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Quantifying Gas Saturation with Pulsed Neutron Logging—An Innovative Approach

机译:用脉冲中子测井量化气体饱和 - 一种创新方法

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In reservoir surveillance, gas saturation is routinely monitored both in gas reservoirs for reservoir performance and in saturated oil reservoirs to prevent gas coning or to optimize infill drilling well placement. This paper presents a new pulsed neutron technology and method that enable the quantitative monitoring of the gas saturation variations to address these reservoir management issues. One of the key features of the newly designed pulsed neutron tool is the new type of Lanthanum Bromide (LaBr3) detectors. The extra-long spacing of the far detectors provides a larger volume of investigation that is more representative of the actual reservoir condition. The quantitative aspect of the measurement is achieved by using the ratios of the detector counts, so that the rock matrix effects are diminished, as opposed to the traditional sigma measurement, which can be influenced significantly by the rock matrix properties. This new tool and data interpretation methodology have been tested in both clastic and carbonate reservoirs with encouraging results. This paper presents an overview of the technology and some field application examples.
机译:在储存器监测中,气体饱和度经常在储层性能和饱和油藏中的气体储层中监测,以防止气体束缚或优化填充钻井井放置。本文提出了一种新的脉冲中子技术和方法,可以定量监测气体饱和度变化,以解决这些水库管理问题。新设计的脉冲中子工具的关键特征之一是新型镧溴化镧(Labr3)探测器。远距离探测器的超长间距提供更大的调查,这些调查更具代表性的实际储层条件。通过使用探测器计数的比率来实现测量的定量方面,从而与传统的SIGMA测量相反,岩体基质效应降低,这可以通过岩石基质特性显着影响。这种新的工具和数据解释方法已经在克拉特和碳酸盐储层中进行了令人鼓舞的结果。本文概述了该技术和某些现场应用示例。

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