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    • 1. 发明授权
    • System and method for characterizing fractures in a subsurface reservoir
    • 用于表征地下储层裂缝的系统和方法
    • US08521494B2
    • 2013-08-27
    • US12730909
    • 2010-03-24
    • Wayne NarrBenjamin Todd HoffmanLiyong Li
    • Wayne NarrBenjamin Todd HoffmanLiyong Li
    • G06G7/48G06G7/50E21B49/00G01V11/00
    • E21B49/00G01V11/00G06F17/5018
    • The disclosed methods, systems, and software are described to optimize fracture characteristics and simulate fluid flow rates in a well model. The well model, which includes at least one fracture intersecting a production well, is generated with static and dynamic data. Fluid flow in the well model is simulated to obtain simulated fluid flow rates between fractures and the well. Fracture properties, such as length, height and aperture, are then updated responsive to measured and simulated fluid flow rates. Multiple simulation runs and updating of the fracture properties can be performed until the simulated fluid flow rates converge with the measured fluid flow rates. Pressure data can be used to determine gridblock permeability, which in turn helps constrain the model, thus providing more reliable fracture properties. Uncertainty ranges of the fracture properties can also be calculated.
    • 描述了所公开的方法,系统和软件以优化断裂特性并模拟井模型中的流体流速。 该井模型包括与生产井相交的至少一个裂缝,它是用静态和动态数据生成的。 模拟井模型中的流体流动,以获得裂缝与井之间的模拟流体流速。 然后根据测量和模拟的流体流速更新断裂特性,例如长度,高度和孔径。 可以进行多次模拟运行和更新断裂性能,直到模拟流体流速与测量的流体流速收敛。 压力数据可用于确定栅格通透性,这又有助于约束模型,从而提供更可靠的断裂特性。 断裂性能的不确定性范围也可以计算出来。
    • 2. 发明申请
    • SYSTEM AND METHOD FOR CHARACTERIZING FRACTURES IN A SUBSURFACE RESERVOIR
    • 用于表征地表储层中裂缝的系统和方法
    • US20100250216A1
    • 2010-09-30
    • US12730909
    • 2010-03-24
    • Wayne NarrBenjamin Todd HoffmanLiyong Li
    • Wayne NarrBenjamin Todd HoffmanLiyong Li
    • G06G7/57
    • E21B49/00G01V11/00G06F17/5018
    • The disclosed methods, systems, and software are described to optimize fracture characteristics and simulate fluid flow rates in a well model. The well model, which includes at least one fracture intersecting a production well, is generated with static and dynamic data. Fluid flow in the well model is simulated to obtain simulated fluid flow rates between fractures and the well. Fracture properties, such as length, height and aperture, are then updated responsive to measured and simulated fluid flow rates. Multiple simulation runs and updating of the fracture properties can be performed until the simulated fluid flow rates converge with the measured fluid flow rates. Pressure data can be used to determine gridblock permeability, which in turn helps constrain the model, thus providing more reliable fracture properties. Uncertainty ranges of the fracture properties can also be calculated.
    • 描述了所公开的方法,系统和软件以优化断裂特性并模拟井模型中的流体流速。 该井模型包括与生产井相交的至少一个裂缝,它是用静态和动态数据生成的。 模拟井模型中的流体流动,以获得裂缝与井之间的模拟流体流速。 然后根据测量和模拟的流体流速更新断裂特性,例如长度,高度和孔径。 可以进行多次模拟运行和更新断裂性能,直到模拟流体流速与测量的流体流速收敛。 压力数据可用于确定栅格通透性,这又有助于约束模型,从而提供更可靠的断裂特性。 断裂性能的不确定性范围也可以计算出来。
    • 3. 发明申请
    • DUAL ANGLED CANOPY RETRACTABLE AWNING
    • 双重CANOPY可退回
    • US20080029225A1
    • 2008-02-07
    • US11781752
    • 2007-07-23
    • Robert WagnerJeffrey B. RutherfordScott W. ThompsonErwin J. GaudynTodd Hoffman
    • Robert WagnerJeffrey B. RutherfordScott W. ThompsonErwin J. GaudynTodd Hoffman
    • E04F10/06
    • E04F10/067E04F10/0622E04F10/0648E04F10/0651E04F10/0662E04F10/0688
    • A retractable awning includes a roller reversibly driven and mounted within a housing for support on a support structure and both inner and outer sets of pivotally interconnected support arms for supporting an awning canopy when extended. The inner set of support arms support the canopy beneath an inner segment of the canopy adjacent the support surface and are designed to deploy before the outer set of support arms with the outer set of support arms supporting the canopy beneath an outer segment of the canopy further away from the support surface than the inner segment. Both the inner and outer sets of support arms can be partially or fully deployed to regulate the extent to which the awning is extendible away from the support surface. The outer support arms are mounted for pivotal movement within a plane forming a different angle with horizontal than the inner set of support arms so the inner segment of the canopy above the inner set of support arms when extended forms a different angle with horizontal than does the outer segment of the awning canopy overlying the outer set of support arms when extended.
    • 可伸缩遮篷包括可逆地驱动并安装在壳体内的辊,用于支撑在支撑结构上,以及用于在延伸时支撑遮阳篷的内部和外部枢转互连的支撑臂组。 内部的一组支撑臂支撑靠近支撑表面的冠层的内部部分下方的冠层,并被设计成在外部组的支撑臂之前部署,外部的一组支撑臂支撑冠层的外部段下方的冠层 远离支撑表面比内部段。 内套和外套支撑臂都可以部分地或完全地展开以调节遮篷从支撑表面延伸的程度。 外部支撑臂被安装成在与内部的一组支撑臂形成与水平方向不同的角度的平面内枢转运动,使得当延伸的内部组的支撑臂上方的顶盖的内部部分与水平方向形成不同于水平的角度 当延伸时,遮篷罩的外部部分覆盖外部的一组支撑臂。
    • 4. 发明授权
    • Dual angled canopy retractable awning
    • 双角伞篷伸缩篷
    • US07628194B2
    • 2009-12-08
    • US11781752
    • 2007-07-23
    • Robert WagnerJeffrey B. RutherfordScott P. ThompsonErwin J. GaudynTodd Hoffman
    • Robert WagnerJeffrey B. RutherfordScott P. ThompsonErwin J. GaudynTodd Hoffman
    • E04F10/06
    • E04F10/067E04F10/0622E04F10/0648E04F10/0651E04F10/0662E04F10/0688
    • A retractable awning includes a roller reversibly driven and mounted within a housing for support on a support structure and both inner and outer sets of pivotally interconnected support arms for supporting an awning canopy when extended. The inner set of support arms support the canopy beneath an inner segment of the canopy adjacent the support surface and are designed to deploy before the outer set of support arms with the outer set of support arms supporting the canopy beneath an outer segment of the canopy further away from the support surface than the inner segment. Both the inner and outer sets of support arms can be partially or fully deployed to regulate the extent to which the awning is extendible away from the support surface. The outer support arms are mounted for pivotal movement within a plane forming a different angle with horizontal than the inner set of support arms so the inner segment of the canopy above the inner set of support arms when extended forms a different angle with horizontal than does the outer segment of the awning canopy overlying the outer set of support arms when extended.
    • 可伸缩遮篷包括可逆地驱动并安装在壳体内的辊,用于支撑在支撑结构上,以及用于在延伸时支撑遮阳篷的内部和外部枢转互连的支撑臂组。 内部的一组支撑臂支撑靠近支撑表面的冠层的内部部分下方的冠层,并被设计成在外部的一组支撑臂之前部署,外部的一组支撑臂在冠层的外部部分的下方支撑冠层 远离支撑表面比内部段。 内套和外套支撑臂都可以部分地或完全地展开以调节遮篷从支撑表面延伸的程度。 外部支撑臂被安装成在与内部的一组支撑臂形成与水平方向不同的角度的平面内枢转运动,使得当延伸的内部组的支撑臂上方的顶盖的内部部分与水平方向形成不同于水平的角度 当延伸时,遮篷罩的外部部分覆盖外部的一组支撑臂。