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    • 1. 发明授权
    • Method for converting the energy of water waves into electricity by means of a wave power plant and a wave power plant
    • 通过波浪发电厂和波浪发电厂将水波能量转换为电力的方法
    • US09447770B2
    • 2016-09-20
    • US14394721
    • 2013-04-12
    • Wello Oy
    • Heikki PaakkinenAntti Paakkinen
    • F03B13/20E02B9/08F03B13/16
    • F03B13/20E02B9/08F03B13/16F03G7/08Y02E10/38
    • A method for converting the energy of water waves into electricity by means of a wave power plant, which comprises a floating body (1), a rotator (3) which is supported on the body and rotates around a rotator shaft (2) which is on average vertical, a gyro (5) which rotates around a gyro shaft (4) which is on average horizontal, the gyro and the gyro shaft rotating with the rotator around the rotator shaft (2), and at least one generator (6), which is connected to rotate together with the gyro or the rotator. By means of the rotator's mass (M) is produced a moment rotating the rotator on the one hand by means of the inclination moment generated by the inclination of the body and gravitation, and on the other hand by means of the acceleration moment generated by the horizontal acceleration of the rotator shaft (2). The inclination and acceleration are caused by directing the internal flows of the wave at the submerged part of the body (1). The moment generated by gyro force is used to equalize the said inclination and acceleration moments during the revolution and the kinetic energy of the gyro is used as an energy reserve to equalize the effective output of the wave power plant.
    • 一种通过波浪发电厂将水波能量转换为电力的方法,该波动发电厂包括浮体(1),旋转体(3),该旋转体支撑在主体上并围绕旋转轴(2)旋转,旋转体 在平均垂直方向上旋转的陀螺仪(5)围绕平均水平的陀螺仪轴(4)旋转,所述陀螺仪和陀螺仪轴随旋转体围绕旋转轴(2)旋转,以及至少一个发生器(6) ,其被连接到与陀螺仪或旋转器一起旋转。 通过旋转体的质量(M),一方面通过由身体的倾斜度和重力产生的倾斜力矩一方面转动旋转体,另一方面通过由 旋转轴(2)的水平加速度。 倾斜和加速是通过将波浪的内部流引导到身体(1)的淹没部分而引起的。 由陀螺力产生的力矩用于使旋转期间的所述倾角和加速度力平衡,陀螺仪的动能用作能量储备,以平衡波动发电厂的有效输出。
    • 2. 发明申请
    • WAVE POWER PLANT
    • 波浪发电厂
    • US20140319839A1
    • 2014-10-30
    • US14357645
    • 2012-10-15
    • WELLO OY
    • Heikki Paakkinen
    • F03B13/16E02B9/08
    • F03B13/20E02B9/08F03B13/16F03G7/08Y02E10/38
    • The invention relates to a wave power plant, comprising a floating body (1) and means for converting the wave energy received by the body into electric power. The front side of the cross-section of the body (1) opposite to the main incoming direction (A) of the waves is designed to slant forward and upwards in its upper part (11) and to slant backwards and downwards in its lower part (12), in such a way that the propagating wave meets the upper and lower part wave at different stages, whereby the lower part tends to move mainly in the opposite direction with respect to the upper part.
    • 本发明涉及一种波浪发电厂,其包括浮体(1)和用于将由身体接收的波浪能量转换成电力的装置。 主体(1)与波浪的主入射方向(A)相对的横截面的前侧被设计成在其上部(11)中向前和向上倾斜并且在其下部向后和向下倾斜 (12),使得传播波在不同的阶段与上部和下部波相交,由此下部倾向于主要在相对于上部的相反方向上移动。
    • 10. 发明申请
    • SYSTEM AND PROCESS FOR NOTIFICATION OF CONTAGION RISK CONDITIONS AND MITIGATION THEREOF
    • 联系风险条件及其缓解通知的制度和流程
    • US20160109149A1
    • 2016-04-21
    • US14890297
    • 2014-05-10
    • WELLO, INC.
    • Alan C. Heller
    • F24F11/00G05B15/02G06F19/00
    • F24F11/0015F24F11/30F24F2110/20G05B15/02G06F19/00G16H50/80
    • The present invention is directed to system and process for notification of contagion risk and mitigation of the risk thereof. The system comprises a meteorological history repository having meteorological data and a processor configured with an instruction set. The instruction set includes retrieving meteorological data for a selected region for a selected time window, calculating contagion risk based on the meteorological data and from at least one of a transmission risk or a susceptibility risk, calculating the transmission risk as a function of dew point change and calculating susceptibility risk as a function of relative humidity. The system generates a contagion risk indicator based thereon.Embodiments of the system for mitigating the risk of spread of contagions and include a controller configured to select a lower humidity bound as a function of contagion infectivity and an upper humidity bound as a function of contagion viability or mold/fungus growth rate. The controller receives humidity data for the sealed area and issues control signals to a humidification unit in response to the received humidity data and according to the selected lower humidity bound and the upper humidity bound.
    • 本发明涉及用于通知传染风险和缓解其风险的系统和过程。 该系统包括具有气象数据的气象历史仓库和配置有指令集的处理器。 该指令集包括在所选择的时间窗口中检索所选择的区域的气象数据,基​​于气象数据和从传播风险或易感性风险中的至少一个计算传染风险,计算作为露点变化的函数的传播风险 并计算易感性风险作为相对湿度的函数。 该系统基于此产生传染性风险指标。 用于减轻传染病传播风险的系统的实施例,并且包括控制器,其被配置为选择作为传染性感染性的函数的较低湿度界限和作为传染活力或霉菌/真菌生长速率的函数的上限湿度。 控制器接收密封区域的湿度数据,并响应于接收到的湿度数据并根据选定的较低湿度界限和上限湿度范围向加湿单元发出控制信号。