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B21 CO2 Field Laboratory at Svelvik Ridge (Norway). Electrical Resistivity and Sonic Monitoring during CO2 Shallow Injection

机译:B21 CO2现场实验室在Svelvik Ridge(挪威)。二氧化碳浅注射期间电阻率和声音监测

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The C02FieldLab shallow injection experiment is a mutual effort from several research groups and organizations (SINTEF, NGI, BRGM, BGS, CNRS, imaGeau and Schlumberger). The objective is to create a downhole leakage of C02 in order to determine sensitivity of C02 monitoring systems with respect to C02 distribution and leakage detection. The C02 displacement in the subsurface and at the surface was monitored with an exhaustive set of techniques. For this, the field Laboratory for monitoring C02 migration and leakage was established in glacial deposit that forms Svelvik ridge, 50 km south of Oslo. The shallow injection experiment was conducted in fall 2011 with a monitoring plan designed to spatially and temporally monitor the expected plume development. The monitoring equipment was distributed around the 20m deep injection point of an inclined well. An integrated set of surface and downhole strategies was deployed across a 64m2 square monitoring area. The data recorded by CNRS are presented here. The CNRS techniques included: permanent downhole electrical resistivity observatory, time-lapse downhole induction and sonic logging. The C02 plume was successfully detected and characterized by these methods even if the trajectory of migrating CO2 deviated from the monitoring predictions.
机译:C02FieldLab浅注射实验是来自几个研究小组和组织的相互努力(Sintef,Ngi,BRGM,BGS,CNR,Imageau和Schlumberger)。目的是创造C02的井下泄漏,以确定C02监测系统相对于C02分布和泄漏检测的灵敏度。地下表面和表面的CO 2位移用穷举的技术集监测。为此,在冰川矿床中建立了用于监测CO 2迁移和泄漏的现场实验室,该山水矿床在奥斯陆以南50公里处形成Svelvik Ridge。浅注射实验是在2011年秋季进行的,监测计划旨在在空间上旨在监测预期的羽流发育。监控设备围绕倾斜井的20米深注射点分布。在64平方米的平方监测区域部署了一组集成的表面和井下策略。这里介绍了CNR记录的数据。 CNRS技术包括:永久井下电阻率观测站,延时井下感应和声波测井。即使迁移从监测预测偏离的迁移的轨迹,也可以通过这些方法成功检测和表征CO 2羽流。

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