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WEI Qiming, ZHAO Baofeng, ZHANG Zeyuan. Exploration of hydrogeological conditions of Baotashan sandstone aquifer based on dewatering test[J]. Safety in Coal Mines, 2024, 55(9): 173−179. DOI: 10.13347/j.cnki.mkaq.20231649
Citation: WEI Qiming, ZHAO Baofeng, ZHANG Zeyuan. Exploration of hydrogeological conditions of Baotashan sandstone aquifer based on dewatering test[J]. Safety in Coal Mines, 2024, 55(9): 173−179. DOI: 10.13347/j.cnki.mkaq.20231649

Exploration of hydrogeological conditions of Baotashan sandstone aquifer based on dewatering test

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  • Received Date: November 16, 2023
  • Revised Date: December 08, 2023
  • In order to further explore the hydrogeological conditions of Baotashan sandstone aquifer in Ningdong coalfield and provide basic data for the water disaster prevention and control of the lower coal floor sandstone, the hydrogeological parameters of the aquifer were calculated by dewatering test, and the feasibility of water drainage from aquifer was proved. The results show that: according to the data of dewatering borehole and one observation borehole, two observation boreholes from single borehole dewatering test of Baotashan sandstone, the average permeability coefficient calculated by analytical method is 0.301 m/d and 0.219 m/d, and the average influence radius is 691 m and 914 m, respectively. The average influence radius obtained by graphic method is 697 m, and the unit water inflow is 0.071-0.088 L/(s·m) according to three times of deep drawdown. The hydrogeological parameters obtained by dewater test are large than those obtained by pumping water test. The hydrogeological characteristics of Baotashan sandstone aquifer are weak permeability and water abundance, the water abundance is uneven, and the pressure and water temperature are high. Based on the results of dewater test and the analysis of boundary conditions in the study area, it is found that Baotashan sandstone aquifer has good drainage ability.

  • [1]
    董书宁,姬亚东,王皓,等. 鄂尔多斯盆地侏罗纪煤田典型顶板水害防控技术与应用[J]. 煤炭学报,2020,45(7):2367−2375.

    DONG Shuning, JI Yadong, WANG Hao, et al. Prevention and control technology and application of roof water disaster in Jurassic coal field of Ordos Basin[J]. Journal of China Coal Society, 2020, 45(7): 2367−2375.
    [2]
    赵宝峰,吕玉广. 侏罗纪煤田煤层底板砂岩水害特征与防治技术[J]. 中国煤炭,2021,47(9):56−63. doi: 10.3969/j.issn.1006-530X.2021.09.008

    ZHAO Baofeng, LYU Yuguang. Research on characteristics and prevention and control technology of sandstone water disaster in coal seam floor in Jurassic coalfield[J]. China Coal, 2021, 47(9): 56−63. doi: 10.3969/j.issn.1006-530X.2021.09.008
    [3]
    王双明,申艳军,孙强,等. 西部生态脆弱区煤炭减损开采地质保障科学问题及技术展望[J]. 采矿与岩层控制工程学报,2020,2(4):1−15.

    WANG Shuangming, SHEN Yanjun, SUN Qiang, et al. Scientific issues of coal detraction mining geological assurance and their technology expectations in ecologically fragile mining areas of western China[J]. Journal of Mining and Strata Control Engineering, 2020, 2(4): 1−15.
    [4]
    武强,许珂,张维. 再论煤层顶板涌(突)水危险性预测评价的“三图-双预测法”[J]. 煤炭学报,2016,41(6):1341−1347.

    WU Qiang, XU Ke, ZHANG Wei. Further research on “three maps-two predictions” method for prediction on coal seam roof water bursting risk[J]. Journal of China Coal Society, 2016, 41(6): 1341−1347.
    [5]
    李东,刘生优,张光德,等. 鄂尔多斯盆地北部典型顶板水害特征及其防治技术[J]. 煤炭学报,2017,42(12):3249−3254.

    LI Dong, LIU Shengyou, ZHANG Guangde, et al. Typical roof water disasters and its prevention & control technology in the north of Ordos Basin[J]. Journal of China Coal Society, 2017, 42(12): 3249−3254.
    [6]
    刘清宝,丁湘,冯洁,等. “八位一体” 闭环式煤矿顶板水害管控模式的构建与应用[J]. 煤田地质与勘探,2021,49(4):170−177. doi: 10.3969/j.issn.1001-1986.2021.04.020

    LIU Qingbao, DING Xiang, FENG Jie, et al. Construction and application of “eight in one ” closed-loop management and control mode of roof water disaster in coal mines[J]. Coal Geology & Exploration, 2021, 49(4): 170−177. doi: 10.3969/j.issn.1001-1986.2021.04.020
    [7]
    吕玉广,刘宝开,赵宝峰,等. 侏罗系宝塔山砂岩水文地质特征与解危开采研究−以新上海一号煤矿为例[J]. 煤田地质与勘探,2020,48(6):170−178. doi: 10.3969/j.issn.1001-1986.2020.06.023

    LYU Yuguang, LIU Baokai, ZHAO Baofeng, et al. Hydrogeological characteristics and danger-solving mining of Jurassic Baotashan sandstone—a case study in New Shanghai No. 1 coal mine[J]. Coal Geology & Exploration, 2020, 48(6): 170−178. doi: 10.3969/j.issn.1001-1986.2020.06.023
    [8]
    高振宇,何渊,任建刚,等. 布尔台矿42201工作面底板砂岩承压水防治技术[J]. 煤矿安全,2017,48(S1):43−47.

    GAO Zhenyu, HE Yuan, REN Jiangang, et al. Prevention and control technique for confined water of floor sandstone at 42201 working face of Buertai Coal Mine[J]. Safety in Coal Mines, 2017, 48(S1): 43−47.
    [9]
    赵宝峰. 侏罗纪煤田宝塔山砂岩含水层大流量大降深放水试验[J]. 矿业安全与环保,2021,48(1):50−54.

    ZHAO Baofeng. Study on dewatering test with large flow and drawdown of Baotashan sandstone aquifer in Jurassic Coalfield[J]. Mining Safety & Environmental Protection, 2021, 48(1): 50−54.
    [10]
    赵宝峰,吕玉广. 煤层底板厚层砂岩含水层可疏性综合评价[J]. 煤矿安全,2021,52(9):196−203.

    ZHAO Baofeng, LYU Yuguang. Comprehensive evaluation of drainage feasibility for thick sandstone aquifer of floor[J]. Safety in Coal Mines, 2021, 52(9): 196−203.
    [11]
    李德彬. 侏罗系煤田宝塔山砂岩含水层疏放水可行性研究[J]. 煤炭工程,2019,51(2):92−96.

    LI Debin. Study on the feasibility of water drainage for the baotashan sandstone aquifer in Jurassic coal field[J]. Coal Engineering, 2019, 51(2): 92−96.
    [12]
    任冬冬,李奎水,任鹏,等. 伊犁一矿5号煤层底板砂岩含水层放水试验及参数计算[J]. 能源与节能,2020(3):35−38. doi: 10.3969/j.issn.2095-0802.2020.03.016

    REN Dongdong, LI Kuishui, REN Peng, et al. Dewatering test and parameter calculation of sandstone aquifer in No. 5 coal seam floor of Ili No. 1 coal mine[J]. Energy and Energy Conservation, 2020(3): 35−38. doi: 10.3969/j.issn.2095-0802.2020.03.016

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