首页> 外文期刊>Fractals: An interdisciplinary journal on the complex geometry of nature >INVESTIGATION OF DYNAMIC TEXTURE AND FLOW CHARACTERISTICS OF FOAM TRANSPORT IN POROUS MEDIA BASED ON FRACTAL THEORY
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INVESTIGATION OF DYNAMIC TEXTURE AND FLOW CHARACTERISTICS OF FOAM TRANSPORT IN POROUS MEDIA BASED ON FRACTAL THEORY

机译:基于分形理论的多孔介质泡沫运输动态纹理和流动特性研究

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摘要

Foam fluid has found wide applications in oilfield development, such as profile control, water plugging, gas channeling control, fracturing, and so on. As a non-Newtonian fluid, the successful application of foam is significantly influenced by its structure. The foam texture, however, is complex and irregular, and becomes even more complicated in porous media by the boundary effects. Therefore, the description of dynamic foam structure is crucial and a quantitative description method for foam fluid is worth exploring. In this paper, the fractal characteristics of foam in porous media are verified and combined with foam microdisplacement experiment, and the fractal rule of foam is found. The relationship between fractal dimension and pressure is also discussed. The results show that foam has dynamic fractal characteristics during transport in porous media and the box-counting fractal dimension ranges from 1 to 2. Furthermore, the dynamic change of foam fractal dimension during transport in porous media could be divided into three stages. In the first stage when no foam forms, the fractal dimension is about 2; in the second unsteady foam stage, the fractal dimension is reduced from 1.9 to 1.6; the last one is the steady stage and the fractal dimension is almost constant (about 1.6). Besides, the fractal dimension of foam fluid is closely related to displacement pressure. Low pressure corresponds to higher fractal dimension, and high pressure corresponds to lower fractal dimension. Pressure is negatively linearly correlated with fractal dimension. These results are expected to enrich the understanding of the foam dynamic characteristics in their advanced applications.
机译:泡沫流体已在油田开发中发现广泛的应用,如轮廓控制,水堵漏,气体通道控制,压裂等。作为非牛顿液,泡沫的成功应用受其结构的显着影响。然而,泡沫纹理是复杂的和不规则的,并且通过边界效应在多孔介质中变得更加复杂。因此,动态泡沫结构的描述至关重要,泡沫流体的定量描述方法值得探索。在本文中,验证了多孔介质中泡沫的分形特征,并与泡沫微量剥离实验结合,发现泡沫的分形规则。还讨论了分形尺寸和压力之间的关系。结果表明,泡沫在多孔介质的运输过程中具有动态分形特性,并且盒计数分形尺寸范围为1至2.此外,在多孔介质运输过程中泡沫分形尺寸的动态变化可分为三个阶段。在没有泡沫形式的第一阶段,分形尺寸约为2;在第二不稳定的泡沫阶段,分形尺寸从1.9降至1.6;最后一个是稳定阶段,分形尺寸几乎是恒定的(约1.6)。此外,泡沫液的分形尺寸与位移压力密切相关。低压对应于较高的分形尺寸,高压对应于较低的分形尺寸。压力与分形尺寸负相关。这些结果预计将丰富了解其先进应用中的泡沫动态特性。

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