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Energy-based evaluation of liquefaction of fiber-reinforced sand using cyclic triaxial testing

机译:基于能量的纤维增强砂液化的循环三轴试验评估

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The present study reviews a series of cyclic triaxial tests to investigate the liquefaction characteristics of Babolsar sand reinforced with randomly distributed fibers using an energy-based approach. The effect of fiber content, fiber length, confining pressure, and relative density were studied. The test results revealed that the addition of fibers increased the number of cycles required to liquefaction, resulting in higher cumulative dissipated energy. This accounted for the higher cyclic shear resistance of reinforced sand compared to unreinforced sand. Capacity energy is defined as cumulative dissipated energy to onset of liquefaction. The test results showed that W-liq was significantly affected by the fiber inclusion. Comparative studies demonstrated that energy-based method is a good way to evaluate liquefaction potential of fiber-reinforced sands.
机译:本研究回顾了一系列循环三轴试验,以研究基于能量的方法用随机分布的纤维增强的Babolsar砂的液化特性。研究了纤维含量,纤维长度,围压和相对密度的影响。测试结果表明,纤维的添加增加了液化所需的循环次数,从而导致更高的累积耗散能量。与非增强砂相比,这导致了增强砂的更高的循环剪切阻力。容量能量定义为液化开始时的累积耗散能量。测试结果表明,W-liq受到纤维夹杂的显着影响。比较研究表明,基于能量的方法是评估纤维增强砂液化潜力的好方法。

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