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首页> 外文期刊>Journal of Petroleum Science & Engineering >Performance, simulation and field application modeling of rollercone bits
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Performance, simulation and field application modeling of rollercone bits

机译:牙轮钻头的性能,仿真和现场应用建模

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Drilling simulation technology has been used extensively to optimize drilling operations so as to minimize the associated costs and risks. Optimum bit types and designs with corresponding drilling parameters can be recommended utilizing a simulator with rate of penetration (ROP) models. There have been several attempts to develop ROP models that can deliver the most reliable outputs, required for the pre-planning and post analysis applications, using various sets of drilling parameters. However, due to the existing modeling complexities, these attempts have not been successful. In this study, a new ROP model is developed for the rollercone bits, which properly integrates the effect of main drilling parameters as well as cutting structure of the bit. The model is mathematically derived based on the mechanism of single cutter-rock interaction, and calibrated utilizing sets of full scale laboratory data. Also, the bit wear effect for simulating accurate rock strength and ROP values is included in the analysis using a previously published model. One of the most important features of the newly introduced ROP model is that it can be easily inverted to generate accurate rock strength values using offset and/or real-time field data This unique characteristic of the ROP model makes it a valuable candidate for drilling simulation studies to optimize drilling operations in the most cost effective manner. The verification of the introduced ROP model is performed through series of simulation analysis and comparing the generated rock strength logs to the outputs of a commercially available drilling simulator. The comparison of the results obtained from the simulator and the ROP model as well as field data has been quite encouraging which signifies the application of the developed model in determining the best case scenario for planning and/or drilling of future wells with lowest possible expenditures. (C) 2015 Elsevier BM. All rights reserved.
机译:钻井模拟技术已被广泛用于优化钻井作业,以最大程度地降低相关的成本和风险。可以使用具有钻速(ROP)模型的模拟器来建议最佳钻头类型和设计以及相应的钻孔参数。已经进行了多种尝试来开发ROP模型,这些模型可以使用各种钻井参数集来提供预计划和后分析应用所需的最可靠的输出。但是,由于现有的建模复杂性,这些尝试并未成功。在这项研究中,为牙轮钻头开发了一种新的ROP模型,该模型适当地整合了主要钻削参数以及钻头的切削结构的影响。该模型是基于单个刀具-岩石相互作用的机制从数学上推导的,并使用一组完整的实验室数据进行了校准。同样,使用先前发布的模型在分析中包括用于模拟准确的岩石强度和ROP值的钻头磨损效果。新引入的ROP模型的最重要特征之一是,可以使用偏移和/或实时现场数据轻松地将其反转以生成准确的岩石强度值。ROP模型的独特特性使其成为进行钻井模拟的有价值的候选者研究以最经济有效的方式优化钻井作业。通过一系列模拟分析并将生成的岩石强度测井结果与商用钻井模拟器的输出进行比较,可以对引入的ROP模型进行验证。从模拟器和ROP模型以及现场数据中获得的结果进行了比较令人鼓舞,这表明已开发的模型在确定最佳情况下以最小的支出计划和/或钻探未来油井的应用。 (C)2015 Elsevier BM。版权所有。

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