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Optimal allocation of goaf water quality utilization in old goaf based on differential evolution algorithm
Author: ZHENG Lijun,YUE Junchao,WEI Yahui,GUO Shuitao,LUO Wenjun,WANG Xinyi Time: 2024-03-25 Counts:

doi:10.16186/j.cnki.1673-9787.2021110001

Received:2022/11/01

Revised:2023/12/27

Published:2024/03/25

Optimal allocation of goaf water quality utilization in old goaf based on differential evolution algorithm

ZHENG Lijun1YUE Junchao2WEI Yahui2GUO Shuitao1LUO Wenjun2WANG Xinyi234

1.Guhanshan Coal MineHenan Coking Coal Energy Co.Ltd.Jiaozuo 454100HenanChina2.Department of Resources & EnvironmentHenan Polytechnic UniversityJiaozuo 454000HenanChina3.Collaborative Innovation Center of Coalbed Methane and Shale Gas for Central Plains Economic RegionHenan Polytechnic UniversityJiaozuo 454000HenanChina4.Collaborative Innovation Center of Coal Work Safety and Clean High Efficiency UtilizationHenan Polytechnic UniversityJiaozuo 454000HenanChina

Abstract: Most mine water has low pollution levels and can be used for drinkingindustryagricultureecologyand other purposes with slight treatment.The water supply in the old goaf of Wucun Mine in Jiaozuo Coalfield is 718 m3/hand the water demand for drinkingpower plantsirrigationaquacultureecology and other users around the mining area is 1 073.74 m3/h.The water in the old goaf can only meet 66.87% of the water demandThe water in the old goaf needs to be treated to meet the standards before it can be supplied to users.There are significant differences in water treatment processes and costs among different users.Optimizing the allocation of water in the old goaf based on water quality is of great significance. Objectives In order to maximize the benefits of comprehensive utilization of mine drainage Methods the water in the old goaf of Wucun Mine in Jiaozuo Coalfield was taken as the research object.Based on the calculation of available goaf water supply and water quality analysis combined with the requirements of drinking waterpower plantsirrigationaquacultureecological water demand and water quality around the mining areaa mathematical model for optimal allocation of 718 m3/h goaf water quality utilization was establishedand the differential evolution algorithm was used to solve the model. Results The results showed that during irrigation perioddrinking water reached 6.00 m3/hpower plant consumed 334.95 m3/hirrigation consumed 353.89 m3/haquaculture consumed 19.76 m3/h and ecology consumed 3.40 m3/hduring non irrigation perioddrinking water reached 6.00 m3/hpower plant consumed 688.84 m3/hirrigation consumed 0 m3/haquaculture consumed 19.76 m3/h and ecological water reached 3.40 m3/hthe annual return on water quality utilization in the old goaf was the highest. Conclusions The research results will provide a reference for the resource utilization of water in similar mine goaf areas and mine drainage.

Key words:differential evolution algorithmgoaf waterquality utilizationoptimal allocation

 

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