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    • 5. 发明授权
    • Variable capacity oil pump
    • 变容量油泵
    • US08827660B2
    • 2014-09-09
    • US13416581
    • 2012-03-09
    • Poul Spaerhage FrokjaerJens Demtroder
    • Poul Spaerhage FrokjaerJens Demtroder
    • F04B17/02F04B49/20F04B41/06
    • F04B49/20F03D80/70F04B17/02F04B41/06F05B2260/98F05B2270/327Y02E10/72
    • The invention relates to a wind turbine being provided with a fluid displacement means for ensuring a certain increased pumping capacity at a certain reduced rotational speed of the main shaft of the rotor and thus of a drive shaft from a gear box of the wind turbine. The invention also relates to a wind turbine being provided with fluid displacement means for ensuring a certain increased pumping capacity at a certain increased rotational speed of the main shaft of the rotor and thus of a drive shaft from a gear box of the wind turbine. The means may be mechanical, hydraulic, pneumatic or electrical. Additionally, the invention relates to a method for operating a wind turbine being provided with such fluid displacement means.
    • 本发明涉及一种风力涡轮机,其具有流体移动装置,用于在转子的主轴的一定的降低的转速以及因此来自风力涡轮机的齿轮箱的驱动轴上确保一定的增加的泵送能力。 本发明还涉及一种具有流体移动装置的风力涡轮机,用于在转子的主轴的一定增加的转速以及因此来自风力涡轮机的齿轮箱的驱动轴上确保一定增加的泵送能力。 该装置可以是机械的,液压的,气动的或电的。 另外,本发明涉及一种用于操作具有这种流体移动装置的风力涡轮机的方法。
    • 6. 发明授权
    • System for converting wind energy
    • US08803355B2
    • 2014-08-12
    • US13825791
    • 2010-10-06
    • Anis Aouini
    • Anis Aouini
    • F03D9/00H02P9/04F04B17/02
    • F03D9/25F03D1/00F03D1/0658F03D5/00F03D15/10F05B2240/2211F05B2260/506Y02E10/70Y02E10/721
    • The invention consists of a system for converting wind energy (SCEE) into mechanical and then electrical energy. This system (SCEE) is not subject to the theoretical Betz limit (59%). The system (SCEE) has a wheel (F) provided with a series of blades arranged all around it. The wheel (F) rotates in a pivot connection about a fixed axle (L). Set on the axle (L), a support (E) ensures the fastening of the end-plates of a series of double-acting actuating cylinders (D). The rods of the latter are in a ball-jointed connection with the body (A) in order to offer the latter a maximum degree of freedom in space. A rigid arm (C) is set on one side of the wheel (F) and held on the other side, in a pivot connection, on a U-shaped section piece (B). Having a circular satellite motion, the latter rotates with the wheel (F) while sliding over a peripheral region of the body (A). When the wind acts on the body (A), the latter pivots with the section piece (B) and pushes the rods of the actuating cylinders (D). Having a circular satellite motion, the section piece (B) rotates while sliding over a peripheral region of the body (A), thus changing the fulcrum of the moment of the resultant force of the wind (the pivot connection of the section piece (B)) which is applied to the body (A). The rods of the actuating cylinders (D) will consequently be pulled and pushed, while having a cyclical translational motion. Set on the axle (L), a nacelle (J) primarily contains a hydraulic motor (H) and an electric generator (G), which can be coupled via a speed-increasing gear. During the reciprocal motions of the pistons of the actuating cylinders (D), a set of valves ensures a one-way flow of hydraulic fluid in the “go and return” hydraulic circuits, whether by pulling or by pushing. The “go and return” hydraulic circuits are, moreover, linked to the hydraulic motor (H). In order to allow the system (SCEE) to be held facing the wind and to pivot on the mast (1), its orientation can be ensured by a tail vane (K) fastened, via a support, to the nacelle (J).
    • 8. 发明申请
    • Wind Powered Sea Pump
    • 风力海运泵
    • US20110171040A1
    • 2011-07-14
    • US12686647
    • 2010-01-13
    • Patrick J. DugasGary A. Balinsky
    • Patrick J. DugasGary A. Balinsky
    • F04B17/02
    • F04B17/02Y02P80/158
    • A wind powered sea pump comprises a propeller, rotor, one or more pumps and one or more flywheels. The present invention relates to a pump powered by the wind to move cold subsurface water from a lower level of the sea to the warmer surface water. The wind powers the rotor causing the shaft to rotate, thereby transmitting power to: one or more pumps, to pump colder sub-surface water from the depths; one or more flywheels to provide gyroscopic stability to entire platform and to a propeller to offset the force of the wind pushing back the wind powered sea pump. The hull provides a sump for a single hose connector to feed water to pumps from a pickup hose of desired diameter to a desired depth. The force of the wind powers the sea pump to transport colder water from a lower depth to the sea surface. A sea anchor provides a pivot point to keep the wind powered sea pump oriented directly into the wind and the weather vane helps with the wind orientation as well as providing space for use as an advertising bill board.
    • 风力发电的海水泵包括螺旋桨,转子,一个或多个泵和一个或多个飞轮。 本发明涉及一种由风力驱动的泵,用于将冷的地下水从海底的较低水平移动到较暖的地表水。 风转动转子使轴旋转,从而将动力传递到:一个或多个泵,从较深的地方抽取更冷的地下水; 一个或多个飞轮,为整个平台和螺旋桨提供陀螺稳定性,以抵消风力推动风力发电的海水的风力。 船体为单个软管连接器提供了一个水槽,用于将水从所需直径的拾音软管送到所需的深度。 风的力量使海泵将较冷的水运送到海面。 海锚提供了一个枢纽点,以使风力海水泵直接导向风中,风向标可以帮助风向,同时也可以作为广告纸板使用。
    • 9. 发明申请
    • Positive Displacement Pumping System
    • 正位移泵系统
    • US20100316504A1
    • 2010-12-16
    • US12482015
    • 2009-06-10
    • Larry LackPatricia LackLarry Lack
    • Larry LackPatricia LackLarry Lack
    • F04B23/06F04B17/02
    • F04B47/02E21B43/126E21B43/128F04B3/003F04B17/02
    • A positive displacement pumping system for use in deep wells includes a drive system and one or two pumps. In the preferred embodiment, the drive system includes an electrical motor, a speed reducer, and a rotary-to-reciprocal motion converter. Alternatively, the drive system includes a windmill, a variable transmission, and a counterbalance. The counterbalance can be either weights or a second alternating pump. The pumps include a central hollow discharge tube and one or more vertically aligned pumping chambers in fluid communication with the central discharge tube. Within each pumping chamber, a valve arrangement, which includes a piston or shuttle member and fluid intakes, causes fluid to fill and then drain from the pumping chambers as the central hollow discharge tube reciprocates. In operation, the drive system causes the central hollow discharge tube in the pump to reciprocate and thereby cause the fluid to travel from each pumping chamber into to the central discharge tube. In the preferred embodiment, fluid is pumped on both the upstroke and downstroke of the central discharge tube. Alternatively, fluid is discharged on only the upstroke. Fluid from the central discharge tube is discharged from the pump into a discharge field. The amount of fluid discharged on each stroke depends on the number and size of pumping chambers and the length of the stroke. A greater number of pumping chambers causes a greater discharge of fluid at a higher velocity into the discharge field.
    • 用于深井的正位移泵送系统包括驱动系统和一个或两个泵。 在优选实施例中,驱动系统包括电动马达,减速器和旋转 - 往复运动转换器。 或者,驱动系统包括风车,可变传动装置和平衡装置。 平衡可以是重物或第二交替泵。 泵包括中心中空排放管和与中心排放管流体连通的一个或多个垂直排列的泵送室。 在每个泵送室内,当中心中空排放管往复运动时,包括活塞或往复运动构件和流体入口的阀装置使流体填充,然后从泵送室排出。 在操作中,驱动系统使得泵中的中心中空排放管往复运动,从而使流体从每个泵送室进入中央排放管。 在优选实施例中,流体被泵送在中心放电管的上行程和下行程上。 或者,流体仅在上行程排出。 来自中央放电管的流体从泵排出到排放场。 每个行程排出的液体量取决于泵送室的数量和尺寸以及行程的长度。 较大数量的泵送室使流体以更高的速度进入放电场。