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    • 51. 发明申请
    • APPARATUS UTILIZING BUOYANCY FORCES AND METHOD FOR USING SAME
    • 使用BUOYANCY力的装置及其使用方法
    • US20120117957A1
    • 2012-05-17
    • US13292954
    • 2011-11-09
    • Wayne S. Travis
    • Wayne S. Travis
    • F15B15/02
    • F15B1/04F15B3/00F15B15/16Y02E60/17
    • An apparatus has a tank with an open top, a tank wall, and a closed bottom. A first ringwall extends from the bottom such that a first annular space is defined by the first ringwall and the tank wall, and a second annular space is defined by the first ringwall. A second ringwall extends in the second annular space, and defines a third annular space between the first ringwall and the second ringwall, and a cylindrical space. An air conduit extends through the cylindrical space. A pod disposed into the cylindrical space has a closed chamber and a displacement chamber. An inner riser disposed in the third annular space has an open bottom, and rests onto the inner ringwall. An outer riser rests onto the outer ringwall and is disposed in the first annular space and has a closed top, a wall, and an open bottom.
    • 装置具有开口顶部,罐壁和封闭底部的罐。 第一环形壁从底部延伸,使得第一环形空间由第一环形壁和罐壁限定,并且第二环形空间由第一环形壁限定。 第二环形壁在第二环形空间中延伸,并且在第一环形壁和第二环形壁之间限定第三环形空间以及圆柱形空间。 空气管道延伸穿过圆柱形空间。 设置在圆柱形空间中的吊舱具有封闭的腔室和移动腔室。 设置在第三环形空间中的内立管具有敞开的底部,并且搁置在内环壁上。 外立管搁置在外环壁上并且设置在第一环形空间中并且具有封闭的顶部,壁和开放的底部。
    • 53. 发明授权
    • Hydroelectric power system
    • 水力发电系统
    • US08058741B1
    • 2011-11-15
    • US12471353
    • 2009-05-23
    • Abel Echemendia
    • Abel Echemendia
    • F03B13/10
    • F03B13/06F03B7/00F05B2240/40Y02E10/22Y02E10/223Y02E60/17
    • A hydroelectric power system includes a plurality of paddle wheels, a plurality of electrical generators, a pumping system and a support structure. The support structure includes a water reservoir and at least one water channel contained in an inclined surface. The pumping system includes a plurality of inlet pipes and water pumps that pump water from a body of water into the water reservoir. The plurality of paddle wheels are rotatably retained along a length of the inclined surface. The paddle wheel includes tank paddles that are partially filled with water. The plurality of electrical generators are retained on the support structure. Each electrical generator includes a plurality of stator sections that are engaged or disengaged through a control device. Water in the water reservoir flows down at least one water channel and causes the plurality of paddle wheels to rotate, which causes the electrical generators to generate electricity.
    • 水力发电系统包括多个桨叶轮,多个发电机,泵送系统和支撑结构。 支撑结构包括储水器和包含在倾斜表面中的至少一个水通道。 泵送系统包括多个入口管和水泵,其将水从水体泵送到储水器中。 多个桨轮沿着倾斜面的长度可旋转地保持。 桨轮包括部分充满水的油罐桨。 多个发电机被保持在支撑结构上。 每个发电机包括通过控制装置接合或分离的多个定子部分。 蓄水池中的水流至少一个水道,并使多个桨轮旋转,这导致发电机发电。
    • 57. 发明申请
    • METHOD FOR MONITORING A COMPONENT IN A HYDRAULIC CIRCUIT, MONITORING DEVICE AND FLUID TURBINE
    • 液压电路,监控装置和流体涡轮机中组件的监控方法
    • US20110142596A1
    • 2011-06-16
    • US12825688
    • 2010-06-29
    • Jacob Johannes NIES
    • Jacob Johannes NIES
    • F03B15/00F15B13/00
    • F03D9/28F03D9/17F03D9/25F03D17/00F15B19/005Y02E10/72Y02E60/17Y02P80/158Y10T137/0318Y10T137/8158
    • The disclosure concerns a method for monitoring at least one component to be monitored in a hydraulic circuit filled with a working fluid, the hydraulic circuit comprises at least one pump for circulating the working fluid, wherein the method comprises:—changing an operational state of at least one first component in the hydraulic circuit such that a working point of the at least one component to be monitored changes to a predetermined working point;—performing at least one measurement for monitoring the at least one component to be monitored. Further, the disclosure concerns a monitoring device for monitoring at least one component to be monitored in a hydraulic circuit being filled with a working fluid. Further, the disclosure concerns a fluid turbine comprising at least one fluid rotor, wherein the fluid rotor is adapted to convert kinetic power of a fluid into a rotation, the fluid turbine further comprising a hydraulic circuit filled with a working fluid.
    • 本公开涉及一种用于在填充有工作流体的液压回路中监测待监测的至少一个部件的方法,所述液压回路包括用于使工作流体循环的至少一个泵,其中所述方法包括: - 改变工作流体的操作状态 所述液压回路中的至少一个第一部件,使得待监测的所述至少一个部件的工作点改变为预定的工作点; - 执行至少一个测量,以监测所述至少一个待监控部件。 此外,本公开涉及一种监测装置,用于在充满工作流体的液压回路中监测待监测的至少一个部件。 此外,本公开涉及包括至少一个流体转子的流体涡轮机,其中流体转子适于将流体的动力转换为旋转,所述流体涡轮机还包括填充有工作流体的液压回路。
    • 60. 发明授权
    • Hydraulic power generation system driven by compression air produced by fluid
    • 由流体产生的压缩空气驱动的液压发电系统
    • US07877992B2
    • 2011-02-01
    • US12129445
    • 2008-05-29
    • Tien-Chuan Chen
    • Tien-Chuan Chen
    • F16D31/02
    • F03B17/061F03B13/06F03B13/08F03B13/264F03B13/266F03D9/008F03D9/14F03D9/17F05B2240/133F05B2240/2211F05B2240/96Y02E10/28Y02E10/72Y02E60/15Y02E60/17Y02P80/158Y02P90/50
    • A hydraulic power generation system driven by compression air produced by fluid is provided. The present invention is featured in that it employs more than one group of windmills which can be driven by wind power, or utilizes hydraulic power, such as a river flow, tides at estuaries or bays to drive more than one group of hydraulic turbines. The rotation power of the windmills or the hydraulic turbines then drives a transmission and subsequently drives an air compressor to produce compression air. The compression air is compressed with a specific pressure and collectively stored in an air compression tank. The compression air stored in the air compression tank is guided to a water filled hermetic tank. The hermetic tank is connected with a hermetic water tower having a certain height, in which the hermetic tanks and the hermetic water tower are connected with a communicating pipe by which a pressure can be conducted. According to the Pascal's principle, when suffering the pressure of the compression air, the water stored in the hermetic tank is transmitted to the hermetic water tower up to a certain height thus obtaining a potential energy. The water is collectively stored at the certain height to obtain a large amount. Such a large amount of water can be downwardly guided to drive a hydraulic turbine which is connected to a power generator for generating power. After releasing the potential energy, the water can be conducted back to the hermetic tank via another communicating pipe for recycle use.
    • 提供由流体产生的压缩空气驱动的液压发电系统。 本发明的特征在于它采用了可以由风力驱动的多组风车,或者利用诸如河流的水力,沿着河口或海湾潮汐来驱动一组以上的水轮机。 然后风车或水轮机的旋转功率驱动变速器,随后驱动空气压缩机产生压缩空气。 压缩空气以特定压力被压缩并集中储存在空气压缩罐中。 将储存在空气压缩槽中的压缩空气引导至填充水的密封容器。 密封罐与具有一定高度的密封水塔连接,其中密封罐和密封水塔与可以进行压力的连通管连接。 根据帕斯卡的原理,当压缩空气受压时,储存在密封罐中的水被传送到密封水塔达一定的高度,从而获得势能。 将水集中储存在一定高度以获得大量的水。 这样大量的水可以被向下引导以驱动连接到用于发电的发电机的水轮机。 释放势能后,水可以通过另一个连通管回送到密封罐,用于回收利用。