矿业废弃地再利用空间结构优化的技术体系与方法

    Technology system and method of spatial structure optimization for mining wasteland reuse

    • 摘要: 为了合理确定矿业废弃地再利用的用途、数量比例和空间布局,释放其再利用潜力,保障矿产资源型城市未来发展所需各项用地,构建了矿业废弃地再利用空间结构优化的技术体系,即先进行复垦适宜性评价,而后进行数量结构优化,最后进行空间结构优化。提出了数量结构优化和空间结构优化的思路和方法,数量结构优化应将再利用为各种地类的矿业废弃地的面积与区域内原有的相同地类的面积进行整合,综合考虑土地利用的生态、经济、社会效益,同时将土地复垦适宜性评价的结果作为主要约束条件;将数量结构优化的结果作为空间结构优化的约束条件,将矿业废弃地视为一种独立的地类参与整个区域的土地利用空间结构优化,通过区域土地利用空间结构优化的结果来确定矿业废弃地再利用的最优空间布局,同时结合土地复垦适宜性评价的结果对其进行检验和修正。采用比较分析法,选择基于GIS的模糊综合评价法作为土地复垦适宜性评价的方法;数量结构优化采用基于生态位的线性规划模型,空间结构优化采用CLUES模型。最后,以北京市门头沟区为例进行了实证研究。结果表明,该技术体系、方法和模型有效地实现了矿业废弃地再利用数量结构和空间结构的协同优化。该研究可为矿产资源型城市矿业废弃地再利用的实践提供理论借鉴。

       

      Abstract: Abstract: Optimizing the reutilization of a large area of mining wasteland is a realistic way for a mineral resource-based city to tap the land potential to meet the needs of future development. To determine the use type, quantity ratio and spatial layout reasonably is the core problem of optimization. This paper presents the technology system of optimizing land allocation and its spatial structure for reuse of mining wasteland. An evaluation of land reclamation suitability should be conducted first to determine roughly all possible uses of the mining wasteland and the maximum extent of each use type. Then, the optimization of the quantity structure should be conducted to determine the best proportion for different use types, combined with the land requirements of regional industrial development. Optimization of the spatial structure is the last step to allocate the optimal quantity structure to specific spaces. The train of thought and method of spatial structure and quantity structure are put forward. To optimize the quantity structure of mining wasteland, the area of various reuse types should be integrated with the area of the same original land type in the region to consider the overall ecological, economic, and social benefits, with the result of land reclamation suitability evaluation as the main constraint condition. Mining wasteland should be deemed as a separate land type to participate in the regional land use structure optimization, through which the optimal spatial layout of mining wasteland can be determined. The models are selected and constructed after comparative analysis. The linear model based on niche theory should be adopted for the optimization of quantity structure. The CLUES model should be adopted for optimization of spatial structure. Finally, a case study is conducted in the Mentougou district of Beijing city. The results show that the areas of mining wasteland reused for farmland, garden, forestland, construction land were: 82.7hm2,101.3hm2,994.6hm2, 953.4hm2. After optimization, mining wasteland in the town and its surrounding area were mostly reused as construction land. Mining wasteland in mountains far away from the residential area are mainly reused for woodland, and those near the village or water are reused for farmland and gardens. The spatial distribution of land use becomes more concentrated and compact, and the spatial agglomeration degree of the same land use type increases. The collaborative optimization of quantitative structure and spatial structure of mining wasteland was realized. The research offers theory support for the reuse practice of mining wasteland in a mineral resource-based city.

       

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