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bohrlochmessung of nmr characteristics of erdformationen and interpretation of

机译:errformationn的核磁共振特征的传承和解释

摘要

Borehole NMR logging apparatus and methods, and methods for the interpretation thereof. A logging tool is provided which produces a strong, static and homogeneous magnetic field B0 in a Volume of an adjacent formation on one side of the tool to measure nuclear magnetic resonance characteristics thereof. In the preferred embodiment, the tool has an RF antenna mounted on the outside of the metal body of the tool, directing focussed oscillating magnetic fields B1 at said Volume to polarize or tip the magnetic moments of hydrogen nuclei of fluids within rock pores. The same antenna can be used to receive signals of proton precession in the Volume of interest immediately after transmission of the RF polarizing field B1. Extremely rapid damping of the antenna between the transmitting and receiving modes of operation is accomplished by a Q-switch disclosed herein. The invention provides for the direct measurement of NMR decay having transverse relaxation time T2 behavior, and further provides for the fast repetition of pulsed measurements from within a borehole. An additional magnet array may be mounted offset from the first magnet configuration to prepolarize a formation before it is measured in order to pre-align a larger number of protons than the single magnet configuration could do by itself. Additional features of the invention are disclosed which increase the Signal/Noise ratio of the measured data, and improve the quality and quantity of borehole NMR measurements, per unit of time spent. Disclosed interpretation methods determine fluid flow permeability and longitudinal relaxation time T1 -type parameters by directly comparing the measured decay signals (such as T2 or T2* type decay) to a representation which responds to both the decay time tdec and the imposed polarization period prior to such decay, tpol. The parameters of amplitude and T1 are determined and combined with certain preferred methods to generate robust values of formation characteristics such as fluid flow permeability. Other related methods are disclosed. IMAGE
机译:钻孔NMR测井仪和方法,以及解释方法。提供一种测井仪,该测井仪在该工具的一侧上的相邻地层的体积中产生强的,静态的且均匀的磁场B0,以测量其核磁共振特性。在优选实施例中,该工具具有安装在该工具的金属主体的外侧上的RF天线,该RF天线在该体积处引导聚焦的振荡磁场B1以使岩石孔内的流体的氢核的磁矩极化或倾斜。在发射RF极化场B1之后,可以使用同一天线立即接收感兴趣体积中的质子进动信号。通过本文公开的Q开关来实现天线在操作的发射和接收模式之间的极快的阻尼。本发明提供了具有横向弛豫时间T 2行为的NMR衰变的直接测量,并且还提供了从钻孔内快速重复脉冲测量的方法。可以相对于第一磁体配置偏移安装另外的磁体阵列,以在对地层进行测量之前对其进行预极化,以便与单个磁体配置本身相比可以使更多的质子预对准。公开了本发明的附加特征,其增加了所花费的数据的信噪比,并改善了所花费的每单位时间的井眼NMR测量的质量和数量。公开的解释方法通过直接将测得的衰减信号(例如T2或T2 *类型的衰减)与响应衰减时间tdec和施加的极化周期的表示进行比较,从而确定流体的渗透率和纵向弛豫时间T1类型的参数。这样的衰变,tpol。确定幅度和T1的参数,并与某些首选方法结合使用,以生成可靠的构造特征值,例如流体渗透率。公开了其他相关方法。 <图像>

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