垂向结垢裂缝中流体携带不同支撑剂的流动与沉积

IF 0.1 Q4 PHYSICS, MULTIDISCIPLINARY
C. Gracia, M. Baldini, M. E. Fernandez
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引用次数: 0

摘要

水力压裂是一种用于提高常规和非常规碳氢化合物产量的技术,是阿根廷能源储备的战略组成部分。该过程包括在井筒中注入高压流体,在地层中形成裂缝,这些裂缝随后作为高导流路径,使碳氢化合物能够流动。由于释放压裂液的压力会导致裂缝闭合,因此将支撑剂(颗粒材料)与压裂液一起泵入。因此,支撑剂运输和沉积到地层中的方式决定了未来裂缝的导流能力。根据典型的野外条件,我们给出了水在狭窄垂直裂缝中携带颗粒的运移和沉降的实验结果。我们讨论了支撑剂沙丘沉降动力学的一些基本特征以及不同类型支撑剂的最终放置。所选择的材料对支撑剂输送的影响是显著的,当使用密度较低的材料时,沙丘的位置会更深。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FLOW AND DEPOSITION OF DIFFERENT PROPPANTS CARRIED BY FLUIDS IN ASCALED VERTICAL FRACTURE
Hydraulic fracturing is a technique used to stimulate the production of conventional and unconventional hydrocarbons, being this type of resource a strategic part of Argentina’s energy reserve. The procedure consists in injecting fluids at high pressure into the wellbore to create fractures in the formation that later act as highly conductive paths through which hydrocarbons can flow. Since releasing the pressure of fracturing fluids causes the fracture to close, proppant(granular materials) is pumped together with fracturing fluids. For that reason, the way proppant is transported and deposited into the formation determines the future conductivity of the fracture. We present experimental results on the transport and settling of particles carried by water in a narrow vertical fracture scaled from typical field conditions. We discuss some basic features of the dynamics of the settlement of the proppant dune and the final placement for different types of proppant. The effect of the chosen material on the proppant transport is significant, yielding a much deeper placement of the dune when in lower density materials are used.
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来源期刊
Anales AFA
Anales AFA PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.40
自引率
0.00%
发文量
43
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