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Gas Viscosity Measurement and Evaluation for High Pressure and High Temperature Gas Reservoirs

机译:高压高温气藏的气黏度测量与评价

摘要

Gas viscosity is an important fluid property in oil and gas engineering due to its impact on hydrocarbon production and transportation, reservoir recovery, fluid flow, deliverability, and well storage. Existing gas viscosity correlations were derived using measured data at low to moderate pressure and temperatures. No measured gas viscosities at high pressure high temperature (HPHT) using reservoir sample are currently available, and using the extrapolation approach is not reliable. Therefore, this research paper presents laboratory measurement of gas viscosity at HPHT and comparative study of some existing gas viscosity correlations using the measured data. The capillary electromagnetic viscometer was used to measure gas viscosity for pressures between 6,000 psia and 14,000 psia; and temperatures of 270 oF and 370 oF. The comparative study shows that the gas viscosity models commonly used in the industry are not very reliable at HPHT conditions. Ohirhian and Abu (2008) performed better than other evaluated correlations with the mean relative error of -5.22 and absolute error of 8.752 for the temperature of 270oF while Dempsey (1965) came out the best for the temperature of 370oF with mean relative error of -16.88 and 16.88 for absolute mean error. Cross plots showed the poor performance of the evaluated correlations using the measured data at HPHT conditions. From the analysis, the oil and gas industry needs new gas viscosity correlations that can predict gas viscosity at HPHT region
机译:气体粘度是油气工程中重要的流体属性,因为它会影响碳氢化合物的生产和运输,储层采收率,流体流量,可输送性和油井存储。现有的气体粘度相关性是使用在中低压力和温度下的测量数据得出的。目前尚无法使用储层样品在高压高温(HPHT)下测量气体粘度,并且使用外推法是不可靠的。因此,本研究论文提出了在高温高压下进行气体粘度的实验室测量,并利用测量数据对一些现有的气体粘度相关性进行了比较研究。毛细管电磁粘度计用于测量压力在6,000 psia和14,000 psia之间的气体粘度。温度为270 oF和370 oF。对比研究表明,行业常用的气体粘度模型在高温高压条件下不是很可靠。 Ohirhian和Abu(2008)在270oF温度下的平均相对误差为-5.22,绝对误差为8.752,其性能优于其他评估的相关性,而Dempsey(1965)在370oF温度下的平均相对误差为-时表现最佳。绝对平均误差为16.88和16.88。交叉图显示了使用HPHT条件下的测量数据评估的相关性较差。根据分析,石油和天然气行业需要新的气体粘度相关性,以预测HPHT地区的气体粘度

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