Carp-shaped power transmission landscape tower
By designing a carp-shaped power transmission tower and incorporating iconic carp components, the shortcomings of traditional power transmission tower aesthetics have been addressed. This design achieves harmony with the natural environment and cultural landscape, enhancing aesthetic value while maintaining structural stability and load-bearing capacity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2026-03-31
AI Technical Summary
Existing power transmission tower designs are primarily functional, lacking aesthetic design and failing to harmonize with the natural environment and cultural landscape, especially when power grid construction crosses ecological protection zones.
Design a carp-shaped power transmission landscape tower, adopting a spatial three-dimensional truss structure, and combining iconic carp components such as "whiskers," "eyes," "gills," "fins," "body," and "tail" to form an appearance that harmonizes with the natural environment. The aesthetic effect is enhanced by shortening the tower body and legs.
This approach achieves harmony between power transmission towers and the natural environment and cultural landscape, enhancing their aesthetic value while maintaining structural load-bearing capacity and stability, and reducing their impact on the environment.
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Figure CN224064029U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of power transmission tower technology, and in particular to a carp-shaped power transmission landscape tower. Background Technology
[0002] With the rapid development of modern society, urban electricity demand is constantly increasing. To meet the electricity needs of urban development, the construction of power grid transmission lines is also continuously expanding. Transmission towers, as key structures supporting and fixing high-voltage transmission lines, play a vital role.
[0003] Currently, traditional power transmission tower designs are primarily function-oriented, aiming to maximize strength and stability to support high-voltage power lines. Existing power transmission towers typically come in shapes such as goblet, cat's head, U-shape, and T-shape, and their structures consist of steel trusses. The tower body gradually narrows from bottom to top, with crossbeams at the top to support and separate the transmission conductors or ground wires.
[0004] However, with the large-scale construction and development of power grids, many high-voltage transmission lines may pass through or be adjacent to nature reserves, wetlands, parks, scenic areas, and other protected areas. How to meet the demand for power transmission while ensuring that transmission towers are in harmony with the surrounding natural environment and cultural landscape has become an urgent problem to be solved. Utility Model Content
[0005] This application provides a carp-shaped power transmission landscape tower to achieve the effect of meeting power transmission needs while harmonizing the power transmission tower with the surrounding natural environment and cultural landscape.
[0006] This application provides a carp-shaped power transmission landscape tower.
[0007] The tower includes a tower leg (1), a tower body (2), and a tower head (3) connected from bottom to top. The tower head (3) includes: a main body (31), a left ground wire crossarm (32), a right ground wire crossarm (33), a left conductor crossarm (34), a right conductor crossarm (35), and decorative parts (36).
[0008] The main body (31) is set on the tower body, and a tower window is provided inside the main body (31); the left ground wire crossarm (32) and the left conductor crossarm (34) are set on the left side of the main body (31), the right ground wire crossarm (33) and the right conductor crossarm (35) are set on the right side of the main body (31), and the left ground wire crossarm (32) and the right ground wire crossarm (33) are respectively set above the left conductor crossarm (34) and the right conductor crossarm (35);
[0009] The decorative element (36) is disposed inside the tower window of the main body (31).
[0010] Optionally, the left ground wire crossarm (32) and the right ground wire crossarm (33) extend upward and outward along the main body (31); the left ground wire crossarm (32) is provided with a left ground wire hanging point (321) at the end away from the main body (31); the right ground wire crossarm (33) is provided with a right ground wire hanging point (331) at the end away from the main body (31).
[0011] Optionally, the front projections of the left ground wire crossarm (32) and the right ground wire crossarm (33) are both triangles.
[0012] Optionally, the left conductor crossarm (34) and the right conductor crossarm (35) extend downward and outward along the main body (31); the end of the left conductor crossarm (34) away from the main body (31) is provided with a left conductor hanging point (341); the end of the right conductor crossarm (35) away from the main body (31) is provided with a right conductor hanging point (351).
[0013] Optionally, the front projections of the left conductor crossarm (34) and the right conductor crossarm (35) are both triangular or trapezoidal.
[0014] Optionally, the left conductor crossarm (34) is connected to the left conductor hanging point (341) via a type I insulator, and the right conductor crossarm (35) is connected to the right conductor hanging point (351) via a type I insulator.
[0015] Optionally, the decorative element (36) includes a fish eye decorative element (361) and a fish gill decorative element (362).
[0016] The mounting point of the fisheye decorative piece (361) is located above the left ground wire crossarm (32) and the right ground wire crossarm (33);
[0017] The left attachment point of the gill decoration (362) is located between the left ground wire crossarm (32) and the left conductor crossarm (34), and the right attachment point of the gill decoration (362) is located between the right ground wire crossarm (33) and the right conductor crossarm (35).
[0018] Optionally, the carp-shaped power transmission landscape tower also includes a V-shaped insulator string (37).
[0019] The upper end of the V-shaped insulator string (37) is connected to the main body (31); the lower end of the V-shaped insulator string (37) forms the conductor hanging point (371) of the V-shaped insulator string.
[0020] Optionally, the upper left hook point of the V-shaped insulator string (37) is located below the left hook point of the gill decoration (362); the upper right hook point of the V-shaped insulator string (37) is located below the right hook point of the gill decoration (362).
[0021] Optionally, the tower leg (1), tower body (2), and tower head (3) are symmetrical from left to right and front to back, and the top view projection of the tower leg (1) and tower body (2) is a square or a rectangle.
[0022] Optionally, the tower leg (1) includes four support feet (121), the height of which is determined according to the actual terrain.
[0023] The carp-shaped power transmission landscape tower provided in this application, by setting the left and right ground wire crossarms as "fish whiskers" and the left and right conductor crossarms as "fish fins" in the tower head, and adding decorative parts to the tower head to add the features of "fish eyes" and "fish gills", achieves the setting of the "fish head" and "fish body" of the "carp" in the tower head; and by shortening the tower body and tower legs, it makes it look closer to the "fish tail" of the "carp". Through the setting of the iconic parts of the carp, this application makes the shape of the tower more easily coordinated with the surrounding environment, plays a role in beautifying the environment, and has good load-bearing capacity, strong stability and reliability. Attached Figure Description
[0024] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.
[0025] Figure 1 This is a front view structural diagram of the carp-shaped power transmission landscape tower provided in this application;
[0026] Figure 2 A structural schematic diagram of the cross-section of the carp-shaped power transmission landscape tower provided in this application;
[0027] Figure 3 This is a three-dimensional structural diagram of the carp-shaped power transmission landscape tower provided in this application.
[0028] Figure label:
[0029] 1 - Tower leg; 2 - Tower body; 3 - Tower head; 11 - Support foot; 31 - Main body; 32 - Left ground wire cross arm; 33 - Right ground wire cross arm; 34 - Left conductor cross arm; 35 - Right conductor cross arm; 36 - Decorative part; 37 - V - type insulator string; 321 - Left ground wire hanging point; 331 - Right ground wire hanging point; 341 - Left conductor hanging point; 351 - Right conductor hanging point; 361 - Fish - eye decorative part; 362 - Fish - gill decorative part; 371 - Middle - phase conductor hanging point; 121 - Support foot.
[0030] Through the above - mentioned drawings, specific embodiments of the present application have been shown, and there will be a more detailed description hereinafter. These drawings and textual descriptions are not intended to limit the scope of the concept of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. Detailed implementation manners
[0031] Here, the exemplary embodiments will be described in detail, and the examples are shown in the drawings. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The implementation manners described in the following exemplary embodiments do not represent all implementation manners consistent with the present application. On the contrary, they are merely examples of devices and methods consistent with some aspects of the present application as detailed in the appended claims.
[0032] The landscape tower described in the present application, in addition to having the functions of a conventional iron tower in a transmission line, also has a strange and novel shape, and this shape can be integrated with the surrounding terrain, landforms, etc., achieving the effect of being coordinated with the surrounding natural environment and cultural landscape.
[0033] Currently, in traditional transmission lines in our country, the shapes of iron towers mainly adopt the wine - glass type, cat - head type, upper - character type, and dry - character type, etc. The design of these traditional - shaped iron towers mainly considers factors such as stress, transportation, and installation, and less considers aesthetic factors, resulting in the problem of relatively single shapes of iron towers on transmission lines.
[0034] With the development of society, the land in urban areas, suburbs, and rural fields is becoming increasingly tense, and the construction scope of sightseeing areas such as ecological protection areas, sensitive areas, wetlands, parks, and scenic spots is expanding. With the development of cities, the power load is constantly increasing, and more and more transmission lines of the power grid are being built. Therefore, many high - voltage lines often adjoin or pass through areas such as urban areas, suburbs, rural fields, various protected areas, and scenic spots. In order to reduce the impact of engineering construction on the environment, it is usually required that buildings be coordinated and integrated with the surrounding environment as much as possible, that is, it is required that in addition to paying attention to practicality and scientificity in the design of iron towers, attention should also be paid to integration with the surrounding environment and aesthetic design.
[0035] Therefore, this application proposes a carp-shaped power transmission landscape tower. The tower's shape resembles a carp. It employs a spatial three-dimensional truss scaffolding system, drawing heavily on existing mature scaffolding materials, force transmission modes, and experience in power transmission towers. The overall design is symmetrical, utilizing the characteristics of balanced force distribution to make the entire structural system more rationally stressed. The overall structure is simple and elegant, with clear force transmission, smooth and aesthetically pleasing lines. While ensuring harmony between the power line and the urban and rural environment, it also enhances the artistic appeal of the power transmission tower. This carp-shaped tower can include iconic carp components such as "whiskers," "eyes," "gills," "fins," "body," and "tail," making the tower's shape more easily integrated with the surrounding environment, thus beautifying the environment. It also boasts good load-bearing capacity, strong stability, and high reliability.
[0036] The technical solution of this application and how the technical solution of this application solves the above-mentioned technical problems are described in detail below with specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of this application will now be described with reference to the accompanying drawings.
[0037] Figure 1 The front view of the carp-shaped power transmission landscape tower provided in this application is as follows: Figure 1 As shown, the carp-shaped power transmission landscape tower includes tower legs 1, tower body 2, and tower head 3 connected sequentially from bottom to top. Optionally, to ensure that the height settings of the tower body 2 and tower legs 1 are determined differently based on the actual tower height requirements and stress calculations of each landscape tower, while also taking into account the tail shape of the "carp". In one implementation, the height of the tower body 2 can be less than that of the tower legs 1, and the height of the tower legs 1 can be less than that of the tower head 3. Optionally, the landscape tower of this application is an AC power transmission tower, which can be used for various voltage levels.
[0038] The tower leg 1 and tower body 2 together form the tail section of the carp-shaped power transmission landscape tower. The arrangement of the tower leg 1 and tower body 2 is basically the same as the structural form of the existing iron tower body and tower leg.
[0039] Optionally, multiple transverse diaphragms are provided on the tower leg 1 and tower body 2. Optionally, the provision of these transverse diaphragms can increase the overall rigidity of the tower while meeting the spatial connection requirements of the members. Optionally, the type of diaphragm can be varied and can be selected according to the width of the tower body 2 and tower leg 1. For example, the top view projection of the transverse diaphragm is square or rectangular. Optionally, the transverse diaphragms provided on the tower leg 1 and tower body 2 can have different shapes and structures.
[0040] Optionally, a first transverse diaphragm can be provided between the tower leg 1 and the tower body 2, which enables the tower body to have a variable slope design. The tower body 2 is located above this first transverse diaphragm, and the tower leg 1 is located below it. Optionally, the first transverse diaphragm can be as follows: Figure 2 As shown in (a) of the diagram.
[0041] Optionally, at least one second transverse diaphragm may be provided in the middle of the tower leg 1. Optionally, the second transverse diaphragm may be as follows: Figure 2 As shown in (b) of the diagram. Optionally, when multiple second transverse diaphragms are included, the projected area of these multiple second transverse diaphragms can gradually increase from top to bottom. Optionally, four support feet 11 can be provided below the lowest second transverse diaphragm of the tower leg 1. These four support feet 11 can support the carp-shaped power transmission landscape tower on the ground. Optionally, the height of each support foot 11 can be determined according to the actual terrain. Optionally, the scheme of setting the height of the support feet 11 of the tower leg according to the actual terrain can make full use of the existing terrain, reduce the squareness of the foundation surface, and minimize the damage to soil erosion and existing topography caused by foundation construction.
[0042] Optionally, a third transverse diaphragm is provided between the tower body 2 and the tower head 3. This third transverse diaphragm facilitates the transition between the tower and the window. Specifically, the area above the third transverse diaphragm constitutes the tower head 3, which includes the window. The area below the third transverse diaphragm constitutes the tower body 2. Optionally, the third transverse diaphragm can be as follows: Figure 2 As shown in (a) of the diagram.
[0043] Optionally, the top-view projected area and shape of the first and third transverse diaphragms can be the same. Alternatively, the top-view projected area of the first transverse diaphragm can be larger than the top-view projected area of the third transverse diaphragm.
[0044] The tower head 3 comprises the head and body sections of the carp-shaped power transmission tower. As the load-bearing component directly supporting the external conductor and ground wire loads, the tower head 3 adopts a spatial three-dimensional truss scaffolding method, drawing heavily on existing mature scaffolding, force transmission modes, and experience in power transmission towers. Furthermore, its overall design is symmetrical, utilizing the characteristics of balanced force distribution to make the stress distribution of the entire structural system more rational. Specifically, the tower head 3 may include a main body 31, a left ground wire crossarm 32, a right ground wire crossarm 33, a left conductor crossarm 34, a right conductor crossarm 35, and decorative elements 36.
[0045] Optionally, such as Figure 3The diagram shown is a three-dimensional structural schematic of the carp-shaped power transmission landscape tower provided in this application. Based on this three-dimensional structural schematic, the left-right and front-back symmetry of the tower legs 1, tower body 2, and tower head 3 of the carp-shaped power transmission landscape tower can be obtained more accurately. Optionally, the top view projection of the tower legs 1 and tower body 2 is a square or a rectangle.
[0046] Optionally, the main body 31 is mounted on the tower body, and a tower window is provided inside the main body 31. The main body 31 forms a hollow elliptical structure. The hollow area of this elliptical structure is the tower window portion. Optionally, the size of the tower window can be adjusted according to actual needs to meet the requirements of electrical clearance and structural stress. The left ground wire crossarm 32 and the left conductor crossarm 34 are located on the left side of the main body 31, and the right ground wire crossarm 33 and the right conductor crossarm 35 are located on the right side of the main body 31. The left ground wire crossarm 32 and the right ground wire crossarm 33 are respectively located above the left conductor crossarm 34 and the right conductor crossarm 35.
[0047] Optionally, the left ground wire crossarm 32 and the right ground wire crossarm 33 represent the barbels of the "carp". The left conductor crossarm 34 and the right conductor crossarm 35 represent the fins of the "carp". Optionally, the barbels are located in the head of the "carp". The fins are located in the body of the "carp". Optionally, the main body 31 of the tower head 3 is symmetrical from left to right, the left ground wire crossarm 32 and the right ground wire crossarm 33 are symmetrical from left to right, and the left conductor crossarm 34 and the right conductor crossarm 35 are symmetrical from left to right.
[0048] Optionally, the left ground wire crossarm 32 and the right ground wire crossarm 33 extend upward and outward along the main body 31. The extension distance and angle are based on meeting the lightning protection angle for the conductor, and are adjusted as needed in actual engineering. A left ground wire hanging point 321 is provided at the end of the left ground wire crossarm 32 furthest from the main body 31. A right ground wire hanging point 331 is provided at the end of the right ground wire crossarm 33 furthest from the main body 31. Optionally, the front projection of both the left ground wire crossarm 32 and the right ground wire crossarm 33 is triangular.
[0049] Optionally, the left conductor crossarm 34 and the right conductor crossarm 35 extend downward and outward along the main body 31. The extension distance and angle can be adjusted to meet the electrical clearance requirements. A left conductor suspension point 341 is provided at the end of the left conductor crossarm 34 furthest from the main body 31. A right conductor suspension point 351 is provided at the end of the right conductor crossarm 35 furthest from the main body 31. Optionally, the front projections of both the left conductor crossarm 34 and the right conductor crossarm 35 are triangular or trapezoidal. Optionally, the left conductor crossarm 34 is connected to the left conductor suspension point 341 via a type I insulator, and the right conductor crossarm 35 is connected to the right conductor suspension point 351 via a type I insulator.
[0050] The decorative element 36 is located inside the tower window of the main body 31. The decorative element 36 is situated in the fish head section. The portion below the decorative element 36 in the tower head 3 constitutes the fish body. The decorative element 36 includes a fish eye decorative element 361 and a fish gill decorative element 362. The attachment point of the fish eye decorative element 361 is located above the left ground wire crossarm 32 and the right ground wire crossarm 33. The left attachment point of the fish gill decorative element 362 is located between the left ground wire crossarm 32 and the left conductor crossarm 34, and the right attachment point is located between the right ground wire crossarm 33 and the right conductor crossarm 35. Optionally, the fish eye decorative element 361 and the fish gill decorative element 362 are decorative components and are not load-bearing components in the overall tower design. Optionally, the attachment points of the decorative element 36 are symmetrical.
[0051] Optionally, the carp-shaped transmission tower also includes V-shaped insulator strings 37. The upper end of the V-shaped insulator string 37 is connected to the main body 31. The lower end of the V-shaped insulator string 37 forms the middle phase conductor suspension point 371. The left suspension point at the upper end of the V-shaped insulator string 37 is located below or at the left suspension point of the gill decoration 362. The right suspension point at the upper end of the V-shaped insulator string 37 is located below or at the right suspension point of the gill decoration 362. Optionally, the suspension points of the V-shaped insulator string 37 can be adjusted and selected according to different electrical angles, string lengths, etc. of the electrical V-string. Optionally, the V-shaped insulator strings 37 are arranged symmetrically on both sides. For example, a small-angle V-shaped insulator string 37 composed of two inner lines. At this point, the connection point is located at the junction of the gill decoration 362 and the main body 31. Similarly, the connection point of the large-angle V-shaped insulator string 37, composed of two outer lines, is located below the junction of the gill decoration 362 and the main body 31.
[0052] Optionally, all members of the carp-shaped power transmission tower can be made of angle steel, steel pipe, or other cross-sectional types. Optionally, the material of the entire carp-shaped power transmission tower can be steel of strength grades such as Q235, Q355, Q420, and Q460. Optionally, different grades may be used at different locations. Optionally, the specifications and materials of the steel at different locations can be determined by calculating the stress at each location. Optionally, the steel can also be new materials such as fiberglass, carbon fiber, and weathering steel. Optionally, the crossarms, tower heads, and tower bodies of the entire carp-shaped power transmission tower can be connected by bolts, welding, or other methods according to the characteristics and requirements of different node locations. Optionally, the foundation of the carp-shaped power transmission tower can be connected by pre-embedded bolts or pre-embedded angle steel. Optionally, the foundation type of the carp-shaped power transmission tower can be selected according to the actual terrain, geology, and load size. Optionally, the foundation type can be pile foundation or open foundation.
[0053] Optionally, the tower head 3 of the carp-shaped power transmission landscape tower has multiple angle steel bending points. Optionally, during the installation of the tower head 3, bending can be achieved by fire-bending angle steel or steel pipes according to the actual layout conditions such as the rolled length and bending angle of the angle steel. At the same time, this can reduce the amount of steel at the joint node after the two members are disconnected.
[0054] Alternatively, the entire exterior surface of the carp-shaped power transmission tower can be coated with a colored composite anti-corrosion paint or galvanized for corrosion protection to achieve the desired appearance. Optionally, the colored composite anti-corrosion paint can be a color that harmonizes with the surrounding environment, making the tower blend more seamlessly and harmoniously with the natural surroundings.
[0055] Optionally, this application utilizes a carp-shaped power transmission landscape tower with the aforementioned structure. The tower employs a spatial three-dimensional truss scaffolding system, drawing heavily on existing mature scaffolding, force transmission modes, and experience in power transmission towers. Furthermore, the overall design is symmetrical, leveraging the characteristics of balanced force distribution to ensure a more rational stress distribution throughout the entire structural system. This carp-shaped power transmission landscape tower features a simple and elegant overall structure, clear force transmission, and smooth, aesthetically pleasing lines. It enhances the artistic appeal of the power transmission tower while maintaining harmony with the urban and rural environment. The carp-shaped power transmission landscape tower of this application incorporates iconic carp components such as "whiskers," "eyes," "gills," "fins," "body," and "tail," making the tower's shape more easily integrated with the surrounding environment, thus beautifying the environment. It also boasts good load-bearing capacity, stability, and reliability.
[0056] Finally, it should be noted that other embodiments of the invention will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This invention is intended to cover any variations, uses, or adaptations of the invention that follow the general principles of the invention and include common knowledge or customary techniques in the art not disclosed herein, and is not limited to the precise structures described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of the invention is limited only by the appended claims.
Claims
1. A fish-type power transmission landscape tower, comprising a tower leg (1), a tower body (2) and a tower head (3) connected in sequence from bottom to top, characterized in that, The tower head (3) comprises a main body (31), a left ground wire cross arm (32), a right ground wire cross arm (33), a left conductor cross arm (34), a right conductor cross arm (35), and a decorative piece (36). The main body (31) is arranged on the tower body, and a tower window is arranged inside the main body (31); the left ground wire cross arm (32) and the left conductor cross arm (34) are arranged on the left side of the main body (31), the right ground wire cross arm (33) and the right conductor cross arm (35) are arranged on the right side of the main body (31), and the left ground wire cross arm (32) and the right ground wire cross arm (33) are arranged above the left conductor cross arm (34) and the right conductor cross arm (35) respectively. The decorative piece (36) is arranged in the tower window of the main body (31).
2. The carps' power transmission landscape tower according to claim 1, characterized in that, The left ground wire cross arm (32) and the right ground wire cross arm (33) extend upwards and outwards along the main body (31); an end portion of the left ground wire cross arm (32) away from the main body (31) is provided with a left ground wire hanging point (321); and an end portion of the right ground wire cross arm (33) away from the main body (31) is provided with a right ground wire hanging point (331).
3. The carps-tailed landscape tower for electric power transmission according to claim 2, characterized in that, The left ground wire cross arm (32) and the right ground wire cross arm (33) are both triangular in front projection.
4. The carps' power transmission landscape tower according to claim 1, characterized in that, The left conductor cross arm (34) and the right conductor cross arm (35) extend downwards and outwards along the main body (31); an end portion of the left conductor cross arm (34) away from the main body (31) is provided with a left conductor hanging point (341); and an end portion of the right conductor cross arm (35) away from the main body (31) is provided with a right conductor hanging point (351).
5. The carps-tailed landscape tower for electric power transmission according to claim 4, characterized in that, The left conductor cross arm (34) and the right conductor cross arm (35) are both triangular or both trapezoidal in front projection.
6. The carps' power transmission landscape tower according to claim 4, characterized in that, The left conductor cross arm (34) is connected with the left conductor hanging point (341) through an I-shaped insulator, and the right conductor cross arm (35) is connected with the right conductor hanging point (351) through an I-shaped insulator.
7. The carps' power transmission landscape tower according to any one of claims 1-5, characterized in that, The decorative piece (36) comprises a fish eye decorative piece (361) and a fish gill decorative piece (362). The hanging point of the fish eye decorative piece (361) is located above the left ground wire cross arm (32) and the right ground wire cross arm (33). The left hanging point of the fish gill decorative piece (362) is located between the left ground wire cross arm (32) and the left conductor cross arm (34), and the right hanging point of the fish gill decorative piece (362) is located between the right ground wire cross arm (33) and the right conductor cross arm (35).
8. The carps-tailed landscape tower of claim 7, wherein, The carp-shaped power transmission landscape tower further comprises a V-shaped insulator string (37). The upper end of the V-shaped insulator string (37) is connected with the main body (31), and the lower end of the V-shaped insulator string (37) forms a middle-phase conductor hanging point (371) of the V-shaped insulator string.
9. The carps-tailed landscape tower of claim 8, wherein, The left hanging point of the upper end of the V-shaped insulator string (37) is located at or below the left hanging point of the gill ornament (362); and the right hanging point of the upper end of the V-shaped insulator string (37) is located at or below the right hanging point of the gill ornament (362).
10. The carps' power transmission landscape tower according to any one of claims 1-5, characterized in that, The tower leg (1), the tower body (2) and the tower head (3) are left-right symmetrical and front-back symmetrical, and the tower leg (1) and the tower body (2) are square or rectangular in plan view.
11. The carps' power transmission landscape tower according to any one of claims 1-5, characterized in that, The tower leg (1) comprises four supporting feet (11), and the height of each supporting foot (11) is determined according to the actual terrain.