熊钰, 王冲. 基于经验公式的超临界CO2饱和稠油黏度计算方法[J]. 油气储运, 2016, 35(10): 1072-1077. DOI: 10.6047/j.issn.1000-8241.2016.10.008
引用本文: 熊钰, 王冲. 基于经验公式的超临界CO2饱和稠油黏度计算方法[J]. 油气储运, 2016, 35(10): 1072-1077. DOI: 10.6047/j.issn.1000-8241.2016.10.008
XIONG Yu, WANG Chong. A new calculation method for the viscosity of heavy oil saturated with supercritical CO2 based on empirical formula[J]. Oil & Gas Storage and Transportation, 2016, 35(10): 1072-1077. DOI: 10.6047/j.issn.1000-8241.2016.10.008
Citation: XIONG Yu, WANG Chong. A new calculation method for the viscosity of heavy oil saturated with supercritical CO2 based on empirical formula[J]. Oil & Gas Storage and Transportation, 2016, 35(10): 1072-1077. DOI: 10.6047/j.issn.1000-8241.2016.10.008

基于经验公式的超临界CO2饱和稠油黏度计算方法

A new calculation method for the viscosity of heavy oil saturated with supercritical CO2 based on empirical formula

  • 摘要: 针对超临界CO2饱和稠油黏度计算精度不够,且涉及的参数繁杂的问题,基于经验公式建立模型。利用经验公式计算Lederer公式中的各个参数,尤其对未给出计算方法的参数(超临界CO2黏度μs、体积系数Fo以及脱气稠油高温高压下的黏度(μo)均给出了可靠的经验公式计算方法。模型只需输入标况下的稠油密度以及脱气稠油的黏温关系,设定温度、压力即可计算得到超临界CO2饱和稠油混合物的黏度。该模型程序简单,对于牛顿流体范围内的稠油-CO2混合物系统黏度具有可靠的预测精度。

     

    Abstract: The viscosity calculation for heavy oil saturated with supercritical CO2 has low precision, and parameters related to the calculation are complex. All these problems should be solved, so a model was established based on empirical formula. In the new model, each parameter in the Lederer equation was calculated by means of the empirical formula, and particularly the reliable calculation methods based on empirical formula were provided for those parameters whose calculation methods were not presented, such as the viscosity of supercritical CO2 (μs), the volume factor (Fo), and the viscosity of dead heavy oil under high-pressure and high-temperature (μo). Based on this model, the viscosity of heavy oil saturated with supercritical CO2 can be calculated by setting temperature and pressure so long as the density of heavy oil in normal condition and the viscosity-temperature relationship of dead heavy oil are input. This model is easy to operate and can provide reliable prediction accuracy for the viscosity of heavy oil-CO2 mixtures which are in the category of Newtonian fluids.

     

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