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首页> 外文期刊>GEM-International Journal on Geomathematics >Simulation of settlement and bearing capacity of shallow foundations with soft particle code (SPARC) and FE
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Simulation of settlement and bearing capacity of shallow foundations with soft particle code (SPARC) and FE

机译:软粒子代码(SPARC)和FE的浅层基础沉降和承载力的仿真

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摘要

In this study we investigate the development of shear zones due to the settlement of shallow foundations and their load-settlement behavior. Firstly, a well-documented experiment of shallow penetration into sand is used for the validation of the soft particle code (SPARC). For these simulations a hypoplastic material model for sand with calibration for the model sand is implemented in SPARC. In order to deliver a more comprehensive investigation, the shape of the shear zones predicted by SPARC is also compared with the analytical solution. Secondly, the penetration of shallow foundation into clay is investigated by means of SPARC and the finite element method. For this purpose, barodesy for clay with the calibration for Dresden clay is implemented in both numerical methods. The simulations are carried out for six different surcharges, corresponding to a range of over-consolidated clay to normal-consolidated clay. Furthermore, the load-settlement behavior and the shape of shear zones for both methods are compared and the weaknesses and strengths of each numerical approach are discussed. Finally, the peaks of the load-settlement curves for all surcharges are compared with the analytical solution. Results show that SPARC performs better at predicting the trajectories of particles under the foundation, which consequently leads to better estimation of the load-settlement behavior.
机译:在这项研究中,我们调查剪力区的发展,因为浅层基础及其负荷结算行为。首先,将浅层渗透到砂中的经历良好的实验用于软粒子代码(SPARC)的验证。对于这些模拟,在SPARC中实现了模型砂校准的沙子的硬质材料模型。为了提供更全面的调查,与分析解决方案相比,SPARC预测的剪切区的形状。其次,通过SPARC和有限元方法研究了浅基础渗入粘土的渗透。为此目的,在两个数值方法中实现了具有校准的粘土的粘土的第八系。对对应于一系列过良好的粘土进行六种不同附加的氧化物进行模拟。此外,比较了用于两种方法的剪切区的负荷沉降行为和剪切区的形状,并讨论了每个数值方法的弱点和强度。最后,将所有附加率的负荷沉降曲线的峰与分析溶液进行比较。结果表明,SPARC在预测基础下的粒子轨迹方面更好地表现出,从而导致更好地估计负载结算行为。

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