期刊文献+

Investigation of gas content of organic-rich shale:A case study from Lower Permian shale in southern North China Basin,central China 被引量:15

Investigation of gas content of organic-rich shale:A case study from Lower Permian shale in southern North China Basin, central China
下载PDF
导出
摘要 Measuring gas content is an essential step in estimating the commerciality of gas reserves. In this study,eight shale core samples from the Mouye-1 well were measured using a homemade patented gas desorption apparatus to determine their gas contents. Due to the air contamination that is introduced into the desorption canister, a mathematical method was devised to correct the gas quantity and quality.Compared to the chemical compositions of desorbed gas, the chemical compositions of residual gas are somewhat different. In residual gas, carbon dioxide and nitrogen record a slight increase, and propane is first observed. This phenomenon may be related to the exposure time during the transportation of shale samples from the drilling site to the laboratory, as well as the differences in the mass, size and adsorptivity of different gas molecules. In addition to a series of conventional methods, including the USBM direct method and the Amoco Curve Fit(ACF) method, which were used here for lost gas content estimation, a Modified Curve Fit(MCF) method, based on the 'bidisperse' diffusion model, was established to estimate lost gas content. By fitting the ACF and MCF models to gas desorption data, we determined that the MCF method could reasonably describe the gas desorption data over the entire time period, whereas the ACF method failed. The failure of the ACF method to describe the gas desorption process may be related to its restrictive assumption of a single pore size within shale samples. In comparison to the indirect method, this study demonstrates that none of the three methods studied in this investigation(USBM, ACF and MCF) could individually estimate the lost gas contents of all shale samples and that the proportion of free gas relative to total gas has a significant effect on the estimation accuracy of the selected method. When the ratio of free gas to total gas is lower than 45%, the USBM method is the best for estimating the lost gas content, whereas when the ratio ranges from 45% to 75% or is more than 75%, the ACF and MCF methods, are the best options respectively. Measuring gas content is an essential step in estimating the commerciality of gas reserves. In this study,eight shale core samples from the Mouye-1 well were measured using a homemade patented gas desorption apparatus to determine their gas contents. Due to the air contamination that is introduced into the desorption canister, a mathematical method was devised to correct the gas quantity and quality.Compared to the chemical compositions of desorbed gas, the chemical compositions of residual gas are somewhat different. In residual gas, carbon dioxide and nitrogen record a slight increase, and propane is first observed. This phenomenon may be related to the exposure time during the transportation of shale samples from the drilling site to the laboratory, as well as the differences in the mass, size and adsorptivity of different gas molecules. In addition to a series of conventional methods, including the USBM direct method and the Amoco Curve Fit(ACF) method, which were used here for lost gas content estimation, a Modified Curve Fit(MCF) method, based on the 'bidisperse' diffusion model, was established to estimate lost gas content. By fitting the ACF and MCF models to gas desorption data, we determined that the MCF method could reasonably describe the gas desorption data over the entire time period, whereas the ACF method failed. The failure of the ACF method to describe the gas desorption process may be related to its restrictive assumption of a single pore size within shale samples. In comparison to the indirect method, this study demonstrates that none of the three methods studied in this investigation(USBM, ACF and MCF) could individually estimate the lost gas contents of all shale samples and that the proportion of free gas relative to total gas has a significant effect on the estimation accuracy of the selected method. When the ratio of free gas to total gas is lower than 45%, the USBM method is the best for estimating the lost gas content, whereas when the ratio ranges from 45% to 75% or is more than 75%, the ACF and MCF methods, are the best options respectively.
出处 《Geoscience Frontiers》 SCIE CAS CSCD 2018年第2期559-575,共17页 地学前缘(英文版)
关键词 Organic-rich SHALE GAS CONTENT Air contamination Modified curve fit method Lost GAS CONTENT estimation Organic-rich shale Gas content Air contamination Modified curve fit method Lost gas content estimation
  • 相关文献

参考文献4

二级参考文献59

  • 1张金川,金之钧,袁明生.页岩气成藏机理和分布[J].天然气工业,2004,24(7):15-18. 被引量:1220
  • 2郝石生,张振英.天然气在地层水中的溶解度变化特征及地质意义[J].石油学报,1993,14(2):12-22. 被引量:118
  • 3GB/T19559-2008.煤层气含量测定方法[S].
  • 4Ulery J P, Hyman D M. The modified direct method of gas content determination : application and results [ A ]. Proceedings of the 1991 coalbed methane symposium [ C]. Tuscaloosa: 1991:489 -500.
  • 5McLennan J D, Schafer P S, Pratt T J. A guide to determining eoalbed gas content [ R]. Chicago: Gas Research Institute Report, 1995.
  • 6Gas Research Institute. A guide to coalbed methane reservoir engineering [R]. Chicago: GRI Reference, 1996.
  • 7DECKER A D, HILL D G, WICKS D E. Log-based gas content and resource estimates for the Antrim Shale Michi- gan Basin[C]//paper 25910-MS presented at the Low Per meability Reservoirs Symposium, 26 28 April 1993,Den- ver, Colorado, USA. New York : SPE, 1993.
  • 8LEWIS R, INGRAHAM D, PEARCY M. New evaluation techniques for gas shale reservoirs[C]//Reservoir Sympo- sium. Houston: Schlumberger, 2004.
  • 9CLUFF R M. Barnett Shale-Woodford Shale Play of the Delaware Basin-is it another giant shale gas field in Texas [R/OL].2006.[2014 04-14].http://www.discovery group. com/pdfs/2006 W TX Barnett-Woodford shale.pdf.
  • 10UTLEY L.Geologic and petrophysical characteristics of the Fayetteville Shale [ R/OL]. ( 2008-01-01 ). [ 2014- 04-14 ]. http ://www. utleypetro, com/presentations/utleypetro_ gas _shales_summit. ppt.

共引文献66

同被引文献435

引证文献15

二级引证文献62

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部