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一种避免充填采矿诱发环境损害的充填体压缩比的智能优化设计方法。

An intelligent optimization design method of the compressed ratio of backfilling body to avoid backfilling mining-induced environmental damage.

机构信息

Jiangsu Key Laboratory of Resources and Environment Information Engineering, China University of Mining and Technology, Xuzhou, 221116, Jiangsu, China.

School of Environment Science and Spatial Informatics, China University of Mining and Technology, Xuzhou, 221116, Jiangsu, China.

出版信息

Environ Sci Pollut Res Int. 2022 Sep;29(45):69022-69036. doi: 10.1007/s11356-022-20135-y. Epub 2022 May 13.

Abstract

Backfilling mining is a green mining method. The rational design of the compressed ratio of the backfilling body can reduce backfilling mining costs while avoiding mining-induced environmental damage. At present, the enumeration method is a common design method for the compressed ratio of the backfilling body of backfilling mining under buildings (structures). However, the design method has some problems, such as cumbersome processes and time consumption. Therefore, this paper proposes an intelligent optimization design method of the compressed ratio of backfilling body and constructs the design flow of the method. The method takes economic benefits as the optimization goal and takes the mining-induced subsidence of protected objects to meet their fortification requirements as the constraint condition. Within the feasible region of the compressed ratio, the intelligent optimization algorithm is used to search for the minimum compressed ratio that satisfies the constraints. This paper used the method to design the compressed ratio of the backfilling panel in the Dongtan Coal Mine. The research results show that the method can quickly design the optimal compressed ratio compared with the enumeration method and cut the production cost on the premise of the safety of ground buildings (structures).

摘要

条带式充填开采是一种绿色开采方法。合理设计充填体的压缩比,可以在避免采矿诱发环境损害的同时降低充填开采成本。目前,对于建筑物(构)下充填开采的充填体压缩比,常用的设计方法是枚举法。然而,该设计方法存在过程繁琐、耗时等问题。因此,本文提出了一种充填体压缩比的智能优化设计方法,并构建了该方法的设计流程。该方法以经济效益为优化目标,以保护对象的采动沉降满足其设防要求为约束条件,在压缩比的可行域内,利用智能优化算法搜索满足约束条件的最小压缩比。本文采用该方法对东滩煤矿充填条带的压缩比进行了设计。研究结果表明,与枚举法相比,该方法可以快速设计出最优压缩比,在保证地面建筑物(构)安全的前提下降低生产成本。

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