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Study on the Rheology of Foam Fracturing Fluid with Mixture Model

机译:用混合模型研究泡沫压裂液的流变学

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Numerical simulation study on the rheology or foam fluid was carried through by treating inner phase as granular fluid with mixture model. The simulation results show that the gas phase is well distributed on cross-section. Besides, the higher the foam quality, the higher the velocity gradient near the wall. For turbulent properties, the turbulent kinetic energy and viscosity increase as the foam quality increases. With the same foam quality, the bigger the bubble diameter, the higher the turbulent viscosity and turbulent kinetic energy. What's more, the foam quality 63% is a catastrophe point at which the rheology of foam fracturing fluid changes sharply. The change trend of turbulent viscosity along radial direction is different between the regions where the foam quality is below and over catastrophe point, and in the latter the change trend is flatter. From the simulation results it can be seen that the mixture model is more applicable and effective to the region where foam quality is over 63%.
机译:通过用混合物模型处理内相作为颗粒液,通过将内部相进行流变学或泡沫流体的数值模拟研究。仿真结果表明,气相在横截面上很好地分布。此外,泡沫质量越高,墙上附近的速度梯度越高。对于湍流性质,随着泡沫质量的增加,湍流动能和粘度增加。采用相同的泡沫质量,泡泡直径越大,湍流粘度和湍流动能越高。更重要的是,泡沫质量63%是灾难点,泡沫压裂液的流变急剧变化。沿径向湍流粘度的变化趋势在泡沫质量低于和灾难点的区域之间是不同的,并且在后者的变化趋势是平坦的。从仿真结果看,可以看出,混合模型更适用,对泡沫质量超过63%的地区有效。

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