Overwater operation platform for photovoltaic power generation engineering in alpine region
By designing an underwater operation platform for photovoltaic power generation projects in high-altitude and cold regions, the upper and lower decks are connected by fixed tie rods and equipped with fences and lifebuoys. This solves the flexibility and cost issues of traditional ships and pontoons in high-altitude and cold regions, improves stability and safety, adapts to severe weather and controls costs.
Patent Information
- Application Number
- CN202423055919.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-12-11
AI Technical Summary
In lakes in alpine regions, traditional boats and pontoons are inflexible, costly, and unsuitable for transporting construction workers and materials due to water level changes during the dry season, making them unable to meet the needs of photovoltaic power generation projects.
A water operation platform for photovoltaic power generation projects in high-altitude and cold regions is designed. The upper and lower decks are connected by fixed reinforcements, equipped with fences and lifebuoys, and galvanized hollow steel pipes and rectangular foam panels are used to improve structural stability and safety.
The platform's stability and safety are enhanced, making it suitable for various water operations, improving operational efficiency and controlling costs, and it is suitable for harsh weather conditions in high-altitude and cold regions.
Smart Images

Figure CN223443740U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to new energy photovoltaic construction technical field especially relates to a high cold region photovoltaic power generation engineering water operation platform. BACKGROUND
[0002] With new energy photovoltaic power station project is deployed in Daqing oilfield in succession, for the rational use of land resources, according to the unique multiple lake bubble geographical characteristics of Daqing area, utilize the water in lake bubble as the advantage of good refrigerant medium, Daqing oilfield will develop water photovoltaic power station in future. This innovative initiative not only can effectively utilize land resources, but also can make full use of water resources, improve energy production efficiency.
[0003] When implementing water photovoltaic power station project, a key problem is how to transport construction personnel and material equipment efficiently and economically, the water photovoltaic power station project in the southern water network area usually uses traditional ship or floating bridge and other equipment as carrier, these methods are indeed effective in some cases, the lake area in Daqing area is small, and the water depth is shallow, the carrying capacity of traditional ship in lake bubble is limited, and the use is not flexible, and the procurement cost is higher. In addition, the cost of building floating bridge is also large and the operation is complex, especially in Daqing area, the water level of lake bubble is low in dry season before and after the wet season, and building floating bridge is not the best choice, which cannot meet the needs of the same type of construction project in Daqing area. SUMMARY
[0004] (I) technical problem to be solved
[0005] The utility model provides a kind of high cold region photovoltaic power generation engineering water operation platform to overcome the problem of lack of suitable for dry season lake bubble ship in prior art.
[0006] (II) technical scheme
[0007] To achieve the above object, the utility model provides a kind of high cold region photovoltaic power generation engineering water operation platform, it include:
[0008] The ship body includes: upper deck and lower deck, the upper deck and lower deck are symmetrically arranged, and a plurality of ship body plates are arranged between the upper deck and the lower deck.
[0009] The upper deck and the lower deck are connected by a plurality of fixed tension bars.
[0010] The upper end of the upper deck is provided with a fence, and a plurality of life buoys are arranged on the fence.
[0011] Preferably, the upper deck is of rectangular structure, and a plurality of upper deck reinforcing bars are uniformly arranged on the upper end surface of the upper deck.
[0012] Preferably, the lower deck is a rectangular structure, and the lower deck lower end surface is uniformly provided with a plurality of lower deck reinforcing ribs.
[0013] Preferably, the fence comprises a plurality of column poles and a plurality of horizontal bars, the plurality of column poles are vertically installed on the upper deck upper end in a circumferential direction, and the plurality of horizontal bars are respectively horizontally connected to the column poles.
[0014] Preferably, the fixed reinforcing rib is a cylindrical structure, and the two ends of the fixed reinforcing rib are respectively fixedly connected to the upper deck and the lower deck.
[0015] Preferably, the column pole and the horizontal bar are made of a galvanized hollow steel pipe.
[0016] Preferably, the hull plate is a rectangular foam benzene plate, and a plurality of hull plates are uniformly distributed in a circumferential direction.
[0017] Preferably, the lower deck reinforcing rib is riveted to the lower deck, and the upper deck reinforcing rib is riveted to the upper deck.
[0018] (Three) beneficial effects
[0019] The utility model provides a kind of high-cold region photovoltaic power generation engineering water operation platform, and the upper deck and the lower deck of the platform are connected by multiple fixed reinforcing ribs, which significantly enhances the stability of the overall structure, enabling it to effectively withstand the severe weather conditions commonly seen in high-cold regions, not only improving the durability of the platform, but also ensuring that it can still operate normally under extreme weather conditions.
[0020] The fence of the platform is equipped with a plurality of life buoys, which can be quickly accessed in emergency situations to provide necessary rescue support for workers, greatly improving the safety of the operation.
[0021] The high-cold region photovoltaic power generation engineering water operation platform has strong versatility and adaptability, suitable for various water operation tasks, achieving a dual improvement in operation efficiency and safety, and effectively controlling costs while ensuring high performance. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 A high-cold region photovoltaic power generation engineering water operation platform structure schematic diagram is shown.
[0023] Wherein: 1: fence; 2: life buoy; 3: lower deck reinforcing rib; 4: lower deck; 5: fixed reinforcing rib; 6: upper deck; 7: upper deck reinforcing rib; 8: hull plate. DETAILED DESCRIPTION
[0024] The utility model will be described in detail below in combination with the drawings and examples.
[0025] In the description of the utility model, it is necessary to understand that the orientation or positional relationship indicated by "upper", "lower", "left", "right", "inner", "outer", "top" and "bottom" are all based on the orientation or positional relationship shown in the drawings, and the target is only to facilitate the description of the utility model and simplify the description, and it is not indicated or implied that the indicated parts must have a specific orientation, be constructed and operated in a specific orientation, and therefore it cannot be understood as a limitation on the utility model.
[0026] As Figure 1 shown, the utility model provides a high cold region photovoltaic power generation engineering water operation platform, include:
[0027] The ship body includes: the upper deck 6 and the lower deck 4, the upper deck 6 is symmetrically arranged with the lower deck 4, and a plurality of ship body plates 8 are arranged between the upper deck 6 and the lower deck 4, the ship body plates 8 play a supporting and stabilizing role, the ship body plates 8 are rectangular foam benzene plate blocks, and a plurality of ship body plates 8 are uniformly distributed in the circumferential direction.
[0028] The ship body plates 8 are uniformly distributed in the circumferential direction in the ship body, ensuring that the weight distribution of the entire ship body is uniform, thereby improving the stability and anti-overturning ability of the platform, the circumferential uniform distribution can also play a damping role to a certain extent, reducing the influence caused by water surface fluctuation, and further improving the safety and comfort of operation, the foam benzene plate block has the characteristics of light weight, high strength and good buoyancy.
[0029] The ship body plate 8 is not directly connected between the upper deck 6 and the lower deck 4, the upper deck 6 and the lower deck 4 are connected by a plurality of fixed tension bars 5, the fixed tension bar 5 is a cylindrical structure, the two ends of the fixed tension bar 5 are fixedly connected with the upper deck 6 and the lower deck 4 respectively, and the fixed tension bar 5 tightens the upper deck 6 and the lower deck 4 so that the upper deck 6 and the lower deck 4 clamp the ship body plate 8.
[0030] The connection mode between the ship body plate 8 and the upper deck 6 and the lower deck 4 simplifies the assembly process of the ship body, the distance between the upper deck 6 and the lower deck 4 is accurately controlled through the tightening action of the fixed tension bar 5, and the overall stability and structural integrity of the ship body are ensured.
[0031] The upper deck 6 and the lower deck 4 adopt a rectangular structure, ensuring the overall stability and space utilization of the platform, in order to further enhance the strength and rigidity of the deck, a plurality of upper deck reinforcing ribs 7 are uniformly arranged on the upper end face of the upper deck 6, and a plurality of lower deck reinforcing ribs 3 are uniformly arranged on the lower end face of the lower deck 4, the size of the upper deck 6 and the lower deck 4 is completely same, facilitating production and assembly, the lower deck reinforcing rib 3 is connected with the lower deck 4 through a rivet, and similarly, the upper deck reinforcing rib 7 is also connected with the upper deck 6 through a rivet, this connection mode has high strength and high reliability, and can effectively prevent the reinforcing rib from loosening or falling off during use.
[0032] The upper deck reinforcing rib 7 and the lower deck reinforcing rib 3 greatly improve the bending strength and the compression capacity, especially when heavy load operation is carried out or when severe weather conditions are encountered, the upper deck reinforcing rib 7 and the lower deck reinforcing rib 3 can significantly reduce the deformation and damage risk of the upper deck 6 and the lower deck 4, thereby prolonging the service life of the platform.
[0033] The upper end of the upper deck 6 is provided with a fence 1, which not only plays a safety protection role, but also is equipped with a plurality of life buoys 2 thereon to quickly provide rescue support in emergency situations, the fence 1 is composed of a plurality of columnar poles and a plurality of horizontal bars, which together form a stable and reliable protection structure, the columnar poles are vertically installed at the upper end of the upper deck 6 to form the main frame of the fence 1, and the columnar poles are kept at a uniform distance from each other to ensure the overall stability and protection effect of the fence, and the horizontal bars are respectively connected horizontally between the columnar poles to further enhance the structural strength and impact resistance of the fence, in order to ensure the durability and corrosion resistance of the fence 1, the columnar poles and the horizontal bars are made of galvanized hollow steel pipes, the galvanized layer can effectively prevent the steel pipe from rusting in a humid environment, and the hollow design can minimize the self-weight of the fence while ensuring sufficient strength, thereby improving the portability and operation flexibility of the whole.
[0034] It can be understood that the above-mentioned various embodiments of the present application can be combined with each other to form combined embodiments without violating the principle logic, and the present application will not be described again due to the limited length.
[0035] Those skilled in the art can understand that in the above method of the specific embodiment, the writing order of each step does not mean a strict execution order and does not constitute any limitation on the implementation process, and the specific execution order of each step should be determined by its function and possible internal logic.
[0036] The upper deck 6 and the lower deck 4 of the platform are connected through a plurality of fixed reinforcing bars 5, which significantly enhances the stability of the overall structure, so that it can effectively resist the severe weather conditions commonly seen in high-cold regions, not only improves the durability of the platform, but also ensures that it can still work normally under extreme climate conditions;
[0037] The fence 1 of the platform is equipped with a plurality of life buoys 2, which can be quickly taken in emergency situations to provide necessary rescue support for the workers, greatly improving the safety of the operation;
[0038] The high-cold region photovoltaic power generation engineering water operation platform has strong universality and adaptability, is suitable for various water operation tasks, realizes double promotion of operation efficiency and safety, and effectively controls the cost while guaranteeing high performance.
[0039] The above has described various embodiments of the present application, the above description is exemplary, not exhaustive, and is not limited to the disclosed embodiments. Many modifications and changes are obvious to those skilled in the art without departing from the scope and spirit of the described embodiments. The selection of terms used herein is intended to best explain the principles, practical applications or technical improvements in the market of the embodiments, or to enable other ordinary skilled in the art to understand the embodiments disclosed herein.
Claims
1. A water operation platform for photovoltaic power generation projects in high-altitude and cold regions, characterized by: include: hull; The hull comprises an upper deck (6) and a lower deck (4), wherein the upper deck (6) and the lower deck (4) are symmetrically arranged, and a plurality of hull plates (8) are arranged between the upper deck (6) and the lower deck (4); The upper deck (6) and the lower deck (4) are connected via a plurality of fixed tie bars (5); A fence (1) is provided at the upper end of the upper deck (6), and a plurality of lifebuoys (2) are provided on the fence (1).
2. The above-water operation platform for photovoltaic power generation projects in high-altitude and cold regions according to claim 1 is characterized in that: The upper deck (6) is a rectangular structure, and a plurality of upper deck reinforcement ribs (7) are evenly arranged on the upper end surface of the upper deck (6).
3. The above-water operation platform for photovoltaic power generation projects in high-altitude and cold regions according to claim 2 is characterized in that: The lower deck (4) is a rectangular structure, and a plurality of lower deck reinforcement ribs (3) are evenly arranged on the lower end surface of the lower deck (4). The upper deck (6) has the same size as the lower deck (4).
4. The above-water operation platform for photovoltaic power generation projects in high-altitude and cold regions according to claim 1 is characterized in that: The fence (1) comprises: a plurality of columns and a plurality of cross bars, wherein the plurality of columns are vertically installed on the upper end of the upper deck (6) in a circumferential direction, and the plurality of cross bars are horizontally connected to the columns.
5. The above-water operation platform for photovoltaic power generation projects in high-altitude and cold regions according to claim 1 is characterized in that: The fixed tie rod (5) is a cylindrical structure, and the two ends of the fixed tie rod (5) are respectively fixedly connected to the upper deck (6) and the lower deck (4).
6. The water operation platform for photovoltaic power generation projects in high-altitude and cold regions according to claim 4 is characterized in that: The columns and crossbars are made of galvanized hollow steel pipes.
7. The water operation platform for photovoltaic power generation projects in high-altitude and cold regions according to claim 1 is characterized in that: The hull panels (8) are rectangular foam benzene panels, and a plurality of hull panels (8) are evenly distributed in the circumferential direction.
8. The above-water operation platform for photovoltaic power generation projects in high-altitude and cold regions according to claim 3 is characterized in that: The lower deck reinforcement ribs (3) are connected to the lower deck (4) by rivets, and the upper deck reinforcement ribs (7) are connected to the upper deck (6) by rivets.