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首页> 外文期刊>Journal of Petroleum Science & Engineering >The rheological behavior of energized fluids and foams with application to hydraulic fracturing: Review
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The rheological behavior of energized fluids and foams with application to hydraulic fracturing: Review

机译:液压压裂应用激增流体和泡沫的流变行为:综述

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摘要

The use of aqueous energized fluids and foams for hydraulic fracturing reduces water consumption and formation damage, while improving proppant transport and placement. Thus, coupling an improvement in well productivity with a reduction in environmental impact appears possible. However, several advances in scientific understanding of these complex fluids, e.g., fracture-induced shear thinning, elasticity and osmotic effects, have not been fully integrated into the engineering practice of well stimulation. These properties may lead to an optimized fracturing fluid that can be tuned to satisfy both sides of the stimulation design spectrum -better fracturing and efficient proppant transport. This review aims to progress in that direction by reviewing recent advancements in combination with earlier and more engineering-oriented works, and to connect the complex rheology and mechanics of energized fluids and foams with practical usage in hydraulic fracturing.
机译:使用含水供水流体和用于液压压裂的泡沫降低了耗水和形成损伤,同时改善了支撑剂运输和放置。 因此,可以在减少环境影响的情况下耦合良好生产率的改善。 然而,对这些复杂的液体的科学了解的几个进展,例如骨折引起的剪切稀释,弹性和渗透效应,尚未完全集成到良好刺激的工程实践中。 这些性质可能导致优化的压裂流体,可以调整以满足刺激设计光谱的两侧 - 近β压裂和有效的支撑剂运输。 该审查旨在通过审查与早期和更具工程导向的工程相结合的最新进步,并在液压压裂中连接激励流体和泡沫的复杂流变和力学来进展。

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