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沙枣园地段深部地质环境特征研究

罗辉, 陈伟明, 李亚伟, 田霄, 张竞嘉. 2024. 沙枣园地段深部地质环境特征研究. 物探与化探, 48(6): 1568-1576. doi: 10.11720/wtyht.2024.0416
引用本文: 罗辉, 陈伟明, 李亚伟, 田霄, 张竞嘉. 2024. 沙枣园地段深部地质环境特征研究. 物探与化探, 48(6): 1568-1576. doi: 10.11720/wtyht.2024.0416
LUO Hui, CHEN Wei-Ming, LI Ya-Wei, TIAN Xiao, ZHANG Jing-Jia. 2024. Study on deep geological environmental characteristics of the Shazaoyuan area. Geophysical and Geochemical Exploration, 48(6): 1568-1576. doi: 10.11720/wtyht.2024.0416
Citation: LUO Hui, CHEN Wei-Ming, LI Ya-Wei, TIAN Xiao, ZHANG Jing-Jia. 2024. Study on deep geological environmental characteristics of the Shazaoyuan area. Geophysical and Geochemical Exploration, 48(6): 1568-1576. doi: 10.11720/wtyht.2024.0416

沙枣园地段深部地质环境特征研究

  • 基金项目:

    国家原子能机构高效废物地质处置创新中心基金项目(CXJJ2110-1)

详细信息
    作者简介: 罗辉(1982-), 男, 高级工程师, 博士, 主要从事环境工程、三维地质建模方面的研究工作。Email:luo1029hui@163.com
  • 中图分类号: X141

Study on deep geological environmental characteristics of the Shazaoyuan area

  • 通过地表地质调查、地球物理测量、钻孔勘察、三维地质建模等手段对沙枣园地段深部地质环境进行研究, 初步查明了沙枣园地段的岩性和构造空间展布、深部岩石完整性及工程地质等特征。得出如下认识:沙枣园地段花岗岩岩体地表出露面积大, 岩性相对均一, 其主体为沙枣园超单元的黑云母花岗闪长岩, 出露面积约330 km2, 岩体外倾, 且埋深大于2 km; 主要发育NNW向、近SN向和NE向3组共12条断裂, 倾角较陡, 这些断层均通过岩体; 岩体深部裂隙发育, 大多为陡倾角, 且被方解石和黏土等矿物充填; 在该地段初步圈定2个以上有利岩块, 可用作高放废物处置库的潜在候选场址。通过研究证实, 沙枣园地段具备筛选高放废物处置库的有利地质条件。
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  • [1]

    Savage D.The scientific and regulatory basis for the geological disposal of radioactive waste [M].Chichester:John Wiley and Sons, 1995.

    [2]

    潘自强, 沈文权.2020年前我国核能发展的策略和目标研究[J].铀矿地质, 2004, 20(5):257-259.

    Pan Z Q, Shen W Q.Tactics and targets for nuclear energy development in China by 2020[J].Uranium Geology, 2004, 20(5):257-259.

    [3]

    潘自强, 钱七虎.高放废物地质处置战略研究[M].北京:原子能出版社, 2009.Pan Z Q, Qian Q H.Strategic research on geological disposal of high-level radioactive waste[M].Beijing:Atomic Energy Press, 2009.

    [4]

    王驹.高放废物地质处置:进展与挑战[J].中国工程科学, 2008, 10(3):58-65.

    Wang J .Geological disposal of high level radio active waste:Progress and challenges[J].Engineering Science, 2008, 10(3):58-65.

    [5]

    王驹, 陈伟明, 苏锐, 等.高放废物地质处置及其若干关键科学问题[J].岩石力学与工程学报, 2006, 25(4):801-812.

    Wang J, Chen W M, Su R, et al.geological disposal of high-level radioactive waste and its key scientific issues[J].Chinese Journal of Rock Mechanics and Engineering, 2006, 25(4):801-812.

    [6]

    王驹, 徐国庆, 郑华铃, 等.中国高放废物地质处置研究进展1985-2004[J].世界核地质科学, 2005, 22(1):5-16.

    Wang J, Xu G Q, Zhen H L, et al.Geological disposal of high level radioactive waste in China:Progress during 1985-2004[J].World Nuclear Geoscience, 2005, 22 (1):5-16.

    [7]

    苏锐, 程琦福, 王驹, 等.我国高放废物地质处置库场址筛选总体技术思路探讨[J].世界核地质科学, 2011, 28(1):45-51.

    Su R, Cheng Q F, Wang J, et al.Discussion on technical ideas of site selection of geological disposal repository for high-level radioactive waste in China[J].World Nuclear Geoscience, 2011, 28(1):45-51.

    [8]

    闵茂中.高放废物地质处置的地质介质选择[J].核科学与工程, 1991, 11(4):353-362.

    Min M Z.On selection of geological medium for disposal of high-level radwaste[J].Chinese Journal of Nuclear Science and Engneering, 1991, 11(4):353-362.

    [9]

    王驹, 郭永海, 陈伟明, 等.高放废物地质处置甘肃北山预选区选址和场址评价研究[R].核工业北京地质研究院, 2007.Wang J, Guo Y H, Chen W M, et al.Study on the site selection and site evaluation of the geological disposal of high-level radioactive waste in Beishan pre-selection area, Gansu[R].Beijing Geological Research Institute of Nuclear Industry, 2007.

    [10]

    王驹.中国高放废物地质处置21世纪进展[J].原子能科学技术, 2019, 53(10):2072-2082.

    Wang J .Progress of geological disposal of high-level radioactive waste in China in the 21st century[J].Atomic Energy Science and Technology, 2019, 53(10):2072-2082.

    [11]

    王驹, 金远新, 陈伟明, 等.中国高放废物地质处置库场址区域筛选[R].核工业北京地质研究院, 2009.Wang J, Jin Y X, Chen W M, et al.Site selection of geological repository for high-level radioactive waste in China[R].Beijing Geological Research Institute of Nuclear Industry, 2009.

    [12]

    罗辉, 王驹, 蒋实, 等.高放废物地质处置新场岩体三维地质模型构建与应用[J].物探与化探, 2019, 43(3):568-575.

    Luo H, Wang J, Jiang S, et al.Construction and application of three-dimensional geological model in Xinchang Block for high-level radioactive waste disposal[J].Geophysical and Geochemical Exploration, 2019, 43(3):568-575.

    [13]

    罗辉, 王驹, 蒋实, 等.高放废物地质处置地下实验室新场候选场址三维地质建模[J].铀矿地质, 2017, 33(3):178-183.

    Luo H, Wang J, Jiang S, et al.Study on 3D geological modeling of Xinchang potential underground laboratory site for high-level radioactive waste disposal[J].Uranium Geology, 2017, 33(3):178-183.

    [14]

    赵宏刚, 王驹, 杨春和, 等.甘肃北山旧井地段高放废物处置库深度初步探讨[J].岩石力学与工程学报, 2007(S2):3966-3973.

    Zhao H G, Wang J, Yang C H, et al.Preliminary discussion on depth for high-level radioactive waste repository in Jiujing block, Beishan area, Gansu Province[J].Chinese Journal of Rock Mechanics and Engineering, 2007(S2):3966-3973.

    [15]

    王锡勇, 李冬伟, 成功, 等.高放废物地质处置的岩体深部结构面特征研究--以甘肃北山高放废物地质处置地下实验室工程为例[J].物探与化探, 2018, 42(3):481-490.

    Wang X Y, Li D W, Cheng G, et al.Geological disposal of high-level radioactive wastebase to study the structural plane of deep rock mass:A case study of geological disposal of high-level radioactive waste used in the underground research laboratory of Gansu Beishan area[J].Geophysical and Geochemical Exploration, 2018, 42(3):481-490.

    [16]

    陈伟明, 王驹, 赵宏刚, 等.高放废物地质处置北山预选区新场地段地质特征[J].岩石力学与工程学报, 2007(S2):4000-4006.

    Chen W M, Wang J, Zhao H G, et al.geological characters of Xinchang section in pre-selected beishan region for high-level radioactive waste disposal[J].Chinese Journal of Rock Mechanics and Engineering, 2007(S2):4000-4006.

    [17]

    罗辉, 蒋实, 赵宏刚, 等.三维地质建模在高放废物地质处置预选地段筛选中的应用--以新疆预选区天湖预选地段为例[J].物探与化探, 2021, 45(6):1488-1496.

    Luo H, Jiang S, Zhao H G, et al.Application of 3D geological modeling in screening of sites preselected for geological disposal of high-level radioactive waste-A case study of Tianhu preselected site, Xinjiang[J].Geophysical and Geochemical Exploration, 2021, 45(6):1488-1496.

    [18]

    罗辉, 陈伟明, 周志超, 等.高放废物地质处置预选地段调查与适宜性研究[J].物探与化探, 2023, 47(6):1479-1489.

    Luo H, Chen W M, Zhou Z C, et al.Investigation and suitability study of pre-selected sites for geological disposal of high level radioactive waste[J].Geophysical and Geochemical Exploration, 2023, 47(6):1479-1489.

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出版历程
收稿日期:  2024-10-12
修回日期:  2024-11-01

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