Pre-drill pore pressure prediction using seismic interval velocity and wireline log: Case studies for some wells in Cuu Long and Song Hong basins

Van Hoang Nguyen, Q. Pham, M. Q. Nguyen, H. Doan
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Abstract

Pore pressure can be obtained from seismic interval velocity by the velocity to pore pressure transform technique. In this paper, the authors present the Eaton experimental method to calculate pore pressure for some wellbores in the Cuu Long and Song Hong basins, where complex processes of subsidence, burial, geological transformation, and geothermal activity took place, causing abnormal pressure zones.The obtained results show that the pore pressures calculated from the seismic interval velocity data are closely correlated with the values measured by well logging methods and the density of the drilling fluids. Therefore, using seismic interval velocities to calculate pore pressure values, identify and predict abnormal zones by the Eaton method can be effectively applied in frontier areas to improve safety, reduce risks while drilling.
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基于地震层速度和电缆测井的钻前孔隙压力预测——以贵州和宋红盆地部分井为例
通过速度-孔隙压力转换技术,可以从地震层速中得到孔隙压力。本文提出了用Eaton实验方法计算库龙盆地和宋红盆地部分井孔隙压力的方法,该盆地发生了沉降、埋藏、地质转化和地热活动等复杂过程,形成了异常压力带。结果表明,利用地震层速度资料计算的孔隙压力与测井方法测量值和钻井液密度密切相关。因此,利用地震层速计算孔隙压力值,利用Eaton方法识别和预测异常带,可以有效地应用于前沿地区,提高钻井安全性,降低钻井风险。
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