China Petroleum Exploration ›› 2021, Vol. 26 ›› Issue (5): 24-37.DOI: 10.3969/j.issn.1672-7703.2021.05.003

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Challenges and countermeasures of well logging data acquisition technology in unconventional petroleum exploration and development

Liu Guoqiang   

  1. PetroChina Exploration & Production Company
  • Online:2021-09-15 Published:2021-09-15

Abstract: The petroleum exploration in most of the domestic petroliferous basins has entered or will step into the stage of unconventional oil and gas exploration and development. The wireline logging technologies should be promoted to meet the development trend timely and effectively. The current situation, challenges and new requirement of logging technology in China are systematically analyzed by considering the characteristics of unconventional reservoir, oil and gas reservoir and engineering conditions. Finally, development countermeasures are proposed in detail by benchmarking international leading logging technology, which are: (1) Improve the performances of conventional wireline logging tools. The high-precision, high-resolution and high-safety conventional logging tools should be developed and put into production, with vertical resolution of 5-10 cm, density logging accuracy of 0.01-0.015 g/cm3. The high-yield controllable neutron tube technology will enable the safe density and neutron logging without radioactive source. (2) Develop high-performance imaging logging technology. Firstly, focus on the technology of 2D NMR logging with short echo interval (no more than 0.3 ms), high vertical resolution (about 10 cm), high signal-to-noise ratio (more than 8), and simultaneous detection of longitudinal and transverse relaxation; Secondly, research fi ne calculation of mineral compositions and accurate determination of fl uid properties applicable for tight reservoirs, such as the full spectrum of elements, multi frequency dielectric log, downhole real-time fl uid analysis and pressure measurement tools, and horizontal well multiphase fl ow imaging logging technology; Thirdly, promote 3D acoustic logging technology with the capabilities of fi ne azimuth resolution and ultra-far detection to describe the stratigraphic structure near the borehole of horizontal well, fault system, and spatial distribution of hydraulic fractures. (3) Speed up the research on high-performance through-pipe logging tools. The logging items should include conventional logging, electric imaging logging and array acoustic logging. The element full spectrum logging should gradually be supplemented, with its data accuracy and vertical resolution consistent with those of wireline logging data. The density and neutron logging tools should adopt miniaturized, high-yield and controllable neutron tube technology. The miniaturization of NMR logging should be enhanced to develop through-pipe NMR logging with its technical performance matching with that of wireline logging. (4) Emphasize the research on near bit and far-detection edge LWD technology. First is to establish a complete LWD logging series including GR and resistivity azimuth imaging logging, with the distance of less than 1 m between the detection point and drill bit; Second is azimuth far-detection edge technology with radial detection range of 20-30 m and azimuth resolution of at least 90°; Third is the forward-looking detection technology that can distinguish the formation interface or fault more than 5 m in front of the bit.

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