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Laboratory and numerical investigation of machine foundations reinforced with geogrids and geocells

机译:土工格栅和土工格室加固的机器基础的实验室和数值研究

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The manuscript describes the results of large scale field tests and numerical studies conducted on geosynthetics reinforced soil beds supporting model machine foundation. A series of vertical mode block resonance tests are conducted over a rigid concrete footing resting on different reinforced soil conditions. The tests are performed in a test pit of size 2m x 2m x 0.5 m using a concrete footing of size 0.6 m x 0.6 m x 0.5 m. Four different conditions, namely, unreinforced, single layer geogrid reinforced, two layer geogrid reinforced and geocell reinforced conditions were considered. The tests are performed under six different dynamic force levels using a Lazen type mechanical oscillator. In total, 38 number of field tests are conducted. The dynamic response is studied in terms of reduction in resonant amplitude, peak particle velocity (PPV) and improvement in dynamic properties of the soil. Experimental results revealed that the displacement amplitude of vibration significantly reduced in the presence of geosynthetics. The maximum reduction is observed in the presence of geocell reinforcement as compared to the other conditions. In the presence of geocell reinforcement, resonant amplitude is decreased by 61% and the natural frequency of the soil system is increased by 1.38 times as compared to the unreinforced condition. In addition, the geocell reinforcement found to reduce the PPV by 48% at a distance of 0.5 m from the footing face. The elastic uniform compression of the foundation bed is improved by 91% in the presence of geocell reinforcement. Further, the experimental results are validated with the numerical studies conducted by using finite difference package FLAC(3D). The encouraging agreement in the dynamic behavior of reinforced soil is observed between the numerical and experimental studies. The numerical results revealed that the lateral spreading of vibrations is significantly controlled in the presence of geocell reinforcement.
机译:该手稿描述了在土工加筋土床支撑模型机基础上进行的大规模现场测试和数值研究的结果。在不同加固土质条件下的刚性混凝土基础上进行了一系列垂直模式块共振测试。在尺寸为2m x 2m x 0.5 m的测试坑中,使用尺寸为0.6 m x 0.6 m x 0.5 m的混凝土基础进行测试。考虑了四种不同的条件,即未加强,单层土工格栅加强,两层土工格栅加强和土工格室加强。使用Lazen型机械振荡器在六种不同的动态力水平下进行测试。总共进行了38次现场测试。从减小共振振幅,减小峰值粒子速度(PPV)和改善土壤动力特性方面研究了动力响应。实验结果表明,在土工合成材料存在的情况下,振动的位移幅度显着降低。与其他条件相比,在存在土工格室加固的情况下观察到最大的减少。与未加固的情况相比,在存在土工格室的情况下,共振幅度降低了61%,土壤系统的固有频率提高了1.38倍。此外,在距立脚面0.5 m的距离处,土工格室加固发现可将PPV降低48%。在存在土工格室加固的情况下,基础床的弹性均匀压缩可提高91%。此外,通过使用有限差分包FLAC(3D)进行的数值研究验证了实验结果。在数值研究和实验研究之间,观察到了在加筋土的动力特性中令人鼓舞的一致。数值结果表明,在存在土工格室加固的情况下,振动的横向扩散得到了显着控制。

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