Methane foam performance evaluation in water-wet unconsolidated porous media: A systematic experimental investigation at elevated pressure and temperature conditions

IF 4.9 2区 工程技术 Q2 ENERGY & FUELS Journal of Natural Gas Science and Engineering Pub Date : 2022-12-01 DOI:10.1016/j.jngse.2022.104835
Si Le Van , Magda Ibrahim Youssif , Alvinda Sri Hanamertani , Keerti Vardhan Sharma , Omar Elkhatib , Kaustubh Rane , Yun Xie , Alolika Das , Mohammad Piri , Amit Katiyar , Nagi Nagarajan
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引用次数: 3

Abstract

In the petroleum industry, enhanced oil recovery (EOR) techniques employ foam extensively to establish conformance control in heterogeneous and fractured reservoirs in order to increase the sweep efficiency. In such applications, foam performance evaluation under complex subsurface conditions is pivotal for the effective and optimized deployment of foam treatment. However, there is a scarcity of hydrocarbon gas foam generation and evaluation studies that examine the relationships between foam performance and the critical foam parameters at high-pressure and high-temperature conditions.

This study aims at methodically investigating the effects of several foam parameters on methane foam performance in water-wet proppant packs under harsh operating conditions. This is in relation to the technical needs of hydrocarbon foam injection into hydraulically-induced, propped fractures in unconventional oil reservoirs. To this end, a state-of-the-art experimental foam generation apparatus was designed, fabricated, and commissioned. We performed a large number of foam flow experiments on proppant packs using methane gas and different foaming agents at 3500 psi and 115 °C. Anionic and amphoteric surfactants were employed to probe the effect of their ionic nature on foam performance. Foam performance sensitivities to various foam generation parameters and operating conditions, such as surfactant concentration, gas fraction, total injection rate, operating pressure, salinity, and proppant pack length were investigated. To this end, steady-state pressure drops across the proppant packs during foam generation and foam's apparent viscosity were measured to quantify the foam performance of surfactants. The results were then analyzed to determine optimum values of the foam parameters and the interplay between these parameters are discussed here. The systematic results achieved from this work are in agreement with the trends available in the literature and provide new insights into complexities of in situ foam generation in water-wet, unconsolidated porous media at extreme reservoir conditions.

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水湿松散多孔介质中甲烷泡沫性能评价:高压和高温条件下的系统实验研究
在石油工业中,提高采收率(EOR)技术广泛使用泡沫来控制非均质和裂缝性油藏的一致性,以提高波及效率。在此类应用中,复杂地下条件下的泡沫性能评估对于泡沫处理的有效和优化部署至关重要。然而,在高压和高温条件下,烃类气体泡沫的产生和泡沫性能与关键泡沫参数之间关系的评估研究还很缺乏。本研究旨在系统地研究恶劣作业条件下水湿支撑剂充填中几种泡沫参数对甲烷泡沫性能的影响。这与非常规油藏水力压裂裂缝注入泡沫烃的技术需求有关。为此,设计、制造并调试了一套最先进的泡沫生成实验装置。我们使用甲烷气体和不同发泡剂在3500psi和115℃的条件下对支撑剂充填进行了大量泡沫流动实验。采用阴离子表面活性剂和两性表面活性剂考察其离子性质对泡沫性能的影响。研究了泡沫性能对各种泡沫生成参数和操作条件的敏感性,如表面活性剂浓度、气体分数、总注入速率、操作压力、矿化度和支撑剂充填长度。为此,研究人员测量了支撑剂充填层在泡沫生成过程中的稳态压降和泡沫的表观粘度,以量化表面活性剂的泡沫性能。然后对结果进行了分析,确定了泡沫参数的最佳值,并讨论了这些参数之间的相互作用。从这项工作中获得的系统结果与文献中现有的趋势一致,并为极端储层条件下水湿、松散多孔介质中原位泡沫生成的复杂性提供了新的见解。
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来源期刊
Journal of Natural Gas Science and Engineering
Journal of Natural Gas Science and Engineering ENERGY & FUELS-ENGINEERING, CHEMICAL
CiteScore
8.90
自引率
0.00%
发文量
388
审稿时长
3.6 months
期刊介绍: The objective of the Journal of Natural Gas Science & Engineering is to bridge the gap between the engineering and the science of natural gas by publishing explicitly written articles intelligible to scientists and engineers working in any field of natural gas science and engineering from the reservoir to the market. An attempt is made in all issues to balance the subject matter and to appeal to a broad readership. The Journal of Natural Gas Science & Engineering covers the fields of natural gas exploration, production, processing and transmission in its broadest possible sense. Topics include: origin and accumulation of natural gas; natural gas geochemistry; gas-reservoir engineering; well logging, testing and evaluation; mathematical modelling; enhanced gas recovery; thermodynamics and phase behaviour, gas-reservoir modelling and simulation; natural gas production engineering; primary and enhanced production from unconventional gas resources, subsurface issues related to coalbed methane, tight gas, shale gas, and hydrate production, formation evaluation; exploration methods, multiphase flow and flow assurance issues, novel processing (e.g., subsea) techniques, raw gas transmission methods, gas processing/LNG technologies, sales gas transmission and storage. The Journal of Natural Gas Science & Engineering will also focus on economical, environmental, management and safety issues related to natural gas production, processing and transportation.
期刊最新文献
Editorial Board Machine learning for drilling applications: A review Quantitative characterization of methane adsorption in shale using low-field NMR Dual mechanisms of matrix shrinkage affecting permeability evolution and gas production in coal reservoirs: Theoretical analysis and numerical simulation Experimental study on the effect of hydrate reformation on gas permeability of marine sediments
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