首页> 外文期刊>SPE Reservoir Evaluation & Engineering >An Accurate Method for Determining Oil PVT Properties Using the Standing-Katz Gas Z-Factor Chart
【24h】

An Accurate Method for Determining Oil PVT Properties Using the Standing-Katz Gas Z-Factor Chart

机译:使用立式Katz气体Z因子图确定油PVT特性的精确方法

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

An accurate technique for estimating oil pressure/volume/ temperature (PVT) properties using the Standing-Katz Z-factor chart has been developed. Prior work to derive tuned gas-pseudocritical-property values that provide consistent and accurate compressibility factors has been extended to oils. Data from 1,099 worldwide oil PVT reports with 11,960 density measurements have been analyzed. The oils studied have API gravities ranging from 10.6 to 63, with gas/oil ratios ranging from 5 to 4,631 scf/STB. Bubblepoint formation volume factors (FVFs) range from 0.98 to 4.58 bbl/STB. Saturation pressures ranged from 60 to 10,326 psia at temperatures ranging from 50 to 332°F with pressure differentials to 18,491 psi. The resulting work shows that oil pseudocritical properties can be correlated with molecular weight, as with gases. The resulting relationships can be used to determine saturated- and undersatu-rated-oil density accurately. Oil PVT properties, such as FVF and isothermal compressibility, can then be derived from fundamental relationships with density. Because the new method correlates properties with the molecular weight of the wellstream, the chemical nature of the oil (e.g., whether naphthenic or paraffinic) is considered. Existing correlations (30 for bubblepoint oil FVF and 17 for isothermal compressibility) have been identified in the literature. These methods are tested against the database along with the new method to determine accuracy and recommended procedures. Isothermal oil compressibility has proved difficult to correlate historically, with errors typically in excess of 30%. The proposed method significantly reduces the error in calculated isothermal compressibility in comparison to traditional methods.
机译:已经开发出一种利用Standing-Katz Z因子图表估算油压/体积/温度(PVT)特性的精确技术。推导提供一致和准确的可压缩性因子的调谐气-伪临界特性值的先前工作已扩展到油中。分析了1,099个全球石油PVT报告中的数据,以及11,960个密度测量值。所研究的油的API比重范围为10.6至63,气/油比范围为5至4,631 scf / STB。气泡点形成体积因子(FVFs)为0.98至4.58 bbl / STB。温度范围为50至332°F,饱和压力范围为60至10,326 psia,压差为18,491 psi。所得结果表明,油的假临界性质可以与分子量相关,与气体相关。所得的关系可用于准确确定饱和油饱和度和欠饱和油度。然后可以从与密度的基本关系中得出石油的PVT特性,例如FVF和等温压缩率。因为新方法使性质与井流的分子量相关联,所以考虑了油的化学性质(例如,环烷烃还是链烷烃)。文献中已经确定了现有的相关性(对于泡点油FVF为30,等温可压缩性为17)。将这些方法与新方法一起针对数据库进行测试,以确定准确性和建议的步骤。从历史上看,等温油的可压缩性很难关联,误差通常超过30%。与传统方法相比,该方法大大降低了计算出的等温压缩率的误差。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号