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    • 6. 发明申请
    • AZIMUTHAL SATURATION LOGGING SYSTEMS AND METHODS
    • AZIMUTHAL饱和测井系统和方法
    • WO2012087305A1
    • 2012-06-28
    • PCT/US2010/061735
    • 2010-12-22
    • HALLIBURTON ENERGY SERVICES, INC.LOTFY, AmrJOHNSON, PaulHVEDING, Frode
    • LOTFY, AmrJOHNSON, PaulHVEDING, Frode
    • E21B49/00
    • G01V3/38E21B47/00G01V11/00
    • Logging systems and methods to provide azimuthally-sensitive saturation logs. In some embodiments a processor operates on formation porosity and resistivity measurements from an azimuthally-sensitive logging tool assembly to derive a saturation log having a dependence on tool position and rotation angle, and possibly on radial distance as well. The processor may provide the log to a user via a screen, printer, or some other display mechanism. The logging tool assembly includes at least one tool to measure formation porosity. Suitable tools include a gamma density tool, a neutron density tool, a nuclear magnetic resonance tool, and an acoustic tool. The tool assembly further includes at least one tool to measure formation resistivity. Suitable tools include a laterolog tool, an induction tool, and a propagation resistivity tool. The tool assembly can be a wireline sonde, a tubing-conveyed logging assembly, or a logging while drilling tool assembly.
    • 记录系统和方法以提供方位角敏感的饱和日志。 在一些实施例中,处理器对来自方位敏感测井工具组件的地层孔隙度和电阻率测量结果进行操作,以导出与工具位置和旋转角度有关的饱和度测井值,以及可能的径向距离。 处理器可以经由屏幕,打印机或某些其他显示机构向用户提供日志。 测井工具组件包括至少一个测量地层孔隙度的工具。 合适的工具包括伽马密度工具,中子密度工具,核磁共振工具和声学工具。 工具组件还包括至少一个测量地层电阻率的工具。 合适的工具包括后工具,感应工具和传播电阻率工具。 工具组件可以是有线探头,管道输送测井组件或钻井工具组件中的测井。
    • 9. 发明申请
    • MANAGING A MULTIPROCESSING COMPUTER SYSTEM
    • 管理多计算机系统
    • WO2011134716A1
    • 2011-11-03
    • PCT/EP2011/053984
    • 2011-03-16
    • INTERNATIONAL BUSINESS MACHINES CORPORATIONJOHNSON, Paul
    • JOHNSON, Paul
    • G06F9/50
    • G06F9/5077Y02D10/22Y02D10/36
    • A system and corresponding method for managing a multiprocessing computer system comprises a hardware control component for selecting a hardware management action responsive to a hardware policy; a virtualization component for presenting virtual hardware resources to a software task execution environment; a software workload management component for controlling at least one running software task and routing at least one new software task using the virtual hardware resources; and a communication component for signalling from the hardware control component across the virtualization component to the software workload management component to perform a software management action in compliance with the hardware management action. The hardware policy may be a hardware power management policy, and the software management action may comprise quiescing the at least one running software task or routing the new software tasks to a different software task execution environment.
    • 用于管理多处理计算机系统的系统和相应方法包括用于响应于硬件策略选择硬件管理动作的硬件控制部件; 用于向软件任务执行环境呈现虚拟硬件资源的虚拟化组件; 软件工作负载管理组件,用于控制至少一个运行的软件任务,并使用虚拟硬件资源路由至少一个新的软件任务; 以及用于从硬件控制组件跨越虚拟化组件向软件工作负载管理组件发信号的通信组件,以执行符合硬件管理动作的软件管理动作。 硬件策略可以是硬件电源管理策略,并且软件管理动作可以包括停止至少一个正在运行的软件任务或将新的软件任务路由到不同的软件任务执行环境。
    • 10. 发明申请
    • IMPROVED ROTARY MAGNUS ENERGY HARVESTER
    • 改进的旋转能量收割机
    • WO2011034893A2
    • 2011-03-24
    • PCT/US2010/048891
    • 2010-09-15
    • EGEN LLCDOUGLAS, Joel, S.FRENCH, MatthewJOHNSON, Paul, RichardZIEGLER, Armanda, E.
    • DOUGLAS, Joel, S.FRENCH, MatthewJOHNSON, Paul, RichardZIEGLER, Armanda, E.
    • H02K7/00
    • F03D1/0616F05B2240/201Y02E10/721
    • An energy harvester capable of providing motion from fluid flow, which comprises at least one Magnus cylinder driven to rotate by the movement of the fluid past a fin device. This causes the Magnus cylinder to rotate, and further interactions between the rotating Magnus cylinder and the moving fluid generate a Magnus lifting force. A channel or system may be also provided to direct the fluid flow to the Magnus cylinder. This rotating Magnus cylinder configuration is integrated into a mechanical device that is designed to transfer the Magnus lifting forces into a rotary mechanical motion to drive an electric generator. The device can be utilized in either air or hydraulic environments. A modification of the energy harvester can also be configured to utilize the generated electricity to produce hydrogen for use in fuel cells, or for combustion.
    • 一种能够提供流体流动运动的能量收集器,其包括至少一个马格努斯缸被驱动以通过流体通过翅片装置的运动而旋转。 这将导致Magnus气缸旋转,并且旋转的Magnus气缸和移动流体之间的进一步交互产生Magnus提升力。 还可以提供通道或系统以将流体流引导至马格努斯缸。 这种旋转的Magnus气缸配置被集成到机械设备中,该机械设备被设计成将Magnus提升力传递到旋转机械运动以驱动发电机。 该设备可以在空气或液压环境中使用。 能量收集器的修改也可以被配置为利用所产生的电力来产生用于燃料电池或用于燃烧的氢。