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首页> 外文期刊>Journal of Petroleum & Environmental Biotechnology >Assessment of Mechanical Specific Energy Aimed at Improving DrillingInefficiencies and Minimize Wellbore Instability
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Assessment of Mechanical Specific Energy Aimed at Improving DrillingInefficiencies and Minimize Wellbore Instability

机译:机械比能评估旨在改善钻井效率低下和最小化井眼失稳的问题

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Mechanical specific energy is equivalent to the proportion of all the input energy to the bit to output penetration rate. By using this parameter, it can be used to optimize drilling performance, the performance of bit and minimize wellbore instability. By analyzing these parameters, the costs of drilling operations by increasing the rotational speed of drilling equipment, maximizing bit life, and will be reduced. In all parts of the Iran’s South Pars field numerous wells have been drilled. But research activity that could be a major step in the evaluation of the mechanical specific energy and reduction of inefficiencies during the drilling operation has not taken place. The purpose of this research using mechanical specific energy is to analyze drilling parameters performance such as bit rotation speed, bit penetration rate in the formation due to rock and fluid properties. According to high costs of hiring drilling rigs and importance of mechanical specific energy for increasing drilling velocity and costs reduction, several researches in many ways for optimizing mechanical specific energy had been studied. However, by using SPSS software in middle formations of one of the phases of Iran’s South Pars field statistical studies has been done, which contains formations such as Hith, Surmeh, Neyriz, Dashtak and Kangan.
机译:机械比能等于钻头中所有输入能量与输出渗透率的比例。通过使用此参数,可以将其用于优化钻井性能,钻头性能并最大程度降低井眼不稳定性。通过分析这些参数,可以通过提高钻井设备的转速,最大程度地延长钻头寿命来降低钻井作业的成本,并且可以降低成本。在伊朗南帕尔斯(South Pars)油田的所有地区,已经钻了许多井。但是,尚未开展可能是评估机械比能和减少钻井作业过程中效率低下的重要步骤的研究活动。这项使用机械比能进行研究的目的是分析钻井参数的性能,例如钻头的旋转速度,由于岩石和流体性质而在地层中的钻头的穿透率。鉴于租赁钻机的高昂成本以及机械比能对于提高钻井速度和降低成本的重要性,已经进行了许多以多种方式优化机械比能的研究。但是,通过使用SPSS软件在伊朗南帕尔斯野外调查阶段之一的中间地层中进行了统计研究,其中包括Hith,Surmeh,Neyriz,Dashtak和Kangan等地层。

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