WO2017152367A1 - 一种高效安全的风力发电机 - Google Patents

一种高效安全的风力发电机 Download PDF

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Publication number
WO2017152367A1
WO2017152367A1 PCT/CN2016/075889 CN2016075889W WO2017152367A1 WO 2017152367 A1 WO2017152367 A1 WO 2017152367A1 CN 2016075889 W CN2016075889 W CN 2016075889W WO 2017152367 A1 WO2017152367 A1 WO 2017152367A1
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Prior art keywords
wind
wind power
power generator
gear
gear box
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PCT/CN2016/075889
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English (en)
French (fr)
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马翼
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马翼
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Priority to PCT/CN2016/075889 priority Critical patent/WO2017152367A1/zh
Publication of WO2017152367A1 publication Critical patent/WO2017152367A1/zh

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    • 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
    • F03D7/00Controlling wind motors 
    • F03D7/02Controlling wind motors  the wind motors having rotation axis substantially parallel to the air flow entering the rotor
    • 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
    • F03D15/00Transmission of mechanical power
    • F03D15/10Transmission of mechanical power using gearing not limited to rotary motion, e.g. with oscillating or reciprocating members
    • 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
    • F03D80/00Details, components or accessories not provided for in groups F03D1/00 - F03D17/00
    • F03D80/60Cooling or heating of wind motors
    • 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
    • F03D9/00Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations
    • F03D9/20Wind motors characterised by the driven apparatus
    • F03D9/25Wind motors characterised by the driven apparatus the apparatus being an electrical generator
    • 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
    • Y02E10/72Wind turbines with rotation axis in wind direction
    • 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
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P80/00Climate change mitigation technologies for sector-wide applications
    • Y02P80/10Efficient use of energy, e.g. using compressed air or pressurized fluid as energy carrier

Definitions

  • the invention relates to an efficient and safe wind power generator.
  • Wind turbines use atmospheric resources. They use energy as the working medium of the atmosphere. They convert wind energy into mechanical energy by doing work, which is more environmentally friendly than power generation methods such as thermal power and nuclear power.
  • the gearbox of the wind turbine is in a relatively closed space, and the components in the gearbox are in a working state for a long time, so that the temperature of the gearbox is high, and the heat can not be exhausted, so that the gearbox of high temperature operation is easy to age. This poses a safety hazard.
  • the wind cannot maximize the work on the blades, which reduces the power generation efficiency of the wind turbine.
  • the technical problem to be solved by the present invention is to provide an ability to effectively limit the gearbox temperature, ensure the normal operation of the gearbox, and improve power generation, in order to overcome the shortcomings in the prior art that the gearbox is prone to high temperature and cannot be dissipated after long-term operation, and the power generation efficiency is low. Efficient and efficient wind turbines.
  • an efficient and safe wind power generator including a plurality of blades, a hub, a base, a water pump, a water storage tank, a water conduit, a gear box, a rotating device, a tower and a wind vane
  • the wind blade is circumferentially evenly distributed on the outer circumference of the hub
  • the hub is drivingly connected to the gear box
  • the water reservoir is disposed above the gear box
  • the water storage tank is connected to the gear box through a water pump
  • the water reservoir is connected to the gear box through a water conduit
  • the wind vane is disposed above the water reservoir
  • a gear box is disposed above the rotating device
  • the rotating device is disposed above the tower
  • the tower is disposed above the base
  • the gearbox includes a casing, an inner casing, a wind turbine shaft, a planetary gear speed increasing box, a generator shaft, a generator, a temperature sensor, an electrical cabinet, a chassis and a water pipe, and the wind turbine shaft is drivingly coupled to the hub, the chassis Provided at the bottom of the inner casing, the planetary gear speed increasing box, the generator and the electrical cabinet are all disposed above the chassis, the planetary gear speed increasing box is connected with the wind turbine shaft, and the planetary gear speed increasing box passes through the generator shaft
  • the temperature sensor is disposed at the top of the inner casing
  • the electrical cabinet is provided with a central processor
  • the temperature sensor is connected to the central processor
  • the wind vane and the water pump are electrically connected to the central processor
  • the water pump is connected to the water conduit through a water pipe, and the water pipe is disposed inside the inner casing;
  • the rotating device includes a driving gear, a motor, a rotating shaft and a driven gear, the motor is electrically connected to a central processing unit, the driving gear is fixed on the motor, the driving gear is meshed with the driven gear, and the rotating shaft is fixed at On the driven gear, the rotating shaft is connected to the gear box.
  • a plurality of air holes are uniformly disposed on the inner casing.
  • the water pipe is S-shaped.
  • the material of the inner casing is copper.
  • the diameter of the driven gear is three times the diameter of the driving gear.
  • the salt water has a higher specific heat capacity, and the solution in the water reservoir is brine.
  • the invention has the beneficial effects that the high-efficiency and safe wind power generator measures the wind direction data through the wind direction indicator, and the central processor controls the rotating device to perform angle correction on the gear box to ensure that the wind blade is in the vertical direction of the wind direction, thereby improving the wind power generation efficiency, not only
  • the solution in the reservoir is introduced into the water pipe in the gear box by the water pump, and the heat is taken away to reduce the temperature, thereby ensuring that the gear box is in a reasonable working environment temperature. Degree, improve the safety performance of wind turbines.
  • FIG. 1 is a schematic structural view of an efficient and safe wind power generator of the present invention
  • FIG. 2 is a schematic structural view of a gear box of an efficient and safe wind power generator of the present invention
  • Figure 3 is a flow diagram of the internal water flow of the gearbox of the energy efficient wind turbine of the present invention.
  • FIG. 4 is a schematic structural view of an inner casing of a gear box of the energy efficient wind power generator of the present invention
  • Figure 5 is a schematic structural view of a rotating device of the energy efficient wind power generator of the present invention.
  • an efficient and safe wind power generator includes a plurality of blades 1, a hub 2, a base 3, a water pump 4, a reservoir 5, a water conduit 6, a gear box 7, and a rotating device 8.
  • the tower 23 and the wind vane 24 are uniformly distributed circumferentially on the outer circumference of the hub 2, the hub 2 is drivingly connected to the gear box 7, and the reservoir 5 is disposed above the gear box 7,
  • the water tank 5 is connected to the gear box 7 via a water pump 4, which is connected to the gear box 7 via a water conduit 6, which is arranged above the water reservoir 5, which is arranged to rotate Above the device 8, the rotating device 8 is disposed above the tower 23, and the tower 23 is disposed above the base 3;
  • the gearbox 7 includes a casing 9, an inner casing 10, a rotor shaft 11, a planetary gear speed increasing box 12, and power generation a crankshaft 13, a generator 14, a temperature sensor 15, an electrical cabinet 16, a chassis 17, and a water pipe 25, the wind turbine shaft 11 is drivingly coupled to the hub 2, and the chassis 17 is disposed at the bottom of the inner casing 10, the planet
  • the gear speed increasing box 12, the generator 14 and the electrical cabinet 16 are all disposed above the chassis 17, the planetary gear speed increasing box 12 is connected to the wind wheel shaft 11, and the planetary gear speed increasing box 12 is powered by the generator shaft 13
  • the machine 14 is connected, the temperature sensor 15 is disposed at the top of the inner casing 10, the central cabinet is disposed in the electrical cabinet 16, the temperature sensor 15 is connected to the central processor, and the wind vane 24 and the water pump 4 are both
  • the central processing unit is electrically connected, and the water pump 4 is connected to the water conduit 6 through a water pipe 25, and the water pipe 25 is disposed inside the inner casing 10;
  • the rotating device 8 includes a driving gear 19, a motor 20, a rotating shaft 21 and a driven gear 22, the motor 20 is electrically connected to a central processor, and the driving gear 19 is fixed to the motor 20, and the driving gear 19 and the slave The moving gear 22 is meshed, and the rotating shaft 21 is fixed to the driven gear 22, and the rotating shaft 21 is coupled to the gear case 7.
  • the inner casing 10 is uniformly provided with a plurality of air holes 18.
  • the water pipe 25 has an S shape in order to improve the heat dissipation effect.
  • the material of the inner casing 10 is copper.
  • the diameter of the driven gear 22 is three times the diameter of the driving gear 19.
  • the solution having a higher specific heat capacity of the brine is used, and the solution in the reservoir 5 is brine.
  • the wind direction indicator 24 transmits the measured wind direction data to the central processor in the electrical cabinet 16, and the central processor controls the rotation of the motor 20 according to the corresponding data transmission command, and the motor 20 drives the driving gear 19 Rotating, the driven gear meshing with the driving gear 19 also rotates, and the rotating shaft 21 is rotated. Since the rotating shaft 21 is fixedly connected with the gear box 7, the gear box 7 rotates, and the wind rotates. The direction of the leaf 1 changes until the direction of the blade 1 is perpendicular to the wind direction angle, and the motor 20 stops operating.
  • the temperature sensor 15 While the wind turbine is operating, the planetary gearbox 12 and the generator 14 in the gearbox 7 are also in an operating state, and as time passes, the temperature in the inner casing 10 of the gearbox 7 rises, by the temperature sensor 15 Temperature monitoring is performed. When the temperature is too high, the temperature sensor 15 notifies the central processor, the central processor sends a command to control the water pump 4 to start working, and the water pump 4 introduces the solution in the reservoir 5, the solution is in the water pipe 25 and the water conduit 6 The flow occurs, taking away the heat in the gear box 7, so that the temperature gradually decreases. When the temperature drops to a reasonable range, the temperature sensor 15 notifies the central processor, and the central processor controls the water pump 4 to stop the water diversion and cooling work, thus repeating and ensuring The components in the gearbox 7 are at a reasonable working ambient temperature.
  • the high-efficiency and safe wind power generator measures the wind direction data through the wind vane 24, and the central processor controls the rotating device 8 to perform angle correction on the gear box 7, so that the wind blade 1 is in the vertical direction of the wind direction, thereby improving wind power generation.
  • Efficiency not only that, the solution in the reservoir 5 is introduced into the water pipe 25 in the gear box 7 through the water pump 4, and the heat is taken away to cool down, thereby ensuring that the gear box 7 is in a reasonable working environment temperature and the wind power generator is improved.
  • Security performance is not only that, the solution in the reservoir 5 is introduced into the water pipe 25 in the gear box 7 through the water pump 4, and the heat is taken away to cool down, thereby ensuring that the gear box 7 is in a reasonable working environment temperature and the wind power generator is improved.

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Wind Motors (AREA)

Abstract

一种高效安全的风力发电机,包括若干风叶(1)、轮毂(2)、底座(3)、引水泵(4)、蓄水池(5)、导水管(6)、齿轮箱(7)、转动装置(8)、塔架(23)和风向标(24),所述风叶(1)周向均匀分布在轮毂(2)外周,所述轮毂(2)与齿轮箱(7)传动连接,所述蓄水池(5)设置在齿轮箱(7)的上方,所述蓄水池(5)通过引水泵(4)与齿轮箱(7)连接,所述蓄水池(5)通过导水管(6)与齿轮箱(7)连接,该风力发电机通过风向标(24)测量风向数据,由中央处理器控制转动装置(8)对齿轮箱(7)进行角度校正,保证风叶(1)处于风向垂直方向,从而提高风力发电效率,其通过引水泵(4)引入蓄水池(5)中的溶液到齿轮箱(7)中的水管(25)中,带走热量实现降温,从而保证齿轮箱(7)处于合理的工作环境温度,提高了风力发电机的安全性能。

Description

一种高效安全的风力发电机 技术领域
本发明涉及一种高效安全的风力发电机。
背景技术
随着社会的发展和科技的进步,人们对于能源的依赖性越来越强,而传统的石油、煤炭等不可再生能源的日益枯竭和价格的不断上涨,世界各地都在致力于可持续新能源的开发研究,风能作为一种清洁无污染的可再生能源,正日益受到人们的青睐,风力发电机正是风能利用研究下的产物。
风力发电机利用的是大气资源,它是以大气为工作介质的能量利用器械,通过做功将风能转化为机械能,相比于火电、核电等发电方式更加绿色环保。但是,风力发电机在运行时,风力发电机的齿轮箱处于一个相对密闭的空间,齿轮箱中的器件长期处于工作状态使得齿轮箱的温度较高,无法排热使得高温运行的齿轮箱容易老化造成安全隐患,同时,由于风向的多变性和风叶方向的固定,风力无法最大化对风叶做功,降低了风力发电机的发电效率。
发明内容
本发明要解决的技术问题是:为了克服现有技术中齿轮箱长期工作后易处于高温状态无法散热且发电效率低下的不足,提供一种能够有效限制齿轮箱温度保证齿轮箱正常运行并且提高发电效率的高效安全的风力发电机。
本发明解决其技术问题所采用的技术方案是:一种高效安全的风力发电机,包括若干风叶、轮毂、底座、引水泵、蓄水池、导水管、齿轮箱、转动装置、塔架和风向标,所述风叶周向均匀分布在轮毂外周,所述轮毂与齿轮箱传动连接,所述蓄水池设置在齿轮箱的上方,所述蓄水池通过引水泵与齿轮箱连接,所述蓄水池通过导水管与齿轮箱连接,所述风向标设置在蓄水池的上方,所述 齿轮箱设置在转动装置的上方,所述转动装置设置在塔架的上方,所述塔架设置在底座的上方;
所述齿轮箱包括外壳、内壳、风轮轴、行星齿轮增速箱、发电机轴、发电机、温度传感器、电气柜、底架和水管,所述风轮轴与轮毂传动连接,所述底架设置在内壳的底部,所述行星齿轮增速箱、发电机和电气柜均设置底架的上方,所述行星齿轮增速箱与风轮轴连接,所述行星齿轮增速箱通过发电机轴与发电机连接,所述温度传感器设置在内壳的顶部,所述电气柜内设有中央处理器,所述温度传感器与中央处理器连接,所述风向标和引水泵均与中央处理器电连接,所述引水泵通过水管与导水管连接,所述水管设置在内壳的内部;
所述转动装置包括主动齿轮、电机、转轴和从动齿轮,所述电机与中央处理器电连接,所述主动齿轮固定在电机上,所述主动齿轮与从动齿轮啮合,所述转轴固定在从动齿轮上,所述转轴与齿轮箱连接。
作为优选,为了增强散热性能,所述内壳上均匀设置有若干气孔。
作为优选,为了提高散热效果,所述水管呈S形。
作为优选,为了提高导热性能,所述内壳的材料为铜。
作为优选,为了提高旋转精度,所述从动齿轮的直径是主动齿轮的直径的3倍。
作为优选,为了提高散热性能,利用盐水比热容高的特性,所述蓄水池内的溶液为盐水。
本发明的有益效果是,该高效安全的风力发电机通过风向标测量风向数据,由中央处理器控制转动装置对齿轮箱进行角度校正,保证风叶处于风向垂直方向,从而提高风力发电效率,不仅如此,通过引水泵引入蓄水池中的溶液到齿轮箱中的水管中,带走热量实现降温,从而保证齿轮箱处于合理的工作环境温 度,提高了风力发电机的安全性能。
附图说明
下面结合附图和实施例对本发明进一步说明。
图1是本发明的高效安全的风力发电机的结构示意图;
图2是本发明的高效安全的风力发电机的齿轮箱的结构示意图;
图3是本发明的高效节能的风力发电机的齿轮箱的内部水流流向图;
图4是本发明的高效节能的风力发电机的齿轮箱的内壳的结构示意图;
图5是本发明的高效节能的风力发电机的转动装置的结构示意图;
图中:1.风叶,2.轮毂,3.底座,4.引水泵,5.蓄水池,6.导水管,7.齿轮箱,8.转动装置,9.外壳,10.内壳,11.风轮轴,12.行星齿轮增速箱,13.发电机轴,14.发电机,15.温度传感器,16.电气柜,17.底架,18.气孔,19.主动齿轮,20.电机,21.转轴,22.从动齿轮,23.塔架,24.风向标,25.水管。
具体实施方式
现在结合附图对本发明作进一步详细的说明。这些附图均为简化的示意图,仅以示意方式说明本发明的基本结构,因此其仅显示与本发明有关的构成。
如图1-图5所示,一种高效安全的风力发电机,包括若干风叶1、轮毂2、底座3、引水泵4、蓄水池5、导水管6、齿轮箱7、转动装置8、塔架23和风向标24,所述风叶1周向均匀分布在轮毂2外周,所述轮毂2与齿轮箱7传动连接,所述蓄水池5设置在齿轮箱7的上方,所述蓄水池5通过引水泵4与齿轮箱7连接,所述蓄水池5通过导水管6与齿轮箱7连接,所述风向标24设置在蓄水池5的上方,所述齿轮箱7设置在转动装置8的上方,所述转动装置8设置在塔架23的上方,所述塔架23设置在底座3的上方;
所述齿轮箱7包括外壳9、内壳10、风轮轴11、行星齿轮增速箱12、发电 机轴13、发电机14、温度传感器15、电气柜16、底架17和水管25,所述风轮轴11与轮毂2传动连接,所述底架17设置在内壳10的底部,所述行星齿轮增速箱12、发电机14和电气柜16均设置底架17的上方,所述行星齿轮增速箱12与风轮轴11连接,所述行星齿轮增速箱12通过发电机轴13与发电机14连接,所述温度传感器15设置在内壳10的顶部,所述电气柜16内设有中央处理器,所述温度传感器15与中央处理器连接,所述风向标24和引水泵4均与中央处理器电连接,所述引水泵4通过水管25与导水管6连接,所述水管25设置在内壳10的内部;
所述转动装置8包括主动齿轮19、电机20、转轴21和从动齿轮22,所述电机20与中央处理器电连接,所述主动齿轮19固定在电机20上,所述主动齿轮19与从动齿轮22啮合,所述转轴21固定在从动齿轮22上,所述转轴21与齿轮箱7连接。
作为优选,为了增强散热性能,所述内壳10上均匀设置有若干气孔18。
作为优选,为了提高散热效果,所述水管25呈S形。
作为优选,为了提高导热性能,所述内壳10的材料为铜。
作为优选,为了提高旋转精度,所述从动齿轮22的直径是主动齿轮19的直径的3倍。
作为优选,为了提高散热性能,利用盐水比热容高的特性,所述蓄水池5内的溶液为盐水。
风力发电机工作时,当风向发生变化,风向标24将测得的风向数据传递给电气柜16中的中央处理器,中央处理器根据相应的数据传递命令控制电机20转动,电机20带动主动齿轮19转动,与主动齿轮19啮合的从动齿轮也随之转动,带动转轴21转动,由于转轴21与齿轮箱7固定连接,齿轮箱7转动,风 叶1方向发生变化,直至风叶1方向与风向角度垂直时,电机20停止工作。
在风力发电机工作的同时,齿轮箱7内的行星齿轮增速箱12和发电机14也处于工作状态,随着时间的推移,齿轮箱7中内壳10中的温度上升,由温度传感器15进行温度监控,当温度过高时,温度传感器15通知中央处理器,中央处理器发送命令控制引水泵4开始工作,引水泵4引入蓄水池5中的溶液,溶液在水管25和导水管6中发生流动,带走齿轮箱7中的热量,使得温度逐渐下降,当温度下降到合理范围时,温度传感器15通知中央处理器,中央处理器控制引水泵4停止引水降温工作,如此反复,保证齿轮箱7中的各部件处于合理的工作环境温度。
与现有技术相比,该高效安全的风力发电机通过风向标24测量风向数据,由中央处理器控制转动装置8对齿轮箱7进行角度校正,保证风叶1处于风向垂直方向,从而提高风力发电效率,不仅如此,通过引水泵4引入蓄水池5中的溶液到齿轮箱7中的水管25中,带走热量实现降温,从而保证齿轮箱7处于合理的工作环境温度,提高了风力发电机的安全性能。
以上述依据本发明的理想实施例为启示,通过上述的说明内容,相关工作人员完全可以在不偏离本项发明技术思想的范围内,进行多样的变更以及修改。本项发明的技术性范围并不局限于说明书上的内容,必须要根据权利要求范围来确定其技术性范围。

Claims (6)

  1. 一种高效安全的风力发电机,其特征在于,包括若干风叶(1)、轮毂(2)、底座(3)、引水泵(4)、蓄水池(5)、导水管(6)、齿轮箱(7)、转动装置(8)、塔架(23)和风向标(24),所述风叶(1)周向均匀分布在轮毂(2)外周,所述轮毂(2)与齿轮箱(7)传动连接,所述蓄水池(5)设置在齿轮箱(7)的上方,所述蓄水池(5)通过引水泵(4)与齿轮箱(7)连接,所述蓄水池(5)通过导水管(6)与齿轮箱(7)连接,所述风向标(24)设置在蓄水池(5)的上方,所述齿轮箱(7)设置在转动装置(8)的上方,所述转动装置(8)设置在塔架(23)的上方,所述塔架(23)设置在底座(3)的上方;
    所述齿轮箱(7)包括外壳(9)、内壳(10)、风轮轴(11)、行星齿轮增速箱(12)、发电机轴(13)、发电机(14)、温度传感器(15)、电气柜(16)、底架(17)和水管(25),所述风轮轴(11)与轮毂(2)传动连接,所述底架(17)设置在内壳(10)的底部,所述行星齿轮增速箱(12)、发电机(14)和电气柜(16)均设置底架(17)的上方,所述行星齿轮增速箱(12)与风轮轴(11)连接,所述行星齿轮增速箱(12)通过发电机轴(13)与发电机(14)连接,所述温度传感器(15)设置在内壳(10)的顶部,所述电气柜(16)内设有中央处理器,所述温度传感器(15)与中央处理器连接,所述风向标(24)和引水泵(4)均与中央处理器电连接,所述引水泵(4)通过水管(25)与导水管(6)连接,所述水管(25)设置在内壳(10)的内部;
    所述转动装置(8)包括主动齿轮(19)、电机(20)、转轴(21)和从动齿轮(22),所述电机(20)与中央处理器电连接,所述主动齿轮(19)固定在电机(20)上,所述主动齿轮(19)与从动齿轮(22)啮合,所述转轴(21)固定在从动齿轮(22)上,所述转轴(21)与齿轮箱(7)连接。
  2. 如权利要求1所述的高效安全的风力发电机,其特征在于,所述内壳(10)上均匀设置有若干气孔(18)。
  3. 如权利要求1所述的高效安全的风力发电机,其特征在于,所述水管(25)呈S形。
  4. 如权利要求1所述的高效安全的风力发电机,其特征在于,所述内壳(10)的材料为铜。
  5. 如权利要求1所述的高效安全的风力发电机,其特征在于,所述从动齿轮(22)的直径是主动齿轮(19)的直径的3倍。
  6. 如权利要求1所述的高效安全的风力发电机,其特征在于,所述蓄水池(5)内的溶液为盐水。
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CN110500243A (zh) * 2019-09-24 2019-11-26 王旭 一种风电叶片除冰方法
CN110778469A (zh) * 2019-11-27 2020-02-11 山东中车风电有限公司 一种具有外置散热器的机舱及一种风力发电机
CN110920409A (zh) * 2019-12-25 2020-03-27 杭州南之心科技有限公司 一种风力电动车辆动力装置
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CN115419561A (zh) * 2022-09-01 2022-12-02 燕山大学 一种便于散热的风力发电机

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CN110920409A (zh) * 2019-12-25 2020-03-27 杭州南之心科技有限公司 一种风力电动车辆动力装置
CN113153644A (zh) * 2021-06-09 2021-07-23 盐城工学院 一种角度可调的风力发电设备
CN113153644B (zh) * 2021-06-09 2022-05-03 盐城工学院 一种角度可调的风力发电设备
CN113623134A (zh) * 2021-09-13 2021-11-09 安徽稳行智能装备科技有限公司 一种风力发电纠向和助力***
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