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首页> 外文期刊>Journal of Geography and Geology >Advances in Elemental Spectroscopy Logging: A Cased Hole Application Offshore West Africa
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Advances in Elemental Spectroscopy Logging: A Cased Hole Application Offshore West Africa

机译:元素光谱测井的新进展:西非近海的套管井应用

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摘要

Rising costs for exploration and developments and more stringent need to secure any additional drop of oil have put operators’ margins under increasing pressure. Coupled with the recent oil price decline, this call for efficiency and diligence to be the main drivers for any formation evaluation and planning for development and production. The reservoirs in Western offshore Africa are so diverse in the settings that two reservoirs hardly show any correlation. The complexity associated with the Rifting of African plate from South American plate has introduced significant geological challenges, adding to even bigger challenges in Petrophysical analysis. The mineralogy is complex; clay characterization is often unsolved. The formation waters are fresh with variable salinity and there is occurrence of thin shale laminations and grain size variations contributing to low resistivity low contrast pay generation. Advanced and fit-to-purpose logging technologies and computational methods are needed for rock quality and potential. Moreover, in some cases the accessibility of the target reservoir is difficult and risky, so that formation evaluation must be performed behind casing.The high definition spectroscopy tool is the latest development in wireline spectroscopy measurements. Its technological advances revolutionize the neutron-induced gamma ray methodology to support robust lithology and saturation interpretation in formations with complex mineralogy and fluid content. The ability to determine both the matrix mineral composition and total organic carbon (TOC) are instrumental to the geoscientist, the petrophysicist, the reservoir engineer, and the completion engineer. In the region, the use of high definition spectroscopy measurement has been pioneered while pursuing better understanding of rock composition and more accurate reservoir models in complex lithology and fresh formation waters with low resistivity contrast. The results are beneficial at the various stages of a field development and provide critical input to the petrophysical reserves estimate.In the example described in this paper, the new technology has proven to be critical to evaluate a complex reservoir system independent of the water salinity and resistivity offshore Gulf of Guinea, even with logging behind casing. A comprehensive set of quality outputs is made available for accurate reservoir quality; the logs data processing is performed within the critical-hours after logging to enable informed decision making.
机译:勘探和开发成本的上涨以及对确保石油进一步下降的更严格需求,使运营商的利润率面临越来越大的压力。加上最近的石油价格下跌,这要求效率和勤奋是任何地层评估和开发与生产计划的主要驱动力。非洲西部近海的储层环境如此多样,以至于两个储层几乎没有任何关联。与非洲板块从南美板块起裂相关的复杂性带来了重大的地质挑战,在岩石物理分析中甚至带来了更大的挑战。矿物学很复杂。粘土的表征常常是无法解决的。地层水是新鲜的,具有不同的盐度,并且会出现薄页岩层合和粒度变化,从而导致低电阻率和低对比度产油量的产生。为了获得岩石的质量和潜力,需要先进且适合目的的测井技术和计算方法。而且,在某些情况下,目标储层的可及性困难且具有风险,因此必须在套管后进行地层评估。高清晰度光谱学工具是有线光谱学测量的最新发展。它的技术进步彻底改变了中子诱发的伽马射线方法,以支持具有复杂矿物学和流体含量的地层的稳固岩性和饱和度解释。确定基质矿物成分和总有机碳(TOC)的能力对于地球科学家,岩石物理学家,储层工程师和完井工程师至关重要。在该地区,高清晰度光谱测量的使用率先提出,同时寻求对岩石成分的更深入了解,以及在复杂岩性和低电阻率对比的新鲜地层水中更准确的储层模型。这些结果对油田开发的各个阶段都是有益的,并为岩石物理储量的估算提供了关键的输入。在本文所述的示例中,新技术已证明对于评估独立于水盐分和盐分的复杂储层系统至关重要。几内亚湾近海的电阻率,即使在套管后进行了测井。提供了一套全面的质量输出以确保储层质量准确;日志数据处理在日志记录后的关键小时内执行,以实现明智的决策。

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