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    • 2. 发明授权
    • Machine for increased hydro power generation
    • 增加水力发电的机器
    • US08303242B2
    • 2012-11-06
    • US13325283
    • 2011-12-14
    • Wayne F. KrouseFrederick E. BeckerAndrew R. Provo
    • Wayne F. KrouseFrederick E. BeckerAndrew R. Provo
    • F01D11/00
    • F03B17/061F03B3/18F03B15/02F05B2240/133Y02E10/223Y02E10/226Y02E10/28
    • A hydropower generating turbine having an impeller housing disposed to receive water, at least one impeller disposed within the impeller housing, at least one adjustable duct pivotally connected to the impeller housing, and, where the duct has a plurality of duct leafs, wherein the duct leafs articulate and cause the duct to converge and diverge for selectively disposing a fluid about the impeller. The ducts may be inflow or outflow ducts, and the turbine may react to a change in the fluid and alter the shape of the impeller. Further, the turbine may have an automated controller where variable change in the flow is detected by a sensor and transmitted to the automated controller to cause a directional shift in the multidirectional turbine.
    • 一种水力发电涡轮机,其具有设置成接收水的叶轮壳体,设置在叶轮壳体内的至少一个叶轮,至少一个可枢转地连接到叶轮壳体的可调节管道,并且其中管道具有多个管道叶片,其中管道 叶片铰接并导致管道会聚并发散,以选择性地在叶轮周围设置流体。 管道可以是流入或流出管道,并且涡轮机可以对流体的变化作出反应并改变叶轮的形状。 此外,涡轮机可以具有自动控制器,其中流量的可变变化由传感器检测并传输到自动控制器以引起多向涡轮机中的方向偏移。
    • 5. 发明申请
    • MACHINE FOR INCREASED HYDRO POWER GENERATION
    • 增加水力发电机
    • US20120107090A1
    • 2012-05-03
    • US13325283
    • 2011-12-14
    • Wayne F. Krouse
    • Wayne F. Krouse
    • F03B15/06F03B3/18F03B3/12
    • F03B17/061F03B3/18F03B15/02F05B2240/133Y02E10/223Y02E10/226Y02E10/28
    • A hydropower generating turbine having an impeller housing disposed to receive water, at least one impeller disposed within the impeller housing, at least one adjustable duct pivotally connected to the impeller housing, and, where the duct has a plurality of duct leafs, wherein the duct leafs articulate and cause the duct to converge and diverge for selectively disposing a fluid about the impeller. The ducts may be inflow or outflow ducts, and the turbine may react to a change in the fluid and alter the shape of the impeller. Further, the turbine may have an automated controller where variable change in the flow is detected by a sensor and transmitted to the automated controller to cause a directional shift in the multidirectional turbine.
    • 一种水力发电涡轮机,其具有设置成接收水的叶轮壳体,设置在叶轮壳体内的至少一个叶轮,至少一个可枢转地连接到叶轮壳体的可调节管道,并且其中管道具有多个管道叶片,其中管道 叶片铰接并导致管道会聚并发散,以选择性地在叶轮周围设置流体。 管道可以是流入或流出管道,并且涡轮机可以对流体的变化作出反应并改变叶轮的形状。 此外,涡轮机可以具有自动控制器,其中流量的可变变化由传感器检测并传输到自动控制器以引起多向涡轮机中的方向偏移。
    • 6. 发明授权
    • Active shoe cleat system
    • 活动鞋夹板系统
    • US07788828B2
    • 2010-09-07
    • US11801310
    • 2007-05-09
    • Wayne F. Krouse
    • Wayne F. Krouse
    • A43C15/02
    • A43C15/161A43B3/0005A43C15/14
    • An active shoe cleat system with a shoe having a processor in the shoe operably connected to cleats on the bottom of the shoe, at least one sensor that measures at least one parameter pertaining to ambient conditions on the shoe, a projection within the cleats that are deployed in response to control signals from the processor generated in response to data from information provided in part by the sensor, and means for urging the projection outward from within the cleat. In a preferred embodiment, the cleat may be activated by hydraulics or pneumatics or have a direct motor driven cable, gear or shaft work system. The sensors may monitor a variety of ambient conditions such as speed, torque, acceleration, force, water presence or other factors affecting traction and performance.
    • 具有鞋的活性鞋夹系统,其具有在鞋中的处理器,其可操作地连接到鞋的底部上的防滑钉,至少一个传感器,其测量与鞋上的环境条件有关的至少一个参数, 响应于响应于由传感器部分提供的信息的数据而产生的来自处理器的控制信号部署,以及用于从防滑板内向外推动突出的装置。 在优选实施例中,防滑板可以由液压或气动元件激活,或者具有直接电动机驱动的电缆,齿轮或轴工作系统。 传感器可以监测各种环境条件,例如速度,扭矩,加速度,力,水分存在或影响牵引力和性能的其他因素。
    • 8. 发明授权
    • Active shoe cleat system
    • 活动鞋夹板系统
    • US08215034B2
    • 2012-07-10
    • US12873293
    • 2010-08-31
    • Wayne F. Krouse
    • Wayne F. Krouse
    • A43C15/14
    • A43C15/161A43B3/0005A43C15/14
    • An active shoe cleat system with a shoe having a fluid filled chamber in the shoe operably connected to cleats on the bottom of the shoe, at least one fluid communication path with the cleat that responds to pressure or acceleration on the shoe to deploy the cleat by hydraulic or pneumatic pressure. In a preferred embodiment, the cleat may be activated by hydraulics or pneumatics or have a direct fluid path communicating with the cleat or reservoir operably connected to the cleat.
    • 具有鞋的活性鞋夹系统,其具有在鞋中的流体填充腔,其可操作地连接到鞋的底部上的防滑板,至少一个与防滑板的流体连通路径,其抵抗鞋上的压力或加速度来部署防滑板 液压或气动压力。 在优选的实施例中,防滑板可以由液压或气动元件激活,或者具有与可操作地连接到防滑板的防滑板或储存器连通的直接流体路径。