A novel alkali-surfactant for optimization of filtercake removal in oil–gas well

石油工程 表面张力 井筒 肺表面活性物质 钻井液 润湿 环空(植物学) 欠平衡钻井 材料科学 钻探 化学工程 化学 地质学 复合材料 工程类 热力学 物理 冶金
作者
Kevin Nsolloh Lichinga,Amos Luanda,Mtabazi G. Sahini
出处
期刊:Journal of Petroleum Exploration and Production Technology [Springer Nature]
卷期号:12 (8): 2121-2134 被引量:7
标识
DOI:10.1007/s13202-021-01438-1
摘要

Abstract The main objective of this study is to improve the oil-based filtercake removal at the wellbore second interface through chemical method. The reductions in near-well permeability, bonding strength at wellbore second interface and acidizing treatment are the critical problems in oilfield upstream operations. One of the major causes has been identified as drilling fluid filtrate invasion during the drilling operations. This as result leads to near-well reduction in-flow capacity due to high drawdown pressure and wellbore instability. A number of chemical methods such as enzymes, acids, oxidizers, or their hybrids, have been used, however, due to the presence of a number of factors prior to its removal, there are still many challenges in cleaning oil-based filtercake from the wellbore surface. There is a need for development an effective method for improving oil-based filtercake removal. This study presents a novel Alkali-Surfactant (KV-MA) solution developed in the laboratory to optimize the filtercake removal of oil–gas wellbore. The Reynold number for KV-MA solution was found to be 9,068 indicating that turbulent flow regime will dominate in the annulus which enhances the cleaning efficiency. The wettability test established that, contact angle of 14° was a proper wetting agent. The calculated cleaning efficiency was 86.9%, indicating that it can effectively remove the oil-based filtercake. NaOH reacts with the polar components in the oil phase of the oil-based filtercake to produce ionized surface-active species; hence reducing the Interfacial Tension. Surfactant quickens the diffusion of ionized species from the interface to the bulk phase.
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