhancing foot pads 150 are made of stainless steel. One set of the main stability-enhancing foot pads 140 and the secondary stability-enhancing foot pads 150 are movably installed in two grooves at the bottom of the first box board 110, and the other set of the main stability-enhancing foot pads 140 and the secondary stability-enhancing foot pads 150 are movably installed in two grooves at the bottom of the second box board 120;

[0044] A side door panel 160 is movably installed between the first box board 110 and the second box board 120, and a top door panel 170 movably installed at the other end of the side door panel 160;

[0045] A handle is provided at one end of the top door panel 170 away from the side door panel 160;

[0046] Drainage slots 130 are provided inside both the first box board 110 and the second box board 120, and a wear-resistant rubber layer is provided on the surfaces of the first box board 110 and the second box board 120.

[0047] When the three-cup anemometer 300 is being transported or not in use, the compression bolts can be loosened. Then, the first strut 230, the second strut 260, and the third strut 250 are folded and stacked in the gap inside the first box board 110 and the second box board 120. Then, the main stability-enhancing foot pads 140 and the secondary stability-enhancing foot pads 150 are reset. Next, the top door panel 170 and the side door panel 160 are reset and stacked along the ports of the first box board 110 and the second box board 120 until the handle at the outer end of the top door panel 170 is symmetric with the handles at the top of the first box board 110 and the second box board 120. At this time, the three-cup anemometer 300 can be safely stored in the storage mechanism 100.

[0048] Example 3:

[0049] Combined with Figures 4-6 As shown, on the basis of Example 1, the locking assembly 270 further includes a U-shaped buckle 271 and a gasket 272 provided on the buckle 271;

[0050] The buckle 271 is composed of an oval-shaped backing plate and two screw rods;

[0051] A second stud 240 is installed in the clamp seat at the bottom of the three-cup anemometer 300. The outer end of the third strut 250 is movably installed on the second stud 240, and the outer end of the third strut 250 is adaptively clamped inside the clamp seat;

[0052] Compression bolts are installed on both the first stud 220, the second stud 240, and the screw rod.

[0053] Use one of the buckles 271 and the gaskets 272 to transfer the first support rod 230 and one of the second support rods 260, and then use the other buckle 271 and the gasket 272 to transfer the third support rod 250 and the other second support rod 260. At this time, the remaining six locking components 270 can transfer the remaining five second support rods 260. At this time, the first support rod 230, the third support rod 250, and the seven second support rods 260 can provide a multi-level support platform for the three-cup wind direction and speed meter 300 to stay in the air, so as to facilitate the multi-angle stay regulation for the three-cup wind direction and speed meter 300.

[0054] The working principle and usage process of the present utility model: When the device is transported to the designated installation location, the staff needs to turn outwards two main stability-enhancing feet 140 and two secondary stability-enhancing feet 150 in advance, then place the first box board 110 and the second box board 120 on the installation location, then press the two main stability-enhancing feet 140 and the two secondary stability-enhancing feet 150 flat with the installation location, and use a plurality of fastening bolts to fix the main stability-enhancing feet 140 and the secondary stability-enhancing feet 150 on the installation location. When the first box board 110 and the second box board 120 are in a stable state, the top door board 170 and the side door board 160 can be turned layer by layer. When the entire box body is unfolded, the staff can stretch the three-cup wind direction and speed meter 300 outwards until the bottom clamp of the three-cup wind direction and speed meter 300 that is movably installed on the third support rod 250 is pulled out. With the linkage of multiple locking components 270, the seven second support rods 260 can extend outwards from the cavities inside the first box board 110 and the second box board 120;

[0055] During this process, the staff needs to adjust the locking bolts on the threaded end rods of the second stud 240, the first stud 220, and the multiple buckles 271 until the three-cup wind direction and speed meter 300 is lifted towards the high altitude by the third support rod 250, the first support rod 230, and the seven locking components 270. By adjusting the angles of the third support rod 250, the first support rod 230, and the seven locking components 270, the three-cup wind direction and speed meter 300 can be lifted and regulated layer by layer at high altitude, and at the same time, the inclination angle of the three-cup wind direction and speed meter 300 can also be freely adjusted.

[0056] Although the embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and purposes of the present utility model. The scope of the present utility model is defined by the claims and their equivalents.

Claims

1. A placement box for a portable three-cup wind direction and wind speed meter for environmental monitoring, including a three-cup wind direction and wind speed meter (300), characterized in that, It further includes a multi-stage support mechanism (200) installed on a three-cup anemometer (300) and a storage mechanism (100) installed outside the multi-stage support mechanism (200); The storage mechanism (100) includes a first box board (110) placed on the ground and a second box board (120) arranged on the outer side of the first box board (110); The multi-stage support mechanism (200) includes a reinforcing beam (210) installed in the middle of the first box board (110) and the second box board (120), and first struts (230), second struts (260) and third struts (250) that are stacked and arranged on the inner side of the reinforcing beam (210), and the number of the second struts (260) is seven; A pre-installed clamping seat is provided at the bottom of the three-cup anemometer (300).

2. The placement box of an environmental monitoring portable three-cup anemometer according to claim 1, characterized in that, The storage mechanism (100) further includes two main stability-enhancing feet (140) and two auxiliary stability-enhancing feet (150); Both the main stability-enhancing feet (140) and the auxiliary stability-enhancing feet (150) are made of stainless steel. One set of the main stability-enhancing feet (140) and the auxiliary stability-enhancing feet (150) are movably installed in two grooves at the bottom of the first box board (110), and the other set of the main stability-enhancing feet (140) and the auxiliary stability-enhancing feet (150) are movably installed in two grooves at the bottom of the second box board (120).

3. The placement box of an environmentally friendly monitoring portable three-cup anemometer according to claim 1, characterized in that, A side door panel (160) is movably installed between the first box board (110) and the second box board (120), and a top door panel (170) is movably installed at the other end of the side door panel (160); A handle is provided at one end of the top door panel (170) away from the side door panel (160).

4. The placement box of an environmentally friendly monitoring portable three-cup wind direction and wind speed meter according to claim 1, characterized in that, Drainage slots (130) are provided inside both the first box board (110) and the second box board (120), and a wear-resistant rubber layer is provided on the surfaces of the first box board (110) and the second box board (120).

5. The placement box of an environmentally friendly monitoring portable three-cup wind direction and wind speed meter according to claim 1, characterized in that, The multi-stage support mechanism (200) further includes a first stud (220) fixedly installed at the top end of the reinforcing beam (210), and one end of the first strut (230) is movably installed on the first stud (220).

6. The placement box of an environmentally friendly monitoring portable three-cup anemometer according to claim 1, characterized in that, The multi-stage support mechanism (200) further includes eight sets of locking components (270); The locking component (270) further includes a U-shaped buckle (271) and a gasket (272) arranged on the buckle (271); The buckle (271) is composed of an oval backing plate and two screw rods.

7. The placement box of an environmental monitoring portable three-cup wind direction and wind speed meter according to claim 1, characterized in that, A second stud (240) is installed in the clamping seat at the bottom of the three-cup anemometer (300). The outer end of the third strut (250) is movably installed on the second stud (240), and the outer end of the third strut (250) is adaptively clamped inside the clamping seat.

8. The placement box of an environmental monitoring portable three-cup wind direction and wind speed meter according to claim 5, characterized in that, Tightening bolts are installed on the first stud (220), the second stud (240) and the screw rods.