Multi-station modular wind power generation cabin
By designing a multi-position modular wind power generation nacelle, container structure, and guidance system, the problems of inflexibility and cumbersome assembly of existing wind power generation devices have been solved, realizing a flexible, mobile, and efficient wind power generation solution.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEBEI PUSHEN ELECTRICAL EQUIP CO LTD
- Filing Date
- 2025-05-08
- Publication Date
- 2026-04-10
AI Technical Summary
Existing wind power generation devices suffer from high costs and inflexibility for fixed devices, and high energy consumption and low wind power collection efficiency for vehicle-mounted devices, which cannot meet emergency power needs. Furthermore, existing equipment is cumbersome to assemble and has high operating costs.
Design a multi-position modular wind power generation pod with a container structure. The top is equipped with a power generation station, and the interior is divided into independent compartments, including an inverter compartment and a temporary storage compartment. Support positions are used to fix the wind power generation modules, and the guide section and guide wheel system facilitate the disassembly and installation of the modules. The top of the container is equipped with a drainage device to support modular transportation and installation.
It achieves flexible mobility and efficient transportation of wind power generation devices, reduces labor intensity, improves assembly efficiency, is suitable for emergency power needs, has a novel structural design, and is convenient for transportation and installation.
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Figure CN224107373U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wind power generation technical field especially relates to a multi -station modularization wind power generation cabin. BACKGROUND
[0002] It is known that in the field temporary construction site, in order to realize the power supply of equipment, the prior art usually adopts fixed generator to generate electricity, and this kind of situation needs to be equipped with generator, electric energy conversion module, electric energy storage module combined use. The above power generation device assembly is more cumbersome, and needs professional personnel to carry out engineering assembly and debugging, and is more cumbersome during construction.
[0003] With the vigorous promotion of wind power generation, in recent years, wind power generation device also gradually rises, for example, the wind power generation device of CN116044670A, which realizes wind power collection and then realizes electric energy conversion by setting the power generation device at a fixed point, and for example, the mobile wind power generation vehicle of CN113415152A, the essence of this kind of power generation vehicle is to set the wind power generation device on the vehicle, and realize energy conversion and then storage by the vehicle-mounted power generation device.
[0004] The above wind power generation device has technical defects: 1. The fixed wind power generation device has high cost, and the energy collection point is fixed, which cannot be used flexibly. 2. The vehicle-mounted wind power generation device itself is an immature product, and the energy conversion mode caused by wind power collection and vehicle driving is unreasonable. The faster the vehicle drives, the higher the energy consumption is, and the higher the wind power collection efficiency is, which cannot realize the utilization of maximum amplitude wind power conversion.
[0005] At present, when responding to the demand for emergency power supply, the fuel generator is usually fixed on the vehicle, which causes the vehicle to have single functionality and high use cost.
[0006] In view of the actual technical defects of the prior art, as a technical personnel in this industry, the technical problem to be solved at present is to design a wind power generation cabin, set the wind power generation device on the container, and can be towed to the emergency point for power generation. After power generation, modularization transfer is realized. UTILITY MODEL CONTENT
[0007] In order to realize the above purpose, the utility model develops a multi-station modularization wind power generation cabin, which sets the container body, sets a plurality of stations on the top of the box body, sets the wind power generation module in the box body, and installs the power generation module according to the demand, so as to realize wind emergency power generation.
[0008] The technical scheme adopted by it is as follows:
[0009] A kind of multi-station modular wind power cabin, including container cabin, the top of the container cabin is provided with several power generation stations;The container cabin is divided into multiple independent compartments, including inverter compartment and temporary storage compartment, the temporary storage compartment is provided with several support positions, and the support positions are used for fixing wind power generation modules.
[0010] The power generation station is provided with a fixing flange, and the top of the fixing flange is provided with a sealing plate for sealing in a non-power generation state;The fixing flange extends to the inside of the container cabin through a fixing pile and is provided with a reinforcing member around the fixing pile for reinforcing the power generation station.
[0011] The bottom of the temporary storage compartment is provided with a guide portion, and a guide wheel is arranged in cooperation with the guide portion, the guide wheel is provided with an inclined support rod connected with a temporary storage platform, and a vertical positioning rod is further arranged between the inclined support rod and the temporary storage platform, and the temporary storage platform is in an offset state relative to the guide wheel, and the offset direction is towards the side door of the container cabin.
[0012] The guide portion adopts a T-shaped track slot, and the inner wall of the T-shaped track slot is provided with a double-sided guide wheel member, and the double-sided guide wheel member is connected with the temporary storage platform through the inclined support rod.
[0013] The top of the container cabin is provided with a drainage device or adopts a pointed top for collecting and discharging rainwater.
[0014] The beneficial effects of the utility model are as follows: the utility model discloses the above-mentioned design, and the top of the container cabin is provided with several power generation stations;The container cabin is divided into multiple independent compartments, including inverter compartment and temporary storage compartment, and the temporary storage compartment is provided with several support positions, and the support positions are used for fixing wind power generation modules;The utility model discloses a vehicle for carrying the container cabin to a power generation area, installs and fixes the wind power generation module in the temporary storage compartment on the power generation station, so that wind power generation is realized;During transportation, the wind power generation module is disassembled from the power generation station and then transferred to the temporary storage compartment;The utility model discloses novel structure design, and transportation, installation and storage are convenient, so that it is an ideal multi-station modular wind power cabin. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is the front side three-dimensional structure schematic diagram of the utility model;
[0016] Figure 2 It is the rear side three-dimensional structure schematic diagram of the utility model;
[0017] Figure 3 It is the side view internal structure schematic diagram of the utility model;
[0018] Figure 4 It is the main view internal structure schematic diagram of the utility model;
[0019] Reference signs:
[0020] 1, container cabin, 11, internal column, 12, temporary storage room, 13, pointed top, 14, rear door, 15, middle partition, 16, storage room, 17, inverter room;
[0021] 2, power generation station, 20, fixed flange, 21, fixed pile, 22, reinforcing piece, 23, blocking plate;
[0022] 3, T-shaped rail groove, 31, positioning block;
[0023] 4, double-sided guide wheel piece, 5, inclined support rod, 6, vertical positioning rod;
[0024] 7, temporary platform, 71, support position, 72, support position reinforcing piece, 73, bottom connecting piece, 74, pulling handle;
[0025] 8, wind power generation module. DETAILED DESCRIPTION
[0026] In order to make the purpose, technical scheme and advantages of the utility model more clear and obvious, the utility model will be further described in detail below with reference to the drawings. It should be understood that the specific embodiments described herein are only used to explain the utility model and not to limit the utility model.
[0027] Example 1:
[0028] Example 1:
[0029] A multi-station modular wind power generation cabin, comprising a container cabin 1, the container cabin 1 is the same as the shipping size of the commercial container on the market, and can be shipped with the truck fixed.
[0030] The top of the container cabin 1 is provided with a plurality of power generation stations 2, in this embodiment, the power generation station 2 is provided with a fixed flange 20, the bottom of the fixed flange 20 is connected with a fixed pile 21, the fixed pile 21 is a cylindrical structure, which extends into the container cabin 1 and is provided with a reinforcing piece 22 around the fixed pile 21 for overall reinforcement of the power generation station 2. The fixed pile 21 is vertically through, and the connecting line and the control line can be introduced into the container cabin 1 through the fixed pile 21, so as to realize the connection between the wind power generation module 8 and the control system or the electric energy storage device.
[0031] The top of the fixed flange 20 is also provided with a blocking plate 23 for blocking in the non-power generation state, so as to avoid rain and birds from entering the container cabin 1.
[0032] This utility model divides the container body 1 into multiple independent compartments by internal columns 11 and central partitions 15, including an inverter compartment 17, a temporary storage compartment 12, and a storage room 16. The temporary storage compartment 12 is provided with several support positions 71, which are used to fix the wind power generation module 8.
[0033] With the above structural design, this utility model allows for flexible transportation. During power generation, the wind power module 8 is installed on the power generation station 2. During transportation, the wind power module 8 is fixed to the support position 71. The support can be a frame structure, ensuring the wind power module 8 will not move after being placed inside. In this embodiment, the support position 71 is designed as a flange of the same type as the fixed flange 20, which is fixed to the outside by welding. Furthermore, a reinforcing plate 72 is welded to the support position for reinforcement, thus locking the wind power module 8 onto the support position 71 for positioning.
[0034] Example 2:
[0035] Based on the structure of Embodiment 1, this utility model requires multiple operators for the installation and storage of the wind power generation module 8. First, the wind power generation module 8 is disassembled from the support position 71, then moved to the outside of the temporary storage compartment 12, and then lifted or hoisted to the top of the container body 1. Finally, the wind power generation module 8 is locked to the power generation station 2. However, this method of operation is labor-intensive and not conducive to the installation and flexible storage of the wind power generation module 8. This utility model makes further improvements, as follows:
[0036] This utility model has a guide section at the bottom of the temporary storage compartment 12. The guide section can be a track or a track groove. In this embodiment, the guide section adopts a T-shaped track groove 3, and its inner wall is provided with two rows of double-sided guide wheels 4. The double-sided guide wheels 4 are respectively connected to the bottom connecting piece 73 at the bottom of the temporary storage platform 7 through inclined support rods 5. A vertical positioning rod 6 is also provided between the inclined support rods 5 and the temporary storage platform. The temporary storage platform 7 is offset relative to the double-sided guide wheels 4, and its offset direction is towards the side door of the container cabin 1. Figure 4 As shown, this design allows operators to directly lift the temporary storage platform 7 onto the container body 1 using hoisting equipment from the spire 13 after the temporary storage platform 7 is moved to the outside of the container body 1, which can effectively improve assembly efficiency and reduce assembly stress.
[0037] The present invention also provides a drainage device on the top of the container body 1 or adopts a pointed top. In this embodiment, the top of the container body 1 is designed as a pointed top 13, which is used to drain rainwater to both sides to avoid rainwater remaining on the top of the container body and causing corrosion.
[0038] In summary, the utility model discloses can be transported to the container cabin body 1 by the vehicle of consigning and reach the power generation area, install and fix the wind power generation module 8 in the temporary storage chamber 12 on the power generation work station 2, to realize wind power generation in this way. In the transportation process, the wind power generation module 8 is disassembled from the power generation work station and then is transferred to the temporary storage chamber 12. The utility model discloses novel structure design, transportation, installation, convenient, is an ideal multi-station modular wind power generation cabin.
Claims
1. A multi-station modular wind power pod, characterized by: The container cabin is provided with a plurality of power generation stations on the top, and is divided into a plurality of independent compartments in the cabin, including an inverter compartment and a temporary storage compartment, and a plurality of support positions are arranged in the temporary storage compartment for fixing wind power generation modules.
2. The multi-station modular wind power pod of claim 1, wherein: The power generation station is provided with a fixing flange, and the top of the fixing flange is provided with a sealing plate; the fixing flange extends into the container cabin through a fixing pile and is provided with a reinforcing member around the fixing pile.
3. The multi-station modular wind power pod of claim 1, wherein: The temporary storage compartment is provided with a guide portion at the bottom, and a guide wheel is arranged in cooperation with the guide portion; the guide wheel is provided with an inclined support rod connected with a temporary storage platform, and a vertical positioning rod is further arranged between the inclined support rod and the temporary storage platform; the temporary storage platform is in an offset state relative to the guide wheel, and the offset direction is towards the side door of the container cabin.
4. The multi-station modular wind power pod of claim 3, wherein: The guide portion adopts a T-shaped track slot, and the inner wall of the T-shaped track slot is provided with a double-sided guide wheel member; the double-sided guide wheel member is connected with the temporary storage platform through the inclined support rod.
5. The multi-station modular wind power pod of claim 1, wherein: The top of the container cabin is provided with a drainage device or adopts a pointed top.
Citation Information
Patent Citations
Vehicle-mounted wind driven generator
CN113415152A
Wind driven generator base
CN116044670A