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Experimental mechanical compaction to measure the influence of pore pressure on compressional wave velocity in unconsolidated sands

机译:机械压实实验,测量孔隙压力对非固结砂土中压缩波速度的影响

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This study describes uniaxial mechanical compaction tests performed on two naturally occurring unconsolidated sands with different mineralogy, quartz-rich and quartz-poor, in order to investigate the effect of pore pressure on the P-wave velocity. The compaction experiments simulated burial of sands with increasing vertical stress and pore pressure, and also simulated the effect of overpressure. For both sands the P-wave velocity increased and porosities decreased with increasing pore pressure when the applied vertical stress was increased at the same rate as the pore pressure. These effects may result from grain rearrangement, with decreasing radial effective stress offsetting the contraction of sand grains caused by pore pressure increase. The P-wave effective stress coefficient n, was computed using a simple procedure. A decrease in n_p of the quartz-poor sand above 10 MPa vertical effective stress was observed. This decrease is attributed to compaction, mainly due to grain crushing. The experimental results show that pore pressure can have significant effects on P-wave velocity and n_p, both directly and indirectly, depending upon the stress loading paths and mineralogy.
机译:这项研究描述了对两种天然矿物的,具有不同矿物学,富含石英和贫石英的未固结砂岩进行的单轴机械压实测试,目的是研究孔隙压力对纵波速度的影响。压实实验模拟了垂直应力和孔隙压力增加时的砂土埋藏,还模拟了超压的影响。对于两种砂,当施加的垂直应力以与孔隙压力相同的速率增加时,P波速度随孔隙压力的增加而增加,孔隙率降低。这些影响可能是由于晶粒重排而引起的,径向有效应力的减小抵消了因孔隙压力增加而引起的沙粒收缩。使用简单的程序即可计算出P波有效应力系数n。在垂直有效应力超过10 MPa时,石英贫砂的n_p减小。这种减少归因于压实,主要是由于颗粒破碎。实验结果表明,孔隙压力可以直接或间接地对P波速度和n_p产生显着影响,具体取决于应力加载路径和矿物学。

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