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Frictional Pressure Drop for Two-phase Flow of Carbon Dioxide in a Tube: Comparison between Models and Experimental Data

机译:管内二氧化碳流动的摩擦压降:模型与实验数据的比较

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摘要

We compare models for two-phase frictional pressure drop with experimental data for pure CO2 taken in a tube of 10 mm inner diameter. The flow was nearly adiabatic, and the mass fluxes ranged from 1058 to 1663 kg/(m2 s), the saturation temperatures were between 3.8 and 17 °C, and the vapor fractions varied from 0.099 to 0.742. Three models for frictional pressure drop were considered, namely a simple model assuming homogeneous flow, the model of Friedel, and the model of Cheng et al. The Friedel model is a curve fit to experimental data based on dimensionless groups, while the Cheng et al. model includes phenomenological sub-models. Our data indicate that the Friedel model is preferable for CO2-transport purposes, at least for high mass fluxes. However, for flowing vapour fractions above 0.6, the Cheng et al. model also gives good results. A reason why the Friedel model performs better when compared to our data, may be the fact that it is based on a large experimental database. Further, our mass fluxes are higher than the ones employed by Cheng et al.
机译:我们将两相摩擦压降的模型与在10 mm内径的管中获得的纯CO2的实验数据进行比较。流动几乎是绝热的,质量通量在1058至1663 kg /(m2 s)之间,饱和温度在3.8至17°C之间,蒸气分率在0.099至0.742之间变化。考虑了三种摩擦压降模型,即假设均相流动的简单模型,Friedel模型和Cheng等人的模型。 Friedel模型是基于无量纲基团的实验数据的曲线拟合,而Cheng等人则是。模型包括现象学子模型。我们的数据表明,Friedel模型至少在高质量通量方面更适合用于CO2输送。然而,对于超过0.6的流动蒸气分数,Cheng等人。模型也给出了很好的结果。与我们的数据相比,Friedel模型之所以表现更好的原因可能是基于大型实验数据库的事实。此外,我们的质量通量高于Cheng等人的方法。

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