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首页> 外文期刊>International Journal of Multiphase Flow >Phase split of nitrogenon-Newtonian fluid two-phase flow at a micro-T-junction
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Phase split of nitrogenon-Newtonian fluid two-phase flow at a micro-T-junction

机译:氮气/非牛顿流体两相流在微T形结处的相分离

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摘要

An experimental investigation has been undertaken to understand the phase split of nitrogen gason-Newtonian liquid two-phase flow passing through a 0.5. mm T-junction that oriented horizontally. Four different liquids, including water and aqueous solutions of carboxymethyl cellulose (CMC) with different mass concentrations of 0.1, 0.2 and 0.3. wt%, were employed. Rheology experiments showed that different from water, CMC solutions in this study are pseudoplastic non-Newtonian fluid whose viscosity decreases with increasing the shear rate. The inlet flow patterns were observed to be slug flow, slug-annular flow and annular flow. The fraction of liquid taken off at the side arm for nitrogen gason-Newtonian liquid systems is found to be higher than that for nitrogen gas/Newtonian liquid systems in all inlet flow patterns. In addition, with increasing the pseudoplasticity of the liquid phase, the side arm liquid taken off increases, but the increasing degree varies with each flow pattern. For annular flow, the increasing degree is much greater than those for slug and slug-annular flows.
机译:已经进行了实验研究以了解通过0.5的氮气/非牛顿液体两相流的相分离。水平定向的T型接头的mm。四种不同的液体,包括水和质量浓度分别为0.1、0.2和0.3的羧甲基纤维素(CMC)水溶液。使用重量%。流变学实验表明,与水不同,本研究中的CMC溶液是假塑性非牛顿流体,其粘度随剪切速率的增加而降低。观察到入口流型为团状流,团状环流和环形流。发现在所有进气流模式下,氮气/非牛顿液体系统在侧臂处排出的液体比例均高于氮气/牛顿液体系统。另外,随着液相的假塑性的增加,排出的侧臂液体增加,但是增加程度随每种流型而变化。对于环形流,其增加程度要比对于and流和环流的增加程度大得多。

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