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Effect of Rheological Properties of Yield Pseudoplastic Fluids on Slugs Characteristics in an Upward Vertical Pipe: Experiments and Modeling

机译:产量假塑性流体流变性能对向上垂直管道中的块特性的影响:实验与建模

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Two-phase flow of gas/yield Pseudoplastic fluids can be found in different industrial applications like the chemical processes, oil industry, and petroleum transport in pipelines. In this study, experimental and numerical investigation of the influence of Rheological properties of non-Newtonians fluids in two-phase flow (gas/yield Pseudoplastic fluids) on slug characteristics in an upward vertical flow were performed. Different concentrations of Xanthan gum solutions (0.05%, 0.10%, and 0.15% by w/w), which are referred to as non-Newtonian, yield Pseudoplastic behavior used as the working liquids and air as a gas. The experiments were conducted in an open-loop re-circulating system has a total length of 65 m to ensure phase mixing, and authorize flow regime patterns to develop. The vertical pipe has a diameter of 76.3 mm. API-compliant 8-speed rotational viscometer model 800 was used to measure the rheological properties of non-Newtonian fluids. Flow visualization and recording videos were achieved by A high-speed camera to a comparison between behavior of Newtonian and non-Newtonian fluids in the two-phase model. Pressure transducers used to measure high-response pressure. Computational fluid dynamics software (ANSYS fluent 2019 R3) was used for the numerical investigation. The volume of fluid (VOF) model has been chosen for tracking immiscible fluids. CFD simulation results compared to the experimental data. The slug behavior and shape were noticed to be affected by changing the rheological properties of the liquid phase, with increasing XG concentration at the same operations conditions, we found that non-uniform and random distribution of small bubbles due to the effective viscous force of a liquid phase.
机译:可以在不同的工业应用中发现两种气体/产量假塑料流体,如化学过程,石油工业和管道中的石油运输等不同的工业应用。在该研究中,进行了在向上垂直流动中的两相流动(气/产量假塑料)中非牛顿流体流变性能的实验性和数值研究。不同浓度的黄原胶溶液(0.05%,0.10%,和0.15%的重量/重量),这被称为非牛顿,收率用作工作液体和空气作为气体假塑性行为。在开环再循环系统中进行实验,总长度为65米,以确保相位混合,并授权流动制度模式开发。垂直管的直径为76.3毫米。 API标准的8速旋转粘度计模型800用于测量非牛顿流体的流变性能。通过高速相机实现流量可视化和录制视频,以与两相模型中的牛顿和非牛顿流体的行为进行比较。压力传感器用于测量高响应压力。计算流体动力学软件(ANSYS FLUENT 2019 R3)用于数值调查。已选择流体(VOF)模型的体积用于跟踪不混溶的流体。 CFD仿真结果与实验数据相比。注意到,通过改变液相的流变性能,通过增加相同的操作条件的XG浓度增加,注意到,由于a的有效粘性力,我们发现,由于XG浓度的增加,Xg浓度增加了液相的不均匀和随机分布液相。

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