Application of RPM Logging for Reservoir Dynamic Monitoring at M Oilfield of Offshore

Zhonghao Wang , Hao Wang , Jingong Li , Ji Tian , Dahai Ju
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引用次数: 2

Abstract

With the gradual depth exploit of residual oil in offshore oilfield, RPM logging are using widely in reservoirs dynamic monitoring, the process of logging RPM affected by lithology, porosity, borehole fluid and other factors, so we must do some correction for it. But M oilfield has a special well structure of gravel pack, therefore, some correction made in domestic are not suitable for application in the offshore reservoirs of gravel pack, Thus author design parallelogram method to obtain water holdup and water saturation, by comparing the calculated results with the PLT data, it is found that the error in a controllable range, and also design volumetric model to corrected formation capture cross section, by using the corrected capture cross section establish model with lithology; electrical property, then compares it with the model which corrected before, it improves the model accuracy a lot. By comparing the water saturation which calculated by corrected capture cross section with and the water saturation which obtained by the PLT data interpretation, It is found that the accuracy increased more than 6%,it provides a new method to instruct the RPM data interpretation.

RPM测井在海上M油田储层动态监测中的应用
随着海上油田剩余油的逐渐深入开发,转速测井在储层动态监测中得到了广泛的应用,转速测井过程受岩性、孔隙度、井内流体等因素的影响,必须对其进行校正。但M油田由于砾石充填井结构特殊,国内所做的一些校正并不适用于海上砾石充填油藏,因此设计了平行四边形法来求得含水率和含水饱和度,通过与PLT数据的对比,发现误差在可控范围内,并设计了体积模型来校正地层捕获截面。利用校正后的捕获截面建立具有岩性的模型;将其与修正后的模型进行比较,大大提高了模型的精度。将校正捕获截面计算的含水饱和度与PLT资料解译所得含水饱和度进行比较,发现精度提高6%以上,为RPM资料解译提供了一种新的指导方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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