Wind power monitoring device based on weather forecast

By designing the column limiting part and bolt connection, combined with precast concrete blocks and limiting rings, the stability and ease of installation of the wind power monitoring device were solved, achieving stable installation and efficient construction, and ensuring the accuracy and long-term stability of the monitoring data.

CN224245823UActive Publication Date: 2026-05-15NANZHAO COUNTY METEOROLOGICAL BUREAU
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NANZHAO COUNTY METEOROLOGICAL BUREAU
Filing Date
2025-06-25
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing wind monitoring devices lack stability during installation and are easily affected by environmental factors such as wind, causing them to sway or tip over, resulting in inaccurate monitoring data. Furthermore, the installation process is cumbersome and affects work efficiency.

Method used

The design incorporates a bottom limiting part and limiting hole at the base of the column, combined with bolts and a base plate. The combination of the limiting hole and bolts ensures a stable connection between the column and the base plate. The use of precast concrete blocks and limiting rings further enhances the stability and ease of installation of the device.

Benefits of technology

Stable installation of the wind power monitoring device was achieved, construction efficiency was improved, the accuracy of monitoring data and the long-term stability of the device were ensured, and environmental adaptability and connection strength were enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

A wind power monitoring device based on weather forecast relates to the technical field of weather monitoring, is stable to install and convenient to construct, and comprises a stand column, a bolt and a bottom plate, the stand column is vertically arranged on the upper side of the ground, the edge of the bottom of the stand column extends outwards to form a limiting part, and a plurality of limiting holes are formed in the limiting part and distributed at intervals in the axis direction of the stand column. The bolts correspond to the limiting holes in a one-to-one mode, and the bolts extend into the corresponding limiting holes respectively; the bottom plate is arranged on the lower side of the stand column, a plurality of matching holes are formed in the bottom plate and correspond to the limiting holes in a one-to-one mode, and the bolts penetrate through the corresponding matching holes and extend to the lower side of the bottom plate. According to the invention, a stable and convenient installation structure is provided for the wind power monitoring device supported by the stand column, and the wind power monitoring device can be fixed conveniently.
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Description

Technical Field

[0001] This application relates to the field of meteorological monitoring technology, and in particular to a wind monitoring device based on weather forecasts. Background Technology

[0002] Accurate wind information is crucial for meteorological forecasting. Existing wind monitoring devices suffer from insufficient stability during installation, easily swaying or even tipping over due to wind and other environmental factors, leading to inaccurate data. Furthermore, the installation process is cumbersome, impacting work efficiency. Therefore, there is an urgent need for a wind monitoring device that is stable to install and easy to construct. Utility Model Content

[0003] This application provides a wind monitoring device based on weather forecasts, which is a wind monitoring device that is stable to install and easy to construct.

[0004] This application provides a wind monitoring device based on weather forecasts, including a column, bolts, and a base plate. The column is vertically positioned above the ground, with its bottom edge extending outward to form a limiting part. The limiting part has multiple limiting holes, which are spaced apart around the axis of the column. Multiple bolts are provided, each corresponding to one of the limiting holes, and each bolt extends into its corresponding limiting hole. The base plate is positioned below the column, and multiple mating holes are formed on the base plate, each corresponding to one of the limiting holes. The bolts pass through the corresponding mating holes and extend to the underside of the base plate.

[0005] This application achieves a stable connection between the column and the ground foundation by setting a limiting part and limiting hole at the bottom of the column, in conjunction with bolts and a base plate. This connection method can effectively disperse the external forces on the wind monitoring device, ensuring the stability of the device under various meteorological conditions and providing reliable support for accurate wind data acquisition. At the same time, the setting of multiple bolts and limiting holes makes the installation process more convenient and faster, improving construction efficiency.

[0006] In some embodiments of this application, the bottom surface of the limiting part is a plane, the bottom plate includes an abutting part and a fixing part, the fixing part is arranged around the abutting part, the top surface of the abutting part abuts against the bottom surface of the limiting part, and a gap is provided between the fixing part and the limiting part.

[0007] The bottom surface of the limiting part is flat, and the base plate is equipped with an abutment part and a fixing part, with a gap between the fixing part and the limiting part. This structural design allows for more even force distribution between the base plate and the limiting part, avoiding loosening of the connection due to excessive localized force. The tight contact between the abutment part and the bottom surface of the limiting part ensures the vertical stability of the device; the gap between the fixing part and the limiting part provides space for the device to adapt to minor ground deformations to a certain extent, enhancing the device's environmental adaptability.

[0008] In some embodiments of this application, the wind monitoring device based on weather forecasts further includes precast concrete blocks with receiving grooves, and a base plate integrally formed within the receiving grooves. Integrating the base plate into the receiving grooves using precast concrete blocks further enhances the connection strength between the device and the ground. The precast concrete blocks possess high strength and stability, providing a solid foundation for the wind monitoring device and effectively resisting the effects of strong winds and other severe weather. Simultaneously, the prefabricated design facilitates production and construction, shortening the installation cycle.

[0009] In some embodiments of this application, the precast concrete block further includes a precast installation threaded cylinder, with one precast installation threaded cylinder corresponding to each bolt, and the bolt screwed into the precast installation threaded cylinder. The precast installation threaded cylinder makes bolt installation and removal more convenient. Compared with traditional pre-embedded bolt methods, this structural design avoids installation difficulties caused by inaccurate bolt pre-embedding positions, improving installation accuracy and efficiency. Furthermore, screwing the bolt into the precast installation threaded cylinder enhances the tightness and reliability of the connection, ensuring that the device will not loosen during long-term use.

[0010] In some embodiments of this application, a limiting ring is also formed on the precast concrete block. The limiting ring is disposed at the opening of the receiving groove, abuts against the top surface of the bottom plate, and is disposed on the outside of the mating hole.

[0011] The limiting ring is positioned at the opening of the receiving groove and abuts against the top surface of the base plate, located outside the mating hole, thus providing effective positioning for the base plate. During installation, the limiting ring prevents the base plate from shifting, ensuring accurate fit between components and improving the overall installation precision of the device. Simultaneously, the limiting ring enhances the device's sealing performance, preventing rainwater and other contaminants from entering the connection points and extending the device's service life.

[0012] In some embodiments of this application, the limiting ring further includes a limiting protrusion, and the limiting protrusion is configured as a plurality of such protrusions. The plurality of limiting protrusions extend inward around the inner edge of the limiting ring, and the limiting protrusions are disposed between two adjacent mating holes.

[0013] The limiting protrusions extend inward around the inner edge of the limiting ring and are positioned between two adjacent mating holes, further enhancing the limiting and fixing effect on the base plate. The design of multiple limiting protrusions can constrain the base plate from multiple directions, effectively preventing the base plate from shifting in the horizontal direction and ensuring the stability and reliability of the device when subjected to external forces such as wind.

[0014] In some embodiments of this application, the number of bolts is 6 or 8. Specifying 6 or 8 bolts ensures the connection strength and stability of the device while also considering cost and ease of installation. This number allows for a more reasonable stress distribution between the column and the base plate, avoiding problems such as an insufficient number of bolts leading to an insecure connection, or an excessive number of bolts increasing cost and installation difficulty. Attached Figure Description

[0015] The accompanying drawings are provided to further illustrate the technical solution of this utility model and constitute a part of the specification. They are used together with the embodiments of this application to explain the technical solution of this utility model and do not constitute a limitation on the technical solution of this utility model.

[0016] Figure 1 This is a schematic diagram of a wind monitoring device based on weather forecast, provided as an embodiment of this application.

[0017] Figure 2 This is a top view of a precast concrete block and base plate in a wind power monitoring device based on weather forecasting, provided as an embodiment of this application.

[0018] Reference numerals: 1-Column; 11-Limiting part; 12-Limiting hole; 2-Bolt; 3-Base plate; 31-Abutting part; 32-Fixing part; 33-Matching hole; 4-Precast concrete block; 41-Precast installation threaded cylinder; 42-Limiting ring; 43-Limiting protrusion. Detailed Implementation

[0019] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0020] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0021] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, unless otherwise stated, "a plurality of" means two or more.

[0022] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "connected" and "linked" should be interpreted broadly, for example, as a fixed connection, a detachable connection, or an integral connection. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances. Furthermore, when describing pipelines, the terms "connected" and "linked" as used in this application have the meaning of establishing electrical connection. The specific meaning needs to be understood in conjunction with the context.

[0023] In the embodiments of this application, the terms "exemplary" or "for example" are used to indicate that something is an example, illustration, or description. Any embodiment or design that is described as "exemplary" or "for example" in the embodiments of this application should not be construed as being more preferred or advantageous than other embodiments or design. Specifically, the use of the terms "exemplary" or "for example" is intended to present the relevant concepts in a specific manner.

[0024] Accurate wind information is crucial for meteorological forecasting. Existing wind monitoring devices suffer from insufficient stability during installation, easily swaying or even tipping over due to wind and other environmental factors, leading to inaccurate data. Furthermore, the installation process is cumbersome, impacting work efficiency. Therefore, there is an urgent need for a wind monitoring device that is stable to install and easy to construct.

[0025] Therefore, this application provides a wind monitoring device based on weather forecasts, which provides a wind monitoring device that is stable to install and easy to construct.

[0026] Please refer to Figure 1 and Figure 2 This application provides a wind monitoring device based on weather forecasts, including a column 1, bolts 2, base plate 3, precast concrete block 4, precast threaded cylinder 41, limiting ring 42, and limiting protrusion 43.

[0027] Please refer to Figure 1 The column 1 is vertically installed on the ground and is columnar in shape, such as a cylinder or prism. Positionally, the column 1 serves as the main support for the entire device, located at its center and supporting other components of the wind monitoring device. Its function is to provide vertical support, ensuring the monitoring equipment is at a suitable height for accurate wind data acquisition. In terms of material, the column 1 can be made of high-strength metal materials, such as stainless steel or aluminum alloy, to ensure sufficient strength and stability. For connection, the bottom edge of the column 1 extends outward to form a limiting part 11, which has multiple limiting holes 12 spaced apart along the axis of the column 1. These holes, in conjunction with bolts 2, connect the column to components such as the base plate 3.

[0028] Please refer to Figure 2 Bolt 2 is provided in multiples, either 6 or 8, and its shape is a common screw-nut combination structure. Please refer to... Figure 1 In terms of position, multiple bolts 2 correspond one-to-one with multiple limiting holes 12 on the limiting part 11 of the column 1, and extend into the corresponding limiting holes 12. The function of the bolts 2 is to fasten the column 1 to the base plate 3, ensuring the stability of the device installation. High-strength metal materials, such as carbon steel, can be used to ensure the fastening effect. The connection method is that the bolts 2 pass through the limiting holes 12 of the limiting part 11 of the column 1 and the mating holes 33 on the base plate 3 and extend to the lower side of the base plate 3, and are fastened by nuts.

[0029] Please refer to Figure 1 The base plate 3 is located on the underside of the column 1 and has a plate-like structure. The base plate 3 includes an abutment portion 31 and a fixing portion 32. The fixing portion 32 surrounds the abutment portion 31, forming a step-like structure. Positionally, the top surface of the abutment portion 31 abuts against the bottom surface of the limiting portion 11 of the column 1, and a gap is provided between the fixing portion 32 and the limiting portion 11. The function of the base plate 3 is to serve as a transition component connecting the column 1 to the ground foundation, enhancing the stability of the connection between the device and the ground. The material can be metal or high-strength engineering plastics, etc. The connection method involves multiple mating holes 33 formed on the base plate 3, each corresponding to a limiting hole 12. Bolts 2 pass through the corresponding mating holes 33 and extend to the underside of the base plate 3, achieving connection with the column 1.

[0030] Please refer to Figure 1 and Figure 2 The precast concrete block 4 has a receiving groove, and the base plate 3 is integrally formed within the receiving groove. The shape of the precast concrete block 4 is designed according to actual needs, and the shape of the receiving groove is adapted to the base plate 3. Positionally, the precast concrete block 4 is buried below ground level, providing stable foundation support for the entire device. Its function is to enhance the connection strength between the device and the ground, and improve the device's wind resistance and stability. The material is concrete, which has high strength and durability. The connection method involves integrally forming the base plate 3 within the receiving groove, tightly bonding the base plate 3 and the precast concrete block 4, and then connecting the column 1 to the base plate 3 using bolts 2, achieving stable installation of the entire device.

[0031] Please refer to Figure 1 and Figure 2The precast concrete block 4 also includes a precast threaded sleeve 41, with one precast threaded sleeve 41 corresponding to each bolt 2. The sleeve is cylindrical in shape and has threads on its inner wall. Positionally, the precast threaded sleeve 41 is located inside the precast concrete block 4, corresponding to the mating hole 33 on the base plate 3 and the limiting hole 12 on the limiting part 11 of the column 1. Its function is to provide installation threads for the bolts 2, facilitating the installation and removal of the bolts 2, and enhancing the stability of the bolt connection. The material can be metal or high-strength plastic, etc. The connection method is that the bolts 2 are screwed into the precast threaded sleeve 41, achieving a tight connection between the column 1, the base plate 3, and the precast concrete block 4.

[0032] Please refer to Figure 2 A limiting ring 42 is formed on the precast concrete block 4. The limiting ring 42 is located at the opening of the receiving groove and has a ring-shaped structure. Positionally, the limiting ring 42 abuts against the top surface of the base plate 3 and is located outside the mating hole 33. The function of the limiting ring 42 is to limit the base plate 3, preventing it from shifting during installation and enhancing the overall stability of the device. The material can be metal or plastic, etc. The connection method is to limit the base plate 3 by abutting against its top surface.

[0033] Please refer to Figure 2 The limiting ring 42 also includes multiple limiting protrusions 43, which extend inward around the inner edge of the limiting ring 42 and are block-shaped. Positionally, the limiting protrusions 43 are positioned between two adjacent mating holes 33. Their function is to further limit and fix the base plate 3, preventing horizontal displacement and improving the accuracy and stability of the device installation. The material is the same as that of the limiting ring 42.

[0034] In some embodiments, the wind monitoring device provided in this application is installed at a monitoring station as an example:

[0035] First, according to the design requirements, precast concrete blocks 4 are manufactured. A receiving groove and a threaded cylinder 41 are precast inside the precast concrete block 4, and a limiting ring 42 and a limiting protrusion 43 are installed at the opening of the receiving groove. The precast concrete block 4 is made of C30 concrete to ensure its strength meets the requirements.

[0036] Then, the base plate 3 is integrally formed into the receiving groove of the precast concrete block 4. The base plate 3 is made of stainless steel plate with a thickness of 10mm.

[0037] Next, the column 1 is placed vertically, aligning the limiting part 11 at the bottom of the column 1 with the abutting part 31 of the base plate 3. Six high-strength carbon steel bolts 2, each 12mm in diameter, are then passed sequentially through the limiting holes 12 of the limiting part 11 of the column 1 and the mating holes 33 of the base plate 3, and screwed into the corresponding precast installation threaded cylinder 41 inside the precast concrete block 4, and tightened with nuts. During installation, the limiting ring 42 and the limiting protrusion 43 precisely limit the position of the base plate 3, ensuring the accuracy and stability of the device installation.

[0038] Finally, wind monitoring equipment is installed on column 1 to enable wind monitoring based on weather forecasts. Actual testing showed that the device remained stable even in gale-force winds (level 8), and the monitoring data was accurate and reliable.

[0039] In the description of this specification, specific features, structures, materials, or characteristics may be combined in any suitable manner in one or more embodiments or examples.

[0040] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any changes or substitutions within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A wind monitoring device based on weather forecasts, characterized in that, include: The column is set vertically on the upper side of the ground. The bottom edge of the column extends outward to form a limiting part. The limiting part is provided with multiple limiting holes, which are distributed at intervals around the axis of the column. The bolts are configured in multiple ways, and each of the multiple bolts corresponds to one of the multiple limiting holes, with each bolt extending into its corresponding limiting hole; A base plate is provided on the lower side of the column. Multiple mating holes are formed on the base plate, and the multiple mating holes correspond one-to-one with the multiple limiting holes. The bolt passes through the corresponding mating hole and extends to the lower side of the base plate.

2. The wind monitoring device based on weather forecasting according to claim 1, characterized in that, The bottom surface of the limiting part is a plane. The base plate includes an abutting part and a fixing part. The fixing part is arranged around the abutting part. The top surface of the abutting part abuts against the bottom surface of the limiting part. A gap is provided between the fixing part and the limiting part.

3. The wind monitoring device based on weather forecasting according to claim 2, characterized in that, The wind monitoring device based on weather forecasts also includes a precast concrete block with a receiving groove, and the base plate is integrally formed in the receiving groove.

4. The wind monitoring device based on weather forecasting according to claim 3, characterized in that, The precast concrete block also includes a precast installation threaded cylinder, with each bolt corresponding to one precast installation threaded cylinder, and the bolt is screwed into the precast installation threaded cylinder.

5. The wind monitoring device based on weather forecasting according to claim 4, characterized in that, A limiting ring is also formed on the precast concrete block. The limiting ring is located at the opening of the receiving groove, abuts against the top surface of the bottom plate, and is located on the outside of the mating hole.

6. The wind monitoring device based on weather forecasting according to claim 5, characterized in that, The limiting ring also includes a limiting protrusion, and the limiting protrusion is configured in multiple ways. The multiple limiting protrusions extend inward around the inner edge of the limiting ring, and the limiting protrusions are disposed between two adjacent mating holes.

7. The wind monitoring device based on weather forecast according to any one of claims 1 to 6, characterized in that, The number of bolts is 6 or 8.