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    • 1. 发明授权
    • Apparatus for weight on bit measurements, and methods of using same
    • 用于位测量的重量的装置及其使用方法
    • US06802215B1
    • 2004-10-12
    • US10605627
    • 2003-10-15
    • Marcel BoucherAaron SchenCraig IvieBrian Peter Jarvis
    • Marcel BoucherAaron SchenCraig IvieBrian Peter Jarvis
    • E21B4400
    • E21B44/00
    • The present invention is generally directed to a tool for obtaining weight-on-bit (WOB) measurements and methods of using such a tool. In one illustrative embodiment the tool comprises a body, at least one strain gauge cavity in the body, the strain gauge cavity having a strain gauge mounting surface that is located at a position such that a region of approximately zero axial strain due to downhole pressures during drilling operations exists on the mounting surface when the tool is subjected to downhole pressures during drilling operations, and a weight-on-bit strain gauge operatively coupled to the mounting face above the region of approximately zero axial strain. In another illustrative embodiment, the method comprises providing a weight-on-bit measurement tool comprised of a body, at least one strain gauge cavity in the body, the strain gauge cavity having a strain gauge mounting surface that is located at a position such that a region of approximately zero axial strain due to downhole pressures during drilling operations exists on the mounting surface when the tool is subjected to downhole pressures during drilling operations, and a weight-on-bit strain gauge coupled to the mounting face above the region of approximately zero axial strain. The method further comprises positioning the tool in a drill string comprised of a drill bit, drilling a well bore with the drill string, and obtaining weight-data-on-bit measurement data using the weight-on-bit strain gauge in the tool.
    • 本发明一般涉及一种用于获得位重(WOB)测量的工具和使用这种工具的方法。 在一个说明性实施例中,工具包括主体,主体中的至少一个应变计腔,应变计腔具有应变计安装表面,该应变计安装表面位于使得由于井下压力期间的大致零轴向应变的区域 当工具在钻井操作期间经受井下压力时,在安装表面上存在钻孔操作,以及在大约零轴向应变的区域上操作地联接到安装面的重量位应变计。 在另一个说明性实施例中,该方法包括提供一种由位于体内的至少一个应变计空腔构成的身体上的重量测量工具,应变计空腔具有应变计安装表面,该应变计安装表面位于使得 在钻井操作期间当工具承受井下压力时,在钻井操作中由于井下压力而导致大致零轴向应变的区域存在于安装表面上,以及在大约 零轴向应变。 该方法还包括将工具定位在由钻头组成的钻柱中,用钻柱钻井孔,以及使用工具中的重量位应变仪获得重量数据在位测量数据。
    • 2. 发明申请
    • Apparatus for Weight on Bit Measurements, and Methods of Using Same
    • 用于位测量的重量装置及其使用方法
    • US20050081618A1
    • 2005-04-21
    • US10711589
    • 2004-09-27
    • Marcel BoucherAaron SchenCraig IvieBrian Jarvis
    • Marcel BoucherAaron SchenCraig IvieBrian Jarvis
    • E21B44/00E21B47/06E21B47/01
    • E21B44/00
    • The present invention is generally directed to a tool for obtaining downhole measurements and methods of using such a tool. In one illustrative embodiment the tool comprises a body, at least one strain gauge cavity in the body, the strain gauge cavity having a strain gauge mounting surface that is located at a position such that a region of approximately zero strain due to at least one downhole operating condition exists on the mounting surface when the tool is subjected to downhole operating conditions, and a strain gauge operatively coupled to the mounting face above the region of approximately zero strain. In another illustrative embodiment, the method comprises providing a measurement tool comprised of a body, at least one strain gauge cavity in the body, the strain gauge cavity having a strain gauge mounting surface that is located at a position such that a region of approximately zero strain due to at least one downhole operating condition exists on the mounting surface when the tool is subjected to downhole operating conditions, and a strain gauge coupled to the mounting face above the region of approximately zero strain. The method further comprises positioning the tool in a subterranean well bore and obtaining measurement data using the strain gauge in the tool.
    • 本发明一般涉及用于获得井下测量的工具和使用这种工具的方法。 在一个说明性实施例中,工具包括主体,主体中的至少一个应变计空腔,应变计腔具有应变计安装表面,该应变计安装表面位于使得由于至少一个井下的近似零应变的区域 当工具经受井下操作条件时,在安装表面上存在操作条件,并且应变计可操作地联接到大约零应变区域上方的安装面。 在另一说明性实施例中,该方法包括提供由身体,身体中的至少一个应变计空腔组成的测量工具,应变计空腔具有应变计安装表面,该应变计安装表面位于使得大约为零的区域 当工具经受井下操作条件时,在安装表面上存在至少一个井下操作条件的应变,以及在大约零应变区域上方连接到安装面的应变仪。 该方法还包括将工具定位在地下井眼中,并使用工具中的应变计获得测量数据。
    • 5. 发明授权
    • Apparatus for weight on bit measurements, and methods of using same
    • 用于位测量的重量的装置及其使用方法
    • US06957575B2
    • 2005-10-25
    • US10711589
    • 2004-09-27
    • Marcel Luke BoucherAaron SchenCraig Robert IvieBrian Peter Jarvis
    • Marcel Luke BoucherAaron SchenCraig Robert IvieBrian Peter Jarvis
    • E21B44/00
    • E21B44/00
    • The present invention is generally directed to a tool for obtaining downhole measurements and methods of using such a tool. In one illustrative embodiment the tool comprises a body, at least one strain gauge cavity in the body, the strain gauge cavity having a strain gauge mounting surface that is located at a position such that a region of approximately zero strain due to at least one downhole operating condition exists on the mounting surface when the tool is subjected to downhole operating conditions, and a strain gauge operatively coupled to the mounting face above the region of approximately zero strain. In another illustrative embodiment, the method comprises providing a measurement tool comprised of a body, at least one strain gauge cavity in the body, the strain gauge cavity having a strain gauge mounting surface that is located at a position such that a region of approximately zero strain due to at least one downhole operating condition exists on the mounting surface when the tool is subjected to downhole operating conditions, and a strain gauge coupled to the mounting face above the region of approximately zero strain. The method further comprises positioning the tool in a subterranean well bore and obtaining measurement data using the strain gauge in the tool.
    • 本发明一般涉及用于获得井下测量的工具和使用这种工具的方法。 在一个说明性实施例中,工具包括主体,主体中的至少一个应变计空腔,应变计腔具有应变计安装表面,该应变计安装表面位于使得由于至少一个井下的近似零应变的区域 当工具经受井下操作条件时,在安装表面上存在操作条件,并且应变计可操作地联接到大约零应变区域上方的安装面。 在另一说明性实施例中,该方法包括提供由身体,身体中的至少一个应变计空腔组成的测量工具,应变计空腔具有应变计安装表面,该应变计安装表面位于使得大约为零的区域 当工具经受井下操作条件时,在安装表面上存在至少一个井下操作条件的应变,以及在大约零应变区域上方连接到安装面的应变仪。 该方法还包括将工具定位在地下井眼中,并使用工具中的应变计获得测量数据。
    • 7. 发明授权
    • Drilling motor valve and method of using same
    • 钻孔电机阀及其使用方法
    • US09540877B2
    • 2017-01-10
    • US14110145
    • 2011-11-08
    • Curtis LanningDong PhungAaron SchenJacob Riddel
    • Curtis LanningDong PhungAaron SchenJacob Riddel
    • E21B4/02E21B6/02E21B4/14E21B21/10E21B34/06F01C1/107F04C2/107F04C13/00F04C14/26E21B4/06
    • E21B6/02E21B4/02E21B4/06E21B4/14E21B7/24E21B21/103E21B34/06F01C1/107F04C2/1073F04C13/008F04C14/26F04C2240/603F04C2270/12
    • A valve (11) for controlling the flow of a drilling fluid through a down-hole tool (10) positionable in a wellbore penetrating a subterranean formation. The down-hole tool has a housing with a drilling motor therein and a drill bit (1) at an end thereof. The drilling motor (9) has a housing with a rotor (206) rotationally movable in a rotor channel (204) as the drilling fluid passes through a rotor channel between the housing and the rotor. The rotor has a bypass channel therethrough for bypassing a portion of the drilling fluid therethrough. The valve includes a valve plate positionable upstream of the motor. The valve plate (200) has at least one flow passage (226) and at least one bypass passage (220) therethrough. The flow passage is in fluid communication with the rotor channel for passing the drilling fluid therethrough. The bypass passage is in selective fluid communication with the bypass channel when the rotor rotates about the housing and moves the bypass channel into alignment with at least a portion of the bypass passage for bypassing a portion of the drilling fluid therethrough whereby a hammering effect is generated on the bit.
    • 一种阀(11),用于控制钻井液通过位于穿透地下地层的井眼中的井下工具(10)的流动。 井下工具具有其中具有钻孔电动机的壳体和在其一端的钻头(1)。 当钻井液通过壳体和转子之间的转子通道时,钻井马达(9)具有壳体,该壳体具有可在转子通道(204)中旋转移动的转子(206)。 转子具有穿过其的旁路通道,用于绕过其中的钻井液的一部分。 该阀包括可位于马达上游的阀板。 阀板(200)具有至少一个流动通道(226)和至少一个通过其的旁通通道(220)。 流动通道与转子通道流体连通,以使钻井液通过其中。 当转子围绕壳体旋转时,旁路通道与旁路通道选择性地流体连通,并且使旁通通道与旁路通道的至少一部分对准,以绕过钻井流体的一部分,从而产生锤击效应 在位上
    • 8. 发明申请
    • DRILLING MOTOR VALVE AND METHOD OF USING SAME
    • 钻孔电机阀及其使用方法
    • US20140041943A1
    • 2014-02-13
    • US14110145
    • 2011-11-08
    • Curtis LanningDong PhungAaron SchenJacob Riddel
    • Curtis LanningDong PhungAaron SchenJacob Riddel
    • E21B6/02E21B4/02E21B4/06
    • E21B6/02E21B4/02E21B4/06E21B4/14E21B7/24E21B21/103E21B34/06F01C1/107F04C2/1073F04C13/008F04C14/26F04C2240/603F04C2270/12
    • A valve (11) for controlling the flow of a drilling fluid through a down-hole tool (10) positionable in a wellbore penetrating a subterranean formation. The down-hole tool has a housing with a drilling motor therein and a drill bit (1) at an end thereof. The drilling motor (9) has a housing with a rotor (206) rotationally movable in a rotor channel (204) as the drilling fluid passes through a rotor channel between the housing and the rotor. The rotor has a bypass channel therethrough for bypassing a portion of the drilling fluid therethrough. The valve includes a valve plate positionable upstream of the motor. The valve plate (200) has at least one flow passage (226) and at least one bypass passage (220) therethrough. The flow passage is in fluid communication with the rotor channel for passing the drilling fluid therethrough. The bypass passage is in selective fluid communication with the bypass channel when the rotor rotates about the housing and moves the bypass channel into alignment with at least a portion of the bypass passage for bypassing a portion of the drilling fluid therethrough whereby a hammering effect is generated on the bit.
    • 一种阀(11),用于控制钻井液通过位于穿透地下地层的井眼中的井下工具(10)的流动。 井下工具具有其中具有钻孔电动机的壳体和在其一端的钻头(1)。 当钻井液通过壳体和转子之间的转子通道时,钻井马达(9)具有壳体,该壳体具有可在转子通道(204)中旋转移动的转子(206)。 转子具有穿过其的旁路通道,用于绕过其中的钻井液的一部分。 该阀包括可位于马达上游的阀板。 阀板(200)具有至少一个流动通道(226)和至少一个通过其的旁通通道(220)。 流动通道与转子通道流体连通,以使钻井液通过其中。 当转子围绕壳体旋转时,旁路通道与旁路通道选择性地流体连通,并且使旁通通道与旁路通道的至少一部分对准,以绕过钻井流体的一部分,从而产生锤击效应 在位上