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Successful Implementation of Real-Time Look-Ahead Resistivity Measurements in the North Sea

机译:成功实施北海的实时展望电阻率测量

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In this case study, we present the use of a new look-ahead resistivity technology to solve a challenge on the Valemon field where the top of the reservoir could not be mapped from surface seismic. The objective was to extend the overburden section deep enough to secure sufficient formation strength at the casing shoe while eliminating the risk of accidental drilling into the reservoir below. The application of the new technology secured standard casing design, and eliminated the extra time and costs associated with implementation of the managed pressure drilling technique. The target was to extend the 12 ?-in overburden section 10-15m TVD into the Viking Group, as this formation generally provides sufficient formation strength for the 9 7/8- in casing shoe to enable conventional drilling of the following reservoir section. As there was a risk that the Viking Group could be absent or very thin in this area of the Valemon field, the look ahead measurement was used to monitor the formations ahead of the bit while drilling. Detection of higher resistivity ahead of the bit indicating an approaching reservoir would enable stopping prior to drilling into it. No reservoir response was detected ahead of the bit, and this enabled a safe extension of the 12 ?-in section into the Viking Group as per the objective.
机译:在这种情况下,我们展示了使用新的超前的电阻率技术来解决储存器顶部无法从表面地震映射的瓦尔梅尔群体上的挑战。目的是将覆盖层延伸到足够深处,以确保套管鞋中足够的形成强度,同时消除了速度钻入下面的储层的风险。新技术的应用安全标准套管设计,并消除了与管理压力钻井技术实现相关的额外时间和成本。目标是将12?-IN覆盖层延伸到维京组中的12-15M覆盖层,因为这种形成通常为9 7/8-在壳体鞋中提供足够的形成强度,以便能够通过常规钻探下列储存部分。由于Viking Group在Valemon字段的此区域可能缺席或非常薄的风险,因此使用前瞻性测量以在钻孔时监测前方的形成。检测前方的较高电阻率,指示接近储存器将在钻入它之前停止。在该比特之前未检测到储库响应,并且根据目标,这使得12?-IN部分的安全延伸进入Viking组。

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