首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Viscous fingering of miscible fluids in an anisotropic radial Hele-Shaw cell: Coexistence of kinetic and surface-tension dendrite morphology types and an exploration of small-scale influences
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Viscous fingering of miscible fluids in an anisotropic radial Hele-Shaw cell: Coexistence of kinetic and surface-tension dendrite morphology types and an exploration of small-scale influences

机译:各向异性径向Hele-Shaw池中混溶流体的粘性指状:动力学和表面张力枝晶形态类型的共存和小规模影响的探索

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The evolution of viscous fingering morphology is examined for the case of a system of miscible fluids in an anisotropic radial Hele-Shaw cell. It is shown that dendritic morphologies similar to the kinetic and surface-tension morphology types coexist for this case. The critical role of the means of introducing anisotropy in the Hele-Shaw cell is established, and an explanation of the pattern behavior is offered on the basis of shape discontinuities of the individual elements of the lattice used to induce anisotropy. The ramifications of such an explanation are experimentally verified by demonstrating a clear difference in the morphology evolution in two halves of a single Hele-Shaw cell, one half of which contains square lattice elements, and the other half of which contains circular lattice elements. [S1063-651X(99)14202-8]. [References: 17]
机译:对于各向异性径向Hele-Shaw池中可混溶流体系统的情况,检查了粘性指状形态的演变。结果表明,在这种情况下,与动力学和表面张力形态类型相似的树状形态共存。建立了在Hele-Shaw单元中引入各向异性的方法的关键作用,并基于用于引起各向异性的晶格的各个元素的形状不连续性,对图案行为进行了解释。通过说明单个Hele-Shaw单元的两半的形态演化存在明显差异,对这种解释的分支进行了实验验证,其中一半包含正方形晶格元素,另一半包含圆形晶格元素。 [S1063-651X(99)14202-8]。 [参考:17]

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