摘要
针对岩溶充水矿井涌水量数值模拟中边界条件概化和非均质性刻画难题,采用分别建立区域模型和局部模型的方法解决边界概化问题,运用信息复合技术刻画岩溶介质的非均质性.以具有完整水文地质边界的荥巩矿区为计算区建立区域模型,以区域模型计算出的流量作为边界条件建立王河煤矿矿井涌水量模拟模型(局部模型).在充分分析钻孔、构造、突水、物探等资料的基础上,运用信息复合技术对煤矿充水含水层进行垂向和平面参数分区.在此基础上,利用GMS建立了精细的王河煤矿涌水量模拟模型.利用该模型预测了不同开采工作面的矿井正常涌水量和最大涌水量.结果表明,开采111070、113090、113110、113120工作面时,正常涌水量分别为490、350、560、590 m3/h,最大涌水量分别为690、490、790、830 m3/h.预测结果可为矿山设计部门确定开采方案、布置排水设备和制定防治水措施提供科学依据.
In numerical simulation of mine discharge of karst water, a regional model and a local model are constructed to solve the boundary conceptualization, and the heterogeneity of karst medium is depicted using information compound technology. The regional model of the study area, Xinggong mining area, is constructed due to the fact that it has complete hydrogeological boundary which can provide specified flow values for boundaries in the simulation model of mine discharge in Wanghe coal mine, which is the local model. The vertical and horizontal parameters of the water filling aquifer are divided using information compound technology, based on the analysis of many data such as borehole, structure, water inrush and geophysical investiga- tion. The refined simulation model of mine discharge in Wanghe coal mine is then constructed. The normal mine discharge and maximum mine discharge of different mining faces are forecasted using this model. The results show that when mining the faces of 111070, 113090, 113110 and 113120, the normal mine discharges are 490, 350, 560 and 590 m^3/h respectively, and the maximum mine discharges are 690, 490, 790, and 830 m^3/h respectively. The results can provide a scientific basis for the mine design department to determine mining scheme, arrange drainage equipment and take measures to control water.
出处
《地球科学(中国地质大学学报)》
EI
CAS
CSCD
北大核心
2011年第4期755-760,共6页
Earth Science-Journal of China University of Geosciences
基金
国家重点基础研究发展计划"973"项目(No.2010CB428802)
国家"863"计划(No.2007AA06Z337)
关键词
矿井涌水量
数值模拟
区域模型
局部模型
地下水
煤矿
mine discharge
numerical simulation
regional model
local model
groundwater
coal mines.