新疆石油地质 ›› 2018, Vol. 39 ›› Issue (zk(English) ): 141-145.

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Application of NMR Technology in Evaluation of Low-Permeability Conglomerate Reservoirs: A Case Study from the Lower Triassic Baikouquan Formation in Mahu Sag

MAO Rui1, XU Lin1, FANG Tao2, WANG Zhenlin1   

  1. 1. Research Institute of Exploration and Development, Xinjiang Oilfield Company, PetroChina, Karamay, Xinjiang 834000, China;
    2. Well Logging Company, Xibu Drilling Engineering Company Limited, CNPC, Karamay, Xinjiang 834000, China
  • 收稿日期:2017-11-27 修回日期:2017-12-05 出版日期:2019-01-01 发布日期:2021-05-19

Application of NMR Technology in Evaluation of Low-Permeability Conglomerate Reservoirs: A Case Study from the Lower Triassic Baikouquan Formation in Mahu Sag

MAO Rui1, XU Lin1, FANG Tao2, WANG Zhenlin1   

  1. 1. Research Institute of Exploration and Development, Xinjiang Oilfield Company, PetroChina, Karamay, Xinjiang 834000, China;
    2. Well Logging Company, Xibu Drilling Engineering Company Limited, CNPC, Karamay, Xinjiang 834000, China
  • Received:2017-11-27 Revised:2017-12-05 Online:2019-01-01 Published:2021-05-19
  • About author:MAO Rui, E-mail: mrui@petrochina.com.cn

摘要: The low-permeability conglomerate reservoir in the Lower Triassic Baikouquan formation of Mahu sag, Junggar Basin is characterized by complex reservoir lithology, complicated clay minerals and serious heterogeneity, so it is difficult to accurately characterize the effective porosity of the conglomerate reservoir with current logging methods. Considering that the clay mineral content is the controlling factor of reservoir physical properties, the paper uses the difference between CNL logging porosity and NMR logging porosity and clay mineral content obtained from core analysis to establish a clay mineral content characterization model; then uses clay bound water porosity and clay mineral content obtained from core analysis to establish a clay bound water porosity characterization model, based on which the effective porosity can be obtained by NMR logging porosity minus clay bound water porosity. The actual application of the method in 19 exploration wells in the study area shows that the relative error of effective porosity is only 6.8%, indicating that good effect has been gained by using the method, which could provide a new technological means for effective porosity evaluation with NMR logging data.

关键词: Mahu sag, Triassic, Baikouquan Formation, low-permeability conglomerate reservoir, NMR logging, clay mineral content, effective porosity

Abstract: The low-permeability conglomerate reservoir in the Lower Triassic Baikouquan formation of Mahu sag, Junggar Basin is characterized by complex reservoir lithology, complicated clay minerals and serious heterogeneity, so it is difficult to accurately characterize the effective porosity of the conglomerate reservoir with current logging methods. Considering that the clay mineral content is the controlling factor of reservoir physical properties, the paper uses the difference between CNL logging porosity and NMR logging porosity and clay mineral content obtained from core analysis to establish a clay mineral content characterization model; then uses clay bound water porosity and clay mineral content obtained from core analysis to establish a clay bound water porosity characterization model, based on which the effective porosity can be obtained by NMR logging porosity minus clay bound water porosity. The actual application of the method in 19 exploration wells in the study area shows that the relative error of effective porosity is only 6.8%, indicating that good effect has been gained by using the method, which could provide a new technological means for effective porosity evaluation with NMR logging data.

Key words: Mahu sag, Triassic, Baikouquan Formation, low-permeability conglomerate reservoir, NMR logging, clay mineral content, effective porosity