首页> 外文会议>Abu Dhabi International Petroleum Exhibition Conference >Correlation Between Drilling Parameters and Lithology - The Hidden Geological Information of Drilling Data
【24h】

Correlation Between Drilling Parameters and Lithology - The Hidden Geological Information of Drilling Data

机译:钻探参数与岩性的相关性 - 钻探数据的隐藏地质信息

获取原文

摘要

Drilling process is fundamentally controlled and influenced by the properties of the penetrated formation. The focus of various studies is directed mainly on the optimal design of drill bit and drilling operations related to the (expected) geological situation of a safe drilling process. Out of interest the question "Is it possible to extract any lithologic information from drilling data?" also arises. The drilling process at the bit represents a complicated rock mechanical process. The drill bit acts as a rotating cutter, controlled mainly by weight on bit (WOB), bit size, number of revolutions per time (RPM), which controls speed of the cutting process. We define a "cutting force Fc" as a combination of these parameters and investigate the relationship between Fc and rate of penetration (ROP). For the correlation with lithology of penetrated formations, two methods are applied on test wells: - crossplots Fc versus ROP with discrimination for dominant lithology. - histograms of the ratio of two variables for dominant lithology. Drilling data from two basins are analyzed (in both cases wells are nearly vertical): - Vienna Basin: Dominant lithologies are sandstones (varying degree of cementation), shale/ marls, limestones, and dolomites. - Williston Basin: Dominant lithologies in the analysed section are sandstone shale, dolomitic limestone, and limestone with anhydrite. Data points from the rocks with similar lithology in the crossplot are situated in a cloud - different rocks show different cloud position. Particularly between clastic (sand, silt, shale) and carbonate (limestone, dolomite) rocks, a clear separation is visible. The implementation of lines for a constant ratio Fc/ROP in the crossplot separate the different lithologies. Therefore, the statistical distribution of this ratio S = Fc/ROP for the dominant lithologies was analyzed by histograms. For the two test wells, histograms separate the different lithologies and confirm the information content. The drilling process is controlled by rock type; the analyse of drill-process data can be used for a lithological discrimination and especially for detecting changing lithology (boundaries) during drilling process. For two test wells, the discrimination could be demonstrated by the crossplot and histogram technique. The exact position of discriminator magnitudes (center of data clouds in the crossplots, peaks in the histograms) is specific for the considered field and may be controlled by more drilling parameters.
机译:钻井过程基本上控制和影响了穿透性形成的性质。各种研究的重点主要是钻头和钻井作业的最佳设计,与安全钻井过程的(预期)地质情况有关。出于兴趣的问题“是可以从钻井数据中提取任何岩石信息?”也出现了。钻头处理过程代表了复杂的岩石机械过程。钻头用作旋转刀具,主要由位(WOB),比特尺寸,每时间转数(RPM)上的重量控制,控制切割过程的速度。我们将“切割力Fc”定义为这些参数的组合,并研究FC与渗透率(ROP)之间的关系。对于与穿透形成的岩性相关性的相关性,在测试井上应用了两种方法: - 交叉点FC与ROP具有辨别岩性的辨别。 - 用于主导岩性的两个变量的比例的直方图。分析来自两个盆地的钻井数据(在两种情况下都是几乎垂直): - 维也纳盆地:主导岩性是砂岩(不同程度的胶结程度),页岩/马尔尔,石灰岩和白云岩。 - 威利斯顿盆地:分析部分中的主导岩性是砂岩页岩,白云岩石灰石和石灰石。来自交叉图中具有相似岩性的岩石的数据点位于云中 - 不同的岩石显示不同的云位置。特别是在碎片(沙,淤泥,页岩)和碳酸盐(石灰石,白云石)岩石之间,可见清晰的分离。交叉图中的恒定比Fc / ROP的线路的实施分离不同的岩性。因此,通过直方图分析了该比率S = Fc / ROP的统计分布。对于两个测试井,直方图分离不同的岩性并确认信息内容。钻井过程由岩型控制;钻井过程数据的分析可用于岩性鉴别,特别是在钻井过程中检测变化的岩性(边界)。对于两个测试井,可以通过交联和直方图技术证明歧视。鉴别器幅度的确切位置(交叉点中的数据云中心,直方图中的峰值)对于所考虑的字段特定,并且可以通过更多的钻井参数来控制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号