Mounting structure of propeller anemometer

By combining the main body of the anemometer with the mounting base and using an all-aluminum design, the problems of inconvenient installation and corrosion of propeller anemometers have been solved, achieving stable installation and efficient measurement.

CN223727841UActive Publication Date: 2025-12-26XINJIANG UYGUR AUTONOMOUS REGION METEOROLOGICAL TECH EQUIP SUPPORT CENT +1
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Patent Information

Application Number
CN202520110276.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2025-12-26
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

The existing propeller-driven anemometer has an inconvenient installation structure and is prone to corrosion, which affects its stability and working efficiency.

Method used

The device adopts a combined structure of the anemometer body and the mounting base. By setting the first and second protrusions in the sliding groove at the bottom of the base, combined with the hexagonal side groove and the limiting block, a stable installation is achieved. The bearing connection and the all-aluminum material enhance the heat resistance and antifreeze ability.

Benefits of technology

This technology enables stable installation of propeller-driven anemometers, prevents corrosion, improves installation efficiency and measurement accuracy, and adapts to different environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a mounting structure of a propeller anemometer, which relates to the field of mounting structures, and comprises an anemometer main body, one end of the anemometer main body is movably provided with a test base, the test base is sequentially provided with an empennage and a fan blade, one end of the fan blade is provided with a first limiting block, and the other end of the fan blade is provided with a second limiting block. The wind meter body is fixedly installed on the installation base, a sliding groove is formed in the installation base, a first protruding block and a second protruding block are arranged in the sliding groove, and an edge groove is formed in one side of the second protruding block. The installation structure solves the problem that the installation structure of the propeller anemometer is inconvenient to use, the anemometer main body is arranged and fixedly installed on the installation base, the sliding groove is formed in the bottom of the installation base, and the first protruding block and the second protruding block are fixedly installed in the sliding groove, so that when the installation base needs to be fixed, the installation base can be fixed through the first protruding block and the second protruding block. A second limiting block and a third limiting block which are fixedly installed on the wall face are arranged in the sliding groove in a sleeved mode.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of mounting structure, specifically is a propeller anemometer's mounting structure. BACKGROUND

[0002] Anemometer is a kind of instrument for measuring wind speed and direction, it has wide application in meteorology, aviation, navigation, energy and other fields, the working principle of anemometer is usually based on the measurement of wind speed and direction, the measurement of wind speed usually adopts cup anemometer or propeller anemometer, they indirectly measure wind speed by measuring the rotating speed of cup or propeller, the measurement of wind direction usually adopts wind vane, it determines wind direction by measuring the deflection angle of wind vane, in the use process of anemometer, it needs to ensure its stability, to avoid the influence on the accuracy of anemometer measurement.

[0003] The mounting structure of the existing propeller anemometer usually fixes and installs one end of the propeller anemometer on the mounting base, and a plurality of arc-shaped side grooves are formed on the mounting base, then the propeller anemometer is fixed and installed on the wall surface through the arc-shaped side grooves and bolts, so that the propeller anemometer can be fixed and installed, and better measurement effect is achieved.

[0004] However, for the mounting structure of the existing propeller anemometer, the bolt is fixed on the surface of the wall through the arc-shaped side groove formed on the mounting base, which is inconvenient to install, and the bolt is exposed for a long time, which may rust, causing the mounting base and the wall surface to be loose, thereby affecting the stability of the propeller anemometer, and the rusted bolt is not conducive to disassembly, affecting the work efficiency of the staff. UTILITY MODEL CONTENTS

[0005] Therefore, the utility model aims to provide a mounting structure of propeller anemometer to solve the technical problem of inconvenient use of the mounting structure of propeller anemometer.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a mounting structure of propeller anemometer, including anemometer main body, one end of the anemometer main body is movably installed with test base, tail fin and fan blade are sequentially arranged on the test base, first limiting block is arranged at one end of the fan blade, the anemometer main body is fixedly installed on the mounting base, sliding groove is formed in the mounting base, first protrusion and second protrusion are arranged in the sliding groove, side groove is formed on one side of the second protrusion, second limiting block and third limiting block are sleeved in the mounting base, fixed block is sleeved on the third limiting block, and stretching rod is arranged on one side of the fixed block.

[0007] By adopting the technical scheme, the installation structure of the propeller anemometer is inconvenient to use, the anemometer body is arranged, the anemometer body is fixedly installed on the installation base, the sliding groove is arranged at the bottom of the installation base, the first protrusion and the second protrusion are fixedly installed in the sliding groove, when the installation base needs to be fixed, the second limiting block and the third limiting block fixedly installed on the wall are sleeved in the sliding groove, the installation base is rotated to make the first protrusion in the sliding groove sleeved on the second limiting block, then the installation base is rotated to the specified position, the side of the second protrusion is provided with the hexagon-shaped side groove, the hexagon-shaped fixing block is sleeved on the third limiting block fixedly installed at one end of the second limiting block through the side groove, the third limiting block is also hexagon-shaped, the hexagon-shaped fixing groove is arranged in the fixing block, so that the second limiting block, the third limiting block and the installation base are limited by the fixing block, the installation base is stably fixed on the wall, the fixing structure is arranged in the installation base, and rust of the fixing structure is avoided, so that the stability of the installation base is affected.

[0008] The utility model further sets up, anemometer body one side is provided with cable interface, be provided with annular protrusion on the cable interface.

[0009] By adopting the technical scheme, the anemometer body can be connected with external cable through the cable interface arranged at one side of the anemometer body, so that the effect of data transmission is achieved, the annular protrusion arranged on the cable interface can play a certain waterproof effect, and damage of the anemometer body caused by rainwater is avoided.

[0010] The utility model further sets up, anemometer body and test base are connected through bearing swing, test base can rotate freely.

[0011] By adopting the technical scheme, the anemometer body and the test base are connected through the bearing, and the test base can rotate freely, so that the wind direction can be detected, and the use effect of the test base can be achieved.

[0012] The utility model further sets up, anemometer body, test base, empennage and fan all adopt full aluminium material, and anemometer body, test base, empennage and fan are closely connected.

[0013] By adopting the technical scheme, the anemometer body, the test base, the empennage and the fan all adopt full aluminium material, and the anemometer body, the test base, the empennage and the fan are closely connected, the heat resistance and anti-freezing capacity of the propeller anemometer are enhanced, different environments can be adapted to, and the propeller anemometer is more practical.

[0014] The utility model further sets up, second limit block and third limit block fixed mounting wall, the cross section of third limit block sets up hexagon.

[0015] Through adopting above technical scheme, through second limit block and third limit block fixed mounting wall, the cross section of third limit block sets up hexagon, makes the fixed block after setting, can play the limiting effect to the installation base, makes installation base can stable installation.

[0016] The utility model further sets up, the chute sets up many groups, and the cross section of chute sets up fan shape.

[0017] Through adopting above technical scheme, through the chute sets up many groups, strengthens the fixed effect of installation base, the cross section of chute sets up fan shape, the rotation of installation base is convenient, avoids the collision of second limit block and third limit block, to influence the normal use of installation base.

[0018] The utility model further sets up, first protruding block sets in second limit block, third limit block sets in chute.

[0019] Through adopting above technical scheme, through first protruding block sets in second limit block, to installation base plays a limiting effect, avoids installation base and can move up and down, third limit block sets in chute, the setting of fixed block is convenient, makes fixed block can reach use effect, the covering effect of third limit block is played to third limit block, avoids third limit block and rainwater direct contact.

[0020] The utility model further sets up, the side slot of second protruding block one side sets up cross section and sets up hexagon, side slot passes through chute setting.

[0021] Through adopting above technical scheme, through the side slot of second protruding block one side sets up cross section and sets up hexagon, the fixed of installation base of fixed block is convenient, to make anemometer main part and test base can stable installation, side slot passes through chute setting, the setting of fixed block is convenient.

[0022] The utility model further sets up, the side slot of second protruding block one side sets up cross section and sets up hexagon, the fixed of installation base of fixed block is convenient, to make anemometer main part and test base can stable installation, side slot passes through chute setting, the setting of fixed block is convenient.

[0023] Through adopting above technical scheme, through the side slot of second protruding block one side sets up cross section and sets up hexagon, the fixed of installation base of fixed block is convenient, to make anemometer main part and test base can stable installation, side slot passes through chute setting, the setting of fixed block is convenient.

[0024] The utility model further sets up, the side slot of second protruding block one side sets up cross section and sets up hexagon, the fixed of installation base of fixed block is convenient, to make anemometer main part and test base can stable installation, side slot passes through chute setting, the setting of fixed block is convenient.

[0025] By adopting the technical scheme, the fixed block is sleeved with the third limiting block in the fixed inner groove, the length of the fixed block is large, and the fixing effect of the fixed block is enhanced.

[0026] In summary, the utility model mainly has the following beneficial effects:

[0027] 1、The utility model discloses a wind measuring instrument fixing structure, which comprises a wind measuring instrument main body, a test base, a first limiting block, a mounting base, a wall surface, a second limiting block, a third limiting block, a sliding groove, a first protruding block, a second protruding block, a fixed block, a stretching rod and a fixed inner groove, which solves the inconvenient use of the mounting structure of the propeller wind measuring instrument.

[0028] 2、The utility model discloses a stretching rod is fixedly installed on one side of the fixed block, and the stretching rod is arranged in the U shape, so that when the fixed block is installed and disassembled, the installation personnel can quickly install and disassemble the fixed block through the stretching rod, thereby saving the time of the installation personnel and making the structure more practical. ACCURACY

[0029] Figure 1 It is the first structure schematic drawing of the utility model;

[0030] Figure 2 It is the first local enlarged view of the utility model;

[0031] Figure 3 It is the limiting block schematic drawing of the utility model;

[0032] Figure 4 It is the fixed block schematic drawing of the utility model;

[0033] Figure 5 It is the second structure schematic drawing of the utility model;

[0034] Figure 6 is a sectional view of the utility model;

[0035] Figure 7 is a first local enlarged view of the utility model;

[0036] Figure 8 is a schematic view of the rubber block of the utility model;

[0037] Figure 9 is a third structure schematic view of the utility model.

[0038] In the drawing: 1, wind meter main body; 2, test base; 3, tail wing; 4, fan blade; 5, first limit block; 6, installation base; 7, wall surface; 8, second limit block; 81, third limit block; 9, sliding groove; 91, first protruding block; 92, second protruding block; 93, side groove; 10, fixed block; 101, stretching rod; 102, fixed inner groove; 11, rubber block; 111, rubber inner groove; 112, waterproof plate. DETAILED DESCRIPTION

[0039] The technical solutions in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. The embodiments described below with reference to the drawings are exemplary and are used only for explaining the utility model and cannot be understood as limiting the utility model.

[0040] The embodiments of the utility model will be described below according to the overall structure of the utility model.

[0041] Embodiment one

[0042] A propeller wind meter mounting structure, as shown in Figure 1 - Figure 7 illustrated, including wind meter main body 1, one end of wind meter main body 1 movably installs test base 2, test base 2 is sequentially provided with tail wing 3 and fan blade 4, by setting up tail wing 3, it is convenient for the measurement of wind direction, one end of fan blade 4 is provided with first limit block 5, so that fan blade 4 is fixed, avoids fan blade 4 to slide, wind meter main body 1 is fixedly installed in installation base 6, sliding groove 9 is set up in installation base 6, first protruding block 91 and second protruding block 92 are set up in sliding groove 9, side groove 93 is set up on one side of second protruding block 92, it is convenient for the setting of fixed block 10, second limit block 8 and third limit block 81 are set up in installation base 6, fixed block 10 is set up on third limit block 81, one side of fixed block 10 is provided with stretching rod 101, make the installation and dismounting of fixed block 10 more convenient, so as to reduce the installation difficulty of installation personnel.

[0043] Please refer to Figure 1 and Figure 5The cable interface is arranged on one side of the anemometer body 1, and a ring-shaped protrusion is arranged on the cable interface. The cable interface is arranged on one side of the anemometer body 1, so that the anemometer body 1 can be connected with an external cable, thereby achieving the effect of data transmission. The ring-shaped protrusion arranged on the cable interface can achieve a certain waterproof effect, avoiding damage to the anemometer body 1 caused by rainwater.

[0044] Please refer to Figure 1 and Figure 5 The anemometer body 1 and the test base 2 are connected through a bearing, and the test base 2 can rotate freely. The anemometer body 1 and the test base 2 are connected through a bearing, and the test base 2 can rotate freely, thereby enabling the detection of wind direction and enabling the test base 2 to achieve the use effect.

[0045] Please refer to Figure 1 and Figure 5 The anemometer body 1, the test base 2, the tail wing 3 and the fan blade 4 are all made of full aluminum material, and the anemometer body 1, the test base 2, the tail wing 3 and the fan blade 4 are tightly connected. By using full aluminum material for the anemometer body 1, the test base 2, the tail wing 3 and the fan blade 4, and tightly connecting the anemometer body 1, the test base 2, the tail wing 3 and the fan blade 4, the heat resistance and anti-freezing ability of the propeller anemometer are enhanced, which can adapt to different environments, thereby making the propeller anemometer more practical.

[0046] Please refer to Figure 3 The second limiting block 8 and the third limiting block 81 are fixedly installed on the wall surface 7, and the cross section of the third limiting block 81 is hexagonal. By fixing the second limiting block 8 and the third limiting block 81 on the wall surface 7, and setting the cross section of the third limiting block 81 as hexagonal, the installation base 6 can be limited after the sleeve fixing block 10 is set, so that the installation base 6 can be stably installed.

[0047] Please refer to Figure 5 and Figure 6 The chute 9 is provided with multiple groups, and the cross section of the chute 9 is set as a fan shape. By arranging multiple groups of the chute 9, the fixing effect of the installation base 6 is enhanced. The cross section of the chute 9 is set as a fan shape, which facilitates the rotation of the installation base 6 and avoids collision with the second limiting block 8 and the third limiting block 81, thereby affecting the normal use of the installation base 6.

[0048] Please refer to Figure 1 and Figure 6The first protrusion 91 is sleeved in the second limiting block 8, the third limiting block 81 is sleeved in the sliding groove 9, the first protrusion 91 is sleeved in the second limiting block 8, thereby playing a limiting effect on the installation base 6, avoiding that the installation base 6 can move up and down, the third limiting block 81 is sleeved in the sliding groove 9, facilitating the sleeving of the fixing block 10, so that the fixing block 10 can achieve the use effect, and meanwhile playing a covering effect on the third limiting block 81, avoiding direct contact of the third limiting block 81 with rainwater.

[0049] Please refer to Figure 2 and Figure 6 The side groove 93 provided on one side of the second protrusion 92 is provided in a hexagonal cross section, and the side groove 93 penetrates the sliding groove 9, the side groove 93 provided on one side of the second protrusion 92 is provided in a hexagonal cross section, facilitating the fixing of the fixing block 10 to the installation base 6, so that the wind measuring instrument main body 1 and the test base 2 can be stably installed, and the side groove 93 penetrates the sliding groove 9, facilitating the sleeving of the fixing block 10.

[0050] Please refer to Figure 2 and Figure 6 The side groove 93 is sleeved with the fixing block 10, and the cross section of the fixing block 10 is provided in a hexagonal shape, the installation base 6, the second limiting block 8 and the third limiting block 81 can be fixedly installed by sleeving the fixing block 10 in the side groove 93, and the cross section of the fixing block 10 is provided in a hexagonal shape, which can enhance the fixing effect of the fixing block 10 and avoid loosening of the second limiting block 8 and the third limiting block 81.

[0051] Please refer to Figure 4 One side of the fixing block 10 is provided with a fixed inner groove 102, and the third limiting block 81 is sleeved in the fixed inner groove 102, one side of the fixing block 10 is provided with the fixed inner groove 102, and the third limiting block 81 is sleeved in the fixed inner groove 102, so that the length of the fixing block 10 sleeved in the side groove 93 is larger, and the fixing effect of the fixing block 10 is enhanced.

[0052] Example two

[0053] A mounting structure of a propeller wind measuring instrument is shown in Figure 8 - Figure 9 The technical scheme and parts of the present embodiment are basically the same as those of example one, and the same parts are not described here. It can be written that: at one end of the side groove 93, a rubber block 11 with a hexagonal cross section is sleeved, one end of the rubber block 11 is provided with a rubber inner groove 111, the other end of the rubber block 11 is fixedly installed with a waterproof plate 112 with the same curvature as the installation base 6, and one side of the waterproof plate 112 is provided with an inclined surface.

[0054] By setting the rubber block 11 on one end of the edge groove 93, rainwater can be prevented from contacting the fixing block 10, thereby avoiding erosion of the fixing block 10, and a rubber inner groove 111 is formed on one side of the rubber block 11 to prevent the rubber block 11 from contacting the stretching rod 101 arranged on one side of the fixing block 10, thereby increasing the sleeving length of the rubber block 11, enhancing the contact friction between the rubber block 11 and the edge groove 93, and preventing the rubber block 11 from falling off the edge groove 93; the waterproof plate 112 arranged on one side of the rubber block 11 can further enhance the waterproof effect of the rubber block 11 and prevent rainwater from entering, and an inclined surface is arranged on the top of the waterproof plate 112 to guide the rainwater flowing down the mounting base 6, thereby preventing the rainwater from penetrating between the rubber block 11 and the edge groove 93.

[0055] The working principle of the utility model is as follows: after the test base 2 is sleeved on one side of the anemograph main body 1, the fan blade 4 is sleeved on one side of the test base 2 and fixed through the first limiting block 5, then the second limiting block 8 is fixedly installed on the wall surface 7 at the position to be measured, and the second limiting block 8 and the third limiting block 81 are sleeved in the sliding groove 9 formed in the mounting base 6 arranged on one end of the test base 2; the first protruding block 91 and the second protruding block 92 are arranged in the sliding groove 9; the mounting base 6 is rotated to make the first protruding block 91 sleeved in the second limiting block 8; after the mounting base 6 is rotated to the specified position, the second limiting block 8 and the third limiting block 81 are rotated to the other end of the sliding groove 9; the edge groove 93 with a hexagonal cross section is formed on one side of the second protruding block 92, and the edge groove 93 is connected with the sliding groove 9; the fixing block 10 with a hexagonal cross section is sleeved on the third limiting block 81 through the edge groove 93; the fixing inner groove 102 with a hexagonal cross section is formed in the fixing block 10, and the third limiting block 81 is also arranged as a straight rod with a hexagonal cross section, so that the mounting base 6 and the wall surface 7 are fixed through the fixing block 10, thereby achieving stable installation of the mounting base 6 and the anemograph main body 1; the mounting base 6 and the anemograph main body 1 are fixed through the fixing structures such as the second limiting block 8, the third limiting block 81 and the fixing block 10, which is simple to operate and convenient for installation by workers; the fixing structures such as the second limiting block 8, the third limiting block 81 and the fixing block 10 are arranged in the mounting base 6, so that the fixing structures are prevented from contacting rainwater, thereby reducing corrosion of the fixing structures and preventing the mounting base 6 from loosening and affecting the measurement accuracy of the anemograph main body 1 and the test base 2; the stretching rod 101 is arranged on one side of the fixing block 10, which is convenient for installation and dismounting of the fixing block 10, saves time of installation personnel, and makes the installation structure more practical.

[0056] Although the embodiments of the utility model have been shown and described, the specific embodiments are only the explanation of the utility model, and are not the limitation of the utility model, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable way, the person skilled in the art can make the modification, replacement and change of no creative contribution to the embodiment according to the need after reading the specification without departing from the principle and the purpose of the utility model, but as long as in the patent right claim range of the utility model, it is protected by the patent law.

Claims

1. A mounting structure of a propeller anemometer, comprising an anemometer main body (1), characterized in that: One end of the anemometer body (1) is movably installed with a test base (2), the test base (2) is sequentially provided with a tail fin (3) and a fan blade (4), one end of the fan blade (4) is provided with a first limiting block (5), the anemometer body (1) is fixedly installed on the mounting base (6), the mounting base (6) is provided with a sliding groove (9), the sliding groove (9) is provided with a first protrusion (91) and a second protrusion (92), one side of the second protrusion (92) is provided with a side slot (93), the mounting base (6) is provided with a second limiting block (8) and a third limiting block (81), the third limiting block (81) is provided with a fixed block (10), one side of the fixed block (10) is provided with a stretching rod (101).

2. The mounting structure for a propeller anemometer according to claim 1, characterized in that: The anemometer body (1) is provided with a cable interface, and the cable interface is provided with a ring-shaped protrusion.

3. The mounting structure for a propeller anemometer according to claim 1, characterized in that: The anemometer body (1) and the test base (2) are movably connected through a bearing, and the test base (2) can rotate freely.

4. The mounting structure for a propeller anemometer according to claim 1, characterized in that: The anemometer body (1), the test base (2), the tail fin (3) and the fan blade (4) are all made of full aluminum material, and the anemometer body (1), the test base (2), the tail fin (3) and the fan blade (4) are tightly connected.

5. The mounting structure for a propeller anemometer according to claim 1, characterized in that: The second limiting block (8) and the third limiting block (81) are fixedly installed on the wall surface (7), and the cross section of the third limiting block (81) is hexagonal.

6. The mounting structure for a propeller anemometer according to claim 1, characterized by: The sliding groove (9) is provided with a plurality of groups, and the cross section of the sliding groove (9) is provided with a fan shape.

7. The mounting structure for a propeller anemometer according to claim 1, characterized by: The first protrusion (91) is sleeved in the second limiting block (8), and the third limiting block (81) is sleeved in the sliding groove (9).

8. The mounting structure for a propeller anemometer according to claim 1, characterized by: The side slot (93) provided on one side of the second protrusion (92) is provided with a hexagonal cross section, and the side slot (93) penetrates the sliding groove (9).

9. The mounting structure for a propeller anemometer according to claim 1, characterized by: The fixed block (10) is sleeved in the side slot (93), and the cross section of the fixed block (10) is hexagonal.

10. The mounting structure for a propeller anemometer according to claim 1, characterized by: One side of the fixed block (10) is provided with a fixed inner groove (102), and the fixed inner groove (102) is sleeved with a third limiting block (81).