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Method and apparatus for evaluating an earth formation using nuclear magnetic resonance techiques

机译:使用核磁共振技术评估地层的方法和设备

摘要

This invention makes an NMR measurement at extended depths into the formation using the earth's magnet field to generate an NMR measurement and using a magnet field from a permanent magnetic to suppress the NMR signal in the borehole and shallow formation. The magnetic field from a permanent magnet increases the Larmor frequency in the borehole and the shallow earth formation. An oscillator applies an RF magnetic field to the formation for a period of time in order to align nuclei spins approximately perpendicular to the earth's magnetic field. At the end of this period, the field is turned off rapidly. Since the spins are unable to follow this sudden change, they are left aligned perpendicular to the earth's field. These nuclei precess about the earth's field at the approximate Larmor frequency of the earth's field. The RF receiver detects the RF signals in the approximate frequency range of the Larmor frequency. Borehole and shallow formation protons precessing at the high frequencies resulting from the permanent magnet are not detected by the receiver. Therefore, the receiver only detects signals from greater depths in the earth's formation.
机译:本发明利用地磁场产生NMR测量值,并利用来自永磁体的磁场抑制进入井筒和浅层地层中的NMR信号,从而对进入地层的深度进行NMR测量。来自永久磁铁的磁场会增加钻孔和浅层地层中的拉莫尔频率。振荡器将RF磁场施加到地层一段时间,以使原子核自旋大致垂直于地球磁场。在此期间结束时,该字段将迅速关闭。由于自旋无法跟随这种突然的变化,因此它们保持垂直于地球场对齐。这些原子核绕地球场进动,其拉莫尔频率约为地球场的拉莫尔频率。射频接收器在拉莫尔频率的近似频率范围内检测射频信号。接收器未检测到永久磁铁在高频处进动的钻孔和浅层质子。因此,接收器只能检测到地球地层较大深度的信号。

著录项

  • 公开/公告号US6133734A

    专利类型

  • 公开/公告日2000-10-17

    原文格式PDF

  • 申请/专利权人 SCHLUMBERGER TECHNOLOGY CORPORATION;

    申请/专利号US19970000745

  • 发明设计人 DONALD C. MCKEON;

    申请日1997-12-30

  • 分类号G01V3/00;

  • 国家 US

  • 入库时间 2022-08-22 01:35:57

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