Improved radar tower

By integrating the equipment room design on the radar tower and adopting an inclined roof and waterproof cofferdam structure, the high installation cost and moisture-proof problems of the radar tower's equipment room were solved, realizing a low-cost, corrosion-resistant overall radar tower system.

CN223922731UActive Publication Date: 2026-02-17HENGSHUI RUIFU LIGHTNING PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520524440.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2026-02-17
Estimated Expiration
2035-03-25

AI Technical Summary

Technical Problem

The existing radar tower's equipment room is designed in a separate manner, resulting in high installation costs and a large footprint. Furthermore, the equipment room located on the ground is difficult to moisture-proof and is prone to corrosion.

Method used

Design an improved radar tower that places the equipment room within the frame tower at a height above the ground, employing an inclined roof and waterproof cofferdam structure, combined with columns and connecting rods to form an integrated support, avoiding separate installation and surface moisture protection design.

Benefits of technology

It reduces installation costs, minimizes floor space, improves waterproofing and moisture resistance, and avoids the corrosive effects of the ground environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an improved radar tower which is characterized in that peripheral upright posts are arranged on the periphery of a foundation, and a middle upright post is arranged in the middle of the peripheral upright posts; a plurality of layers of horizontal connecting rods are arranged above the ground and at intervals between the peripheral stand columns, and a machine room is arranged above the horizontal connecting rods; radar mounting seats are arranged at the tops of the stand columns for mounting radars; a circle of bottom supporting rods are arranged at the bottom of the machine room around the middle stand columns and connected with the peripheral stand columns, and a bottom plate is horizontally fixed to the bottom supporting rods. A circle of ceiling supporting rods are arranged on the top of the machine room around the middle stand columns, and the ceiling is supported through the ceiling supporting rods. A circle of waterproof cofferdam is arranged above the gap where the ceiling is in contact with the middle stand column, the machine room is designed to be away from the ground and is integrated with the radar tower, the construction cost can be effectively reduced, the construction strength and stability can be improved, and the waterproof and moisture-proof performance of the radar tower can be improved.
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Description

Technical Field

[0001] This utility model relates to the field of communication tower technology, specifically to an improved radar tower. Background Technology

[0002] In existing radar towers, a server room is set up in conjunction with the radar tower. The existing server room is usually located close to the radar tower on the ground, and the radar tower is connected to the facilities in the server room through cables.

[0003] The current technical problems can be summarized into two points: 1. Because the existing equipment room is designed separately from the radar tower, it requires an independent foundation during installation and fixation, resulting in high installation and construction costs and a large footprint; 2. The existing equipment rooms designed to be installed in conjunction with the radar tower are usually located on the ground. This construction method requires moisture-proof design, which increases the difficulty and cost of construction. After long-term use, this moisture-proof design will lose its effectiveness due to corrosion from the surface environment.

[0004] Therefore, in view of the drawbacks of the existing technology, the problem that needs to be solved by those skilled in the art is whether the equipment room can be set up directly on the radar tower. This method can avoid the cost increase caused by separate installation, while also having a higher ground clearance, which can effectively achieve moisture protection and better corrosion resistance when used in the field. Utility Model Content

[0005] In view of the shortcomings of the prior art described above, this utility model proposes an improved radar tower, which avoids the various technical problems of radar tower equipment rooms in the prior art by designing a frame tower structure and setting up an equipment room in an area at a certain height above the ground within the frame.

[0006] The technical solution adopted by this utility model to solve its technical problem is:

[0007] An improved radar tower includes a foundation, with outer columns surrounding the foundation and a central column in the middle of the outer columns. Several layers of horizontal connecting rods are spaced apart from the ground between the outer columns, and a machine room is located above the horizontal connecting rods. A radar mounting base is located on top of the central column for installing the radar. A ring of bottom support rods is arranged around the central column at the bottom of the machine room, connecting to the outer columns, and a base plate is horizontally fixed on the bottom support rods. A ring of roof support rods is arranged around the central column at the top of the machine room, providing roof support. A waterproof dike is located above the gap between the roof and the central column.

[0008] The roof is sloping, with a higher center and a lower perimeter, which facilitates the drainage of rainwater to the outside.

[0009] The outer perimeter of the waterproof cofferdam is inclined, and a side retaining ring is installed below the waterproof cofferdam. The side retaining ring seals the gap between the roof and the waterproof cofferdam. This structure prevents water from seeping into the interior from the side through the gap between the roof and the waterproof cofferdam.

[0010] The central column is provided with eight or more roof support bases evenly distributed on it, and an outer frame is provided on the top of the machine room. The roof support rods are connected between the roof support bases and the outer frame.

[0011] A protective railing surrounds the radar mounting base.

[0012] The central column is equipped with several through holes in the equipment room area for connecting wires or pipelines between the equipment room and the radar.

[0013] Several internal connecting plates are provided between the top surface of the outer column and the middle column. A ring of outer connecting plates is connected to the outer column. Several reinforcing plates are provided between the internal connecting plates and the outer connecting plates. The top support surface is formed by connecting the internal connecting plates, the outer connecting plates, and the several reinforcing plates.

[0014] This utility model has the following beneficial effects: It features outer columns around the foundation, with a central column in the middle of the outer columns; several layers of horizontal connecting rods are spaced apart and positioned above the outer columns, and a machine room is located above these horizontal connecting rods; a radar mounting base is provided on the top of the columns for radar installation; a ring of bottom support rods connects the central column to the outer columns at the bottom of the machine room, with a base plate horizontally fixed on the bottom support rods; a ring of roof support rods surrounds the central column at the top of the machine room, providing roof support; a waterproof dike is provided above the gap between the roof and the central column. This structure, by designing the machine room off the ground and integrating it with the radar tower, effectively reduces construction costs, improves construction strength and stability, and enhances its waterproof and moisture-proof properties. Attached Figure Description

[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0016] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the floor structure of the computer room;

[0018] Figure 3 This is a schematic diagram of the top structure of this utility model;

[0019] Figure 4 This is a schematic diagram of the waterproof structure of the computer room;

[0020] Figure 5This is a schematic diagram of the cross-sectional structure of the central column;

[0021] Figure 6 This is a schematic diagram of the roof structure of the computer room;

[0022] Figure 7 for Figure 4 Enlarged schematic diagram of the structure of region A in the middle;

[0023] In the diagram, 1. Foundation, 2. Outer column, 21. Ladder support rod, 22. Ladder reinforcement rod, 23. Corner support plate, 24. Corner reinforcement plate, 3. Middle column, 4. Side connecting plate, 5. Horizontal connecting rod, 6. Top support surface, 61. Outer connecting plate, 62. Cross connecting plate, 63. Cross connecting plate, 64. Reinforcing plate, 7. Radar mounting base, 8. Guardrail, 9. Equipment room, 91. Bottom connecting piece, 92. Bottom support rod, 93. Base plate, 94. Canopy support base, 95. Canopy support rod, 96. Outer frame, 97. Waterproof cofferdam, 98. Side retaining ring, 99. Retaining ring fixing base. Detailed Implementation

[0024] The present invention will be further described below through embodiments. The following description is merely an exemplary explanation. Those skilled in the art can make further structural improvements based on the following explanation. The scope of protection of this patent shall be determined by the scope set forth in the claims.

[0025] Example 1:

[0026] An improved radar tower, such as Figure 1 As shown, it includes a prefabricated foundation 1, which can be planar or multi-point. For example... Figure 1 and Figure 2 , 3 As shown, the improved radar tower is a four-dimensional deformable tower, which includes four outer columns 2 set at the four corners of the four sides, a central column 3 set in the middle of the outer columns 2, and a foundation 1 that can be set with five points and is located at the bottom of the four outer columns 2 and the central column 3.

[0027] The outer columns 2 are spaced apart and have several layers of horizontal connecting rods 5. In this embodiment, each layer of horizontal connecting rods 5 forms a quadrilateral structure. A machine room 9 is set above the first layer of horizontal connecting rods 5 above the ground. When the machine room 9 is set up, it forms a support structure with the help of the horizontal connecting rods 5 and the central column 3. Specifically, the bottom of the machine room 9 is provided with four bottom connecting pieces 91 around the central column 3. The bottom support rods 92 are connected to the outer columns 2 through the bottom connecting pieces 91 to form a quadrilateral structure or a cross structure. When a cross structure is formed, corner support plates 23 are provided at the corners formed by the horizontal connecting rods 5 and the outer columns 2. A corner reinforcement plate 24 is provided at the bottom of each corner support plate 23. The corner support plates 23 cooperate with the bottom support rods 92 to achieve horizontal support of the base plate 93.

[0028] The key design feature of this utility model is that: a ring of roof support seats 94 is provided around the central column 3 on the top of the computer room 9. In this embodiment, eight or more roof support seats 94 are evenly distributed on the central column 3, connecting to roof support rods 95. An outer frame 96 is provided on the top of the computer room 9, and the roof support rods 95 are connected between the roof support seats 94 and the outer frame 96. The roof is supported by the roof support rods 95; a waterproof dike 97 is provided above the gap between the roof and the central column 3. Furthermore, as... Figure 7 As shown, the outer perimeter of the waterproof cofferdam 97 is inclined, and a side retaining ring 98 is provided below the waterproof cofferdam 97. The side retaining ring 98 is fixed on the retaining ring fixing seat 99. The side retaining ring 98 seals the gap between the roof and the waterproof cofferdam 97. To achieve better sealing, sealant can be applied to the upper and lower parts of the side retaining ring 98 to achieve further sealing. This structure prevents water from seeping into the interior from the side through the gap between the roof and the waterproof cofferdam 97.

[0029] This utility model also provides a ladder support rod 21 on the side of the outer column 2, and a ladder reinforcement rod 22 at the bottom of each ladder support rod 21. The ladder is installed and fixed by the ladder support rod 21, and the installation and maintenance personnel can climb the outer ladder.

[0030] The central column 3 is equipped with a radar mounting base 7 at its top for installing the radar; a guardrail 8 is arranged around the radar mounting base 7. For ease of operation, this utility model also provides several internal connecting plates between the top surface of the outer column 2 and the central column 3. A ring of outer connecting plates 61 is connected to the outer column. The internal connecting plates include cross connecting plates 62 and cross connecting plates 63. Several reinforcing plates 64 are provided between the outer connecting plates 61 and the cross connecting plates 62 and cross connecting plates 63. The top support surface is formed by connecting the internal connecting plates with the outer connecting plates 61 and the several reinforcing plates 64. Those skilled in the art can lay a floor on the above-mentioned top support surface to enable movement in the radar installation area on the top surface.

[0031] After the equipment room is installed, the central column 3 of this utility model has several through holes 31 in the equipment room 9 area for connecting the wires or pipelines between the equipment room 9 and the radar.

[0032] With the above structural design, this utility model integrates the equipment room 9 and the radar tower into a single design, consolidating the foundation during installation and fixing, thus reducing installation and construction costs and occupying a small area. This construction method has a high ground clearance, eliminating the need for moisture-proof design. This design does not increase construction difficulty or cost, and will not lose its effectiveness due to surface corrosion.

Claims

1. An improved radar tower comprising a foundation, a plurality of peripheral columns arranged around the periphery of the foundation, and a plurality of intermediate columns arranged in the middle of the peripheral columns; a plurality of horizontal connecting rods are arranged between the peripheral columns and spaced apart from the ground, characterized in that: A machine room is arranged above the horizontal connecting rod; a radar mounting seat is arranged at the top of the middle column for mounting a radar; a circle of bottom supporting rods is arranged around the middle column at the bottom of the machine room and connected with the peripheral columns, and a bottom plate is horizontally fixed on the bottom supporting rods; a circle of roof supporting rods is arranged around the middle column at the top of the machine room, and the roof is supported by the roof supporting rods; a circle of waterproof cofferdams is arranged above the gap between the roof and the middle column.

2. An improved radar tower as claimed in claim 1, wherein: The roof is arranged in an inclined manner, with the middle part being higher and the peripheral part being lower.

3. An improved radar tower as claimed in claim 1 or 2, wherein: The peripheral part of the waterproof cofferdam is arranged in an inclined manner, and a side blocking ring is arranged below the waterproof cofferdam, which blocks the gap between the roof and the waterproof cofferdam.

4. An improved radar tower as claimed in claim 1, wherein: Eight or more roof supporting seats are uniformly arranged on the middle column, and a peripheral frame is arranged at the top of the machine room, and the roof supporting rods are connected between the roof supporting seats and the peripheral frame.

5. An improved radar tower as claimed in claim 1, wherein: A plurality of through holes are arranged on the middle column in the machine room area for connecting wires or pipelines between the machine room and the radar.

6. An improved radar tower as claimed in claim 1, wherein: A plurality of internal connecting plates are arranged between the top surface of the peripheral column and the middle column, and a circle of peripheral connecting plates is connected to the peripheral column, and a plurality of reinforcing plates are arranged between the internal connecting plates and the peripheral connecting plates, and the top supporting surface is formed by connecting the internal connecting plates, the peripheral connecting plates and the reinforcing plates.