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Investigation of Vibration-Induced Settlement Using Multifactorial Experimental Design

机译:基于多因素实验设计的振动沉降研究

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A prediction model of vibration-induced settlement on granular soils was developed using multifactorial experimental design (MED). Major factors affecting vibration-induced settlement such as vibration amplitude, deviatoric stress, confining pressure, soil gradation, duration of vibration, moisture content, and relative density were considered in this study. To accommodate all these factors, a special vibratory frame was designed to shake a soil specimen within a triaxial cell. MED allowed the authors to investigate the effect of many factors affecting vibration-induced settlement using a relatively small number of experiments. Detailed procedures for applying MED are discussed. Low to medium vibration amplitudes with peak particle velocities ranging from 2.5 to 18 mm/s were evaluated for the settlement potential assessment. The most significant factors affecting vibration-induced settlement were vibration amplitude, confining pressure, and deviatoric stress. At a given vibration amplitude, the settlement was substantially reduced with increasing confining pressure. Vibration-induced settlement was affected by the stress anisotropy, and maximum settlement occurred at a given confining pressure in the range of earth pressure coefficients between 0.45 and 0.6.
机译:使用多因素实验设计(MED)建立了振动诱发的颗粒状土壤沉降预测模型。本研究考虑了影响振动引起沉降的主要因素,例如振动幅度,偏应力,围压,土壤等级,振动持续时间,水分含量和相对密度。为了适应所有这些因素,设计了一种特殊的振动框架来摇动三轴单元内的土壤样本。 MED允许作者使用相对少量的实验来研究影响振动诱发沉降的许多因素的影响。讨论了应用MED的详细过程。评估了峰值速度为2.5至18 mm / s的中低振动幅度,以进行沉降电位评估。影响振动引起沉降的最重要因素是振动幅度,围压和偏应力。在给定的振动幅度下,随着围压的增加,沉降量将大大减少。振动引起的沉降受应力各向异性的影响,在给定的围压下,在土压力系数介于0.45和0.6之间的范围内,最大沉降发生。

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