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Estimating the Uplift Bearing Capacity of Belled Piers Adjacent to Sloping Ground by Numerical Modeling Based on Field Tests

机译:基于现场测试的数值建模估计斜面接地附近升降桥墩的提升承载力

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In order to evaluate the uplift bearing capacity of belled piers beside slopes, a series of numerical simulations are carried out based on field tests data. First, a number of uplift loading tests of full-scale belled piers are carried out on the project site of transmission line in Anhui Province, China. Second, a slope-foundation model for numerical modeling is proposed and calibrated based on field tests data. The behavior of belled piers adjacent to slopes subject to uplift load is studied by numerical modeling. The impact of three parameters, including distance (a) from the belled pier to the crest of the slope, slope angle (β), and embedment depth (h) of the belled pier, has been investigated on the uplift capacity of the belled pier. Based on the simulation results, an attenuation coefficient (ω) is put forward for evaluating the reduction of uplift bearing capacity of the belled pier. The results show that the coefficient ω is negatively correlated with distance a and depth h, and the influence of distance a is greater than that of depth h according to the results of variance analysis, but the difference is not significant by F test. Moreover, the empirical equation between attenuation coefficient ω and three key factors a, β, and h had been presented by a series of fitting.
机译:为了评估斜坡旁边的Belled Piers的提升承载力,基于现场测试数据进行一系列数值模拟。首先,在中国安徽省传输线的项目现场进行了全规模集中码头的许多隆起加载试验。其次,基于现场测试数据提出和校准了用于数值建模的斜率基础模型。通过数值建模研究了与升压负荷的斜坡相邻的腹部桥墩的行为。三个参数的影响,包括来自Belled Pier的坡度,坡度(β)和嵌入深度(H)的圆形码头的圆形码头的距离(a),已经研究了Belded Pier的隆起容量。基于仿真结果,提出了衰减系数(ω),以评估圆锥墩的隆起承载力的降低。结果表明,系数ω与距离A和深度H负相关,并且距离A的影响大于差异分析结果的深度H的影响,但F测试差异不是显着的。此外,通过一系列配件呈现了衰减系数ω和三个关键因素A,β和H之间的经验方程。

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