Basalt-flow imaging using a high-resolution directional borehole radar

C. Moulton, D. Wright, Raymond S. Hutton, David V. Smith, J. Abraham
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引用次数: 10

Abstract

A new high-resolution directional borehole radar-logging tool (DBOR tool) was used to log three wells at the Idaho National Engineering and Environmental Laboratory (INEEL). The radar system uses identical directional cavity-backed monopole transmitting and receiving antennas that can be mechanically rotated while the tool is stationary or moving slowly in a borehole. Faster reconnaissance logging with no antenna rotation was also done to find zones of interest. The microprocessor-controlled motor/encoder in the tool can rotate the antennas azimuthally, to a commanded angle, accurate to a within few degrees. The three logged wells in the unsaturated zone at the INEEL had been cored with good core recovery through most zones. After coring, PVC casing was installed in the wells. The unsaturated zone consists of layered basalt flows that are interbedded with thin layers of coarse-to-fine grained sediments. Several zones were found that show distinctive signatures consistent with fractures in the basalt. These zones may correspond to suspected preferential flow paths. The DBOR data were compared to core, and other borehole log information to help provide better understanding of hydraulic flow and transport in preferential flow paths in the unsaturated zone basalts at the INEEL.
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玄武岩流成像采用高分辨率定向钻孔雷达
爱达荷州国家工程与环境实验室(INEEL)使用一种新型高分辨率定向雷达测井工具(DBOR工具)对三口井进行了测井。雷达系统使用相同的定向腔背单极子发射和接收天线,当工具在井眼中静止或缓慢移动时,该天线可以机械旋转。在没有天线旋转的情况下,更快的侦察测井也可以找到感兴趣的区域。该工具中的微处理器控制的电机/编码器可以旋转天线的方位角,以指定的角度,精确到几度以内。INEEL非饱和带的3口测井井已经取心,大多数层段的取心采收率都很好。取心后,在井中安装PVC套管。不饱和带由层状玄武岩流组成,层状玄武岩流与薄层粗粒至细粒沉积物互层。发现几个带显示出与玄武岩裂缝相一致的独特特征。这些区域可能对应于可疑的优先流动路径。将dor数据与岩心和其他钻孔测井信息进行比较,以帮助更好地了解INEEL非饱和带玄武岩中优先流动路径的水力流动和输送。
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