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Experimental Study of Dynamic Characteristics on Composite Foundation with CFG Long Pile and Rammed Cement-Soil Short Pile

机译:CFG长桩与夯实水泥土短桩复合地基动力特性试验研究

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摘要

Based on the idea of optimization design of pile type, the two kinds of the typical pile type are selected, which containing flexibility pile (e.g. rammed cement-soil pile is for short RCSP), and rigid pile (e.g. cement-flyash-gravel pile is for short CFGP). The three kinds of the composite foundation are designed, which are CFGP, CFG long pile and CFG short pile (for short CFGLP-CFGSP), CFG long-short pile and rammed cement-soil short pile (for short CFGLP-RCSSP). Natural earthquake is simulated by using the engineering blasting; the dynamic characteristics and dynamic response of the composite foundation are studied through field test. CFGLP-RCSSP is closed to linear relation. The bearing capacity of the four composite foundation of the CFGP, CFGLP-CFGSP, and CFGLP-RCSSP in the site are 225 kPa, 179 kPa, and 197 kPa, separately increases 150%, 98.8% and 119% compared to the natural foundation. The vibration main frequency is mainly depended on properties of foundation soil and piles between vibration source and measuring point, pilling load value. Horizontal vibration main frequency greater than the vertical vibration main frequency and the vertical vibration main frequency close to the first-order natural frequency of composite foundation. With the pilling load increasing, the CFGLP-RCSSP pile composite foundation combined frequency decreased. Under the same blast energy, the acceleration peak on the CFG pile composite foundation is less than CFGLP-CFGSP the corresponding values, as the load increases, the peak acceleration gently. CFG pile composite foundation is favorable on seismic. The distribution of peak acceleration is consistent within 4 m from pile top in the CFGLP_RCSSP composite foundation. The maximum of the horizontal acceleration peak along the pile body occurs at a distance of pile top 4 m or the pile top, and that of vertical acceleration peak occurred at a pile top.
机译:基于桩型优化设计的思想,选择了两种典型的桩型,分别为柔性桩(如夯实水泥土桩简称RCSP)和刚性桩(如水泥-粉煤灰-碎石桩)简称CFGP)。设计了三种复合地基,分别为CFGP,CFG长桩和CFG短桩(简称CFGLP-CFGSP),CFG长短桩和夯实水泥土短桩(简称CFGLP-RCSSP)。通过工程爆破模拟自然地震。通过现场试验研究了复合地基的动力特性和动力响应。 CFGLP-RCSSP对线性关系不开放。现场的CFGP,CFGLP-CFGSP和CFGLP-RCSSP四个复合地基的承载力分别为225 kPa,179 kPa和197 kPa,分别比天然地基增加150%,98.8%和119%。振动主频率主要取决于振动源与测量点之间的地基土和桩的性质,起球荷载值。水平振动主频率大于垂直振动主频率,且垂直振动主频率接近复合地基的一阶固有频率。随着打桩载荷的增加,CFGLP-RCSSP桩复合地基的组合频率降低。在相同爆炸能量下,CFG桩复合地基上的加速度峰值小于CFGLP-CFGSP的相应值,随着载荷的增加,峰值加速度逐渐减小。 CFG桩复合地基具有良好的抗震性能。 CFGLP_RCSSP复合地基中距桩顶4 m处的峰值加速度分布一致。沿桩身的水平加速度峰值出现在桩顶4 m或桩顶距离处,而垂直加速度峰值出现在桩顶距离处。

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