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    • 62. 发明申请
    • HYDROKINETIC TURBINE STRUCTURE AND SYSTEM
    • 水动力涡轮机结构与系统
    • US20110058929A1
    • 2011-03-10
    • US12879397
    • 2010-09-10
    • Timothy SmithEric Otte
    • Timothy SmithEric Otte
    • F03B13/12F03B13/18
    • F03B13/264F05B2240/133Y02E10/28Y02E10/38Y10S415/906Y10S415/908
    • A hydrokinetic turbine system, including a plurality of hydrokinetic turbines is installed on a bed of a body of water. Each turbine has a shroud with a forward entrance portion and rear exit portion. The shroud includes a propeller disposed in a middle portion thereof. An inner surface of the shroud includes a plurality of rifling vanes formed therein to induce water entering the forward entrance portion to rotate in a vortex-like fashion. A plurality of pre-spin guard blades disposed adjacent the forward entrance portion also induce rotation of water and serve to provide a barrier preventing objects from passing into the forward entrance portion. A plurality of stabilizers extending from an exterior surface of the shroud that position the forward entrance portion in the direction of current flow.
    • 包括多个水力涡轮机的水动力涡轮机系统安装在水体的床上。 每个涡轮机具有带有前进入部分和后出口部分的护罩。 护罩包括设置在其中间部分的螺旋桨。 护罩的内表面包括形成在其中的多个膛线叶片,以引导进入前进入部分的水以漩涡状方式旋转。 设置在前进入部分附近的多个预旋转保护叶片还引起水的旋转并且用于提供防止物体进入前进入口部分的障碍物。 从护罩的外表面延伸的多个稳定器,其沿着电流方向定位前进入口部分。
    • 67. 发明申请
    • Method and system for optimization of controls
    • 控制优化的方法和系统
    • US20050256945A1
    • 2005-11-17
    • US10746806
    • 2003-12-24
    • Michael MartinJaisimha MuthegereTimothy SmithRobert Tulloh
    • Michael MartinJaisimha MuthegereTimothy SmithRobert Tulloh
    • G06F15/173H04L12/24
    • H04L41/147
    • A system and method can use statistical modeling of the way that an entire application environment is running. The output from the statistical models can be used by an optimization engine to provide an optimal or near optimal configuration and operation of the application environment for nearly any workloads and conditions. After constructing the statistical models, the operation can be entirely automated and not require human intervention. In another embodiment, some human intervention may be used or desired, particularly for non-reoccurring events (e.g., significant portion of a network for the application environment shut down due to a natural disaster). The system and method can be used to respond faster (closer to real time) and potentially to implement better control than would otherwise be possible with manual control. The system and method is particularly well suited for application environments that are in a nearly constant state of flux.
    • 系统和方法可以使用整个应用程序环境运行方式的统计建模。 统计模型的输出可以由优化引擎使用,为几乎任何工作负载和条件提供最佳或接近最优的应用环境配置和操作。 构建统计模型后,操作可以完全自动化,不需要人为干预。 在另一个实施例中,可以使用或期望一些人为干预,特别是对于非重复事件(例如,由于自然灾害而使应用环境关闭的网络的重要部分)。 该系统和方法可以用于响应更快(更接近实时)),并且潜在地实现比手动控制可能的更好的控制。 该系统和方法特别适用于处于几乎恒定的通量状态的应用环境。
    • 70. 发明申请
    • Regenerative surfing
    • 再生冲浪
    • US20050109258A1
    • 2005-05-26
    • US10971114
    • 2004-10-25
    • Timothy Smith
    • Timothy Smith
    • B63B1/00B63B1/24B63B1/28B63H19/02
    • B63H19/02B63B1/24B63B1/246B63B1/28Y02T70/59
    • Regenerative surfing is utilizing a controllable regenerative braking system to regulate speed while surfing. A vertical sculling hydrofoil boat, utilizes the regenerative braking system and includes a vertical sculling drive system for both propulsion and regenerative braking. The regenerative surfing boat also may include ballast tanks to tune the speed at which the maximum lift to drag ratio appears. The regenerative surfing boat may use an automated surfing control system to control the boat. A method of controlling the trajectory of a surfing boat by controlling a regenerative braking device utilizes a hydrodynamic power collection device for trajectory control as an energy harvesting method.
    • 再生冲浪利用可控再生制动系统来调节冲击速度。 一个垂直的水平浮翼船,利用再生制动系统,并包括用于推进和再生制动的垂直铲斗驱动系统。 再生冲浪船还可以包括压载舱,以调节出现最大提升阻力比的速度。 再生冲浪船可以使用自动冲浪控制系统来控制船。 通过控制再生制动装置控制冲浪船的轨迹的方法利用用于轨迹控制的流体动力收集装置作为能量收集方法。