Estimation of Pore Pressure and Fracture Gradient in Volve Field, Norwegian North Sea

S. Sen, S. Ganguli
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引用次数: 33

Abstract

Maintaining a stable borehole and optimizing drilling are still considered to be vital practice for the success of any hydrocarbon field development and planning. The present study deliberates a case study on the estimation of pore pressure and fracture gradient for the recently decommissioned Volve oil field at the North Sea. High resolution geophysical logs drilled through the reservoir formation of the studied field have been used to estimate the overburden, pore pressure, and fracture pressure. The well-known Eaton’s method and Matthews-Kelly’s tools were used for the estimation of pore pressure and fracture gradient, respectively. Estimated outputs were calibrated and validated with the available direct downhole measurements (formation pressure measurements, LOT/FIT). Further, shear failure gradient has been calculated using Mohr-Coulomb rock failure criterion to understand the wellbore stability issues in the studied field. Largely, the pore pressure in the reservoir formation is hydrostatic in nature, except the lower Cretaceous to upper Jurassic shales, which were found to be associated with mild overpressure regimes. This study is an attempt to assess the in-situ stress system of the Volve field if CO2 is injected for geological storage in near future.
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挪威北海Volve油田孔隙压力及裂缝梯度估算
保持稳定的井眼和优化钻井仍然被认为是任何油气田开发和规划成功的重要实践。本研究以北海新近退役的Volve油田为例,对孔隙压力和裂缝梯度进行了估算。在研究油田的储层中钻取的高分辨率地球物理测井被用来估计覆盖层、孔隙压力和裂缝压力。众所周知的Eaton方法和Matthews-Kelly工具分别用于估算孔隙压力和裂缝梯度。利用现有的直接井下测量(地层压力测量、LOT/FIT)对估计输出进行了校准和验证。此外,利用Mohr-Coulomb岩石破坏准则计算剪切破坏梯度,以了解所研究油田的井筒稳定性问题。除下白垩统至上侏罗统页岩与轻度超压有关外,储层孔隙压力主要为流体静力压力。本研究是对Volve油田在近期注入二氧化碳进行地质封存时的地应力系统进行评估的尝试。
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