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Numerical simulations of triaxial compression tests of cemented sandstone

机译:水泥砂岩三轴压缩试验的数值模拟

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Three-dimensional DEM simulations of triaxial compression tests of cemented sandstone samples have been performed at different values of confining pressure, initial density and bond strength. The results show that with increase in bond strength, initial density and confining pressure both the initial stiffness and peak strength increase. For a higher bond strength and initial density the samples exhibit a higher rate of dilation. Bond breakage was found to increase with confining pressure and decrease with bond strength and initial density. The Mohr-Coulomb strength parameters c' and phi' were obtained for the numerical samples and correlations between the shear strength parameters and the bond strength were established. The correlations were then used to find the value of the bond strength to be used for comparisons with results of experimental triaxial tests. The stress strain responses of the numerical samples were found to be in good agreement with the experimental results. The critical state lines (CSL) of triaxial compression tests for both loose and medium dense systems show that the critical void ratio is independent of the initial density but increases with increase in bond strength. Increasing the bond strength increases the dilation, which leads to a higher critical state void ratio.
机译:在不同的围压,初始密度和粘结强度值下,进行了水泥砂岩样品三轴压缩试验的三维DEM模拟。结果表明,随着粘结强度,初始密度和围压的增加,初始刚度和峰值强度均增加。对于更高的粘结强度和初始密度,样品表现出更高的膨胀率。发现粘结破坏随围压而增加,而随粘结强度和初始密度而下降。获得了数值样本的莫尔-库仑强度参数c'和phi',并建立了剪切强度参数与粘结强度之间的相关性。然后使用相关性来找到用于与实验三轴测试结果进行比较的粘结强度值。发现数值样品的应力应变响应与实验结果吻合良好。松散和中等密实系统的三轴压缩测试的临界状态线(CSL)表明,临界空隙率与初始密度无关,但随着粘结强度的增加而增加。增加粘结强度会增加膨胀,从而导致更高的临界状态空隙率。

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