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    • 2. 发明授权
    • Self-contained compressed-flow generation device for use in making differential measurements
    • 用于进行差分测量的独立压缩流生成装置
    • US08813577B1
    • 2014-08-26
    • US13302734
    • 2011-11-22
    • John Dwight EnglandAnthony R. KelleyRaymond J. Cronise
    • John Dwight EnglandAnthony R. KelleyRaymond J. Cronise
    • G01F1/46
    • G01F1/40G01F1/42
    • A device used in making differential measurements of a flow includes a flow obstruction and a support arm. The flow obstruction's forward portion is a nose cone. The flow obstruction's aft portion is coupled to the nose cone. The support arm's first end is coupled to an exterior wall of a conduit, and its second end is coupled to the forward portion of the flow obstruction. The support arm positions the flow obstruction in the conduit such that a flow region is defined around its nose cone, and such that the support arm's first and second end are separated from one another with respect to a length dimension of the conduit. Measurement ports are provided in the support arm and flow obstruction. Manifolds extending through the flow obstruction and support arm couple the ports to points at the exterior wall of the conduit.
    • 用于对流动进行差分测量的装置包括流动障碍物和支撑臂。 流动阻塞的前部是鼻锥。 流动阻碍物的后部连接到鼻锥。 支撑臂的第一端连接到导管的外壁,并且其第二端联接到流动阻塞物的前部。 支撑臂将流动阻塞定位在导管中,使得流动区域围绕其鼻锥体限定,并且使得支撑臂的第一和第二端部相对于导管的长度尺寸彼此分离。 测量端口设置在支撑臂和流动障碍物中。 延伸穿过流动障碍物和支撑臂的歧管将端口连接到导管外壁上的点。
    • 3. 发明授权
    • Star-shaped fluid flow tool for use in making differential measurements
    • 星形流体流动工具,用于进行差别测量
    • US08739638B1
    • 2014-06-03
    • US13302817
    • 2011-11-22
    • John Dwight EnglandAnthony R. KelleyRaymond J. Cronise
    • John Dwight EnglandAnthony R. KelleyRaymond J. Cronise
    • G01F1/46G01F1/37
    • G01F1/40
    • A fluid flow tool's plate-like structure has a ring portion defining a flow hole, a support portion extending radially away from the ring portion and adapted to be coupled to conduit wall, and extensions extending radially away from the ring portion such that a periphery of the plate-like structure is defined by the extensions and trough regions between adjacent extensions. One or more ports formed in the ring portion are in fluid communication with the flow hole. A first manifold in the plate-like structure is in fluid communication with each port communicating with the flow hole. One or more ports are formed in the periphery of the plate-like structure. A second manifold in the plate-like structure is in fluid communication with each port formed in the periphery. The first and second manifolds extend through the plate-like structure to terminate and be accessible at the conduit wall.
    • 流体流动工具的板状结构具有限定流动孔的环部分,从环部径向延伸并且适于联接到导管壁的支撑部分,以及从环部分径向延伸的延伸部分, 板状结构由相邻延伸部之间的延伸部和槽部区域限定。 形成在环形部分中的一个或多个端口与流动孔流体连通。 板状结构中的第一歧管与与流动孔连通的每个端口流体连通。 一个或多个端口形成在板状结构的外围。 板状结构中的第二歧管与在周边形成的每个端口流体连通。 第一和第二歧管延伸穿过板状结构以终止并在导管壁处可接近。
    • 4. 发明授权
    • Self-contained tubular compressed-flow generation device for use in making differential measurements
    • 独立的管状压缩流生成装置,用于进行差分测量
    • US08555731B1
    • 2013-10-15
    • US13302773
    • 2011-11-22
    • John Dwight EnglandAnthony R. KelleyRaymond J. Cronise
    • John Dwight EnglandAnthony R. KelleyRaymond J. Cronise
    • G01F1/34
    • G01F1/40
    • A device used in making differential measurements of a flow includes an open-ended tubular flow obstruction and a support arm. The flow obstruction has an outer annular wall and an inner annular wall. The support arm has a first end coupled to an exterior wall of a conduit and a second end coupled to the flow obstruction. The support arm positions the flow obstruction in the conduit such that a first flow region is defined around the flow obstruction's outer annular wall and a second flow region is defined by the flow obstruction's inner annular wall. The support arm's first end and second end are separated from one another with respect to a length dimension of the conduit. Measurement ports provided in the flow obstruction are coupled to points at the exterior wall of the conduit by manifolds extending through the flow obstruction and support arm.
    • 用于对流动进行差分测量的装置包括开放式管状流动障碍物和支撑臂。 流动阻塞具有外环形壁和内环形壁。 支撑臂具有联接到导管的外壁的第一端和联接到流动阻塞的第二端。 支撑臂将流动阻塞定位在导管中,使得第一流动区域围绕流动阻塞件的外部环形壁限定,并且第二流动区域由流动阻塞件的内部环形壁限定。 支撑臂的第一端部和第二端部相对于导管的长度尺寸彼此分离。 设置在流动障碍物中的测量端口通过延伸穿过流动障碍物和支撑臂的歧管联接到导管的外壁处的点。
    • 5. 发明授权
    • Airfoil-shaped fluid flow tool for use in making differential measurements
    • 用于进行差分测量的翼型流体流动工具
    • US08733180B1
    • 2014-05-27
    • US13302845
    • 2011-11-22
    • John Dwight EnglandAnthony R. KelleyRaymond J. Cronise
    • John Dwight EnglandAnthony R. KelleyRaymond J. Cronise
    • G01F1/34
    • G01F1/40G01F1/46
    • A fluid flow tool includes an airfoil structure and a support arm. The airfoil structure's high-pressure side and low-pressure side are positioned in a conduit by the support arm coupled to the conduit. The high-pressure and low-pressure sides substantially face opposing walls of the conduit. At least one measurement port is formed in the airfoil structure at each of its high-pressure side and low-pressure side. A first manifold, formed in the airfoil structure and in fluid communication with each measurement port so-formed at the high-pressure side, extends through the airfoil structure and support arm to terminate and be accessible at the exterior wall of the conduit. A second manifold, formed in the airfoil structure and in fluid communication with each measurement port so-formed at the low-pressure side, extends through the airfoil structure and support arm to terminate and be accessible at the exterior wall of the conduit.
    • 流体流动工具包括翼型结构和支撑臂。 翼型结构的高压侧和低压侧通过联接到导管的支撑臂定位在导管中。 高压侧和低压侧基本上面对导管的相对壁。 在其高压侧和低压侧的每一个处,在翼型结构中形成至少一个测量口。 形成在翼型结构中并与在高压侧形成的每个测量端口流体连通的第一歧管延伸穿过翼型结构和支撑臂以终止并且可在导管的外壁处接近。 形成在翼型结构中并且与在低压侧形成的每个测量端口流体连通的第二歧管延伸穿过翼型结构和支撑臂以终止并且可在导管的外壁处接近。