Effect of the Concentration of Viscosifier on Desorption Kinetics of Methane From Synthetic Based Fluids

Damilola Ojedeji, Yuanhang Chen
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引用次数: 1

Abstract

Synthetic-oil based drilling mud is currently the most commonly used type of drilling fluid for offshore drilling in the Gulf of Mexico, due to the environmental regulation in the area, as well as the numerous operational benefits they provide. However, early kick detection and well control decision-making are more challenging due to the solubility of formation gas in synthetic-based fluids. This partially contributes to the poor understanding of the mass transfer kinetics of formation gas in and out of synthetic fluids during these well control events. The objective of this work was to better understand the mass transfer of gas from a solution by evaluating the influence of viscosifier concentration on the desorption kinetics of methane from pure internal olefin and internal olefin-viscosifier mixture. The desorption coefficients were determined from a custom-built mass transfer apparatus. Different suspentone concentrations ranging from 0 to 5wt% by volume of liquid were used to investigate the influence of viscosifier concentration on the desorption coefficient. It was observed that the presence of suspension agents in the liquid phase decreased the mass transfer coefficient. This decrease could be due to an increase in the resistance to the flow of gas bubbles evolving from the liquid phase.
增粘剂浓度对合成基流体甲烷解吸动力学的影响
合成油基钻井泥浆是目前墨西哥湾海上钻井中最常用的一种钻井液,这是由于该地区的环境法规,以及它们提供的许多操作优势。然而,由于地层气体在合成基流体中的溶解性,早期井涌检测和井控决策更具挑战性。这在一定程度上导致了在这些井控过程中,对地层气体进出合成流体的传质动力学的理解不足。本研究的目的是通过评价增粘剂浓度对纯内烯烃和内烯烃-增粘剂混合物甲烷解吸动力学的影响,更好地了解溶液中气体的传质过程。解吸系数由特制的传质装置测定。采用不同的悬浮剂浓度(液体体积比为0 ~ 5wt%)考察了增粘剂浓度对解吸系数的影响。观察到液相中悬浮剂的存在降低了传质系数。这种减少可能是由于对从液相演化而来的气泡流动的阻力增加。
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