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突出煤层相似材料配比模型构建的正交试验研究

Orthogonal experimental study on proportioning model construction ofsimilar materials of outburst coal seam

  • 摘要: 突出煤相似材料是进行煤与瓦斯突出模拟试验的基础,突出煤相似材料需综合考虑力学特性、吸附解吸特性和孔隙特性等方面与原煤的相似性。为解决目前煤与瓦斯突出相似材料与原煤相似度不高的问题,选取水泥比例、沙子比例和成型压力为3个主要影响因素,通过正交试验和单因素试验方法研究各因素对相似材料单轴抗压强度、弹性模量、吸附CO2和CH4时的放散初速度以及孔隙率的影响。试验结果表明,相似材料单轴抗压强度和弹性模量随水泥比例和成型压力的增大而增大,放散初速度随水泥比例和沙子比例增大而减小,孔隙率随成型压力增大而减小。通过方差分析及多元线性回归分析,获得相似材料3个影响因素与试验指标之间的量化关系,构建了突出煤相似材料多因素配比模型,依据该模型可获得目标相似材料的配比数据,通过试验验证得到该配比模型在力学指标方面的误差在20%以内,放散初速度及孔隙率方面的误差在10%以内。最后,采用构建的相似材料配比模型制作突出型煤,利用自主研制的大型煤与瓦斯突出模拟试验系统成功开展了高应力作用下的煤与瓦斯突出模拟试验,进一步证实了配比模型的可靠性。

     

    Abstract: The outburst coal similar material is the basis for the coal and gas outburst simulation experiment.The similarity of the coal similar material needs to be considered comprehensively regarding the mechanical properties,adsorption/desorption characteristics and pore characteristics.In order to solve the problem that the similarity between coal and gas outburst similar materials and raw coal is not high,this paper uses cement ratio,sand ratio and molding pressure as three main influencing factors,the effects of various factors on the uniaxial compressive strength,elastic modulus,initial velocity of dissolution and porosity of CO2 and CH4 adsorbed by similar materials were studied by orthogonal experiment and single factor experiment.The experimental results show that the uniaxial compressive strength and elastic modulus of similar materials increase with the increase of cement ratio and molding pressure.The initial velocity of dispersion decreases with the proportion of cement and sand,and the porosity increases with the molding pressure decrease.Through the analysis of variance and multiple linear regression analysis,the quantitative relationship between the three influencing factors and the experimental indexes of similar materials were obtained,and the multi-factor matching model of outburst coal similar materials was constructed.According to the model,the matching data of the target similar materials could be obtained.The experimental results show that the error of the ratio model in the mechanical index is less than 20%,and the error in the initial velocity and porosity of the dispersion is less than 10%.Finally,using the constructed similar material ratio model to produce the protruding coal,the self-developed large-scale coal and gas outburst simulation test system successfully carried out the coal and gas outburst simulation test under high stress,which further confirmed the reliability of the proportioning model.

     

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