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Introduction of a new through-tubing multifunction pulsed neutron instrument

机译:推出新型通管多功能脉冲中子仪

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We are introducing a new 1-11/16-inch multi-function pulsed neutron instrument. The Reservoir Performance Monitor (RPM) has operating modes allowing pulsed neutron decay, pulsed neutron spectrometry, pulsed neutron holdup, neutron activation water flow, and radioisotope measurements. The tool is combinable with fluid density, spinner flowmeter, or more advanced production logging instruments. The new instrument includes three gamma-ray detectors arrayed above a new neutron generator that can be pulsed at different frequencies and modes for different types of measurements. The system employs short tool sections for ease in shipping and handling. In the pulsed neutron capture mode, the tool pulses at 1 kHz, and records a complete time spectrum for each detector. An energy spectrum is also ecorded for maintaining energy discrimination levels. Time spectra from short-spaced and long-spaced detectors can be processed individually to provide traditional thermal neutron capture cross section information, or the two spectra can be used together to automatically correct for borehole and diffusion effects and produce results that are very close to intrinsic formation values. In the pulsed neutron spectrometry mode, the instrument pulses at 10 kHz, and records full inelastic and capture gamma ray energy spectra from each detector. These data are processed to determine critical elemental ratios including carbon/oxygen and calcium/silicon from the inelastic spectra and silicon/calcium from the capture spectra. The pulsed neutron holdup imager mode yields both energy spectra and time decay spectra from each detector simultaneously. Measureemtns can be used to determine holdups of gas, oil, and water, and when combined with other production logs can provide a comprehensive production profile picture, even in deviated or horizontal wells The neutron activation mode provides water-flow measurements using one of several data acquisition methods. Stationary measurements are made in eigher of two modes, and measurements at different logging speeds can be used to segregate different flow rates in either an annulus or in an adjacent tubing string. With the neutron generator turned off, the RPM can also be used to detect the distribution of materials, tagged with radioactive tracers, that are injected into the well during well treatments. In this manner, the effectiveness of operations such as hydraulic fracturing or gravel pack placement can be evaluated.
机译:我们将推出一种新型的1-11 / 16英寸多功能脉冲中子仪。油藏性能监控器(RPM)具有允许脉冲中子衰变,脉冲中子光谱,脉冲中子滞留,中子活化水流量和放射性同位素测量的工作模式。该工具可与流体密度,旋转流量计或更先进的生产测井仪器结合使用。新仪器包括三个排列在新中子发生器上方的伽马射线探测器,可以以不同的频率和模式进行脉冲以进行不同类型的测量。该系统使用较短的工具部分,以便于运输和处理。在脉冲中子捕获模式下,工具以1 kHz的频率产生脉冲,并记录每个探测器的完整时间谱。还保留了能谱以保持能量辨别水平。短距离和长距离探测器的时间谱可以单独处理,以提供传统的热中子俘获截面信息,或者可以将这两个谱一起使用,以自动校正井眼和扩散效应,并产生非常接近于本征的结果编队值。在脉冲中子光谱模式下,仪器以10 kHz的频率进行脉动,并记录每个探测器的完整非弹性和捕获伽马射线能谱。处理这些数据以确定关键元素比率,包括非弹性光谱中的碳/氧和钙/硅,以及捕获光谱中的硅/钙。脉冲中子滞留成像器模式同时从每个探测器产生能量谱和时间衰减谱。测量值可用于确定天然气,石油和水的含量,并且与其他生产日志结合使用时,即使在斜井或水平井中,也可以提供全面的生产概况图。中子活化模式可使用多个数据之一来进行水流测量采集方法。静态测量是通过两种模式的权重进行的,并且可以使用以不同测井速度进行的测量来隔离环空或相邻油管柱中的不同流速。在中子发生器关闭的情况下,RPM还可以用于检测在放射处理过程中注入到井中的,带有放射性示踪剂标记的材料的分布。以这种方式,可以评估诸如水力压裂或砾石充填放置之类的操作的有效性。

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