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首页> 外文期刊>International Journal of Multiphase Flow >Separation characteristics of the gas and liquid phases in a vane-type swirling flow field
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Separation characteristics of the gas and liquid phases in a vane-type swirling flow field

机译:叶片式旋流流场中气体和液相的分离特性

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In order to investigate inlet bubble size distribution, gas phase concentration, and swirling intensity in the swirling flow field of a vane-type separator, both flow loop experiments and numerical studies have been conducted in this work. The bubble size distributions and fractions of local voids were determined using a Malvern RTsizer and electrical resistance tomography, respectively, while the numerical simulations were conducted by coupling the RNGk-εturbulent and mixture multiphase models. As a result, a suitable model for predicting the bubble size distribution parametersd32anddmaxwas developed. In addition, the effects of inlet mixture flow rate, inlet void fraction, and liquid viscosity on the core size of the gas phase in the swirling flow field were determined, and the impact of the gas phase on swirling intensity was characterized using the swirling number. The obtained results can be used in designing vane-type separators for the crude oil extraction industry.
机译:为了在叶片型分离器的旋转流场中调查入口泡尺寸分布,气相浓度和旋转强度,在这项工作中已经进行了流量回路实验和数值研究。 使用Malvern RTSizer和电阻断层扫描分别测定局部空隙的气泡尺寸分布和局部空隙的分量,而通过耦合RNGK-εtn-obiz ut和混合的多相模型来进行数值模拟。 结果,用于预测泡沫尺寸分布参数的合适模型32和dmaxwas。 此外,确定了入口混合物流速,入口空隙率和液体粘度对旋流场中气相的芯尺寸的影响,并且使用旋转数表征气相对旋流强度的影响 。 所得结果可用于设计用于原油提取行业的叶片式分离器。

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