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    • 73. 发明申请
    • SYSTEM FOR CONVERTING OF SWELL OR OF WAVE ENERGY
    • 旋转或波浪能量转换系统
    • US20150267676A1
    • 2015-09-24
    • US14419929
    • 2013-08-07
    • Jean Luc STANEK
    • Jean-Luc Stanek
    • F03B13/24F03B13/14
    • F03B13/24F03B13/14F03B13/142F03B13/148F05B2240/40F05B2240/9151Y02E10/32Y02E10/38
    • The invention relates to a system for converting the of swell and/or of wave energy, including a network of water compression columns (1), each having: a lower end (110) to be dipped into a volume of water, the lower end (110) having an opening (111) for collecting water in the column (1), so as to form a chamber including a gas in an upper portion (120) of the column (1), a first non-return valve (4) in fluid communication from said column (1) to an overpressure chamber (2) shared by the columns, and a second non-return valve (5) in fluid communication from a low-pressure chamber (3) shared by the columns to said column (1), wherein the overpressure (2) and low-pressure (3) chambers are fluidly connected via a turbine (6) and the columns (1) of the network are arranged contiguously, and the network extends in at least two non-parallel directions.
    • 本发明涉及一种用于转换波浪能量和/或波浪能量的系统,包括水压柱(1)的网络,每个网络具有:下端(110),以浸入一定体积的水中,下端 (110),其具有用于在所述塔(1)中收集水的开口(111),以在所述塔(1)的上部(120)中形成包括气体的室,第一止回阀(4) )从所述塔(1)流体连通到由所述塔共享的超压室(2),以及第二止回阀(5),从所述列共享的低压室(3)流体连通到所述 柱(1),其中所述超压(2)和低压(3)室通过涡轮机(6)流体连接,并且所述网络的列(1)被连续布置,并且所述网络延伸至少两个非 平行方向
    • 74. 发明授权
    • Multi-capture mode wave energy converter with submergible float
    • 具有潜水浮子的多捕捉模式波能量转换器
    • US09127640B2
    • 2015-09-08
    • US14101325
    • 2013-12-09
    • John W. Rohrer
    • John W. Rohrer
    • F03B13/10F03B13/12H02P9/04F03B13/14F03B13/18A01C5/00
    • F03B13/14F03B13/182F03B13/186F05B2270/18Y02E10/38Y02P60/12
    • An ocean wave energy converter (WEC) uses one or more buoyant elongated float(s) mechanically linked to a motion-stabilized frame by either swing or lever arms or down-sloping tracks that define the motion of the floats relative to the frame to capture both heave and surge wave energy forces. The submerged depth of the frame and attached float(s) is adjusted for optimal wave energy capture or submerged sufficiently to fully submerge the float(s) during severe sea conditions. The elongated float's total submergence during severe sea states and the WEC's self-orienting capability, parallel to oncoming wave fronts, allows the WEC to intercept and capture maximum wave energy per unit of WEC volume, weight and cost.
    • 海浪能量转换器(WEC)使用一个或多个浮动的细长浮子,其通过摆动或杠杆臂或向下倾斜的轨道机械地连接到运动稳定的框架,该轨道限定浮体相对于框架的运动以捕获 两者都是起伏和浪涌波能量。 调整框架和附加浮子的浸没深度以获得最佳的波能量捕获或充分浸没,以在严峻的海况下完全淹没浮子。 在严重的海况期间,细长的浮子的总淹没以及与迎面而来的波前平行的WEC的自我定向能力允许WEC拦截和捕获每单位WEC体积,重量和成本的最大波能量。
    • 75. 发明授权
    • Bouyant actuator
    • Bouyant执行器
    • US09103315B2
    • 2015-08-11
    • US12808653
    • 2008-12-17
    • Alan Robert BurnsPetru TincMatt Keys
    • Alan Robert BurnsPetru TincMatt Keys
    • F03B13/18F04B17/00F03B13/14
    • F03B13/14F03B13/187F05B2220/707F05B2240/97F05B2250/241Y02E10/38
    • A buoyant actuator (19) for coupling wave motion to a device operable in response to wave motion in a body of water. The buoyant actuator (19) comprises a generally spherical body (20) defining an exterior surface and a hollow interior adapted to contain water received from the body of water. The exterior surface comprises a plurality of facets (101) which are tessellated. Typically, there are 36 facets (101), of which 12 comprise generally pentagonal facets (105) and 24 comprise generally hexagonal facets (107). The body (20) comprises a plurality of openings (143) for fluid flow between the hollow interior and the surrounding body of water. A closure configured as a flap (145) is provided for each opening (143) to block or at least inhibit fluid flow therethrough, the closure being adapted to move away from the opening to permit fluid flow therethrough in response to a predetermined fluid pressure differential imposed thereon between the hollow interior and the surrounding body of water. The exterior surface of the body (20) is configured to viscously couple with water surrounding the body (20). The viscous coupling between the surrounding water and the exterior surface of the body (20) provides added effective mass to the buoyant actuator (19) which is additional to the physical mass of the buoyant actuator and the mass of the volume of water contained in the body.
    • 用于将波浪运动耦合到响应于水体中的波浪运动而可操作的装置的浮力致动器(19)。 浮力致动器(19)包括限定外表面的大致球形体(20)和适于容纳从水体吸收的水的中空内部。 外表面包括镶嵌的多个小面(101)。 通常,存在36个小面(101),其中12个通常包括五边形面(105),而24包括大致六边形面(107)。 主体(20)包括用于流体在中空内部和周围水体之间流动的多个开口(143)。 为每个开口(143)提供构造为翼片(145)的封闭件以阻挡或至少阻止流体流过其中,所述封闭件适于远离开口移动以允许流体响应于预定的流体压差而流过其中 在中空内部和周围水体之间施加。 主体(20)的外表面构造成与身体(20)周围的水粘合地结合。 周围水和主体(20)的外表面之间的粘性耦合为浮力致动器(19)提供附加的有效质量,浮力致动器(19)除了浮力致动器的物理质量外,还包括在 身体。
    • 76. 发明授权
    • Apparatus for guiding a flexible member
    • 用于引导柔性构件的装置
    • US09061861B2
    • 2015-06-23
    • US13876741
    • 2011-09-29
    • Michele Grassi
    • Michele Grassi
    • F03B13/10F03B13/12H02P9/04B65H57/14B66D1/74F16H7/04B66D1/36F03B13/14
    • B65H57/14B66D1/36B66D1/7405F03B13/14F16H7/04Y02E10/38
    • An apparatus (1) for guiding a flexible member (6) comprising a drum (4) mounted for rotation about a drum axis (5) and a pulley (2) mounted for rotation about a pulley axis (3), the drum and pulley axes being inclined. The apparatus defines a path for the flexible member including first and second drum wrap portions (7,9) on axially spaced first and second fixed drum diametric planes, a pulley wrap portion (8) on a fixed pulley diametric plane, and first and second connecting portions (7a, 7b). The arrangement is such that the connecting portions (7a, 7b) lie on the respective first and second drum diametric planes and both lie on the pulley diametric plane. As the drum (4) and pulley (2) rotate with the flexible member (6) in use, the arrangement is such that the first and second drum wrap portions (7,9) remain on the fixed drum diametric planes and the pulley portion of wrap (8) remains on the fixed diametrical plane of the pulley. The apparatus reduces slippage of the flexible member (6) and associated wear.
    • 一种用于引导柔性构件(6)的装置(1),包括安装成围绕鼓轴线(5)旋转的滚筒(4)和安装成围绕皮带轮轴线(3)旋转的滑轮(2),滚筒和滑轮 轴倾斜。 该装置限定了柔性构件的路径,该路径包括在轴向间隔开的第一和第二固定滚筒直径平面上的第一和第二滚筒包裹部分(7,9),固定皮带轮直径平面上的皮带轮包裹部分(8),以及第一和第二 连接部分(7a,7b)。 这种布置使得连接部分(7a,7b)位于相应的第一和第二滚筒直径平面上,并且都位于滑轮直径平面上。 当滚筒(4)和滑轮(2)在使用中随着柔性构件(6)旋转时,该布置使得第一和第二滚筒包裹部分(7,9)保留在固定滚筒直径平面上,并且滑轮部分 (8)保持在滑轮的固定直径平面上。 该装置减少了柔性构件(6)的滑动和相关的磨损。
    • 79. 发明申请
    • WAVE POWER DEVICE
    • 波动功率器件
    • US20140290234A1
    • 2014-10-02
    • US14350784
    • 2012-10-15
    • Vigor Wave Energy AB
    • Daniel Ehrnberg
    • F03B13/14
    • F03B13/14F03B13/188F03B13/22F03B13/24F05B2250/80Y02E10/38
    • The invention relates to a wave power device 1 for the extraction of energy from waves in a liquid 3. The device 1 comprises a container 2 intended to at least partially be located in the liquid 3 from which the wave energy shall be extracted. The container 2 is provided with one or several openings 6, for admitting said liquid 3 and gas 5 into the container and at least one outlet 8. The container 2 is at least partly designed as an oblong unity adapted to be influenced by and essentially follow the wave motions in the liquid 3 so that the container 2 assumes a wave shaped contour. The container 2 will assume positions having different potential energy relative each other in at least a first portion 9 and a second portion 10. By the wave motion will liquid 3 and gas 5 be transported through the tubular container while a pressure is built up within the container 2. The invention is in particular directed to the design of the container 2 which shall be designed so that it is along at least a portion of its length its width B is larger than its height a in order to reduce friction losses in the plant considering practical limitations in allowable height of the container in relation to wave height.
    • 本发明涉及一种用于从液体3中的波浪中提取能量的波浪装置1.装置1包括用于至少部分地位于液体3中的容器2,从该液体3中将提取波浪能量。 容器2设置有一个或多个开口6,用于允许所述液体3和气体5进入容器和至少一个出口8.容器2至少部分地设计为长圆形的单位,其适于受到并且基本上跟随 液体3中的波动,使得容器2呈波形轮廓。 容器2将在至少第一部分9和第二部分10中相对于彼此具有不同势能的位置。通过波浪运动,液体3和气体5将被输送通过管状容器,同时在 容器2.本发明特别涉及容器2的设计,其应设计成使其沿其长度的至少一部分宽度B大于其高度a,以减少工厂中的摩擦损失 考虑容器相对于波高的允许高度的实际限制。