基于因子分析的矿山水源识别方法

Shi Longqing, L. Yue
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摘要

以焦作矿区为研究背景,根据对矿井主要充水含水层及山西组21号煤层开采后涌水源水样的调查,在地下水化学成分数据的基础上,选取Cl-、SO42-、HCO3-、Na++K+、Ca2+、Mg2+ 6种水化学成分作为样品指标。并采用主成分分析法,通过因子分析法建立数学模型。利用piper图直观地对水样的一般化学特征和水质类型进行综合分析。同时,通过对焦作矿区出水口水性质与主要含水层水性质的对比分析,对煤矿开采引起的多涌水源杂交进行了判别。并借助SPSS因子分析,将水化学指标从6种水化学成分降维为3个主要因子,取代原有变量参与数据建模。研究结果表明,将piper图与因子分析模型相结合,可以有效地识别焦作矿区山西组21号煤层开采后的突水源,并根据各含水层对矿井突水量的贡献进行排序,解决了突水源识别中的信息叠加和相关性问题;为矿山水害的防治提供了理论依据。
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Recognition Method of Mine Water Sources Based on Factor Analysis
Taking Jiaozuo mining area as the research background, according to the survey of water samples among the main water-filled aquifers of the mine and water gushing sources due to the exploitation of the No.21 coal seams in Shanxi group, six kinds of water chemical composition were selected as the sample indexes, including Cl-, SO42-, HCO3-, Na++K+, Ca2+, Mg2+, based on the data of groundwater chemical composition, and a principal component analysis was applied to establish the mathematical model by the method of factor analysis. A piper diagram was used to intuitively conduct the synthetical analyses for the general chemical characteristics and water quality types of the water samples. At the same time, via the comparative analysis between the water properties of water exits and that of the main aquifers in the Jiaozuo mining area, discrimination of the hybridization of the multiple water gushing sources due to coal mining was done. Moreover, by dint of the SPSS factor analysis, the water chemical proxies were carried on dimensionality reduction from the six kinds of water chemical composition to the three major factors, which replaced the original variables to participate in the data modeling. The results of the study showed that the combination of the piper diagram and the factor analysis modeling could effectively identify the water gushing sources owing to exploiting the No.21 coal seams of the Shanxi group in the Jiaozuo mining area and rank on the basis of the contributions of each aquifer to the amounts of water bursting in the mine, solving the problems of information superposition and correlations consisted in the identification of water gushing sources, which provides a theoretical basis for the prevention and cure of the mine water disasters.
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