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含原油和高CO混合气体的气相主导多相管道中天然气水合物生成的相行为研究

Phase behavior study on gas hydrates formation in gas dominant multiphase pipelines with crude oil and high CO mixed gas.

作者信息

Sayani Jai Krishna Sahith, Pedapati Srinivasa Rao, Lal Bhajan

机构信息

Department of Mechanical Engineering, Universiti Teknologi PETRONAS, 32610, Bandar Seri Iskandar, Perak, Malaysia.

CO2 Research Centre (CO2RES), Universiti Teknologi PETRONAS, 32610, Bandar Seri Iskandar, Perak, Malaysia.

出版信息

Sci Rep. 2020 Sep 8;10(1):14748. doi: 10.1038/s41598-020-71509-6.

Abstract

This research is focused on understanding the phase behavior of gas hydrate formation in the gas dominant multiphase pipelines containing mixed gas with high CO, crude oil, and deionized water. The experimental conditions are in the pressure range of 3-7 MPa with water cut as 20% of the volume. Initially, the effect of high CO content in natural gas on the phase boundary conditions of hydrates is studied through simulation (CSMGEM software) and experiments. Later, an additional phase of crude oil was introduced, with 15% of the volume to study the multiphase system. From the experimental analysis, thermodynamic equilibrium conditions were found, and the hydrate-liquid-vapor-equilibrium (HLVE) curves were drawn. The phase behavior is comprehended by comparing the HLVE curves of pure and multiphase systems. It is found that the high CO content tends to promote the gas hydrate formation. Based on the results, temperature variance and enthalpy of formation were calculated for the multiphase system. With a difference of 1.32 average temperature variance, the multiphase system exhibits inhibition. A basic statistical regression model was made to predict the gas hydrate formation in multiphase transmission pipelines. This work helps in understanding the effect of a new phase on gas hydrate formation.

摘要

本研究聚焦于理解在含有高一氧化碳混合气体、原油和去离子水的以气体为主的多相管道中气体水合物形成的相行为。实验条件为压力范围3 - 7兆帕,含水率为体积的20%。首先,通过模拟(CSMGEM软件)和实验研究天然气中高一氧化碳含量对水合物相边界条件的影响。随后,引入占体积15%的原油的另一相来研究多相体系。通过实验分析,发现了热力学平衡条件,并绘制了水合物 - 液 - 气平衡(HLVE)曲线。通过比较纯体系和多相体系的HLVE曲线来理解相行为。发现高一氧化碳含量倾向于促进气体水合物的形成。基于这些结果,计算了多相体系的温度变化和生成焓。多相体系表现出抑制作用,平均温度变化差值为1.32。建立了一个基本的统计回归模型来预测多相输送管道中气体水合物的形成。这项工作有助于理解新相态对气体水合物形成的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/846e/7479132/bd5bf1636600/41598_2020_71509_Fig1_HTML.jpg

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