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    • 50. 发明授权
    • Fracture imaging methods employing skeletonization of seismic emission tomography data
    • 使用地震发射断层扫描数据骨架化的骨折成像方法
    • US09557433B2
    • 2017-01-31
    • US13070442
    • 2011-03-23
    • Peter Anderson GeiserJan Meredith Vermilye
    • Peter Anderson GeiserJan Meredith Vermilye
    • G01V1/06G01V1/42G01V1/28
    • G01V1/42G01V1/288
    • Disclosed herein are various embodiments of methods and systems for providing a graphical skeletonization representation of fractures and faults in a subsurface of the earth. According to some embodiments, as fracturing fluid is pumped into a target geologic formation through a well bore, and as the formation fractures or faults in response to the fracturing fluid being pumped under high pressure therein, seismic wavefronts are generated at points of fracture related to movement of a fluid pressure wave induced by fracturing or other fluids moving through the formation, or the extraction of fluids such as gas and/or oil from the formation, which are detected by surface and/or downhole sensors. Data corresponding to signals generated by the surface and/or downhole sensors are recorded and subsequently analyzed to determine in near real-time the locations of the fractures or faults using skeletonization data processing techniques and methods.
    • 本文公开了用于提供地球地下裂缝和断层的图形骨架化表示的方法和系统的各种实施例。 根据一些实施例,由于压裂流体通过井眼被泵送到目标地质构造中,并且随着压裂流体在高压下被泵送的地层破裂或断裂,在与断层相关的断裂点产生地震波前沿 由压裂或其他流体移动通过地层引起的流体压力波的运动,或由地层和/或井下传感器检测的从地层中提取诸如气体和/或油的流体。 记录与表面和/或井下传感器产生的信号相对应的数据,并随后进行分析,以使用骨架数据处理技术和方法近乎实时地确定裂缝或断层的位置。