• 论文
主办单位:煤炭科学研究总院有限公司、中国煤炭学会学术期刊工作委员会
水文保留曲面下草原露天矿内排土场地貌近自然重塑
  • Title

    Reshaping of nearnatural landform of the internal dump in the grassland openpit mine based on HPCS

  • 作者

    夏嘉南 李根生卞正富雷少刚金慧霞

  • Author

    XIA Jianan,LI Gensheng,BIAN Zhengfu,LEI Shaogang,JIN Huixia

  • 单位

    中国矿业大学 公共管理学院中国矿业大学 矿山生态修复教育部工程研究中心温州职业技术学院

  • Organization
    1.School of Public Policy & Manage,China University of Mining & Technology,Xuzhou221116,China,2.Engineering Research Center of Ministry of Education for Mine Ecological Restoration,China University of Mining & Technology,Xuzhou221116,China,3.Wenzhou Vocational & Technical College,Wenzhou325035,China
  • 摘要

    露天开采作为草原矿区开采的重要方式采排复过程中形成的“ 梯田式” 内排土场传统地 貌面临占地面积大景观破碎水土侵蚀等问题。 基于自然的解决方案(NbS)可以自然地貌为师, 具有融合矿区原始景观的独特优势。 为构建与周边自然地貌相融合的内排土场地貌在现有工艺 和团队已有成果上提出一种采排复一体情景下基于水文保留曲面HPCS的内排土场近自然地 貌重塑模型以新疆黑山露天矿内排土场为例构建 HPCS 下近自然设计地貌(NNDL_HPCS)为实 验组地表调整曲面下近自然设计地貌(NNDL_SAS)、原始自然地貌(PNL)和传统设计地貌(TDL者为对照组结合 GIS 空间分析软件与 CLiDE 演化模型模拟并评价 NNDL_HPCS 在地貌融合、 土方调配与土壤抗水蚀 方面的改良效果结果表明:地貌设计上基于 HPCS 的内排土场近自然 地貌重塑模型可依据预设采复周期下采复子区采前地表矿层顶板和矿层底板 者的数字高程数 据(DEM),自动求解复填可用土方量获取复填子区地表高程设计结果;地貌融合上NNDL_HPCS 较 NNDL_SAS 和 TDL 视觉上更接近于 PNL其相对 PNL 的高程总方差较后两者分别低 50.37%和 37.92%且其自然水文保留率较后两者分别高出 2.85%和 8.53%;土方调配上NNDL_HPCS 土方 运移成本小幅增加其土方平均运距分别较 NNDL_SAS 和 TDL 分别高出约 4.99%和 5.05%;土壤 抗水蚀上NNDL_HPCS 较 NNDL_SAS 10 a 可减少约 55%的表土水蚀总量较 TDL 减少约 72.6%可显著提高内排土场表土抗水蚀能力


  • Abstract

    Openpit mining is an important mining method in China’s grassland mining areas. However, the traditional landform of “terraced field” inner dump formed in the process of mining and dumping is faced with problems such as large land area, landscape fragmentation and soil erosion. The naturebased solution (NbS) is based on the natural landscape and has the unique advantage of integrating the original landscape of the mine. Based on the existing technologies and team achievements, in order to build the inner dump landform that is integrated with the surrounding natural topography, a nearnatural landform reshaping model of the inner dump was proposed based on a hydrological preserved curved surface (HPCS). In this paper, the Heishan openpit mine in Xinjiang was selected to construct a nearnatural design landform with HPCS (NNDL_HPCS) as the experimental group, and the NNDL with surface adjustment surface (NNDL_SAS), pristine natural landform (PNL) and traditional design landform (TDL) were used as the control group. Combined with the GIS and CLiDE model, the improvement effects of the NNDL_HPCS on geomorphic fusion, earthwork allocation and soil water erosion resistance were simulated and evaluated. The results showed that:Based on the HPCS nearnatural landform reshaping model of the inner dump, the DEM of the premining surface, the roof and floor of the mining subarea under the preset mining cycle was used to automatically solve the available earthwork for filling and obtained the surface design elevation of the filling subarea. In terms of geomorphic fusion, the NNDL_HPCS was closer to the PNL than that of the NNDL_SAS and the TDL. The total variance of the NNDL_HPCS relative to the PNL was 50.37% and 37.92% lower than that of the NNDL_SAS and the TDL, and the natural hydrological retention rate was 2.85% and 8.53% higher than that of the NNDL_SAS and the TDL, respectively. In terms of earthwork allocation, the average earthwork distance of the NNDL_HPCS was 4.99% and 5.05% higher than that of the NNDL_SAS and the TDL respectively. In terms of soil water erosion resistance, the NNDL_HPCS can reduce water erosion by 55% compared with the NNDL_SAS and 72.6% compared with the TDL in 10 years, which can significantly improve the water erosion resistance of inner dump topsoil.

  • 关键词

    内排土场水文保留曲面近自然修复采排复一体化NbS土地整形

  • KeyWords

    internal dumping site,HPCS,near natural restoration,miningdumpingreclaiming of open pit,nature based solutions,land reshaping

  • 引用格式
    夏嘉南,李根生,卞正富,等. 水文保留曲面下草原露天矿内排土场地貌近自然重塑[J]. 煤炭学报,2022,47(7):2756-2767.
  • Citation
    XIA Jianan,LI Gensheng,BIAN Zhengfu,et al.Reshaping of nearnatural landform of the internal dump in the grassland openpit mine based on HPCS[J]. Journal of China Coal Society,2022,47(7):2756-2767.
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