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    • 41. 发明申请
    • Apparatus and Method for Pulse Testing a Formation
    • 用于脉冲测试形成的装置和方法
    • US20150176403A1
    • 2015-06-25
    • US14403079
    • 2012-06-13
    • Dingding ChenMark A. ProettChristopher Michael JonesAbdolhamid Hadibeik
    • Dingding ChenMark A. ProettChristopher Michael JonesAbdolhamid Hadibeik
    • E21B49/00E21B47/06
    • E21B49/008E21B47/06
    • A system for pressure testing a formation includes a downhole tool configured to measure formation pressure, storage containing pressure parameters of a plurality of simulated formation pressure tests, and a formation pressure test controller coupled to the downhole tool and the storage. For each of a plurality of sequential pressure testing stages of a formation pressure test, the formation pressure test controller 1) retrieves formation pressure measurements from the downhole tool; 2) identifies one of the plurality of simulated formation pressure tests comprising pressure parameters closest to corresponding formation pressure values derived from the formation pressure measurements; and 3) determines a flow rate to apply by the downhole tool in a next stage of the test based on the identified one of the plurality of simulated formation pressure tests.
    • 用于对地层进行压力测试的系统包括被配置为测量地层压力的井下工具,包含多个模拟地层压力测试的压力参数的储存器以及耦合到井下工具和储存器的地层压力测试控制器。 对于地层压力试验的多个连续压力试验阶段中的每一个,地层压力试验控制器1)从井下工具检索地层压力测量值; 2)识别多个模拟地层压力测试中的一个,其包括最接近从地层压力测量得出的对应地层压力值的压力参数; 以及3)基于所述多个模拟地层压力测试中的所述一个确定在所述测试的下一阶段中确定由所述井下工具施加的流量。
    • 42. 发明申请
    • SINGLE MAGNET FLUID DENSITOMETER
    • 单磁流体密度计
    • US20150070000A1
    • 2015-03-12
    • US14391612
    • 2012-05-03
    • Li GaoMichael T. PelletierMark A. Proett
    • Li GaoMichael T. PelletierMark A. Proett
    • G01N27/74E21B49/08
    • G01N27/74E21B47/06E21B47/102E21B49/00E21B49/08E21B2049/085G01N9/002G01N11/16G01N33/2823G01N2009/006
    • An instrument for determining fluid properties is provided. The instrument (300) includes a tube (304) receiving the fluid, a single magnet (302) attached to the tube, and a single coil (306) wound around the single magnet. The single coil is coupled to a pulse current source (312) and receives a pulse current that creates a magnetic field in the single coil, the created magnetic field interacting with the single magnet to drive the tube to vibrate. The instrument further includes a detector (306) coupled to the tube, wherein the detector is coupled to measurement circuitry (310) and detects properties of the tube as it vibrates, and the measurement circuitry determines the fluid properties based on the detected properties. The instrument also includes a housing (314) enclosing the tube, the single magnet, and the single coil wound around the single magnet.
    • 提供了一种用于确定流体特性的仪器。 仪器(300)包括容纳流体的管(304),附接到管的单个磁体(302)和缠绕在单个磁体上的单个线圈(306)。 单个线圈耦合到脉冲电流源(312)并且接收在单个线圈中产生磁场的脉冲电流,所产生的磁场与单个磁体相互作用以驱动管子振动。 仪器还包括耦合到管的检测器(306),其中检测器耦合到测量电路(310)并且在其振动时检测管的特性,并且测量电路基于检测到的属性来确定流体特性。 仪器还包括围绕单个磁体缠绕管,单个磁体和单个线圈的壳体(314)。
    • 45. 发明授权
    • Automatic anisotropy, azimuth and dip determination from upscaled image log data
    • 自动各向异性,方位和倾角确定从放大的图像日志数据
    • US08614577B2
    • 2013-12-24
    • US13110404
    • 2011-05-18
    • Mark A. ProettTegwyn J. PerkinsRonald Stamm
    • Mark A. ProettTegwyn J. PerkinsRonald Stamm
    • G01V3/00
    • G01V3/18G01N24/081
    • A method of determining anisotropy in a borehole is disclosed. An array of measurements along the borehole is obtained and a first depth in the borehole is selected. An arbitrary plane oriented with respect to the borehole at the first depth is designated and an anisotropy for the first depth with respect to the arbitrary plane is determined. The arbitrary plane is repositioned at the first depth and an anisotropy for different positions of the arbitrary plane at the first depth is determined. A minimum anisotropy coefficient with respect to the arbitrary plane at the first depth is identified based on anisotropy for different positions of the arbitrary plane. An anisotropy tensor for the first depth is then identified.
    • 公开了一种确定井眼各向异性的方法。 获得沿井眼的一系列测量结果,并选择钻孔中的第一深度。 指定相对于第一深度处的钻孔定向的任意平面,并且确定相对于任意平面的第一深度的各向异性。 任意平面在第一深度处重新定位,并且确定在第一深度处的任意平面的不同位置的各向异性。 基于任意平面的不同位置的各向异性来确定相对于第一深度处的任意平面的最小各向异性系数。 然后识别第一深度的各向异性张量。
    • 46. 发明授权
    • Formation testing and sampling apparatus and methods
    • 地层试验和采样仪器及方法
    • US08522870B2
    • 2013-09-03
    • US13562870
    • 2012-07-31
    • Philip Edmund FoxMichael E. ShadeGregory N GilbertMark A. Proett
    • Philip Edmund FoxMichael E. ShadeGregory N GilbertMark A. Proett
    • E21B49/10
    • E21B49/10
    • Systems and methods for downhole formation testing based on the use of one or more elongated sealing pads capable of sealing off and collecting or injecting fluids from elongated portions along the surface of a borehole. The modified sealing pads increase the flow area by collecting fluids from an extended portion along the surface of a borehole, which is likely to straddle one or more layers in laminated or fractured formations. A tester device using the elongated sealing pads can be deployed and withdrawn using an extendible element pressing the pads to the borehole. Various designs and arrangements for use with a fluid tester, which may be part of a modular fluid tool, are disclosed in accordance with different embodiments.
    • 基于使用一个或多个细长的密封垫的井下形成测试的系统和方法,该密封垫能够沿着钻孔的表面密封和从细长部分收集或注入流体。 改进的密封垫通过沿着钻孔的表面从延伸部分收集流体来增加流动面积,其可能跨越层压或断裂地层中的一个或多个层。 使用细长密封垫的测试器装置可以使用将垫挤压到钻孔的可延伸元件来展开和取出。 根据不同的实施例公开了可以作为模块化流体工具的一部分的流体测试器使用的各种设计和布置。