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Application of Multi-Functionalized Surfactant to Enhance Hydrocarbon Production in Tight Oil Gas Formations Yields Successful Results

机译:多功能表面活性剂在紧密油气形成中增强烃生产的应用,得到成功的成果

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Oil and gas shale hydraulic fracturing designs for new wells drilled typically call for water volumes as high as 50,000 m3(314,000 bbls).The cleanup of these massive water volumes during flowback must be efficient and minimize fluid invasion into the matrix.Once the saturation of the invaded water zone is reduced to the lowest possible level during flowback(cleanup operations),hydrocarbons can flow freely into the wellbore.However,the flowback behavior in unconventional reservoirs is quite different than in conventional reservoirs where soakback and slowback techniques are implemented.It is not uncommon for these wells to be shut in or for weeks or even months following the hydraulic fracturing treatment.Chemical and surfactant flowback enhancers such as microemulsions and nano-surfactants are additives typically used in hydraulic fracturing to assist in flowback design and improve load fluid recovery as they minimize fracture face damage due to water blockage.In this paper,we describe the successful field application of a multi-functionalized surfactant(MFS)that significantly outperformed common surfactant chemistry when applied to mixed-wettability shale core samples in laboratory Amott cell tests.The results from the laboratory testing were reflected in field trials: the relative permeability to hydrocarbon was increased and production was enhanced.
机译:用于钻取的新井的油气和气体液压压裂设计通常呼叫水量高达50,000 m3(314,000 bbls)。在回流期间,这些大规模水量的清除必须有效,最大限度地减少流体侵入矩阵。可以饱和入侵水域在回流(清理操作)期间降低到最低可能水平,碳氢化合物可以自由地流入井筒。无论,无传统水库中的回流行为都比在实现储存和速度储存技术的传统储层中。在液压压裂处理后,这些井不罕见或几周甚至几个月。诸如微乳液和纳米表面活性剂的化学和表面活性剂流量增强剂是通常用于液压压裂的添加剂,以帮助返回流量设计并改善负载流体恢复,因为它们最小化由于水堵塞而最小化骨折面部伤害。在本文中,我们描述了多功能化表面活性剂(MFS)的成功现场施加在实验室Amott细胞试验中施加到混合润湿性页岩核心样品时显着优于常见的表面活性剂化学。实验室测试的结果反映在现场试验中:相对渗透性烃增加,增强了产量。

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