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    • 6. 发明公开
    • A WAVE ENERGY EXTRACTION DEVICE AND METHOD
    • 波能提取装置和方法
    • EP2712398A2
    • 2014-04-02
    • EP12720258.8
    • 2012-05-03
    • Zyba Renewables Limited
    • BATEMAN, William, John, Douglas
    • F03B17/06F03B13/18
    • F03B17/06F03B13/182F03B17/063Y02E10/28Y02E10/38
    • A wave energy extraction device (or paddle) for converting wave energy into mechanical motion is curved in the horizontal plane, with a concave side (11) facing the incoming waves to increase energy capture and a convex side (12) on the lee side to reduce energy dissipation. The concave surface is substantially parabolic or semi-elliptical and the convex side is optionally provided with a substantially Gaussian profile (4) to improve the hydrodynamics and provide additional strength. To simplify connection to a base platform the paddle curvature optionally tapers to a straight edge (1) at the mounting points and the base device can be located either above or below the water surface. One embodiment is also curved about a vertical as well as the horizontal plane to create a spoon- or cup-shaped paddle (9).
    • 用于将波浪能转换成机械运动的波浪能提取装置(或桨)在水平面内弯曲,其中凹入侧(11)面向入射波以增加能量捕获并且将背风侧的凸侧(12) 减少能量消耗。 凹面基本上是抛物面或半椭圆面,并且凸面可选地具有基本高斯轮廓(4)以改善流体动力学并提供附加的强度。 为了简化与底座平台的连接,桨叶曲率可选地在安装点处逐渐变细为直边(1),并且底座装置可以位于水面之上或之下。 一个实施例也围绕垂直以及水平面弯曲以形成匙形或杯形桨(9)。
    • 8. 发明公开
    • Wave energy absorber unit
    • 波浪能量吸收器单元
    • EP2546510A1
    • 2013-01-16
    • EP11173842.3
    • 2011-07-13
    • Floating Power Plant A/S
    • Køhler, Anders
    • F03B13/18
    • F03B13/1815F03B13/182Y02E10/38
    • An absorber unit 100 for the absorption of wave energy from a body of water 99 comprises an absorber element 110 of the front pivot type with a front end 111 comprising a front pivot axis 113 around which the absorber element 110 under operation reciprocates between a lower turning position and an upper turning position, and with a rear end 112 extending from a lower rear edge 114 to an upper rear edge 115. The lower rear edge 114 is located in a first radial direction 116 at a first distance from the pivot axis 113, the upper rear edge 115 is located in a second radial direction 117 at a second distance from the pivot axis 113, the first and second radial directions 116, 117 define an acute tip angle of the absorber element 110, and the first distance determines the absorber element length. The absorber unit 110 further comprises a frame structure 121 that defines an absorber chamber 122 and is configured to be essentially at rest with respect to the body of water 99. The frame structure 121 pivotally supports the absorber element 110 within the absorber chamber 122 from the essentially horizontal front pivot axis 113 at an axis height Fa above an average surface level S of the body of water 99, wherein the absorber element 110 in an idle position under still water conditions is partially submerged, with an idle draught Fd of the absorber element being determined by the depth of submersion of the lower rear edge 114 below the average surface level S. A bottom plate 130 attached to the frame structure 121 has a front portion 131 arranged underneath the absorber element 110 and an upwardly projecting rear portion 132 aft of the absorber element 110.
    • 用于吸收来自水体99的波浪能的吸收器单元100包括前枢转型的吸收器元件110,其前端111包括前枢转轴线113,处于操作中的吸收器元件110围绕该前枢转轴线113在下转弯 位置和上部转动位置,并且后端112从下部后边缘114延伸到上部后边缘115.下部后边缘114位于与枢转轴线113相距第一距离的第一径向方向116上, 上后边缘115位于距枢转轴线113第二距离处的第二径向方向117上,第一径向方向116和第二径向方向117限定吸收体元件110的锐角尖端角度,并且第一距离决定吸收体 元素长度。 吸收器单元110还包括框架结构121,该框架结构121限定了吸收器腔室122并且被配置为相对于水体99基本静止。框架结构121将吸收器元件110从吸收器腔室122枢转地支撑在吸收器腔室122内 基本水平的前枢转轴线113,位于水体99的平均表面高度S之上的轴线高度Fa处,其中在静水状态下处于闲置位置的吸收体元件110部分地被浸没,吸收体元件的空转吃水深度Fd 由下部后边缘114在平均表面水平面S下面的浸入深度确定。连接到框架结构121的底板130具有布置在吸收体元件110下方的前部131以及布置在吸收体110下方的向上突出的后部132 吸收体元件110。