• NUCLEAR TECHNIQUES
  • Vol. 47, Issue 8, 080202 (2024)
Rui LIU1,2, Huawei YU1,2,*, Qian ZHU1,2, Aizhong YUE3..., Hu WANG3, Chaozhuo LIU4, Qianwen ZHANG1,2, Shu YANG1,2, Linke ZHU1,2 and Xiaolei ZHANG3|Show fewer author(s)
Author Affiliations
  • 1(National Key Laboratory of Deep Oil and Gas, China University of Petroleum (East China), Qingdao 266580, China)
  • 2(School of Geosciences, China University of Petroleum (East China), Qingdao 266580, China)
  • 3Well Logging Technology Research Institute of China Petroleum Group Well Logging Co., Ltd., Xi'an 710077, China
  • 4School of Science, China University of Petroleum (East China), Qingdao 266580, China
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    DOI: 10.11889/j.0253-3219.2024.hjs.47.080202 Cite this Article
    Rui LIU, Huawei YU, Qian ZHU, Aizhong YUE, Hu WANG, Chaozhuo LIU, Qianwen ZHANG, Shu YANG, Linke ZHU, Xiaolei ZHANG. Monte Carlo simulation analysis of X-ray density logging shields[J]. NUCLEAR TECHNIQUES, 2024, 47(8): 080202 Copy Citation Text show less
    References

    [1] Yu H W, Wang Z, Xue Z B et al. Corrections of fast neutron inelastic scattering effects on D-T neutron porosity logging[J]. Applied Radiation and Isotopes, 190, 110486(2022).

    [2] Becker A J, Boyce J R, Corris G W et al. Detection of scattered X-rays from an electron linac in a borehole[J]. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 24, 995-998(1987).

    [3] ZHANG Feng, LI Yafen, XIN Yi et al. Numerical simulation of density logging based on X-ray and gamma ray sources[J]. Journal of China University of Petroleum (Edition of Natural Science), 42, 60-66(2018).

    [4] Simon M, Tkabladze A, Beekman S et al. A revolutionary X-ray tool for true sourceless density logging with superior performance[C](2018).

    [5] CHEN Xu, WEI Cunfeng, SUN Jinchuan et al. Simulation analysis and experimental verification on the X-ray protective properties of tungsten alloy[J]. Chinese Journal of Stereology and Image Analysis, 24, 9-15(2019).

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    [8] YU Huawei, YANG Zhengchun, LIU Chaozhuo et al. Effects of X-ray tube high-voltages on the density measurement accuracy in X-ray density logging[J]. Nuclear Techniques, 44, 110401(2021).

    [9] WANG Hu, LIU Rui, YUE Aizhong et al. Depth-of-investigation characteristics and influence of 350-kV high-voltage X-ray density logging[J]. Nuclear Techniques, 46, 100502(2023).

    [10] CHEN Xianghong. Basic research on X-ray density logging method[D](2020).

    [11] WANG Jian, ZOU Shuliang. Comparative study of tungsten and lead as gamma ray shielding material[J]. Journal of University of South China (Science and Technology), 25, 19-22(2011).

    [12] Li Z F, Zhou W, Zhang X L et al. High-efficiency, flexibility and lead-free X-ray shielding multilayered polymer composites: layered structure design and shielding mechanism[J]. Scientific Reports, 11, 4384(2021).

    [13] WU Huilin, LI Yulian, JIN Ya et al. A design of source spacing of the X-ray density logging tool based on numerical simulation[J]. Nuclear Techniques, 45, 100402(2022).

    [14] Yu H W, Zhang Y X, Chen X H et al. Numerical simulation and method study of X-ray litho-density logging[J]. Nuclear Science and Techniques, 31, 124(2020).

    [15] YU Huawei, ZHANG Qianwen, WANG Zhe et al. Standoff calculation and application of azimuthal density logging based on broad-beam γ-ray attenuation[J]. Nuclear Techniques, 46, 110503(2023).

    Rui LIU, Huawei YU, Qian ZHU, Aizhong YUE, Hu WANG, Chaozhuo LIU, Qianwen ZHANG, Shu YANG, Linke ZHU, Xiaolei ZHANG. Monte Carlo simulation analysis of X-ray density logging shields[J]. NUCLEAR TECHNIQUES, 2024, 47(8): 080202
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