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Lithological and Petrophysical Core-Log Interpretation in CO2SINK, the European CO2 Onshore Research Storage and Verification Project

机译:欧洲二氧化碳陆上研究储存与验证项目CO2SINK中岩性和岩石物理核心对策解释

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The storage of carbon dioxide (CO2) in saline aquifers is one of the most promising options for Europe to reduce emissions of greenhouse gases from power plants to the atmosphere and to mitigate global climate change. The CO2SINK project is a R&D project, mainly supported by the European commission, the German Federal Ministry of Education and Research, and the German Federal Ministry of Economics and Technology, targeted at developing an in situ laboratory for CO2 storage. Its aims are to advance the understanding of the processes involved in underground CO2 storage, evaluate applicable monitoring techniques, and provide operational experience, which all contribute to the development of harmonized regulatory frameworks and standards for CO2 geological storage. The preparatory phase of the project involved a baseline geological site exploration and the drilling in 2007 of one injection and two observation wells, as well as the acquisition of a geophysical baseline and geochemical monitoring, in Ketzin located near to Berlin, Germany. The target saline aquifer is the Triassic Stuttgart Formation situated at about 630-710 m (2070-2330 ft), that is made of siltstones and sandstones interbedded by mudstones. A comprehensive borehole logging program was performed consisting of routine well logging to which an enhanced logging program was added for one well that record nuclear magnetic resonance and borehole resistivity images predominantly to better characterize the storage formation. A core analysis program carried out on reservoir rock and caprock included measurements of helium porosity, nitrogen permeability and brine permeability. Carbon dioxide injection started in 2008 and will last for about 2 years. The paper focuses on the integrated approach of combining lithological and petrophysical data from both laboratory and well logging analysis predominantly for the reservoir/storage section of the Ketzin site. This method was successfully applied in two wells with extensive core data. In the third well, where few core data exist, the section was characterized successfully by analogy.
机译:盐水含水层中的二氧化碳(CO2)储存是欧洲最有希望的选择,将电力厂从电厂降低到大气中的温室气体排放,并减轻全球气候变化。 CO2SINK项目是一个研发项目,主要由欧洲委员会,德国联邦教育和研究部以及德国联邦经济和技术部,有针对性地进行二氧化碳储存的原地实验室。其目标是推进地下二氧化碳储存,评估适用的监测技术的过程的理解,并提供业务经验,这一切都有助于开发协调的监管框架和二氧化碳地质储存标准。该项目的筹备阶段涉及2007年的基线地质现场勘探和钻探的一次注射和两台观察井,以及在德国柏林近克里汀的地球物理基线和地球化学监测的收购。目标盐水含水层是位于大约630-710米(2070-2330英尺)的三叠纪斯图加特形成,该形成由泥石网嵌入的硅胶和砂岩制成。通过常规测井组成的综合钻孔记录程序,其中为一个井添加了增强的测井程序,其井中录制核磁共振和钻孔电阻率图像以更好地表征存储形成。在储层岩石和脚轮上进行的核心分析程序包括氦孔隙率,氮气渗透率和盐水渗透性的测量。二氧化碳注射液于2008年开始,将持续约2年。本文重点介绍了从实验室和井测井分析中组合岩性和岩石物理数据的综合方法,主要用于Ketzin现场的储层/储存部分。该方法以广泛的核心数据成功应用于两个井中。在第三孔中,存在很少存在核心数据的情况下,该部分通过类比成功表征。

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