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Predicting Drilling Target Ahead of Bit Using Vsp Lookahead Technique that Help Mitigate Drilling Risk in Over Pressure Zone, a Case Example from South China Sea

机译:使用VSP看法技术提前预测钻井目标,帮助减轻在压力区的钻井风险,南海的情况示例

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Yinggehai basin is located in South China Sea; it is characterized with high geothermal gradient and high overpressure. Numerous pore pressure predictions with VSP look-ahead have been conducted in this area. As pore pressure prediction with this approach is very sensitive to the inverted VSP velocity, based on our post drill analysis of pore pressure prediction results with VSP look-ahead data, it has been demonstrated that undercompaction is not the only overpressure mechanism in this study area, unloading may also have contributed to the overpressure. Both Bowers and Eaton models can be applied to predict pore pressure ahead-of-bit for the overpressure mechanisms in the area. An error of 5% in VSP-inverted velocity could generate the error in predicted pore pressure approximately 0.16SG based on Bowers model. Therefore, with experiences gained from VSP velocity inversion part, determining the top depth of the high pressure target with the inverted VSP velocity curve is proposed in this study block to allow for an optimal setting depth of the casing shoe. A case study with this approach is presented in this paper.
机译:Yinggehai Basin位于南海;它的特征在于高地热梯度和高超压。在这一领域进行了许多具有VSP的孔隙压力预测。由于这种方法的孔隙压力预测对倒VSP速度非常敏感,基于我们对VSP远程数据的孔隙压力预测结果的孔隙压力预测结果的钻探分析,已经证明了该研究领域的唯一过压机制,卸载也可能导致过压。鲍鱼和伊顿模型都可以应用于预测该地区的过压机制的孔隙压力。 VSP反相速度中的5%的误差可能会在预测孔隙压力下产生误差,基于鲍德模型约为0.16sg。因此,利用从VSP速度反转部分获得的经验,在该研究块中提出了利用倒VSP速度曲线确定高压目标的顶部深度,以允许壳体鞋的最佳设定深度。本文介绍了采用这种方法的案例研究。

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