Borehole radar interferometry revisited

Lanbo Liu, Chunguang Ma, J. Lane, P. Joesten
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Abstract

Single-hole, multi-offset borehole-radar reflection (SHMOR) is an effective technique for fracture detection. However, commercial radar system limitations hinder the acquisition of multi-offset reflection data in a single borehole. Transforming cross-hole transmission mode radar data to virtual single-hole, multi-offset reflection data using a wave interferometric virtual source (WIVS) approach has been proposed but not fully demonstrated. In this study, we compare WIVS-derived virtual single-hole, multi-offset reflection data to real SHMOR radar reflection profiles using cross-hole and single-hole radar data acquired in two boreholes located at the University of Connecticut (Storrs, CT USA). The field data results are similar to full-waveform numerical simulations developed for a two-borehole model. The reflection from the adjacent borehole is clearly imaged by both the real and WIVS-derived virtual reflection profiles. Reflector travel-time changes induced by deviation of the two boreholes from the vertical can also be observed on the real and virtual reflection profiles. The results of this study demonstrate the potential of the WIVS approach to improve bedrock fracture imaging for hydrogeological and petroleum reservoir development applications.
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井眼雷达干涉测量法重述
单孔、多井距井眼雷达反射(SHMOR)是一种有效的裂缝探测技术。然而,商用雷达系统的限制阻碍了在单个井眼中获取多偏移反射数据。利用波干涉虚拟源(WIVS)方法将跨井传输模式雷达数据转换为虚拟单井、多偏移反射数据,但尚未得到充分证明。在这项研究中,我们使用位于康涅狄格州大学(Storrs, CT USA)的两个井眼获取的井眼和单眼雷达数据,将wivs导出的虚拟单眼、多偏置反射数据与真实的SHMOR雷达反射剖面进行了比较。现场数据结果与两井模型的全波形数值模拟结果相似。邻近井眼的真实反射和wivs衍生的虚拟反射剖面都能清晰地成像。在真实和虚拟反射剖面上也可以观察到两个井眼偏离垂直方向引起的反射器走时变化。这项研究的结果证明了WIVS方法在改善基岩裂缝成像以用于水文地质和油藏开发方面的潜力。
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