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基于Double-Yield模型下采动影响对煤岩体应力影响机理研究
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作者 李少华 石磊 张翔 《煤炭技术》 CAS 2019年第3期47-51,共5页
采用Mohr-Coulomb本构模型模拟其他岩层,采用Double-Yield模型模拟采空区,通过Salamon公式确定充填材料的应力应变关系曲线,并且通过对单元体进行加载得出曲线与其进行拟合得出充填材料的参数。同时对比采空区采用Null模型和Double-Yiel... 采用Mohr-Coulomb本构模型模拟其他岩层,采用Double-Yield模型模拟采空区,通过Salamon公式确定充填材料的应力应变关系曲线,并且通过对单元体进行加载得出曲线与其进行拟合得出充填材料的参数。同时对比采空区采用Null模型和Double-Yield模型在垂直应力,塑性区,以及模型底板的应力记录曲线的不同。得出采用Double-Yield模型能较真实反应矿井采空区垮落的真实情况。 展开更多
关键词 double-yield模型 充填材料 Salamon公式 采空区
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Stress environment of entry driven along gob-side through numerical simulation incorporating the angle of break 被引量:8
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作者 Guorui Feng Pengfei Wang 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2020年第2期189-196,共8页
Angle of break(AOB)is the acute angle created by the coal seam bedding plane and caving line formed by roof strata movement after extraction of a longwall panel.It has a significant influence on stress redistribution ... Angle of break(AOB)is the acute angle created by the coal seam bedding plane and caving line formed by roof strata movement after extraction of a longwall panel.It has a significant influence on stress redistribution both in the gob and abutment.Throughout numerical simulation investigations up to now,little attention has been paid to it or an AOB of 90°was used,which however,is not realistic.This paper presents a detailed numerical modelling incorporating the AOB against Zhenchengdi Coal Mine.The AOB was obtained through cross-measure boreholes.Hoek-Brown constitutive model was used to simulate the rock masses.Double-yield constitutive model,which was best fitted by Salamon's model,was used to simulate the gob.The results show that a‘‘/\shape"shear failure zone develops around the gob.The shear failure in the floor along the panel edge is due to opposite shear of rock mass on two sides of the caving line,and the number of yielded zones within the gob floor close to the gob edge is smaller.According to the research,the entry was determined to be driven under the gob edge employing splitlevel longwall panel layout(SLPL).The other numerical simulation for SLPL shows that stress around the god-side entry is much smaller than pre-mining stress,and the area of intact rock mass at the elevating section is larger than conventional layout.Numerical modelling was then validated by field observation. 展开更多
关键词 STRESS ENVIRONMENT ANGLE of BREAK Gob-side Numerical simulation double-yield
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