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A New Array System for Multiphysics (MT, LOTEM, and Microseismics) with Focus on Reservoir Monitoring

机译:具有专注于水库监测的多体学(MT,LETEM和微震学)的新阵列系统

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Over the last 6 years we developed an array system for electromagnetic acquisition (magnetotelluric & long offset transient electromagnetics [LOTEM]) that includes microseismic acquisition. While predominantly used for magnetotellurics, we focus on the autonomous operation as reservoir monitoring system including a shallow borehole receiver and 100/150 KVA transmitter. A marine extension is also under development. For Enhanced Oil recovery (EOR), in addition to reservoir flood front movements, reservoir seal integrity has become an issue [1]. Seal integrity is best addressed with microseismics while the water flood front is best addressed with electromagnetics. Since the flooded reservoir is conductive and the hydrocarbon saturated part is resistive, you need both magnetic and electric fields. The fluid imaging is addressed using electromagnetics. To overcome the volume-focus inherent to electromagnetics a new methodology to focus the sensitivity under the receiver is proposed. Field data and 3D modeling confirm this could increase the efficiency of LOTEM to reservoir monitoring.
机译:在过去的6年中,我们开发了一种用于电磁采集的阵列系统(Magnetelluric&Long occest瞬态电磁算法[LETEM]),其包括微震习得。主要用于MagnetOcturics,我们专注于作为储层监测系统的自主操作,包括浅层钻孔接收器和100/150 kVA发射器。海洋延期也在开发中。对于增强的溢油(EOR),除水库洪水前部运动外,水库密封诚信已成为一个问题[1]。密封完整性最好用微震机器解决,而水洪水前线最适合电磁学。由于淹水储层是导电的,并且碳氢化合物饱和部分是电阻的,因此需要磁场和电场。使用电磁器来解决流体成像。为了克服电磁自固有的体积焦点,提出了一种新的方法,以聚焦接收器下的灵敏度。现场数据和3D建模证实这可以提高LINEM到储层监控的效率。

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