饱和和干致密砂的冲击响应

IF 0.5 Q4 ENGINEERING, GEOLOGICAL
M. Fattah, A. Ali, B. Ahmed
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引用次数: 4

摘要

本文对单次脉冲荷载作用下干、饱和致密砂土的力学特性进行了试验研究。在冲击荷载作用下对干、饱和致密砂模型进行了试验。利用落重偏转仪(FWD)从不同高度进行不同的落质量,以提供单脉冲能量。研究了致密土在冲击荷载作用下的表面响应。这些回应包括:利用嵌入土壤中的下落重量偏转计(FWD)和加速度计(ah - 500a防水和低容量加速度传感器)以及土壤中不同深度的位移,以及由于顶部作用的冲击而产生的位移,速度和加速度,然后使用多记录仪tmr200进行记录。试验结果表明,当砂土饱和时,由于孔隙被水填充,颗粒间接触点减少,力-时程振幅减小约10-22%。此外,与深度B(其中B是承载板的直径)处的干砂相比,由于冲击而产生的垂直位移增加了约20-60%。这种特性与通过饱和介质的两个压缩波有关;因此,流体波和土骨架波的耦合运动使得饱和土中的位移更大。距离基础边缘B处土体介质内的水平位移小于干状态下的水平位移。由于接触压力的增大,随着冲击力幅度的增大,超孔隙水压力增大约40%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact Induced Responses of Saturated and Dry Dense Sand
The present article includes an experimental study of the behavior of dry and saturated dense sandy soil under the action of a single impulsive load. Dry and saturated dense sand models were tested under impact loads. Different falling masses from different heights were conducted using the falling weight deflectometer (FWD) to provide the single pulse energy. The responses of dense soils were evaluated at surface of soil under impact load. These responses include; displacements, velocities, and accelerations that are developed due to the impact acting at top and the displacement at different depths within the soil using the falling weight deflectometer (FWD) and accelerometers (ARH-500A waterproof, and low capacity acceleration transducer) that are embedded in the soil in addition to soil pressure gauges and then recorded using the multi-recorder TMR-200. Based on the experimental test results, it was found that as the sand becomes saturated, the amplitude of the force-time history decreases by about 10-22% since the voids are filled with water which lead to less contact points between particles. Moreover, the resulting vertical displacement due to impact increases by about 20-60% as compared to the case of dry sand at a depth B (where B is the diameter of the bearing plate) from the bearing plate. Such a behavior is related to two compressive waves through the saturated medium; the fluid wave and the soil skeleton wave with a coupled motion of those two waves hence, makes the displacement to be larger in the saturated soil. The horizontal displacement within the soil medium at a distance B away from the edge of the footing are less than the displacements in dry state. The excess pore water pressure increases by about 40% as the amplitude of the impact force increases due to the increase of the contact pressure.
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来源期刊
CiteScore
1.90
自引率
25.00%
发文量
11
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