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    • 112. 发明公开
    • SYSTEM FOR PRODUCING ENERGY THROUGH THE ACTION OF WAVES
    • 系统可持续发展德国维也纳
    • EP2601405A4
    • 2015-02-18
    • EP11814909
    • 2011-08-03
    • GWAVE LLC
    • BEANE GLENN L
    • F03B13/20F03B13/18
    • F03B13/182F03B13/20F05B2220/706Y02B10/50Y02E10/38
    • A system and method for generating energy from tuning the natural frequency of masses relative to a ground plane and an external force. In some embodiments the external force is the action of the waves. The system has a first mass movable relative to the ground plane, wherein the external force induces an oscillation in the first mass relative to the ground plane. A second movable mass is carried by and movable relative to the first movable mass. The second movable mass creates kinetic energy as the result of varying the position of the second movable mass relative to the first mass. The system adjusts or tunes the frequency of various components in relation to the natural frequency of the waves. The energy created by the relative motion can be converted to various forms of energy including electrical energy.
    • 一种用于通过调谐质量相对于接地平面和外力的固有频率产生能量的系统和方法。 在一些实施例中,外力是波的作用。 该系统具有相对于接地平面移动的第一质量,其中外力相对于接地平面在第一质量中引起振荡。 第二可移动质量块相对于第一可移动块携带并可移动。 作为第二可移动质量块相对于第一质量块的位置的变化的结果,第二可移动块产生动能。 该系统相对于波浪的固有频率调整或调整各种组件的频率。 由相对运动产生的能量可以转换为包括电能的各种形式的能量。
    • 116. 发明公开
    • WAVE-POWER ELECTRICITY GENERATION SYSTEM
    • 系统ZUR STRMERZEUGUNG AUS WELLENKRAFT
    • EP2770194A1
    • 2014-08-27
    • EP12826771.3
    • 2012-08-27
    • Egaña Castillo, Eduardo Javier
    • Egaña Castillo, Eduardo Javier
    • F03B13/18
    • F03B13/10F03B13/1815F03B13/182F05B2240/40F05B2260/406F05B2260/42F05B2260/421Y02E10/38
    • The invention relates to a stand-alone plant for treating waste water using the SBR principle, which uses two tanks, an influent tank (1) and a SBR reactor (2), enabling a significant reduction in size, resulting in low energy consumption, as well as reduced transportation volume when several units are transported, wherein said influent tank (1) and said SBR reactor (2) consist of an outer tank and an inner tank, both in the shape of truncated cones, the inner tank having smaller diameters than the outer tank, wherein the bases of both tanks are concentric, each tank generating two volumes, an inner volume corresponding to the SBR reactor (2) and a volumetric ring on the outside thereof, corresponding to the influent tank (1); the SBR reactor having a duct (7) in the aeration zone, said duct being supported on feet (12), wherein said duct (7) consists of a truncated cone-shaped base (13), a cylinder (14) emerging from the upper part thereof and extending up to the minimum level, and inside which are devices that help prevent coalescence of air bubbles, while at the same time providing a rotational direction to the upflow, thus causing a higher rate of biological oxygen uptake, reducing energy consumption. In the bottom part of the tank, the shape of the lower part of the duct facilitates the suspension of solids, given that the downflow is carried to the edges of the tank as a result of the routing induced by the lower cone of the duct, which also contributes to reducing the energy used in mix (21) aeration.
    • 本发明涉及一种使用SBR原理处理废水的独立设备,其使用两个罐,即流入罐(1)和SBR反应器(2),能够显着减小尺寸,导致低能耗, 以及在运输多个单元时减少的运输量,其中所述流入罐(1)和所述SBR反应器(2)由外罐和内罐组成,两者都为截头锥形,内罐具有较小的直径 其中两个罐的基部是同心的,每个罐产生两个体积,对应于进水箱(1)的与SBR反应器(2)相对应的内部容积体和在其外部的容积环; 所述SBR反应器在所述通气区具有管道(7),所述管道支撑在脚部(12)上,其中所述管道(7)由截头圆锥形基座(13),从所述管道 其上部并且延伸到最小水平,并且其内部是有助于防止气泡聚结的装置,同时为上流提供旋转方向,从而导致更高的生物氧吸收速率,从而降低能量消耗 。 在罐的底部,管道下部的形状有助于固体的悬浮,因为由于管道的下锥体引起的路线导致下流流入罐的边缘, 这也有助于减少混合(21)曝气中使用的能量。
    • 118. 发明公开
    • WAVE ENERGY ABSORPTION UNIT
    • 波浪能量吸收单元
    • EP2732151A1
    • 2014-05-21
    • EP12734787.0
    • 2012-07-04
    • Floating Power Plant A/S
    • KØHLER, Anders
    • F03B13/18
    • F03B13/1815F03B13/182Y02E10/38
    • A wave absorber element (100) of the front pivot type for the absorption of wave energy from a body of water has a front end (101) comprising a front pivot axis (1) around which the absorber element (100) swings under operation, and an absorber element body (103) being substantially defined by a front side (4) extending from the front end (101) to a lower rear edge (2), a rear side (5) extending from an upper rear edge (3) to the lower rear edge (2), a top side (6) extending from the front end (101) to the upper rear edge (3), and lateral sidewalls (7, 8) defining the width Fw of the absorber body (103) in an axial direction parallel to the front pivot axis (1). The lower rear edge (2) is located in a first radial direction (11) at a first distance from the pivot axis (1), the upper rear edge (3) is located in a second radial direction (12) at a second distance from the pivot axis (1), and the first and second radial directions (11, 12) define an acute tip angle (alpha) of the absorber element (100). The first distance defines the absorber element length Fl, and the distance of the upper rear edge (3) from the first radial direction (11) defines the absorber element height Fh. The absorber element (100) has a cross- sectional profile as seen in a cut-plane perpendicular to the front pivot axis (1), wherein said absorber element profile encloses a profile of the absorber element body (103) and the front pivot axis (1), wherein the absorber element profile at the front side (4) comprises a concave portion as seen in a direction from the front end (101) to the rear end (102). A method of providing such an absorber element (100) comprises configuring the absorber element (100) according to the wave climate of a given deployment site.
    • 用于从水体吸收波能的前枢轴类型的波吸收器元件(100)具有包括前枢轴(1)的前端(101),吸收器元件(100)在操作时围绕该前枢轴(1)摆动, 和由从前端(101)延伸到下后边缘(2)的前侧(4)基本上限定的吸收体元件主体(103),从上后边缘(3)延伸的后侧(5) (2),从前端(101)延伸到上后边缘(3)的顶侧(6)以及限定吸收体(103)的宽度Fw的侧向侧壁(7,8) )在平行于前枢转轴线(1)的轴向方向上移动。 所述下后边缘(2)位于距所述枢转轴线(1)第一距离处的第一径向方向(11)上,所述上后边缘(3)位于第二径向方向(12) 从所述枢转轴线(1)以及所述第一和第二径向方向(11,12)限定所述吸收器元件(100)的锐角尖端角度(α)。 第一距离限定吸收体元件长度F1,并且上部后边缘(3)与第一径向方向(11)的距离限定吸收体元件高度Fh。 吸收体元件(100)在垂直于前部枢转轴线(1)的截面中具有横截面轮廓,其中所述吸收体元件轮廓包围吸收体元件主体(103)的轮廓和前部枢转轴线 (1)中,其中在从所述前端(101)到所述后端(102)的方向上看,所述前侧(4)处的所述吸收体元件轮廓包括凹入部分。 提供这种吸收器元件(100)的方法包括根据给定的部署地点的波浪气候来配置吸收器元件(100)。