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    • 1. 发明申请
    • PLANETARY GEARING
    • 行星齿轮
    • WO2002057654A1
    • 2002-07-25
    • PCT/RU2001000016
    • 2001-01-17
    • SEEBA - ENERGIESYSTEME GMBHGULIA, Nurbei VladimirovichMELNIKOV, Vladimir Zinovievich
    • SEEBA - ENERGIESYSTEME GMBH
    • F16H1/48
    • F16H1/2809F03D15/00F03D15/10F05B2260/40311F16H2001/2881Y02E10/722
    • The invention relates to mechanical engineering and can be used, in particular for large wind power stations as a drive between a windwheel and a generator. The inventive planetary gearing comprises a body, central wheels and a carrier provided with pinions arranged thereon with the aid of anvils. The gearing pinions are embodied in a multicrown form and have one working surface at one concrete direction of a torsion torque. Small gear rims of all pinions are simultaneously engaged with the same central wheel of the internal gear, the number of pinions whose large gear rims are engaged with the same crown of the central wheel of the internal gear being less at least half as large. Said invention makes it possible to reduce the mass of the planetary gearing. For wind power stations of 660 kW, the mass reduction can reach 60 %, which is high in relation to the mounting height of the planetary gearing.
    • 本发明涉及机械工程,并且特别适用于作为风轮和发电机之间的驱动的大型风力发电站。 本发明的行星齿轮装置包括主体,中心轮和在其上借助于砧设置有小齿轮的载体。 传动齿轮以多重形式实现,并且在扭转扭矩的一个混凝土方向上具有一个工作表面。 所有小齿轮的小齿轮齿轮同时与内齿轮的同一中心轮接合,其大齿轮轮缘与内齿轮的中心轮的相同冠部啮合的小齿轮的数量少至少一半。 所述发明使得可以减小行星齿轮的质量。 对于660 kW的风力发电站,质量减少可达60%,相对于行星齿轮传动装置的安装高度则较高。
    • 5. 发明申请
    • FLUID DENSITY MEASUREMENT DEVICE
    • 流体密度测量装置
    • WO2010126358A8
    • 2011-11-10
    • PCT/NL2010000071
    • 2010-04-22
    • NEST INT NVDROBKOV VLADIMIRMELNIKOV VLADIMIRSHUSTOV ANDREY
    • DROBKOV VLADIMIRMELNIKOV VLADIMIRSHUSTOV ANDREY
    • G01N9/00
    • G01N9/002
    • A device for determining a density of a fluid is described. The devices comprises a mechanical resonator, a driver/receiver unit arranged to provide an actuation to the mechanical resonator, sense a response of the mechanical resonator to the actuation, and provide an output signal representing the response; and an evaluation unit. The evaluation unit of the device is arranged to i. determine an oscillation distribution from the output signal, ii. determine a resonance frequency estimate from the oscillation distribution, and iii. determine the density of the fluid based upon the resonance frequency estimate. The device according to the invention enables a more accurate determination of the fluid density for fluids comprising immiscible components (thus forming a heterogeneous mixture), like a water-oil emulsion, or a fluid with occluded gas.
    • 描述了用于确定流体密度的装置。 所述装置包括机械谐振器,驱动器/接收器单元,其布置成向所述机械谐振器提供致动,感测所述机械谐振器对所述致动的响应,并且提供表示所述响应的输出信号; 和评估单元。 设备的评估单元布置为i。 从输出信号确定振荡分布,ii。 从振荡分布确定谐振频率估计,iii。 基于共振频率估计来确定流体的密度。 根据本发明的装置能够更精确地确定包含不混溶组分(从而形成非均相混合物)的流体的流体密度,例如水 - 油乳液或具有封闭气体的流体。
    • 7. 发明申请
    • DEVICE AND METHOD FOR DETERMINING A FLOW VELOCITY OF A FLUID OR A FLUID COMPONENT IN A PIPELINE
    • 用于确定流体流动速度或管道中的流体组分的装置和方法
    • WO2012087120A1
    • 2012-06-28
    • PCT/NL2011/050864
    • 2011-12-20
    • NEST INTERNATIONAL N.V.DROBKOV, VladimirMELNIKOV, VladimirSHUSTOV, Andrey
    • DROBKOV, VladimirMELNIKOV, VladimirSHUSTOV, Andrey
    • G01F1/66G01F1/74
    • G01F1/663G01F1/662G01F1/74
    • A device and a method for determining a flow velocity of a fluid or a fluid component in a pipeline is described. The device comprises a transmitter adapted to be placed inside the pipeline and arranged to transmit an ultrasound signal into the fluid or fluid component in a first direction;a receiver adapted to be placed inside the pipeline and arranged to receive a dispersed ultrasound signal, generated by dispersion of the ultrasound signal by the fluid or the fluid component in a second direction, the second direction being different from the first direction, and to provide a receiver signal representing the dispersed ultrasound signal; and, a processing unit arranged to receive said receiver signal and to determine a frequency difference between the transmitted ultrasound signal and the dispersed ultrasound signal and determining the flow velocity of the fluid or the fluid component based on said difference.
    • 描述了用于确定管道中的流体或流体组分的流速的装置和方法。 所述装置包括适于放置在所述管道内部并被布置成在第一方向上将超声信号传送到所述流体或流体部件中的发射器;适于放置在所述管线内部并被布置成接收分散的超声波信号的接收器,所述接收器由 第二方向与第一方向不同,并且提供表示分散的超声波信号的接收机信号; 以及处理单元,被配置为接收所述接收器信号并且确定所发送的超声信号和分散的超声信号之间的频率差,并且基于所述差异确定流体或流体分量的流速。
    • 8. 发明申请
    • FLUID DENSITY MEASUREMENT DEVICE
    • 流体密度测量装置
    • WO2010126358A1
    • 2010-11-04
    • PCT/NL2010/000071
    • 2010-04-22
    • NEST INTERNATIONAL N.V.DROBKOV, VladimirMELNIKOV, VladimirSHUSTOV, Andrey
    • DROBKOV, VladimirMELNIKOV, VladimirSHUSTOV, Andrey
    • G01N9/00
    • G01N9/002
    • A device for determining a density of a fluid is described. The devices comprises a mechanical resonator, a driver/receiver unit arranged to provide an actuation to the mechanical resonator, sense a response of the mechanical resonator to the actuation, and provide an output signal representing the response; and an evaluation unit. The evaluation unit of the device is arranged to i. determine an oscillation distribution from the output signal, ii. determine a resonance frequency estimate from the oscillation distribution, and iii. determine the density of the fluid based upon the resonance frequency estimate. The device according to the invention enables a more accurate determination of the fluid density for fluids comprising immiscible components (thus forming a heterogeneous mixture), like a water-oil emulsion, or a fluid with occluded gas.
    • 描述了用于确定流体密度的装置。 所述装置包括机械谐振器,驱动器/接收器单元,其布置成向所述机械谐振器提供致动,感测所述机械谐振器对所述致动的响应,并且提供表示所述响应的输出信号; 和评估单元。 设备的评估单元布置为i。 从输出信号确定振荡分布,ii。 从振荡分布确定谐振频率估计,iii。 基于共振频率估计来确定流体的密度。 根据本发明的装置能够更精确地确定包含不混溶组分(从而形成非均相混合物)的流体的流体密度,例如水 - 油乳液或具有封闭气体的流体。