Portable intelligent anemorumbometer
The design of a portable intelligent anemometer solves the problems of insufficient sensitivity and stability of traditional tools in complex airflow environments, achieving highly accurate and reliable wind speed and direction measurement. It also integrates data processing and transmission functions, improving the safety of urban gas operations.
Patent Information
- Application Number
- CN202422703641.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-11-06
AI Technical Summary
Traditional wind speed and direction measurement tools lack sensitivity and stability in complex airflow environments, and cannot provide advanced data processing and transmission functions, affecting the accuracy and reliability of measurement results.
A portable intelligent anemometer and wind vane has been designed. It adopts a first support mechanism and a second support mechanism, combined with an adjustment handle and an adjustment cylinder, to achieve flexible adjustment of height and angle. It integrates an anemometer, wind vane and control components, including an explosion-proof box, a display and a control circuit board, and has data processing, storage and transmission functions.
Maintaining high sensitivity and stability in complex airflow environments, providing accurate wind speed and direction data, ensuring that operators can monitor in real time and respond quickly, and improving the safety of urban gas operations.
Smart Images

Figure CN223740479U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of urban gas hazardous operations technology, specifically to a portable intelligent anemometer. Background Technology
[0002] In hazardous gas operations in urban areas, a key factor in ensuring operational safety is the accurate measurement of wind speed and direction. This is because wind speed and direction directly affect the spread and direction of gas leaks, thus posing a potential threat to the safety of workers and the surrounding environment. Therefore, accurately grasping the dynamics of the wind is crucial for developing effective safety measures and emergency response plans. Traditional wind speed and direction measurement tools, such as wind vanes and cylindrical wind indicators, are widely used on-site.
[0003] However, when faced with complex airflow environments, the sensitivity of wind vanes and cylindrical wind indicators is often insufficient to guarantee the accuracy of measurement results, thus affecting the accuracy. In addition, the structure of telescopic supports has insufficient stability during use, which in turn affects the reliability of the measurement. These devices have weak environmental adaptability, so their performance may be significantly affected under severe weather conditions, such as strong winds and heavy rain. Furthermore, they can only provide basic wind speed and direction measurement and display functions, lacking advanced functions such as data storage, analysis, and transmission.
[0004] In conclusion, it is necessary to further innovate existing technologies. Utility Model Content
[0005] To address the technical problems existing in the background art mentioned above, this utility model proposes a portable intelligent anemometer with a reasonable and compact structure, simple and convenient operation, adaptability to different environments, higher sensitivity and stability in complex airflow environments, high accuracy of measurement results, easy portability and deployment, and stable and reliable performance. It ensures that it can provide accurate wind speed and direction data in various environments, enabling operators to monitor in real time and respond quickly, thereby improving the safety of urban gas operations.
[0006] The utility model provides a portable intelligent wind speed and direction indicator, including first support mechanism, second support mechanism, wind speed appearance, direction indicator and control assembly, the second support mechanism is matched and is installed in the bottom of first support mechanism, the first support mechanism includes installation rod, mounting seat, limit hole and hand tight rod, the top of installation rod is matched with fixed connection of mounting seat, the top of mounting seat is matched with the limit hole who sets up, the left side rotation of mounting seat is connected with hand tight rod, the top of first support mechanism is matched with wind speed appearance and direction indicator from top to bottom in proper order, the front side of first support mechanism is matched with control assembly, the bottom of wind speed appearance is matched with direction indicator, the bottom of direction indicator is matched with sensor for gathering the wind speed signal of wind speed appearance and the direction signal of direction indicator.
[0007] The portable intelligent wind speed and direction indicator, wherein: the second support mechanism includes a fixed seat, an adjusting cylinder, an adjusting handle, support legs, and an auxiliary arm; the fixed seat is coaxially provided with the adjusting cylinder above; the adjusting handle is rotationally connected to the front side of the adjusting cylinder; three groups of support legs are rotationally connected to the outer wall of the adjusting cylinder at equal intervals; the auxiliary arm is rotationally connected between the center of the support leg and the fixed seat.
[0008] The portable intelligent wind speed and direction indicator, wherein: the first support mechanism further includes a fixed rod, a first limiting cylinder, an adjusting rod, a second limiting cylinder, and a spring; the top of the fixed rod is matched with the first limiting cylinder, and the adjusting rod is slidably connected in the fixed rod; the top of the adjusting rod is matched with the second limiting cylinder; the left side of the first limiting cylinder and the second limiting cylinder is also rotationally connected with the hand tight rod; the adjusting rod is slidably connected with the installation rod; the bottom of the inner cavity of the fixed rod is matched with the spring; and the top of the spring is matched with the bottom end of the adjusting rod.
[0009] The portable intelligent wind speed and direction indicator, wherein: the bottom end of the fixed rod is matched with the fixed seat; the outer wall of the fixed rod is matched with the adjusting cylinder; the adjusting cylinder is limited and fixed on the fixed rod through the adjusting handle; the adjusting rod is limited and fixed in the fixed rod by the first limiting cylinder and the hand tight rod; and the installation rod is limited and fixed in the adjusting rod by the second limiting cylinder and the hand tight rod.
[0010] The portable intelligent wind speed and direction instrument, wherein: the control assembly comprises an explosion-proof box, a fixing block matched and fixed to the rear side of the explosion-proof box, and a display matched and arranged at the front side of the explosion-proof box; the fixing block is matched and fixed to the adjusting rod; the explosion-proof box further comprises a control circuit board and an aluminum battery matched and arranged in the explosion-proof box; the aluminum battery is electrically connected with the control circuit board and the display respectively; the signal input end of the control circuit board is electrically connected with the sensor, and the signal output end is electrically connected with the display.
[0011] The portable intelligent wind speed and direction instrument, wherein: the bottom of the sensor is fixedly connected with a mounting disc; a mounting shaft is matched and fixed at the center position of the bottom of the mounting disc; the mounting shaft is matched and inserted into the limiting hole, and the mounting shaft is fixed on the mounting seat through the hand-tight rod.
[0012] By adopting the above technical scheme, the portable intelligent wind speed and direction instrument has the following beneficial effects:
[0013] The first supporting mechanism and the second supporting mechanism are arranged, the adjusting handle and the adjusting cylinder are arranged, the unfolding angle of the second supporting mechanism is quickly adjusted, the height of the first supporting mechanism is flexibly adjusted through cooperation of the first limiting cylinder, the second limiting cylinder and the hand-tight rod, the mounting shaft is inserted into the limiting hole, and the mounting shaft is fixed through the hand-tight rod, the detachable connection of the wind speed instrument and the wind direction instrument is realized, different terrains and wind speed measurement requirements are adapted to, the portable intelligent wind speed and direction instrument has higher sensitivity and stability in a complex airflow environment, and therefore the accuracy of measurement results is guaranteed, the structure is compact, and the portable intelligent wind speed and direction instrument is convenient to carry and deploy.
[0014] The control assembly of the utility model integrates the explosion-proof box, the fixing block, the display, the control circuit board and the aluminum battery, not only improves the environmental adaptability of the equipment, but also increases the functions of signal data processing, storage, display and transmission, so that the operating personnel can monitor the change of wind speed and direction in real time, and make a quick response according to the data, thereby improving the safety of urban gas dangerous operation. BRIEF DESCRIPTION OF DRAWINGS
[0015] In order to more clearly illustrate the specific embodiment of the utility model or the technical scheme in the prior art, the drawings needed to be used in the specific embodiment or the prior art description will be briefly introduced as follows, and obviously, the drawings in the following description are some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creating creative labor.
[0016] Figure 1The utility model discloses a portable intelligent wind speed and direction instrument's overall structure schematic diagram;
[0017] Figure 2 The utility model discloses a portable intelligent wind speed and direction instrument's first support mechanism's structure schematic diagram;
[0018] Figure 3 The utility model discloses a portable intelligent wind speed and direction instrument's first support mechanism's section structure schematic diagram;
[0019] Figure 4 The utility model discloses a portable intelligent wind speed and direction instrument's second support mechanism's structure schematic diagram;
[0020] Figure 5 The utility model discloses a portable intelligent wind speed and direction instrument's Figure 3 The utility model discloses a portable intelligent wind speed and direction instrument's first support mechanism's structure schematic diagram;
[0021] Figure 6 The utility model discloses a portable intelligent wind speed and direction instrument's first support mechanism's structure schematic diagram;
[0022] Note:
[0023] 1-first support mechanism, 101-mounting rod, 102-mounting seat, 103-limiting hole, 104-hand tight rod, 105-fixed rod, 106-first limiting cylinder, 107-adjusting rod, 108-second limiting cylinder, 109-spring piece, 2-second support mechanism, 201-fixed seat, 202-adjusting cylinder, 203-adjusting handle, 204-support leg, 205-assistant arm, 3-anemometer, 4-wind direction instrument, 5-control assembly, 501-explosion -proof box, 502-fixed block, 503 -display, 6-sensor, 7-mounting disc, 8-mounting shaft. DETAILED DESCRIPTION
[0024] The technical scheme of the utility model will be described below in connection with the drawings, obviously, the described embodiment is a part of the embodiment of the utility model, not all the embodiment. Based on the embodiment in the utility model, all other embodiments obtained by the ordinary skill in the art without making creative labor belong to the range of protection of the utility model.
[0025] The utility model will be explained further below in connection with specific embodiment.
[0026] As Figures 1-6 The utility model discloses a portable intelligent wind speed and direction instrument, including first support mechanism 1, second support mechanism 2, anemometer 3, wind direction instrument 4, control assembly 5, sensor 6, mounting disc 7 and mounting shaft 8.
[0027] The first support mechanism 1 comprises a mounting rod 101, a mounting seat 102, a limiting hole 103 and a hand tight rod 104; wherein the top end of the mounting rod 101 is matched with a fixed connection of the mounting seat 102; the top of the mounting seat 102 is matched with a limiting hole 103, and the left side of the mounting seat 102 is rotatably connected with the hand tight rod 104.
[0028] The top of the first support mechanism 1 is sequentially matched with a wind speed instrument 3 and a wind direction instrument 4 from top to bottom; the front side of the first support mechanism 1 is matched with a control assembly 5, the bottom of the wind speed instrument 3 is matched with the wind direction instrument 4, and the bottom of the wind direction instrument 4 is matched with a fixed installation of a sensor 6.
[0029] As shown in Figure 1 and Figure 4 The second support mechanism 2 is matched with the bottom of the first support mechanism 1, which comprises a fixed seat 201, an adjusting cylinder 202, an adjusting handle 203, a support leg 204 and an auxiliary arm 205. The fixed seat 201 is coaxially provided with the adjusting cylinder 202 above; the adjusting handle 203 is rotatably connected to the front side of the adjusting cylinder 202, and three groups of support legs 204 are rotatably connected to the outer side wall of the adjusting cylinder 202 at equal intervals; the auxiliary arm 205 is rotatably connected between the center position of the support leg 204 and the fixed seat 201.
[0030] In this embodiment, when the town gas dangerous operation is carried out, the combination of the first support mechanism 1 and the second support mechanism 2 can quickly build the working platform of the portable intelligent wind speed and direction instrument, the adjusting cylinder 202 is slid on the first support mechanism 1, the support leg 204 and the auxiliary arm 205 are driven to rotate, the expansion degree of the support leg 204 is adjusted, and the adjusting handle 203 is fixed on the first support mechanism 1, so as to provide stable support for the device to adapt to different terrain requirements, enhance the stability of the whole device, ensure that it can be used normally in the case of large wind force, and through the first support mechanism 1, the wind speed instrument 3 and the wind direction instrument 4 are detachably installed, the monitoring height of the device is adjusted, the wind speed instrument 3 and the wind direction instrument 4 are used to monitor the change of wind speed and direction in real time, and the data is transmitted to the control assembly 5.
[0031] It should be noted that the first support mechanism 1, the second support mechanism 2 and the control assembly 5 are made of lighter and stronger materials, which reduces the overall weight, improves portability, and allows users to easily place the instrument in the work area for measurement anytime and anywhere. Optimizing the structural design makes the instrument more compact and stable. The first support mechanism 1 and the second support mechanism 2 are telescopic, allowing users to adjust the height and angle of the instrument as needed. At the same time, protective measures such as anti-falling are added to ensure that the instrument can work normally in harsh environments. The integration of the anemometer 3 and the wind direction meter 4 improves the original wind direction and integrates wind speed and direction into one. The wind speed and direction data are collected and transmitted by the sensor 6. The addition of the control assembly 5 allows accurate direction and wind speed determination, rapid warning of dangerous areas, reduced accidents, data analysis and management, and greatly improved convenience of use.
[0032] As shown in Figure 3 and Figure 5 , the first support mechanism 1 further comprises a fixed rod 105, a first limiting cylinder 106, an adjusting rod 107, a second limiting cylinder 108 and a spring member 109. The top of the fixed rod 105 is fixedly connected with the first limiting cylinder 106, and the adjusting rod 107 is slidingly connected in the fixed rod 105. The top end of the adjusting rod 107 is fixedly connected with the second limiting cylinder 108, and the left side of the first limiting cylinder 106 and the second limiting cylinder 108 is also rotatably connected with the hand tight rod 104. The adjusting rod 107 is slidingly connected with the mounting rod 101. The bottom of the inner cavity of the fixed rod 105 is fixedly connected with the spring member 109, and the top of the spring member 109 is fixedly connected to the bottom end of the adjusting rod 107.
[0033] The bottom end of the fixed rod 105 is fixedly connected to the fixed seat 201, and the outer wall of the fixed rod 105 is matched with the adjusting cylinder 202. The adjusting cylinder 202 is limited and fixed on the fixed rod 105 by the adjusting handle 203. The first limiting cylinder 106 and the hand tight rod 104 limit and fix the adjusting rod 107 in the fixed rod 105. The second limiting cylinder 108 and the hand tight rod 104 limit and fix the mounting rod 101 in the adjusting rod 107.
[0034] In this embodiment, by adjusting the sliding of the cylinder 202 on the fixed rod 105, the folding and unfolding angle of the second support mechanism 2 can be adjusted by rotating the adjusting handle 203, and stable support is provided for the first support mechanism 1. The first limiting cylinder 106 and the second limiting cylinder 108 ensure the stability and limiting of the adjusting rod 107 and the mounting rod 101 in the fixed rod 105, and cooperate with the hand-tightening rod 104 to flexibly adjust the height of the first support mechanism 1. The spring member 109 further improves the stability and safety of the device. When the adjusting rod 107 is subjected to external force, the spring member 109 can provide a certain elastic force to help the adjusting rod 107 quickly return to the initial position, ensuring the stability and reliability of the device. At the same time, the spring member 109 can also play a buffering role when the adjusting rod 107 slides in the fixed rod 105 to adjust the height.
[0035] The user can quickly adjust the unfolding angle of the second support mechanism 2 by adjusting the handle 203 and the adjusting cylinder 202 according to different working environments and needs, and flexibly adjust the height of the first support mechanism 1 by the first limiting cylinder 106 and the second limiting cylinder 108 cooperating with the hand-tightening rod 104 to adapt to different terrain and wind speed measurement requirements, not only improving work efficiency, but also ensuring the accuracy and reliability of measurement data, realizing the characteristics of rapid construction, height adjustment, stability and reliability.
[0036] As shown in Figure 1 and Figure 6 The bottom of the sensor 6 is fixedly connected with a mounting disc 7. The center of the bottom of the mounting disc 7 is fixedly connected with a mounting shaft 8, which is inserted into the limiting hole 103. The mounting shaft 8 is limited and fixed on the mounting seat 102 by the hand-tightening rod 104.
[0037] The control assembly 5 includes an explosion-proof box 501, a fixed block 502 and a display 503. The rear side of the explosion-proof box 501 is fixedly connected with the fixed block 502, and the fixed block 502 is fixedly connected with the adjusting rod 107. The front side of the explosion-proof box 501 is fixedly installed with the display 503, and the inside is matched with a control circuit board and an aluminum battery. The aluminum battery is electrically connected with the control circuit board and the display 503 respectively. The signal input end of the control circuit board is electrically connected with the sensor 6, and the signal output end is electrically connected with the display 503.
[0038] In this embodiment, the mounting shaft 8 is inserted into the limiting hole 103, and the hand lever 104 is rotated to be fixed and limited on the mounting seat 102, so that detachable connection is realized, the user can quickly install and dismount the device, the anemograph 3 and the anemoscope 4 monitor the change of wind speed and direction in real time, the sensor 6 transmits the collected wind speed and direction signals to the control circuit board of the control assembly 5, the control circuit board processes the wind direction and speed signals and then transmits them to the display 503, and the display 503 can directly display the rotation speed, wind speed and measurement result; meanwhile, the explosion-proof box 501 ensures the safety in the flammable and explosive environment, the aluminum battery is arranged in the explosion-proof box 501, and the fixed block 502 ensures the stable connection of the display 504 and the explosion-proof box 501.
[0039] It should be noted that the sensor 6 can quickly respond to the change of wind, reduce errors, provide more accurate wind speed and direction data, introduce more precise wind vane and signal processing algorithm, and ensure the accuracy of wind direction measurement, even in complex airflow environment.
[0040] The utility model discloses compact structure design is reasonable, and operation is simple and convenient, can adapt to different environment deployment, and it is more sensitive and stable in complex airflow environment, and the accuracy of measurement result is high, and it is convenient to carry and deploy, and the use performance is stable and reliable, ensures that accurate wind speed and direction data can be provided under various environments, makes the operating personnel can real -time monitoring and quick response, improves town gas operation safety, is suitable for promotion and application.
[0041] Finally, it should be noted that: the above examples are only used to illustrate the technical solutions of the utility model, but not limited to them; although the utility model has been described in detail with reference to the foregoing examples, those skilled in the art should understand that: it still can modify the technical solutions recorded in the foregoing examples, or make equivalent replacement to part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the utility model.
Claims
1. A portable intelligent anemometer and wind vane, comprising a first supporting mechanism (1), a second supporting mechanism (2), an anemometer (3), a wind vane (4) and a control assembly (5); characterized in that: The second support mechanism (2) is matched and installed at the bottom of the first support mechanism (1); the first support mechanism (1) comprises a mounting rod (101), a mounting seat (102), a limiting hole (103) and a hand tight rod (104); the top end of the mounting rod (101) is matched and fixedly connected with the mounting seat (102); the top of the mounting seat (102) is matched and provided with the limiting hole (103); the left side of the mounting seat (102) is rotatably connected with the hand tight rod (104); the top of the first support mechanism (1) is sequentially matched and provided with an anemograph (3) and a wind direction meter (4) from top to bottom; the front side of the first support mechanism (1) is matched and connected with the control assembly (5); the bottom of the anemograph (3) is matched and connected with the wind direction meter (4); the bottom of the wind direction meter (4) is matched and provided with a sensor (6) for collecting the wind speed signal of the anemograph (3) and the wind direction signal of the wind direction meter (4).
2. The portable smart anemometer of claim 1, wherein: The second support mechanism (2) comprises a fixed seat (201), an adjusting cylinder (202), an adjusting handle (203), a support leg (204) and an auxiliary arm (205); the fixed seat (201) is coaxially provided with the adjusting cylinder (202) above; the front side of the adjusting cylinder (202) is rotatably connected with the adjusting handle (203); the outer wall of the adjusting cylinder (202) is rotatably connected with three groups of support legs (204) at equal intervals; the center position of the support leg (204) is rotatably connected with the auxiliary arm (205) between the fixed seat (201).
3. The portable smart anemometer of claim 2, wherein: The first support mechanism (1) further comprises a fixed rod (105), a first limiting cylinder (106), an adjusting rod (107), a second limiting cylinder (108) and a spring member (109); The top of the fixed rod (105) is matched and fixedly connected with the first limiting cylinder (106), and the fixed rod (105) is slidably connected with the adjusting rod (107); the top end of the adjusting rod (107) is matched and fixedly connected with the second limiting cylinder (108); The left side of the first limiting cylinder (106) and the second limiting cylinder (108) is also rotatably connected with the hand tight rod (104); the adjusting rod (107) is slidably connected with the mounting rod (101); the bottom of the inner cavity of the fixed rod (105) is matched and fixedly connected with the spring member (109); the top of the spring member (109) is matched and fixedly connected to the bottom end of the adjusting rod (107).
4. The portable smart anemometer of claim 3, wherein: The bottom end of the fixed rod (105) is matched and fixedly connected to the fixed seat (201); the outer wall of the fixed rod (105) is matched and sleeved with the adjusting cylinder (202); the adjusting cylinder (202) is limited and fixed on the fixed rod (105) through the adjusting handle (203), the adjusting rod (107) is limited and fixed in the fixed rod (105) by the first limiting cylinder (106) and the hand tight rod (104), and the mounting rod (101) is limited and fixed in the adjusting rod (107) by the second limiting cylinder (108) and the hand tight rod (104).
5. The portable smart anemometer of claim 3 or 4, wherein: The control assembly (5) comprises an explosion-proof box (501), a fixed block (502) fixedly connected to the rear side of the explosion-proof box (501), and a display (503) arranged on the front side of the explosion-proof box (501); the fixed block (502) is fixedly connected to the adjusting rod (107); the explosion-proof box (501) is internally provided with a control circuit board and an aluminum battery; the aluminum battery is electrically connected to the control circuit board and the display (503) respectively; a signal input end of the control circuit board is electrically connected to the sensor (6), and a signal output end is electrically connected to the display (503).
6. The portable intelligent anemometer of claim 1, wherein: A mounting disc (7) is fixedly connected to the bottom of the sensor (6); a mounting shaft (8) is fixedly connected to the center position of the bottom of the mounting disc (7); the mounting shaft (8) is inserted into the limiting hole (103), and the mounting shaft (8) is fixed on the mounting seat (102) through the hand-tightening rod (104).