Prospects of Electric Drilling for the Development of Well Construction Technologies

O. M. Perelman, A. S. Fadeikin, M. Gelfgat, Aleksandr Sergeevich Geraskin, Ziyadhan Abdusalamovich Emirov
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Abstract

The purpose of this work is to analyze the prospects for efficiency increasing of high-tech wells construction using a drilling complex based on downhole permanent magnet motor. For the first time, the article provides information about new drilling complex. Considered technology could provide a breakthrough in drilling high-tech wells. This technology combines advantages of drill string with electric wire and an ideal downhole motor with a wide rotational speed range, regardless of the type and flow rate of circulating agent. The article provides a brief comparative analysis of electrodrilling implementation results "generation 70s", the composition of new electric drilling complex and its difference from the previous one are considered in details. Complex meets the requirements of high-tech wells construction and allows automating drilling process using ultra-high-speed bi-directional data transmission channel and quickly assessing the parameters of drilling regime and direction of drilling, characteristics of rocks, pressure and temperature distribution along the wellbore. Permanent magnet motor ensures optimum drilling parameters for rock destruction at the bottomhole, regardless of the well profile and the type of circulating agent, including managed pressured drilling. Effectiveness of accidents prevention and mitigation is increased. Authors propose to discuss the prospects of electrodrilling technology using downhole permanent magnet motor, which is currently at TRL-3 level, to assess and specify adopted concept of electrical drilling complex development.
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电钻对建井技术发展的展望
本文的目的是分析利用井下永磁电机钻井综合体提高高科技造井效率的前景。本文首次提供了有关新钻井设施的信息。经过深思熟虑的技术可以为钻井高科技井提供突破。该技术结合了电缆钻柱和理想的井下马达的优点,具有宽转速范围,不受循环剂类型和流量的影响。本文对“70后”电钻实施效果进行了简要对比分析,详细论述了新电钻综合体的组成及其与旧电钻综合体的区别。Complex满足高科技造井的要求,通过超高速双向数据传输通道实现钻井过程自动化,快速评估钻井状态和钻井方向参数、岩石特征、沿井筒压力和温度分布。无论井型和循环剂的类型如何,包括控压钻井,永磁电机都能确保井底岩石破坏的最佳钻井参数。提高了预防和减轻事故的有效性。作者建议对目前处于TRL-3水平的井下永磁电机电钻技术的发展前景进行探讨,以评价和明确采用电钻综合体开发的概念。
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