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Effect of Flushing Fluid Composition on Rate of Penetration in Limestone: Surface and Interface Aspects

机译:冲洗流体组成对石灰石渗透速率的影响:表面与界面方面

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Rate of penetration (ROP) is considered as a crucial economic and technical indicator in the drilling process. An enhancement in ROP, even if it is small, will result in substantial cost savings. Although the existence of influence of water-based flushing media composition on ROP has been well-known, further understanding about this effect needs to beestablished, especially in terms of surface and interface aspects. This is mainly due to the complexity of drilling process in chemical fluid environment. In this paper, the effects of several commonly used materials in flushing fluid on ROP were investigatedto provide valuable information about chemically enhanced drilling.Using a modified coring machine with a thin walled diamond impregnated coring bit, drilling experiments in limestone were performed in the laboratory. Fluids with different composition including a variety of surfactants and polymers were used as the flushing media, and the corresponding ROPs were observed. Important properties of fluid, rock surface and rock-fluid interface, such as surface tension, indentation hardness, Zeta potential, contact angle, Gibbs free energy changes of wetting and spreading, were measured or calculated to gain an insight into the variation of ROP.The results suggested that ROP was obviously influenced by additive type and concentration. Some surfactants (such as CTAB and BS-12) and polymers (such as polyoxyethylene) have the ability to improve drilling efficiency, and there are optimal concentrations forthe enhancement of ROP. On the basis of discussion on these observations, thechange of ROP is ascribed to the integrated influence of surface Gibbs free energy change, Zeta potential, indentation hardness and fluid lubricity. These factors, closely related to the fluid composition, act jointly during drilling. This paper ishelpful to design fast drilling fluids. Through adjusting chemical composition of the fluid, the interfacial properties of fluid and rockcan be controlled to facilitate rock fragmentation, which may be of great significance for engineering practice.
机译:渗透率(ROP)被视为钻井过程中的至关重要的经济和技术指标。 ROP的增强,即使它很小,也会节省大量成本。尽管在ROP上的水性冲洗介质组合物的影响是众所周知的,但需要进一步了解这种效果,尤其是在表面和接口方面方面。这主要是由于化学流体环境中钻井过程的复杂性。在本文中,研究了几种常用材料在ROP上冲洗流体中的效果提供了有关化学增强钻孔的有价值的信息。在实验室中进行了具有薄壁金刚石浸渍的芯片钻头的改进的芯机,在实验室中进行了石灰石的钻井实验。使用包括各种表面活性剂和聚合物的不同组成的流体用作冲洗介质,并且观察到相应的ROPS。测量或计算出液体,岩石表面和岩石流体接口,例如表面张力,压痕硬度,Zeta电位,接触角,Gibbs自由能量变化,以获得对ROP变异的洞察。结果表明ROP明显受添加类型和浓度的影响。一些表面活性剂(如CTAB和BS-12)和聚合物(例如聚氧乙烯)具有提高钻井效率的能力,并且可以提高ROP的最佳浓度。在讨论这些观察结果的基础上,ROP的TheGhange归因于表面Gibbs自由能量变化,Zeta电位,压痕硬度和流体润滑性的综合影响。这些因素与流体组成密切相关,在钻井期间共同行动。本文是为设计快速钻孔的纸张。通过调节流体的化学成分,控制流体和岩壁的界面性能,以促进岩石碎片,这可能对工程实践具有重要意义。

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