WO2024016515A1 - 一种用于风电机组安装的可调节平台 - Google Patents

一种用于风电机组安装的可调节平台 Download PDF

Info

Publication number
WO2024016515A1
WO2024016515A1 PCT/CN2022/128838 CN2022128838W WO2024016515A1 WO 2024016515 A1 WO2024016515 A1 WO 2024016515A1 CN 2022128838 W CN2022128838 W CN 2022128838W WO 2024016515 A1 WO2024016515 A1 WO 2024016515A1
Authority
WO
WIPO (PCT)
Prior art keywords
platform
fixedly connected
wind turbine
adjustment
installation
Prior art date
Application number
PCT/CN2022/128838
Other languages
English (en)
French (fr)
Inventor
常亚民
陈勇
朱壮华
刘建华
陈琰俊
Original Assignee
华能山西综合能源有限责任公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华能山西综合能源有限责任公司 filed Critical 华能山西综合能源有限责任公司
Priority to US18/454,814 priority Critical patent/US20240026624A1/en
Publication of WO2024016515A1 publication Critical patent/WO2024016515A1/zh

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02BHYDRAULIC ENGINEERING
    • E02B17/00Artificial islands mounted on piles or like supports, e.g. platforms on raisable legs or offshore constructions; Construction methods therefor
    • E02B17/02Artificial islands mounted on piles or like supports, e.g. platforms on raisable legs or offshore constructions; Construction methods therefor placed by lowering the supporting construction to the bottom, e.g. with subsequent fixing thereto
    • E02B17/021Artificial islands mounted on piles or like supports, e.g. platforms on raisable legs or offshore constructions; Construction methods therefor placed by lowering the supporting construction to the bottom, e.g. with subsequent fixing thereto with relative movement between supporting construction and platform
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02BHYDRAULIC ENGINEERING
    • E02B17/00Artificial islands mounted on piles or like supports, e.g. platforms on raisable legs or offshore constructions; Construction methods therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03DWIND MOTORS
    • F03D13/00Assembly, mounting or commissioning of wind motors; Arrangements specially adapted for transporting wind motor components
    • F03D13/10Assembly of wind motors; Arrangements for erecting wind motors
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02BHYDRAULIC ENGINEERING
    • E02B17/00Artificial islands mounted on piles or like supports, e.g. platforms on raisable legs or offshore constructions; Construction methods therefor
    • E02B2017/0039Methods for placing the offshore structure
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02BHYDRAULIC ENGINEERING
    • E02B17/00Artificial islands mounted on piles or like supports, e.g. platforms on raisable legs or offshore constructions; Construction methods therefor
    • E02B2017/0056Platforms with supporting legs
    • E02B2017/0073Details of sea bottom engaging footing
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02BHYDRAULIC ENGINEERING
    • E02B17/00Artificial islands mounted on piles or like supports, e.g. platforms on raisable legs or offshore constructions; Construction methods therefor
    • E02B2017/0091Offshore structures for wind turbines
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/727Offshore wind turbines

Definitions

  • the present invention relates to the technical field of wind turbines, and in particular to an adjustable platform for installation of wind turbines.
  • Wind resources are inexhaustible.
  • the use of wind power can reduce environmental pollution and save conventional energy sources such as coal and oil.
  • Wind power technology is mature, the cost is relatively low among renewable energy sources, and it has broad development prospects.
  • the basic principle of wind power generation is that the kinetic energy of the wind is converted into mechanical energy through the wind turbine, and then the wind turbine is driven to generate electricity to convert the mechanical energy into electrical energy.
  • a corresponding installation platform is required for construction;
  • Chinese patent CN 107700450 A discloses an installation process for a floating offshore wind power installation platform.
  • the installation platform of the wind power installation platform and the pile legs are connected by bolts.
  • the bolts need to be manually removed before the pile legs sink. , because the pile legs are heavy and difficult to disassemble manually, which consumes a lot of labor costs.
  • the present invention provides an adjustable platform for wind turbine installation to solve the technical problems raised in the above background art.
  • an adjustable platform for wind turbine installation which includes an adjusting platform shell.
  • the adjusting platform shell is installed on the hull.
  • Piles are slidably connected up and down in the adjusting platform shell.
  • Legs, the pile legs are provided with a number of adjustment jacks, and an electric plug-in assembly is provided in the housing of the adjustment platform.
  • the electric plug-in assembly is used to cooperate with the adjustment jacks.
  • the electric plug-in assembly includes:
  • the insertion adjustment gear is rotatably connected in the housing of the adjustment platform.
  • the insertion adjustment gear is provided with a first driving member, and the first driving member is used to drive the insertion adjustment gear. turn; turn
  • Two inserting racks are arranged up and down.
  • the inserting racks are slidingly connected to the inner wall of the adjusting platform housing. Both sides of the inserting adjusting gear mesh with the inserting racks respectively.
  • the inserting teeth One end of the bar away from the insertion adjustment gear is used for mutual insertion with the adjustment socket.
  • the insertion rack is provided with a guide slider, and the guide slider is slidably connected to the inner wall of the adjustment platform housing.
  • it also includes:
  • the lifting adjustment gear is rotatably connected in the housing of the adjustment platform.
  • the lifting adjustment gear is provided with a second driving member, and the second driving member is used to drive the lifting adjustment gear to rotate;
  • the lifting adjustment teeth are arranged on the outer walls of the pile legs, and the lifting adjustment gears mesh with the lifting adjustment teeth.
  • the adjustment platform shell and the hull are connected through a buffer assembly.
  • the buffer component includes:
  • a guide rod mounting bracket, the guide rod mounting bracket is fixedly connected to the hull;
  • the guide rod is fixedly connected to the guide rod mounting frame;
  • Two sets of symmetrically arranged buffer execution assemblies the top of the buffer execution assembly is connected to the adjustment platform housing, and the bottom of the buffer execution assembly is connected to the hull.
  • the buffer execution component includes:
  • Two symmetrically arranged guide sleeves the guide sleeves are slidingly connected to the guide rod, and a buffer elastic member is set between the two guide sleeves on the guide rod;
  • the upper connecting rod group includes a first connecting rod and a second connecting rod.
  • the first connecting rod and the second connecting rod are hingedly connected to the upper ends of the two guide sleeves.
  • the first connecting rod and the second connecting rod are respectively hinged.
  • One end of the two connecting rods away from the guide sleeve is hingedly connected to the connecting plate, and the connecting plate and the adjusting platform housing are connected by bolts;
  • the lower connecting rod group includes a third connecting rod and a fourth connecting rod.
  • the third connecting rod and the fourth connecting rod are hingedly connected to the lower ends of the two guide sleeves respectively.
  • the third connecting rod and the fourth connecting rod are respectively hinged.
  • One end of the four-link rod away from the guide sleeve is hingedly connected to the connecting block, and the connecting block is fixedly connected to the hull.
  • it also includes: a pile leg auxiliary installation plug, the pile leg auxiliary installation plug is provided with a threaded connection hole, and the pile leg auxiliary installation plug is connected to the pile leg through the threaded connection hole;
  • the pile leg auxiliary installation plug includes a driving component, a first stabilizing component and a second stabilizing component, and the driving component is used to drive the first stabilizing component and the second stabilizing component to work;
  • the driving components include:
  • the main drive gear is provided with several sets of first meshing teeth.
  • the main drive gear is slidably connected with a toggle block along its radial direction.
  • the toggle block and the main drive gear are connected by a third
  • a reset elastic member is connected, and the main driving gear is provided with a third driving member, and the third driving member is used to drive the main driving gear to rotate;
  • the first stabilizing component includes:
  • An installation cylinder which is fixedly connected to the auxiliary installation plug of the pile leg;
  • Driving piston the driving piston is slidingly connected in the installation cylinder, and one end of the driving piston located outside the installation cylinder is provided with a number of toggle grooves, and the toggle block is used to cooperate with the toggle grooves.
  • a short rod is fixedly connected to one end of the driving piston located in the installation cylinder, a first electromagnet is provided on the driving piston, a second electromagnet is provided on the inner wall of the installation cylinder, and the second electromagnet For attracting with the first electromagnet;
  • a threaded column the threaded column is rotatably connected in the installation cylinder, the threaded column is provided with a matching thread, and the end of the short rod away from the driving piston is slidably connected in the matching thread;
  • Threaded rod the threaded rod is fixedly connected to the threaded column, the threaded rod outer sleeve is provided with a stable drill bit, the stable drill bit is threadedly connected to the threaded rod;
  • the second stabilizing component includes:
  • a rack guide seat which is fixedly connected to the installation cylinder
  • the meshing rack is slidably connected to the rack guide seat.
  • the meshing rack is provided with several sets of second meshing teeth.
  • the second meshing teeth are used to interact with the first meshing teeth. mesh with each other;
  • a reset elastic member mounting seat, the reset elastic member mounting seat is fixedly connected to the meshing rack, and a second reset elastic member is fixedly connected between the reset elastic member mounting seat and the rack guide seat;
  • a positioning piece is slidably connected in the auxiliary installation plug of the pile leg, and is an interference fit with the auxiliary installation plug of the pile leg;
  • a power transmission member which is rotatably connected in the auxiliary installation plug of the pile leg.
  • One side of the power transmission member is used to cooperate with the end of the meshing rack away from the second meshing tooth.
  • the other side of the power transmission part is used for hammering the positioning part.
  • the stable drill bit cleaning assembly includes:
  • Water injection cylinder the water injection cylinder is fixedly connected to the installation cylinder, the water injection cylinder is provided with a water inlet, and the water inlet is provided with a one-way valve;
  • Pulling plunger the pulling plunger is slidingly connected in the water filling cylinder, and one end of the pulling plunger located outside the water filling cylinder is fixedly connected with a connecting plate, and the connecting plate is away from the pulling column.
  • One end of the plug is fixedly connected to the meshing rack, a guide post is fixedly connected to the connecting plate, and the end of the guide post away from the connecting plate is slidingly connected in the rack guide seat;
  • a flushing spray gun is hingedly connected to the installation cylinder.
  • the water inlet end of the flushing spray gun and the water injection cylinder are connected through a water outlet pipe.
  • the water outlet end of the flushing spray gun faces the stable drill bit.
  • the adjustment platform housing is provided with a wind turbine installation assembly, and the wind turbine installation assembly is used for the installation of the wind turbine.
  • the wind turbine installation assembly includes:
  • lifting screws Two symmetrically arranged lifting screws, the lifting screws are rotationally connected to the adjusting platform housing, and the lifting screws are threadedly connected to a bearing platform;
  • Driving motor the driving motor is fixedly connected to the adjusting platform housing, the output end of the driving motor is keyed to a first pulley and a second pulley, and the two lifting screws are respectively keyed to a third pulley.
  • the pulley and the fourth pulley, the first pulley and the third pulley are connected by a first conveyor belt, and the second pulley and the fourth pulley are connected by a second conveyor belt;
  • a fixed arc-shaped plate which is fixedly connected to the bearing platform
  • the wind turbine is installed between the fixed arc plate and the adjusting arc plate, a T-shaped rod is fixedly connected to the adjusting arc plate, and the T-shaped rod is slidingly connected to the first
  • the first hydraulic cylinder is fixedly connected to the bearing platform through a cylinder mounting bracket;
  • a second hydraulic cylinder is fixedly connected to the bearing platform.
  • An adjusting screw is rotatably connected to the second hydraulic cylinder.
  • a fourth driving member is provided on the adjusting screw. The fourth driving member is used to drive the adjustment screw to rotate.
  • An extrusion nut is threadedly connected to the adjustment screw.
  • Hydraulic oil is provided in the second hydraulic cylinder.
  • the second hydraulic cylinder is connected to the The first hydraulic cylinder is connected through the hydraulic oil connecting pipe;
  • Winding wheel motor the winding wheel motor is fixedly connected to the bearing platform, the output shaft of the winding wheel motor is keyed to a first winding wheel and a second winding wheel, the first winding wheel and the second reel is wound with winding wire;
  • the hammering racks are slidingly connected up and down on the bearing platform.
  • a round table is fixedly connected to the hammering racks, and a rack reset elastic member is fixedly connected to the round table.
  • One end of the rack reset elastic member away from the circular cone is against the bearing platform;
  • the fixed wheel is fixedly connected to one end of the hammer rack located below the bearing platform, and one end of the winding wire away from the first winding wheel and the second winding wheel is fixedly connected to the two winding wheels respectively. on fixed wheels;
  • the hammering gear and the hammering cam are coaxially and rotationally connected to the bearing platform, and the hammering gear and the hammering rack mesh with each other.
  • Figure 1 is a schematic diagram of the overall structure of the present invention.
  • Figure 2 is a schematic structural diagram of the buffer assembly of the present invention.
  • Figure 3 is a schematic structural diagram of the pile leg auxiliary installation plug of the present invention.
  • Figure 4 is a partial enlarged view of position A in Figure 3 of the present invention.
  • Figure 5 is a schematic diagram of the installation structure of the wind turbine generator according to the present invention.
  • Figure 6 is a partial enlarged view of B in Figure 5 of the present invention.
  • Adjustment platform shell 100. Seawater area; 101. Silt area; 2. Hull; 3. Pile legs; 300. Adjustment socket; 301. Insertion adjustment gear; 302. Insertion rack; 303 , guide slider; 304, lifting adjustment gear; 4. buffer component; 400, guide rod mounting bracket; 401, guide rod; 402, buffer execution component; 4020, guide sleeve; 4021, upper connecting rod group; 4022, first Connecting rod; 4023, second connecting rod; 4024, connecting plate; 4025, lower connecting rod group; 4026, third connecting rod; 4027, fourth connecting rod; 4028, connecting block; 4029, buffer elastic member; 5.
  • pile Leg auxiliary installation plug 500, threaded connection hole; 5000, main drive gear; 5001, first meshing tooth; 5002, toggle block; 5003, first reset elastic member; 5004, installation cylinder; 5005, drive piston; 5006 , Toggle groove; 5007, short rod; 5008, first electromagnet; 5009, second electromagnet; 501, threaded column; 5010, matching thread; 5011, threaded rod; 5012, stable drill bit; 5013, rack guide seat ; 5014, meshing rack; 5015, second meshing tooth; 5016, power transmission component; 5017, positioning component; 5018, reset elastic component mounting seat; 5019, second reset elastic component; 502, stable drill bit cleaning component; 5020, Water injection cylinder; 5021, water inlet; 5022, pull-out plunger; 5023, connecting plate; 5024, flushing spray gun; 5025, water outlet pipe; 5026, guide column; 6, wind turbine unit installation components; 600, lifting screw; 6000 , carrying platform; 6001, drive motor; 6002, first pulley; 600
  • the embodiment of the present invention provides an adjustable platform for wind turbine installation, as shown in Figures 1-6, including an adjusting platform shell 1, which is installed on the hull 2, and the adjusting platform There are legs 3 slidably connected up and down in the housing 1, and a number of adjustment sockets 300 are provided on the legs 3.
  • the housing 1 of the adjustment platform is provided with an electric plug-in assembly, and the electric plug-in assembly is used with The adjustment jacks 300 cooperate with each other.
  • the hull 2 transports the adjustable platform to the position where the wind turbine is to be installed, and then the electric plug-in component and the adjustment socket 300 are disengaged, so that the pile legs 3 are lifted under the action of their own weight. Settling downward, the pile legs 3 pass through the seawater area 100 and are plugged into the silt area 101. Then the electric plug-in assembly is inserted into the adjustment socket 300 again, and then the adjustment platform shell 1 and the hull 2 are separated from the installation state, and the hull 2 is lowered. Shen drives out of the pile leg 3 installation area, and the adjustable platform is now installed (since the wind turbine is installed on the adjustable platform, the adjustable platform can be installed on the sea while also achieving the function of installing the wind turbine on the sea);
  • the invention replaces the bolt connection between the installation platform and the pile leg by cooperating the electric plug-in assembly with the adjustment socket 300 of the pile leg 3.
  • the electric plug-in assembly uses electric power to replace manual work, thus solving the problem of wind power installation in the prior art.
  • the installation platform of the platform and the pile legs are connected by bolts.
  • the bolts need to be manually removed before the pile legs sink. Because the pile legs are heavy, manual disassembly is difficult and consumes a lot of labor costs. Technical issues.
  • the electric plug-in assembly includes:
  • the insertion adjustment gear 301 is rotatably connected in the adjustment platform housing 1.
  • the insertion adjustment gear 301 is provided with a first driving member, and the first driving member is used to drive the adjustment platform.
  • the insertion adjustment gear 301 rotates;
  • inserting racks 302 There are two inserting racks 302 arranged up and down.
  • the inserting racks 302 are slidingly connected to the inner wall of the adjusting platform housing 1. Both sides of the inserting adjusting gear 301 mesh with the inserting racks 302 respectively.
  • One end of the insertion rack 302 away from the insertion adjustment gear 301 is used for mutual insertion with the adjustment socket 300;
  • the insertion rack 302 is provided with a guide slider 303, and the guide slider 303 is slidingly connected to the inner wall of the adjustment platform housing 1;
  • the lifting adjustment gear 304 is rotatably connected in the adjustment platform housing 1.
  • the lifting adjustment gear 304 is provided with a second driving member, and the second driving member is used to drive the lifting adjustment.
  • Gear 304 rotates;
  • the lifting adjustment teeth are arranged on the outer wall of the pile leg 3, and the lifting adjustment gear 304 meshes with the lifting adjustment teeth.
  • the first driving member drives the plug-in adjustment gear 301 to rotate, and the plug-in adjustment gear 301 rotates to drive the plug-in rack 302 along the adjustment platform housing.
  • the inner wall slides, and the insertion rack 302 slides to realize the cooperation and disengagement between the insertion rack 302 and the adjustment socket 300.
  • the design of the guide slider 303 makes the movement of the insertion rack 302 more stable and smooth. The trajectory is more certain, which increases the accuracy of the mutual insertion of the insertion rack 302 and the adjustment socket 300;
  • the second driving member drives the lifting adjustment gear 304 to rotate.
  • the rotation of the lifting adjustment gear 304 drives the pile leg 3 to move up and down under the action of the lifting adjustment teeth, thereby realizing the lifting of the pile leg 3.
  • the adjustment platform housing 1 and the hull 2 are connected through a buffer assembly 4;
  • the buffer component 4 includes:
  • Guide rod mounting bracket 400 the guide rod mounting bracket 400 is fixedly connected to the hull 2;
  • Guide rod 401 the guide rod 401 is fixedly connected to the guide rod mounting bracket 400;
  • the buffer execution component 402 includes:
  • Two symmetrically arranged guide sleeves 4020, the guide sleeves 4020 are slidingly connected to the guide rod 401, and a buffer elastic member 4029 is set between the two guide sleeves 4020 on the guide rod 401;
  • the upper connecting rod group 4021 includes a first connecting rod 4022 and a second connecting rod 4023.
  • the first connecting rod 4022 and the second connecting rod 4023 are hingedly connected to the upper ends of the two guide sleeves 4020, so The ends of the first connecting rod 4022 and the second connecting rod 4023 away from the guide sleeve 4020 are hingedly connected to the connecting plate 4024, and the connecting plate 4024 is connected to the adjusting platform housing 1 by bolts;
  • the lower connecting rod group 4025 includes a third connecting rod 4026 and a fourth connecting rod 4027.
  • the third connecting rod 4026 and the fourth connecting rod 4027 are respectively hingedly connected to the lower ends of the two guide sleeves 4020, so One end of the third connecting rod 4026 and the fourth connecting rod 4027 away from the guide sleeve 4020 is hingedly connected to the connecting block 4028, and the connecting block 4028 is fixedly connected to the hull 2.
  • the working principle and beneficial effects of the above technical solution are: when the adjustment platform shell 1 is floating due to the hull 2 during the working process or when the hammer body on the hull 2 is used to hammer the pile legs 3 so that the pile legs 3 are inserted into the mud (specifically
  • the working method can refer to the existing technology CN 107700450 A), which will definitely cause vibrations in the adjusting platform shell 1. If the adjusting platform shell 1 is directly connected to the hull 2, the service life of the hull 2 or the adjustable platform will be shortened due to mutual collision. ;
  • the kinetic energy on the adjustment platform housing 1 will be transmitted to the first link 4022 and the second link 4023 of the upper link group 4021.
  • the first link 4022 and the second link 4023 The guide sleeve 4020 is driven to slide along the guide rod 401.
  • the guide sleeve 4020 slides to change the distance between the two guide sleeves 4020.
  • the guide sleeve 4020 drives the third connecting rod 4026 and the fourth connecting rod of the lower connecting rod group 4025. 4027 movement, and finally the kinetic energy on the guide sleeve 4020 is converted into the elastic potential energy of the buffer elastic member 4029, thereby reducing the damage to the adjustment platform shell 1 and the hull 2 caused by the vibration of the adjustment platform shell 1.
  • Embodiment 1 On the basis of Embodiment 1, it also includes: a pile leg auxiliary installation plug 5, a threaded connection hole 500 is provided in the pile leg auxiliary installation plug 5, and the pile leg auxiliary installation plug 5 is connected through the threaded connection hole 500 on leg 3;
  • the pile leg auxiliary installation plug 5 includes a driving component, a first stabilizing component and a second stabilizing component, and the driving component is used to drive the first stabilizing component and the second stabilizing component to work;
  • the driving components include:
  • Main drive gear 5000 The main drive gear 5000 is provided with several sets of first meshing teeth 5001.
  • the main drive gear 5000 is slidably connected with a toggle block 5002 along its radial direction.
  • the toggle block 5002 is connected to the main drive gear 5000.
  • the driving gears 5000 are connected through the first reset elastic member 5003, and the main driving gear 5000 is provided with a third driving member, and the third driving member is used to drive the main driving gear 5000 to rotate;
  • the first stabilizing component includes:
  • Installation cylinder 5004 the installation cylinder 5004 is fixedly connected in the pile leg auxiliary installation plug 5;
  • Driving piston 5005 The driving piston 5005 is slidingly connected in the installation cylinder 5004. One end of the driving piston 5005 located outside the installation cylinder 5004 is provided with a number of toggle grooves 5006.
  • the toggle block 5002 is In order to cooperate with the toggle groove 5006, a short rod 5007 is fixedly connected to one end of the driving piston 5005 located in the installation cylinder 5004.
  • the driving piston 5005 is provided with a first electromagnet 5008.
  • the installation A second electromagnet 5009 is provided on the inner wall of the cylinder 5004, and the second electromagnet 5009 is used to attract the first electromagnet 5008;
  • the threaded column 501 is rotatably connected in the installation cylinder 5004.
  • the threaded column 501 is provided with a matching thread 5010.
  • One end of the short rod 5007 away from the driving piston 5005 is slidably connected to the Matching thread 5010;
  • Threaded rod 5011 the threaded rod 5011 is fixedly connected to the threaded column 501, the threaded rod 5011 is provided with a stable drill bit 5012, the stable drill bit 5012 is threadedly connected to the threaded rod 5011;
  • the second stabilizing component includes:
  • Rack guide seat 5013 the rack guide seat 5013 is fixedly connected to the installation cylinder 5004;
  • the meshing rack 5014 is slidably connected to the rack guide seat 5013.
  • the meshing rack 5014 is provided with several sets of second meshing teeth 5015, and the second meshing teeth 5015 are used to engage with the rack guide seat 5013.
  • the first meshing teeth 5001 mesh with each other;
  • the reset elastic member mounting seat 5018 is fixedly connected to the meshing rack 5014, and a second reset is fixedly connected between the reset elastic member mounting seat 5018 and the rack guide seat 5013.
  • Positioning piece 5017 the positioning piece 5017 is slidingly connected in the pile leg auxiliary installation plug 5, and has an interference fit with the pile leg auxiliary installation plug 5;
  • the power transmission member 5016 is rotatably connected in the auxiliary installation plug 5 of the pile leg.
  • One side of the power transmission member 5016 is used to be away from the second meshing tooth 5015 with the meshing rack 5014.
  • One end cooperates with each other, and the other side of the power transmission member 5016 is used to hammer the positioning member 5017;
  • the stable drill bit cleaning assembly 502 includes:
  • Water injection cylinder 5020 the water injection cylinder 5020 is fixedly connected to the installation cylinder 5004, the water injection cylinder 5020 is provided with a water inlet 5021, and the water inlet 5021 is provided with a one-way valve;
  • a pull-out plunger 5022 is slidably connected in the water injection cylinder 5020.
  • An end of the pull-out plunger 5022 located outside the water injection cylinder 5020 is fixedly connected to a connecting plate 5023.
  • the end of the connecting plate 5023 away from the pull-out plunger 5022 is fixedly connected to the meshing rack 5014.
  • the connecting plate 5023 is fixedly connected to a guide post 5026.
  • the end of the guide post 5026 away from the connecting plate 5023 Slidingly connected in the rack guide seat 5013;
  • Flushing spray gun 5024 The flushing spray gun 5024 is hingedly connected to the installation cylinder 5004.
  • the water inlet end of the flushing spray gun 5024 and the water injection cylinder 5020 are connected through a water outlet pipe 5025.
  • the flushing spray gun 5024 discharges water. The end faces the stable drill bit 5012.
  • the third driving member drives the main driving gear 5000 to rotate, and the main driving gear 5000 rotates when the toggle block 5002 passes by.
  • the driving piston 5005 is pushed to slide along the installation cylinder 5004 in a direction away from the second electromagnet 5009, so that the short rod 5007 Slide along the matching thread 5010 of the threaded column 501.
  • the threaded column 501 begins to rotate.
  • the rotation of the threaded column 501 drives the threaded rod 5011 to rotate.
  • the rotation of the threaded rod 5011 drives the stable drill bit 5012 to rotate and extend outward.
  • the main driving gear 5000 rotates to drive the toggle block 5002 to cooperate with the toggle groove 5006 intermittently, and finally the stable drill bit 5012 is inserted into the silt area 101.
  • the driving piston 5005 is recovered, the first electromagnet 5008 and The second electromagnet 5009 is energized, thereby causing the driving piston 5005 to return to its original position;
  • the main driving gear 5000 rotates so that the first meshing teeth 5001 and the second meshing teeth 5015 mesh with each other, thereby driving the meshing rack 5014 to move along the rack guide seat 5013 in a direction away from the installation cylinder 5004, and the meshing rack 5014 pushes
  • the power transmission member 5016 rotates, causing the power transmission member 5016 to knock the positioning member 5017, causing the positioning member 5017 to move toward the direction of the silt area 101.
  • the action of the second reset elastic member 5019 and the rotation of the main driving gear 5000 cause the first meshing teeth 5001
  • the intermittent meshing with the second meshing teeth 5015 ensures that the power transmission member 5016 continuously knocks the positioning member 5017, and finally inserts the positioning member 5017 into the silt area 101;
  • the engaging rack 5014 slides back and forth along the rack guide seat 5013, which will drive the connecting plate 5023 to move together, so that the pulling plunger 5022 is pulled out in the water injection cylinder 5020.
  • seawater enters the water injection cylinder 5020 through the water inlet 5021, is discharged from the water injection cylinder 5020 through the water outlet pipe 5025, and is sprayed on the stable drill bit 5012 through the flushing spray gun 5024 to rinse the sludge on the stable drill bit 5012.
  • the threads on the stable drill bit 5012 can guide and discharge the silt around the stable drill bit 5012 in the opposite direction to the insertion direction of the stable drill bit 5012 during the process of inserting the stable drill bit 5012 into the silt area 101, thus increasing the In order to ensure the smoothness of the stabilizing drill bit 5012 when it is inserted into the mud, when the mud adheres to the stabilizing drill bit 5012 after use, it will increase the difficulty of inserting the mud during the next use of the stabilizing drill bit 5012, thereby stabilizing the drill bit cleaning assembly 502 The design can greatly increase the smoothness of the stable drill bit 5012 during the next use.
  • the adjustment platform housing 1 is provided with a wind turbine installation assembly 6.
  • the wind turbine installation assembly 6 is used for the installation of the wind turbine 7.
  • the wind turbine installation assembly 6 includes:
  • lifting screws 600 Two symmetrically arranged lifting screws 600, the lifting screws 600 are rotationally connected to the adjustment platform housing 1, and a bearing platform 6000 is threadedly connected to the lifting screws 600;
  • the driving motor 6001 is fixedly connected to the adjusting platform housing 1.
  • the output end of the driving motor 6001 is key-connected with a first pulley 6002 and a second pulley 6003.
  • the two lifting screws 600 A third pulley 6004 and a fourth pulley 6005 are respectively keyed to each other.
  • the first pulley 6002 and the third pulley 6004 are connected through a first conveyor belt 6006.
  • the four pulleys 6005 are connected through a second conveyor belt 6007;
  • Fixed arc plate 6008, the fixed arc plate 6008 is fixedly connected to the bearing platform 6000;
  • Adjustment arc plate 6009 the wind turbine unit 7 is installed between the fixed arc plate 6008 and the adjustment arc plate 6009, the adjustment arc plate 6009 is fixedly connected with a T-shaped rod 601, the T The profile rod 601 is slidingly connected in the first hydraulic cylinder 6010, and the first hydraulic cylinder 6010 is fixedly connected to the bearing platform 6000 through the cylinder mounting bracket 6011;
  • the second hydraulic cylinder 6012 is fixedly connected to the bearing platform 6000.
  • the second hydraulic cylinder 6012 is rotatably connected with an adjusting screw 6013.
  • the adjusting screw 6013 is provided with There is a fourth driving member.
  • the fourth driving member is used to drive the adjustment screw 6013 to rotate.
  • An extrusion nut 6014 is threadedly connected to the adjustment screw 6013.
  • a hydraulic pressure is provided in the second hydraulic cylinder 6012. oil, the second hydraulic cylinder 6012 and the first hydraulic cylinder 6010 are connected through a hydraulic oil connecting pipe 6015;
  • the reel motor 6016 is fixedly connected to the bearing platform 6000, and the output shaft of the reel motor 6016 is keyed to a first reel 6017 and a second reel 6018, so The first reel 6017 and the second reel 6018 are wound with winding wire 6019;
  • the hammering racks 602 are slidingly connected up and down on the bearing platform 6000.
  • a round table 6020 is fixedly connected to the hammering racks 602, and a round table 6020 is fixedly connected to the round table 6020.
  • Rack reset elastic member 6021 one end of the rack reset elastic member 6021 away from the circular platform 6020 offsets the bearing platform 6000;
  • the fixed wheel 6022 is fixedly connected to one end of the hammer rack 602 located below the bearing platform 6000.
  • the winding 6019 is away from the first winding wheel 6017 and the second winding wheel 6018.
  • One end is fixedly connected to the two fixed wheels 6022 respectively;
  • the fourth driving member drives the adjusting screw 6013 to rotate
  • the adjusting screw 6013 rotates to drive the extrusion nut 6014 to move upward
  • the extrusion nut 6014 moves upward.
  • the movement squeezes the hydraulic oil in the second hydraulic cylinder 6012, and the hydraulic oil enters the first hydraulic cylinder 6010 through the hydraulic oil connecting pipe 6015, thereby squeezing the T-shaped rod 601 and making the adjusting arc plate 6009 close to the outer wall of the wind turbine 7
  • the design of the adjusting arc plate 6009 allows the adjustable platform to adapt to the installation of wind turbines 7 of different sizes.
  • first pulley 6002 and the second pulley 6003 can be driven to rotate by the driving motor 6001.
  • the first pulley 6002 and The rotation of the second pulley 6003 drives the lifting screw 600 to rotate under the action of the first conveyor belt 6006 and the second conveyor belt 6007.
  • the lifting screw 600 rotates to drive the bearing platform 6000 to move up and down, so that the installation height of the wind turbine unit 7 can be artificially adjusted;
  • the wind turbine installation assembly 6 can be used to knock it, thereby accelerating the descent speed of the pile leg 3 and increasing the insertion depth.
  • the winding wheel motor 6016 drives the first winding wheel 6017 and The second reel 6018 rotates, and the rotation of the first reel 6017 and the second reel 6018 drives the winding 6019 between the first reel 6017 and the second reel 6018 and the fixed wheel 6022 to shorten, so that The fixed wheel 6022 pulls the hammering rack 602 to move downward, and the downward movement of the hammering rack 602 drives the hammering gear 6023 to rotate, thereby causing the hammering cam 6024 to rotate in a direction away from the pile leg 3, and the rack is reset during this process.
  • the elastic member 6021 is compressed, and then the rack resets the elastic member 6021 to its original length and drives the hammering rack 602 to move upward.
  • the upward movement of the hammering rack 602 drives the hammering gear 6023 to rotate.
  • the rotation of the hammering gear 6023 drives the hammering cam 6024 pair.
  • the pile leg 3 is struck, thereby accelerating the descent of the pile leg 3.

Abstract

本发明涉及风电机组技术领域,具体为一种用于风电机组安装的可调节平台,包括调节平台壳体,所述调节平台壳体安装在船体上,所述调节平台壳体内上下滑动连接有桩腿,所述桩腿上开设有若干调节插孔,所述调节平台壳体内设有电动插合组件,所述电动插合组件用于与所述调节插孔相互配合。本发明通过电动插合组件与桩腿的调节插孔相互配合代替安装平台与桩腿之间的螺栓连接,同时采用电力工作代替人工工作,解决了现有技术中风电安装平台的安装平台与桩腿之间通过螺栓连接,在桩腿下沉前需要人工将螺栓拆下,由于桩腿较重人工拆卸难度较大,且极大的消耗了人力成本的技术问题。

Description

一种用于风电机组安装的可调节平台 技术领域
本发明涉及风电机组技术领域,特别涉及一种用于风电机组安装的可调节平台。
背景技术
风力资源是取之不尽用之不绝的,利用风力发电可以减少环境污染,节省煤炭、石油等常规能源,风力发电技术成熟,在可再生能源中成本相对较低,有着广阔的发展前景,风力发电的基本原理是风的动能通过风轮机转换成机械能,再带动风电机组发电将机械能转换成电能,风电机组在安装过程中需要使用相应的安装平台进行施工;
中国专利CN 107700450 A中公开了一种浮托式海上风电安装平台的安装工艺,其中的风电安装平台的安装平台与桩腿之间通过螺栓连接,在桩腿下沉前需要人工将螺栓拆下,由于桩腿较重人工拆卸难度较大,且极大的消耗了人力成本。
发明内容
本发明提供一种用于风电机组安装的可调节平台,用以解决上述背景技术中提出的技术问题。
为解决上述技术问题,本发明公开了一种用于风电机组安装的可调节平台,包括调节平台壳体,所述调节平台壳体安装在船体上,所述调节平台壳体内上下滑动连接有桩腿,所述桩腿上开设有若干调节插孔,所述调节平台壳体内设有电动插合组件,所述电动插合组件用于与所述调节插孔相互配合。
优选的,所述电动插合组件包括:
插合调节齿轮,所述插合调节齿轮转动连接在所述调节平台壳体内,所述插合调节齿轮上设有第一驱动件,所述第一驱动件用于驱动所述插合调节齿轮转动;
两上下布置的插合齿条,所述插合齿条滑动连接在所述调节平台壳体内壁,所述插合调节齿轮两侧分别与所述插合齿条相互啮合,所述插合齿条远离所述插合调节齿轮的一端用于与所述调节插孔相互插合。
优选的,所述插合齿条上设有导向滑块,所述导向滑块滑动连接在所述调节平台壳体内壁。
优选的,还包括:
升降调节齿轮,所述升降调节齿轮转动连接在所述调节平台壳体内,所述升降调节齿轮上设有第二驱动件,所述第二驱动件用于驱动所述升降调节齿轮转动;
升降调节齿,所述升降调节齿设置在所述桩腿外壁,所述升降调节齿轮与所述升降调节齿相互啮合。
优选的,所述调节平台壳体与所述船体通过缓冲组件连接。
优选的,所述缓冲组件包括:
导杆安装架,所述导杆安装架固定连接在所述船体上;
导杆,所述导杆固定连接在所述导杆安装架上;
两组对称布置的缓冲执行组件,所述缓冲执行组件顶部与所述调节平台壳体连接,所述缓冲执行组件底部与所述船体连接。
优选的,所述缓冲执行组件包括:
两对称布置的导向套,所述导向套滑动连接在所述导杆上,所述导杆上两所述导向套之间套设有缓冲弹性件;
上连杆组,所述上连杆组包括第一连杆和第二连杆,所述第一连杆和第二连杆分别铰链连接在两导向套上端,所述第一连杆和第二连杆远离导向套的一端铰链链接在连接板上,所述连接板与所述调节平台壳体之间通过螺栓连接;
下连杆组,所述下连杆组包括第三连杆和第四连杆,所述第三连杆和第四连杆分别铰链连接在两导向套下端,所述第三连杆和第四连杆远离导向套的一端铰链链接在连接块上,所述连接块固定连接在所述船体上。
优选的,还包括:桩腿辅助安装插头,所述桩腿辅助安装插头上开设有螺纹连接孔,所述桩腿辅助安装插头通过所述螺纹连接孔连接在桩腿上;
所述桩腿辅助安装插头包括驱动组件、第一稳固组件和第二稳固组件,所述驱动组件用于驱动所述第一稳固组件和第二稳固组件工作;
所述驱动组件包括:
主驱动齿轮,所述主驱动齿轮上设有若干组第一啮合齿,所述主驱动齿轮沿其径向滑动连接有拨动块,所述拨动块与所述主驱动齿轮之间通过第一复位弹性件连接,所述主驱动齿轮上设有第三驱动件,所述第三驱动件用于驱动所述主驱动齿轮转动;
所述第一稳固组件包括:
安装筒体,所述安装筒体固定连接在所述桩腿辅助安装插头内;
驱动活塞,所述驱动活塞滑动连接在所述安装筒体内,所述驱动活塞位于所述安装筒体外的一端设有若干拨动槽,所述拨动块用于与所述拨动槽相互配合,所述驱动活塞位于所述安装筒体内的一端固定连接有短杆,所述驱动活塞上设有第一电磁铁,所述安装筒体内壁设有第二电磁铁,所述第二电磁铁用于与所述第一电磁铁吸合;
螺纹柱,所述螺纹柱转动连接在所述安装筒体内,所述螺纹柱上开设有配合螺纹,所述短杆远离所述驱动活塞的一端滑动连接在所述配合螺纹内;
螺纹杆,所述螺纹杆固定连接在所述螺纹柱上,所述螺纹杆外套设有稳固钻头,所述稳固钻头与所述螺纹杆螺纹连接;
所述第二稳固组件包括:
齿条导向座,所述齿条导向座固定连接在所述安装筒体上;
啮合齿条,所述啮合齿条滑动连接在所述齿条导向座上,所述啮合齿条上设有若干组第二啮合齿,所述第二啮合齿用于与所述第一啮合齿相互啮合;
复位弹性件安装座,所述复位弹性件安装座固定连接在所述啮合齿条上,所述复位弹性件安装座与所述齿条导向座之间固定连接有第二复位弹性件;
定位件,所述定位件滑动连接在所述桩腿辅助安装插头内,且与所述桩腿辅助安装插头过盈配合;
动力传送件,所述动力传送件转动连接在所述桩腿辅助安装插头内,所述动力传送件一侧用于与所述啮合齿条远离所述第二啮合齿的一端相互配合,所述动力传送件另一侧用于对所述定位件进行锤击。
优选的,还包括:稳固钻头清洁组件,所述稳固钻头清洁组件包括:
注水筒体,所述注水筒体固定连接在所述安装筒体上,所述注水筒体上设有进水口,所述进水口上设有单向阀;
抽拉柱塞,所述抽拉柱塞滑动连接在所述注水筒体内,所述抽拉柱塞位于所述注水筒体外的一端固定连接有连接板,所述连接板远离所述抽拉柱塞的一端固定连接在啮合齿条上,所述连接板上固定连接有导向柱,所述导向柱远离所述连接板的一端滑动连接在所述齿条导向座内;
冲洗喷枪,所述冲洗喷枪铰链连接在所述安装筒体上,所述冲洗喷枪的进水端与所述注水筒体之间通过出水管连接,所述冲洗喷枪出水端朝向所述稳固钻头。
优选的,所述调节平台壳体上设有风电机组安装组件,所述风电机组安装组件用于风电机组的安装,所述风电机组安装组件包括:
两对称布置的升降丝杆,所述升降丝杆转动连接在所述调节平台壳体上,所述升降丝杆上螺纹连接有承载台;
驱动电机,所述驱动电机固定连接在所述调节平台壳体上,所述驱动电机输出端键连接有第一带轮和第二带轮,两所述升降丝杆上分别键连接有第三带轮和第四带轮,所述第一带轮和第三带轮之间通过第一传送带连接,所述第二带轮和所述第四带轮之间通过第二传送带连接;
固定弧形板,所述固定弧形板固定连接在所述承载台上;
调节弧形板,所述风电机组安装在所述固定弧形板和所述调节弧形板之间,所述调节弧形板上固定连接有T型杆,所述T型杆滑动连接在第一液压筒体内,所述第一液压筒体通过筒体安装支座固定连接在所述承载台上;
第二液压筒体,所述第二液压筒体固定连接在所述承载台上,所述第二液压筒体内转动连接有调节丝杠,所述调节丝杠上设有第四驱动件,所述第四驱动件用于驱动所述调节丝杠转动,所述调节丝杠上螺纹连接有挤压螺母,所述第二液压筒体内设有液压油,所述第二液压筒体与所述第一液压筒体通过液压油连接管连通;
绕线轮电机,所述绕线轮电机固定连接在所述承载台上,所述绕线轮电机输出轴键连接有第一绕线轮和第二绕线轮,所述第一绕线轮和第二绕线轮上缠绕有绕线;
两对称布置的锤击齿条,所述锤击齿条上下滑动连接在所述承载台上,所述锤击齿条上固定连接有圆台,所述圆台上固定连接有齿条复位弹性件,所述齿条复位弹性件远离所述圆台的一端与所述承载台相抵;
固定轮,所述固定轮固定连接在所述锤击齿条位于所述承载台下方的一端,所述绕线远离所述第一绕线轮和第二绕线轮的一端分别固定连接在两固定轮上;
锤击齿轮和锤击凸轮,所述锤击齿轮和锤击凸轮同轴转动连接在所述承载台上,所述锤击齿轮与所述锤击齿条相互啮合。
下面通过附图和实施例,对本发明的技术方案做进一步的详细描述。
附图说明
附图用来提供对本发明的进一步理解,并且构成说明书的一部分,与本发明的实施例一起用于解释本发明,并不构成对本发明的限制。在附图中:
图1为本发明整体结构示意图。
图2为本发明缓冲组件结构示意图。
图3为本发明桩腿辅助安装插头结构示意图。
图4为本发明图3的A处局部放大图。
图5为本发明的风电机组安装结构示意图。
图6为本发明图5的B处局部放大图。
图中:1、调节平台壳体;100、海水区;101、淤泥区;2、船体;3、桩腿;300、调节插孔;301、插合调节齿轮;302、插合齿条;303、导向滑块;304、升降调节齿轮;4、缓冲组件;400、导杆安装架;401、导杆;402、缓冲执行组件;4020、导向套;4021、上连杆组;4022、第一连杆;4023、第二连杆;4024、连接板;4025、下连杆组;4026、第三连杆;4027、第四连杆;4028、连接块;4029、缓冲弹性件;5、桩腿辅助安装插头;500、螺纹连接孔;5000、主驱动齿轮;5001、第一啮合齿;5002、拨动块;5003、第一复位弹性件;5004、安装筒体;5005、驱动活塞;5006、拨动槽;5007、短杆;5008、第一电磁铁;5009、第二电磁铁;501、螺纹柱;5010、配合螺纹;5011、螺纹杆;5012、稳固钻头;5013、齿条导向座;5014、啮合齿条;5015、第二啮合齿;5016、动力传送件;5017、定位件;5018、复位弹性件安装座;5019、第二复位弹性件;502、稳固钻头清洁组件;5020、注水筒体;5021、进水口;5022、抽拉柱塞;5023、连接板;5024、冲洗喷枪;5025、出水管;5026、导向柱;6、风电机组安装组件;600、升降丝杆;6000、承载台;6001、驱动电机;6002、第一带轮;6003、第二带轮;6004、第三带轮;6005、第四带轮;6006、第一传送带;6007、第二传送带;6008、固定弧形板;6009、调节弧形板;601、T型杆;6010、第一液压筒体;6011、筒体安装支座;6012、第二液压筒体;6013、调节丝杠;6014、挤压螺母;6015、液压油连接管;6016、绕线轮电机;6017、第一绕线轮;6018、第二绕线轮;6019、绕线;602、锤击齿条;6020、圆台;6021、齿条复位弹性件;6022、固定轮;6023、锤击齿轮;6024、锤击凸轮;7、风电机组。
具体实施方式
以下结合附图对本发明的优选实施例进行说明,应当理解,此处所描述的优选实施例仅用于说明和解释本发明,并不用于限定本发明。
另外,在本发明中如涉及“第一”、“第二”等的描述仅用于描述目的,并非特别指称次序或顺位的意思,亦非用以限定本发明,其仅仅是为了区别以相同技术用语描述的组件或操作而已,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案以及技术特征可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本发明要求的保护范围之内。
本发明提供如下实施例:
实施例1
本发明实施例提供了一种用于风电机组安装的可调节平台,如图1-6所示,包括调节平台壳体1,所述调节平台壳体1安装在船体2上,所述调节平台壳体1内上下滑动连接有桩腿3,所述桩腿3上开设有若干调节插孔300,所述调节平台壳体1内设有电动插合组件,所述电动插合组件用于与所述调节插孔300相互配合。
上述技术方案的工作原理及有益效果为:工作时,船体2将可调节平台运输至风电机组待安装位置,之后电动插合组件与调节插孔300脱离配合,使得桩腿3在自重的作用下向下沉降,桩腿3经过海水区100插接在淤泥区101,之后电动插合组件再次插合进调节插孔300中,之后将调节平台壳体1与船体2脱离安装状态,船体2下沉驶出桩腿3安装区域,至此可调节平台安装完毕(由于风电机组安装在可调节平台上,可调节平台安装于海上的同时实现了将风电机组安装于海上的作用);
本发明通过电动插合组件与桩腿3的调节插孔300相互配合代替安装平台与桩腿之间的螺栓连接,同时电动插合组件采用电力工作代替人工工作,解决了现有技术中风电安装平台的安装平台与桩腿之间通过螺栓连接,在桩腿下沉前需要人工将螺栓拆下,由于桩腿较重人工拆卸难度较大,且极大的消耗了人力成本的技术问题。
实施例2
在上述实施例1的基础上,所述电动插合组件包括:
插合调节齿轮301,所述插合调节齿轮301转动连接在所述调节平台壳体1内,所述插合调节齿轮301上设有第一驱动件,所述第一驱动件用于驱动所述插合调节齿轮301转动;
两上下布置的插合齿条302,所述插合齿条302滑动连接在所述调节平台壳体1内壁,所述插合调节齿轮301两侧分别与所述插合齿条302相互啮合,所述插合齿条302远离所述插合调节齿轮301的一端用于与所述调节插孔300相互插合;
所述插合齿条302上设有导向滑块303,所述导向滑块303滑动连接在所述调节平台壳体1内壁;
还包括:
升降调节齿轮304,所述升降调节齿轮304转动连接在所述调节平台壳体1内,所述升降调节齿轮304上设有第二驱动件,所述第二驱动件用于驱动所述升降调节齿轮304转动;
升降调节齿,所述升降调节齿设置在所述桩腿3外壁,所述升降调节齿轮304与所述升降调节齿相互啮合。
上述技术方案的工作原理及有益效果为:电动插合组件在使用时,第一驱动件驱动所述插合调节齿轮301转动,插合调节齿轮301转动带动插合齿条302沿调节平台壳体1内壁滑动,插合齿条302滑动从而实现插合齿条302与调节插孔300之间的配合与脱离配合,其中导向滑块303的设计使得插合齿条302的运动更加平稳,且运动轨迹更加确定,增加了插合齿条302与调节插孔300相互插合的精确度;
调节桩腿3的升降时,第二驱动件驱动所述升降调节齿轮304转动,升降调节齿轮304转动在升降调节齿的作用下带动桩腿3上下运动,从而实现桩腿3的升降。
实施例3
在实施例1或2的基础上,所述调节平台壳体1与所述船体2通过缓冲组件4连接;
所述缓冲组件4包括:
导杆安装架400,所述导杆安装架400固定连接在所述船体2上;
导杆401,所述导杆401固定连接在所述导杆安装架400上;
两组对称布置的缓冲执行组件402,所述缓冲执行组件402顶部与所述调节平台壳体1连接,所述缓冲执行组件402底部与所述船体2连接;
所述缓冲执行组件402包括:
两对称布置的导向套4020,所述导向套4020滑动连接在所述导杆401上,所述导杆401上两所述导向套4020之间套设有缓冲弹性件4029;
上连杆组4021,所述上连杆组4021包括第一连杆4022和第二连杆4023,所述第一连杆4022和第二连杆4023分别铰链连接在两导向套4020上端,所述第一连杆4022和第二连杆4023远离导向套4020的一端铰链链接在连接板4024上,所述连接板4024与所述调节平台壳体1之间通过螺栓连接;
下连杆组4025,所述下连杆组4025包括第三连杆4026和第四连杆4027,所述第三连杆4026和第四连杆4027分别铰链连接在两导向套4020下端,所述第三连杆4026和第四连杆4027远离导向套4020的一端铰链链接在连接块4028上,所述连接块4028固定连接在所述船体2上。
上述技术方案的工作原理及有益效果为:当调节平台壳体1在工作过程中由于船体2的漂浮或当采用船体2上的锤体对桩腿3进行捶打使桩腿3插入淤泥时(具体工作方式可参照现有技术CN 107700450 A),必定会使调节平台壳体1产生震动,如果调节平台壳体1与船体2直接连接,必定会因为相互撞击缩短船体2或可调节平台的使用寿命;
当调节平台壳体1震动时,调节平台壳体1上的动能会传到上连杆组4021的第一连杆4022和第二连杆4023上,第一连杆4022和第二连杆4023带动导向套4020沿导杆401滑动,导向套4020滑动从而改变两导向套4020之间的间距,导向套4020在滑动的过程中带动下连杆组4025的第三连杆4026和第四连杆4027运动,最终将导向套4020上的动能转化为缓冲弹性件4029的弹性势能,由此减少调节平台壳体1震动对调节平台壳体1和船体2的损伤。
实施例4
在实施例1的基础上,还包括:桩腿辅助安装插头5,所述桩腿辅助安装插头5上开设有螺纹连接孔500,所述桩腿辅助安装插头5通过所述螺纹连接孔500连接在桩腿3上;
所述桩腿辅助安装插头5包括驱动组件、第一稳固组件和第二稳固组件,所述驱动组件用于驱动所述第一稳固组件和第二稳固组件工作;
所述驱动组件包括:
主驱动齿轮5000,所述主驱动齿轮5000上设有若干组第一啮合齿5001,所述主驱动齿轮5000沿其径向滑动连接有拨动块5002,所述拨动块5002与所述主驱动齿轮5000之间通过第一复位弹性件5003连接,所述主驱动齿轮5000上设有第三驱动件,所述第三驱动件用于驱动所述主驱动齿轮5000转动;
所述第一稳固组件包括:
安装筒体5004,所述安装筒体5004固定连接在所述桩腿辅助安装插头5内;
驱动活塞5005,所述驱动活塞5005滑动连接在所述安装筒体5004内,所述驱动活塞5005位于所述安装筒体5004外的一端设有若干拨动槽5006,所述拨动块5002用于与所述拨动槽5006相互配合,所述驱动活塞5005位于所述安装筒体5004内的一端固定连接有短杆5007,所述驱动活塞5005上设有第一电磁铁5008,所述安装筒体5004内壁设有第二电磁铁5009,所述第二电磁铁5009用于与所述第一电磁铁5008吸合;
螺纹柱501,所述螺纹柱501转动连接在所述安装筒体5004内,所述螺纹柱501上开设有配合螺纹5010,所述短杆5007远离所述驱动活塞5005的一端滑动连接在所述配合螺纹5010内;
螺纹杆5011,所述螺纹杆5011固定连接在所述螺纹柱501上,所述螺纹杆5011外套设有稳固钻头5012,所述稳固钻头5012与所述螺纹杆5011螺纹连接;
所述第二稳固组件包括:
齿条导向座5013,所述齿条导向座5013固定连接在所述安装筒体5004上;
啮合齿条5014,所述啮合齿条5014滑动连接在所述齿条导向座5013上,所述啮合齿条5014上设有若干组第二啮合齿5015,所述第二啮合齿5015用于与所述第一啮合齿5001相互啮合;
复位弹性件安装座5018,所述复位弹性件安装座5018固定连接在所述啮合齿条5014上,所述复位弹性件安装座5018与所述齿条导向座5013之间固定连接有第二复位弹性件5019;
定位件5017,所述定位件5017滑动连接在所述桩腿辅助安装插头5内,且与所述桩腿辅助安装插头5过盈配合;
动力传送件5016,所述动力传送件5016转动连接在所述桩腿辅助安装插头5内,所述动力传送件5016一侧用于与所述啮合齿条5014远离所述第二啮合齿5015的一端相互配合,所述动力传送件5016另一侧用于对所述定位件5017进行锤击;
稳固钻头清洁组件502,所述稳固钻头清洁组件502包括:
注水筒体5020,所述注水筒体5020固定连接在所述安装筒体5004上,所述注水筒体5020上设有进水口5021,所述进水口5021上设有单向阀;
抽拉柱塞5022,所述抽拉柱塞5022滑动连接在所述注水筒体5020内,所述抽拉柱塞5022位于所述注水筒体5020外的一端固定连接有连接板5023,所述连接板5023远离所述抽拉柱塞5022的一端固定连接在所述啮合齿条5014上,所述连接板5023上固定连接有导向柱5026,所述导向柱5026远离所述连接板5023的一端滑动连接在所述齿条导向座5013内;
冲洗喷枪5024,所述冲洗喷枪5024铰链连接在所述安装筒体5004上,所述冲洗喷枪5024的进水端与所述注水筒体5020之间通过出水管5025连接,所述冲洗喷枪5024出水端朝向所述稳固钻头5012。
上述技术方案的工作原理及有益效果为:当所述桩腿3下降到位于淤泥区101上方时,第三驱动件驱动所述主驱动齿轮5000转动,主驱动齿轮5000转动当拨动块5002经过所述拨动槽5006时,与所述拨动槽5006相互配合,从而推动所述驱动活塞5005沿所述安装筒体5004向远离所述第二电磁铁5009的方向滑动,从而使得短杆5007沿螺纹柱501的配合螺纹5010滑动,在配合螺纹5010的作用下所述螺纹柱501开始转动,螺纹柱501转动带动螺纹杆5011转动,螺纹杆5011转动带动稳固钻头5012转动的同时向外伸出至淤泥区101,主驱动齿轮5000转动带动拨动块5002与拨动槽5006间歇性配合,最终使得稳固钻头5012插入淤泥区101内,当对驱动活塞5005进行回收时,第一电磁铁5008和第二电磁铁5009得电,从而使得驱动活塞5005回归原位;
同时主驱动齿轮5000转动使得第一啮合齿5001与第二啮合齿5015相互啮合,从而带动啮合齿条5014沿齿条导向座5013向远离所述安装筒体5004的方向运动,啮合齿条5014推动动力传送件5016转动,从而使得动力传送件5016敲击定位件5017,使得定位件5017向淤泥区101的方向运动,第二复位弹性件5019的作用和主驱动齿轮5000转动使得第一啮合齿5001与第二啮合齿5015间歇性啮合,保证了所述动力传送件5016不断敲击定位件5017,最终使得定位件5017插向淤泥区101;
当稳固钻头5012使用完毕进行回收的过程中,由于啮合齿条5014沿齿条导向座5013往复滑动,会带动连接板5023一起运动,从而使得抽拉柱塞5022在所述注水筒体5020内抽拉,在抽拉的过程中海水经进水口5021进入注水筒体5020,经出水管5025排出注水筒体5020后经冲洗喷枪5024喷在稳固钻头5012上,将稳固钻头5012上的淤泥冲洗干净,便于稳固钻头5012下次使用,由于稳固钻头5012上的螺纹在插入淤泥区101的过程中可起到导向和将稳固钻头5012周围的淤泥向稳固钻头5012插入方向相反的方向排出的作用,从而增加了稳固钻头5012插入淤泥过程中的流畅度,当稳固钻头5012在使用之后淤泥附着于稳固钻头5012上时,会增加稳固钻头5012下次使用过程中插入淤泥的难度,由此稳固钻头清洁组件502的设计可极大的增加稳固钻头5012在下次使用过程中的顺畅度。
实施例5
在实施例1的基础上,所述调节平台壳体1上设有风电机组安装组件6,所述风电机组安装组件6用于风电机组7的安装,所述风电机组安装组件6包括:
两对称布置的升降丝杆600,所述升降丝杆600转动连接在所述调节平台壳体1上,所述升降丝杆600上螺纹连接有承载台6000;
驱动电机6001,所述驱动电机6001固定连接在所述调节平台壳体1上,所述驱动电机6001输出端键连接有第一带轮6002和第二带轮6003,两所述升降丝杆600上分别键连接有第三带轮6004和第四带轮6005,所述第一带轮6002和第三带轮6004之间通过第一传送带6006连接,所述第二带轮6003和所述第四带轮6005之间通过第二传送带6007连接;
固定弧形板6008,所述固定弧形板6008固定连接在所述承载台6000上;
调节弧形板6009,所述风电机组7安装在所述固定弧形板6008和所述调节弧形板6009之间,所述调节弧形板6009上固定连接有T型杆601,所述T型杆601滑动连接在第一液压筒体6010内,所述第一液压筒体6010通过筒体安装支座6011固定连接在所述承载台6000上;
第二液压筒体6012,所述第二液压筒体6012固定连接在所述承载台6000上,所述第二液压筒体6012内转动连接有调节丝杠6013,所述调节丝杠6013上设有第四驱动件,所述第四驱动件用于驱动所述调节丝杠6013转动,所述调节丝杠6013上螺纹连接有挤压螺母6014,所述第二液压筒体6012内设有液压油,所述第二液压筒体6012与所述第一液压筒体6010通过液压油连接管6015连通;
绕线轮电机6016,所述绕线轮电机6016固定连接在所述承载台6000上,所述绕线轮电机6016输出轴键连接有第一绕线轮6017和第二绕线轮6018,所述第一绕线轮6017和第二绕线轮6018上缠绕有绕线6019;
两对称布置的锤击齿条602,所述锤击齿条602上下滑动连接在所述承载台6000上,所述锤击齿条602上固定连接有圆台6020,所述圆台6020上固定连接有齿条复位弹性件6021,所述齿条复位弹性件6021远离所述圆台6020的一端与所述承载台6000相抵;
固定轮6022,所述固定轮6022固定连接在所述锤击齿条602位于所述承载台6000下方的一端,所述绕线6019远离所述第一绕线轮6017和第二绕线轮6018的一端分别固定连接在两固定轮6022上;
锤击齿轮6023和锤击凸轮6024,所述锤击齿轮6023和锤击凸轮6024同轴转动连接在所述承载台6000上,所述锤击齿轮6023与所述锤击齿条602相互啮合
上述技术方案的工作原理及有益效果为:对风电机组7进行固定时,第四驱动件驱动所述调节丝杠6013转动,调节丝杠6013转动带动挤压螺母6014向上运动,挤压螺母6014向上运动挤压第二液压筒体6012内的液压油,液压油经液压油连接管6015进入第一液压筒体6010内从而挤压T型杆601进而使得调节弧形板6009紧贴风电机组7外壁,所述调节弧形板6009设计使得可调节平台可以适应不同尺寸的风电机组7的安装,同时可通过驱动电机6001带动第一带轮6002和第二带轮6003转动,第一带轮6002和第二带轮6003转动在第一传送带6006和第二传送带6007的作用下带动升降丝杆600转动,升降丝杆600转动从而带动承载台6000上下运动,从而可以人为调节风电机组7的安装高度;
在桩腿3下降的过程中,可使用风电机组安装组件6对其进行敲击,从而加快桩腿3的下降速度和增加插入深度,工作时绕线轮电机6016带动第一绕线轮6017和第二绕线轮6018转动,第一绕线轮6017和第二绕线轮6018转动带动第一绕线轮6017和第二绕线轮6018与固定轮6022之间的绕线6019缩短,从而使得固定轮6022拉动锤击齿条602向下运动,锤击齿条602向下运动带动锤击齿轮6023转动,从而使得锤击凸轮6024向远离桩腿3的方向转动,在此过程中齿条复位弹性件6021被压缩,之后齿条复位弹性件6021恢复原长带动锤击齿条602向上运动,锤击齿条602向上运动带动锤击齿轮6023转动,锤击齿轮6023转动带动锤击凸轮6024对桩腿3进行敲击,从而加快桩腿3的下降。
显然,本领域的技术人员可以对本发明进行各种改动和变型而不脱离本发明的精神和范围。这样,倘若本发明的这些修改和变型属于本发明权利要求及其等同技术的范围之内,则本发明也意图包含这些改动和变型在内。

Claims (10)

  1. 一种用于风电机组安装的可调节平台,其特征在于,包括调节平台壳体(1),所述调节平台壳体(1)安装在船体(2)上,所述调节平台壳体(1)内上下滑动连接有桩腿(3),所述桩腿(3)上开设有若干调节插孔(300),所述调节平台壳体(1)内设有电动插合组件,所述电动插合组件用于与所述调节插孔(300)相互配合。
  2. 根据权利要求1所述的一种用于风电机组安装的可调节平台,其特征在于,所述电动插合组件包括:
    插合调节齿轮(301),所述插合调节齿轮(301)转动连接在所述调节平台壳体(1)内,所述插合调节齿轮(301)上设有第一驱动件,所述第一驱动件用于驱动所述插合调节齿轮(301)转动;
    两上下布置的插合齿条(302),所述插合齿条(302)滑动连接在所述调节平台壳体(1)内壁,所述插合调节齿轮(301)上下两侧分别与所述插合齿条(302)相互啮合,所述插合齿条(302)远离所述插合调节齿轮(301)的一端用于与所述调节插孔(300)相互插合。
  3. 根据权利要求2所述的一种用于风电机组安装的可调节平台,其特征在于,所述插合齿条(302)上设有导向滑块(303),所述导向滑块(303)滑动连接在所述调节平台壳体(1)内壁。
  4. 根据权利要求1所述的一种用于风电机组安装的可调节平台,其特征在于,还包括:
    升降调节齿轮(304),所述升降调节齿轮(304)转动连接在所述调节平台壳体(1)内,所述升降调节齿轮(304)上设有第二驱动件,所述第二驱动件用于驱动所述升降调节齿轮(304)转动;
    升降调节齿,所述升降调节齿设置在所述桩腿(3)外壁,所述升降调节齿轮(304)与所述升降调节齿相互啮合。
  5. 根据权利要求1所述的一种用于风电机组安装的可调节平台,其特征在于,所述调节平台壳体(1)与所述船体(2)通过缓冲组件(4)连接。
  6. 根据权利要求5所述的一种用于风电机组安装的可调节平台,其特征在于,所述缓冲组件(4)包括:
    导杆安装架(400),所述导杆安装架(400)固定连接在所述船体(2)上;
    导杆(401),所述导杆(401)固定连接在所述导杆安装架(400)上;
    两组对称布置的缓冲执行组件(402),所述缓冲执行组件(402)顶部与所述调节平台壳体(1)连接,所述缓冲执行组件(402)底部与所述船体(2)连接。
  7. 根据权利要求6所述的一种用于风电机组安装的可调节平台,其特征在于,所述缓冲执行组件(402)包括:
    两对称布置的导向套(4020),所述导向套(4020)滑动连接在所述导杆(401)上,所述导杆(401)上两所述导向套(4020)之间套设有缓冲弹性件(4029);
    上连杆组(4021),所述上连杆组(4021)包括第一连杆(4022)和第二连杆(4023),所述第一连杆(4022)和第二连杆(4023)分别铰链连接在两导向套(4020)上端,所述第一连杆(4022)和第二连杆(4023)远离导向套(4020)的一端铰链链接在连接板(4024)上,所述连接板(4024)与所述调节平台壳体(1)之间通过螺栓连接;
    下连杆组(4025),所述下连杆组(4025)包括第三连杆(4026)和第四连杆(4027),所述第三连杆(4026)和第四连杆(4027)分别铰链连接在两导向套(4020)下端,所述第三连杆(4026)和第四连杆(4027)远离导向套(4020)的一端铰链链接在连接块(4028)上,所述连接块(4028)固定连接在所述船体(2)上。
  8. 根据权利要求1所述的一种用于风电机组安装的可调节平台,其特征在于,还包括:桩腿辅助安装插头(5),所述桩腿辅助安装插头(5)上开设有螺纹连接孔(500),所述桩腿辅助安装插头(5)通过所述螺纹连接孔(500)连接在桩腿(3)上;
    所述桩腿辅助安装插头(5)包括驱动组件、第一稳固组件和第二稳固组件,所述驱动组件用于驱动所述第一稳固组件和第二稳固组件工作;
    所述驱动组件包括:
    主驱动齿轮(5000),所述主驱动齿轮(5000)上设有若干组第一啮合齿(5001),所述主驱动齿轮(5000)沿其径向滑动连接有拨动块(5002),所述拨动块(5002)与所述主驱动齿轮(5000)之间通过第一复位弹性件(5003)连接,所述主驱动齿轮(5000)上设有第三驱动件,所述第三驱动件用于驱动所述主驱动齿轮(5000)转动;
    所述第一稳固组件包括:
    安装筒体(5004),所述安装筒体(5004)固定连接在所述桩腿辅助安装插头(5)内;
    驱动活塞(5005),所述驱动活塞(5005)滑动连接在所述安装筒体(5004)内,所述驱动活塞(5005)位于所述安装筒体(5004)外的一端设有若干拨动槽(5006),所述拨动块(5002)用于与所述拨动槽(5006)相互配合,所述驱动活塞(5005)位于所述安装筒体(5004)内的一端固定连接有短杆(5007),所述驱动活塞(5005)上设有第一电磁铁(5008),所述安装筒体(5004)内壁设有第二电磁铁(5009),所述第二电磁铁(5009)用于与所述第一电磁铁(5008)吸合;
    螺纹柱(501),所述螺纹柱(501)转动连接在所述安装筒体(5004)内,所述螺纹柱(501)上开设有配合螺纹(5010),所述短杆(5007)远离所述驱动活塞(5005)的一端滑动连接在所述配合螺纹(5010)内;
    螺纹杆(5011),所述螺纹杆(5011)固定连接在所述螺纹柱(501)上,所述螺纹杆(5011)外套设有稳固钻头(5012),所述稳固钻头(5012)与所述螺纹杆(5011)螺纹连接;
    所述第二稳固组件包括:
    齿条导向座(5013),所述齿条导向座(5013)固定连接在所述安装筒体(5004)上;
    啮合齿条(5014),所述啮合齿条(5014)滑动连接在所述齿条导向座(5013)上,所述啮合齿条(5014)上设有若干组第二啮合齿(5015),所述第二啮合齿(5015)用于与所述第一啮合齿(5001)相互啮合;
    复位弹性件安装座(5018),所述复位弹性件安装座(5018)固定连接在所述啮合齿条(5014)上,所述复位弹性件安装座(5018)与所述齿条导向座(5013)之间固定连接有第二复位弹性件(5019);
    定位件(5017),所述定位件(5017)滑动连接在所述桩腿辅助安装插头(5)内;
    动力传送件(5016),所述动力传送件(5016)转动连接在所述桩腿辅助安装插头(5)内,所述动力传送件(5016)一侧用于与所述啮合齿条(5014)远离所述第二啮合齿(5015)的一端相互配合,所述动力传送件(5016)另一侧用于对所述定位件(5017)进行锤击。
  9. 根据权利要求1所述的一种用于风电机组安装的可调节平台,其特征在于,还包括:稳固钻头清洁组件(502),所述稳固钻头清洁组件(502)包括:
    注水筒体(5020),所述注水筒体(5020)固定连接在所述安装筒体(5004)上,所述注水筒体(5020)上设有进水口(5021),所述进水口(5021)上设有单向阀;
    抽拉柱塞(5022),所述抽拉柱塞(5022)滑动连接在所述注水筒体(5020)内,所述抽拉柱塞(5022)位于所述注水筒体(5020)外的一端固定连接有连接板(5023),所述连接板(5023)远离所述抽拉柱塞(5022)的一端固定连接在啮合齿条(5014)上,所述连接板(5023)上固定连接有导向柱(5026),所述导向柱(5026)远离所述连接板(5023)的一端滑动连接在所述齿条导向座(5013)内;
    冲洗喷枪(5024),所述冲洗喷枪(5024)铰链连接在所述安装筒体(5004)上,所述冲洗喷枪(5024)的进水端与所述注水筒体(5020)之间通过出水管(5025)连接,所述冲洗喷枪(5024)出水端朝向所述稳固钻头(5012)。
  10. 根据权利要求1所述的一种用于风电机组安装的可调节平台,其特征在于,
    所述调节平台壳体(1)上设有风电机组安装组件(6),所述风电机组安装组件(6)用于风电机组(7)的安装,所述风电机组安装组件(6)包括:
    两对称布置的升降丝杆(600),所述升降丝杆(600)转动连接在所述调节平台壳体(1)上,所述升降丝杆(600)上螺纹连接有承载台(6000);
    驱动电机(6001),所述驱动电机(6001)固定连接在所述调节平台壳体(1)上,所述驱动电机(6001)输出端键连接有第一带轮(6002)和第二带轮(6003),两所述升降丝杆(600)上分别键连接有第三带轮(6004)和第四带轮(6005),所述第一带轮(6002)和第三带轮(6004)之间通过第一传送带(6006)连接,所述第二带轮(6003)和所述第四带轮(6005)之间通过第二传送带(6007)连接;
    固定弧形板(6008),所述固定弧形板(6008)固定连接在所述承载台(6000)上;
    调节弧形板(6009),所述风电机组(7)安装在所述固定弧形板(6008)和所述调节弧形板(6009)之间,所述调节弧形板(6009)上固定连接有T型杆(601),所述T型杆(601)滑动连接在第一液压筒体(6010)内,所述第一液压筒体(6010)通过筒体安装支座(6011)固定连接在所述承载台(6000)上;
    第二液压筒体(6012),所述第二液压筒体(6012)固定连接在所述承载台(6000)上,所述第二液压筒体(6012)内转动连接有调节丝杠(6013),所述调节丝杠(6013)上设有第四驱动件,所述第四驱动件用于驱动所述调节丝杠(6013)转动,所述调节丝杠(6013)上螺纹连接有挤压螺母(6014),所述第二液压筒体(6012)内设有液压油,所述第二液压筒体(6012)与所述第一液压筒体(6010)通过液压油连接管(6015)连通;
    绕线轮电机(6016),所述绕线轮电机(6016)固定连接在所述承载台(6000)上,所述绕线轮电机(6016)输出轴键连接有第一绕线轮(6017)和第二绕线轮(6018),所述第一绕线轮(6017)和第二绕线轮(6018)上缠绕有绕线(6019);
    两对称布置的锤击齿条(602),所述锤击齿条(602)上下滑动连接在所述承载台(6000)上,所述锤击齿条(602)上固定连接有圆台(6020),所述圆台(6020)上固定连接有齿条复位弹性件(6021),所述齿条复位弹性件(6021)远离所述圆台(6020)的一端与所述承载台(6000)相抵;
    固定轮(6022),所述固定轮(6022)固定连接在所述锤击齿条(602)位于所述承载台(6000)下方的一端,所述绕线(6019)远离所述第一绕线轮(6017)和第二绕线轮(6018)的一端分别固定连接在两固定轮(6022)上;
    锤击齿轮(6023)和锤击凸轮(6024),所述锤击齿轮(6023)和锤击凸轮(6024)同轴转动连接在所述承载台(6000)上,所述锤击齿轮(6023)与所述锤击齿条(602)相互啮合。
PCT/CN2022/128838 2022-07-21 2022-11-01 一种用于风电机组安装的可调节平台 WO2024016515A1 (zh)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US18/454,814 US20240026624A1 (en) 2022-07-21 2023-08-24 Adjustable platform for installing wind turbine generator

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202210856309.5A CN114922153B (zh) 2022-07-21 2022-07-21 一种用于风电机组安装的可调节平台
CN202210856309.5 2022-07-21

Related Child Applications (1)

Application Number Title Priority Date Filing Date
US18/454,814 Continuation US20240026624A1 (en) 2022-07-21 2023-08-24 Adjustable platform for installing wind turbine generator

Publications (1)

Publication Number Publication Date
WO2024016515A1 true WO2024016515A1 (zh) 2024-01-25

Family

ID=82815982

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2022/128838 WO2024016515A1 (zh) 2022-07-21 2022-11-01 一种用于风电机组安装的可调节平台

Country Status (2)

Country Link
CN (1) CN114922153B (zh)
WO (1) WO2024016515A1 (zh)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114922153B (zh) * 2022-07-21 2022-09-27 华能山西综合能源有限责任公司 一种用于风电机组安装的可调节平台

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1449216A (en) * 1973-11-30 1976-09-15 White B G Installation of hollow towers
FR2723975B1 (zh) * 1994-08-30 1997-02-14
CN203346861U (zh) * 2013-07-15 2013-12-18 山东省第一地质矿产勘查院 一种钻井平台
CN107700450A (zh) * 2017-06-12 2018-02-16 亨通华西海洋工程有限公司 一种浮托式海上风电安装平台的安装工艺
CN108163152A (zh) * 2018-02-06 2018-06-15 浙江华蕴海洋工程技术服务有限公司 自升式风电机组安装平台
CN112141283A (zh) * 2020-10-28 2020-12-29 广州高腾科技有限公司 一种海上浮动设备稳定装置
CN216554214U (zh) * 2022-01-21 2022-05-17 南通亚华船舶制造集团有限公司 一种自升式风电安装船用安装平台
CN114922153A (zh) * 2022-07-21 2022-08-19 华能山西综合能源有限责任公司 一种用于风电机组安装的可调节平台

Family Cites Families (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4033139A (en) * 1974-02-08 1977-07-05 Frederick Leonard L Pile driving hammer, apparatus and method
US4203576A (en) * 1978-07-11 1980-05-20 Sutton John R Elevating assembly for an offshore platform
FR2634504B1 (fr) * 1988-07-22 1991-09-20 Poels Henri Procede et dispositif d'implantation sur pieux d'appontements
US5219451A (en) * 1992-04-24 1993-06-15 Atlantic Richfield Company Offshore deck to substructure mating system and method
JP2004027548A (ja) * 2002-06-24 2004-01-29 Taisei Corp 杭の打設ガイド及び杭の打設方法
CN1528636A (zh) * 2003-09-27 2004-09-15 中铁大桥局集团第一工程有限公司 桥梁水中基础浮式钻孔平台施工方法
GB0809521D0 (en) * 2008-05-24 2008-07-02 Marine Current Turbines Ltd Installation of structures in water
KR20160023215A (ko) * 2014-08-21 2016-03-03 대우조선해양 주식회사 잭업리그 인발시공방법 및 구조
CN104806455B (zh) * 2015-02-26 2016-01-13 上海交通大学 频率可调的深水半潜式平台型浮式风电场
CN107642103A (zh) * 2017-10-20 2018-01-30 中交三航(上海)新能源工程有限公司 一种用于海上风电单桩基础稳桩定位平台
US11015635B2 (en) * 2018-07-24 2021-05-25 Ojjo, Inc. Threaded truss foundations and related systems, methods, and machines
CN209293001U (zh) * 2018-11-01 2019-08-23 合肥博斯维尔能源科技有限公司 一种用于水面漂浮式太阳能电站的固定装置
CN110606169A (zh) * 2019-11-04 2019-12-24 江苏耐克斯特高分子材料有限公司 光伏支架浮筒
CN111910576A (zh) * 2020-08-21 2020-11-10 王得云 一种可防淤泥堆积的水利工程施工用河道水流阻断装置
CN212963572U (zh) * 2020-08-25 2021-04-13 安徽郑萍建设工程有限公司 一种用于水利工程河道水位测量装置
CN214875457U (zh) * 2021-07-22 2021-11-26 正力海洋工程有限公司 一种坐底式风电船
CN216508927U (zh) * 2021-12-14 2022-05-13 汇智兴邦(上海)环保科技有限公司 一种水上纳米气泡发生设备的漂浮装置
CN216805736U (zh) * 2021-12-21 2022-06-24 南方海上风电联合开发有限公司 一种带波浪补偿功能的海洋平台可变直径抱箍系统

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1449216A (en) * 1973-11-30 1976-09-15 White B G Installation of hollow towers
FR2723975B1 (zh) * 1994-08-30 1997-02-14
CN203346861U (zh) * 2013-07-15 2013-12-18 山东省第一地质矿产勘查院 一种钻井平台
CN107700450A (zh) * 2017-06-12 2018-02-16 亨通华西海洋工程有限公司 一种浮托式海上风电安装平台的安装工艺
CN108163152A (zh) * 2018-02-06 2018-06-15 浙江华蕴海洋工程技术服务有限公司 自升式风电机组安装平台
CN112141283A (zh) * 2020-10-28 2020-12-29 广州高腾科技有限公司 一种海上浮动设备稳定装置
CN216554214U (zh) * 2022-01-21 2022-05-17 南通亚华船舶制造集团有限公司 一种自升式风电安装船用安装平台
CN114922153A (zh) * 2022-07-21 2022-08-19 华能山西综合能源有限责任公司 一种用于风电机组安装的可调节平台

Also Published As

Publication number Publication date
CN114922153A (zh) 2022-08-19
CN114922153B (zh) 2022-09-27

Similar Documents

Publication Publication Date Title
WO2024016515A1 (zh) 一种用于风电机组安装的可调节平台
CN102966336A (zh) 风力直驱抽油机
CN102126689B (zh) 风力发电机塔筒自动爬升机
CN203604123U (zh) 一种带限位的可调节的风力发电机弹性支撑件
CN218439243U (zh) 一种地热封井用钻孔装置
US20240026624A1 (en) Adjustable platform for installing wind turbine generator
CN106837659A (zh) 一种基于空气储能的高楼给排水一体化气媒能量回流系统
CN111395998A (zh) 一种能量互补平衡式简易采油装置
CN108252304B (zh) 电动冲击打桩锤
CN210736082U (zh) 一种千斤顶用反复式气动马达
CN210183253U (zh) 一种拆装便捷的太阳能组件
CN210183193U (zh) 一种电机转子生产用固定装置
CN107575336A (zh) 一种波浪能发电式灯塔
CN103670340B (zh) M型曳引数字化节能抽油机
CN218090939U (zh) 一种风电塔筒内螺栓安装定位装置
CN215420162U (zh) 一种防塌陷光伏支架
CN201786627U (zh) 煤层气井电潜泵排采电气连接装置
CN219570243U (zh) 可适应水位变化维持发电功率的微水发电机
CN201166090Y (zh) 一种纵向安装的电机传动装置
CN201292937Y (zh) 一种用于抽油机油井调节冲次的减速变速装置
CN212425228U (zh) 一种风力发电机现场维修用悬臂吊
CN114263860B (zh) 一种节能led照明灯
CN111878298B (zh) 一种潮汐发电水轮机
CN215630693U (zh) 一种装配式钢结构电梯井道的幕墙连接结构
CN220201222U (zh) 一种电力工程用悬吊装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 22951777

Country of ref document: EP

Kind code of ref document: A1