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首页> 外文期刊>Journal of bridge engineering >New Formulation for Estimating the Moment Capacity of Rocking Shallow Foundations Resting on Partially Saturated Soil
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New Formulation for Estimating the Moment Capacity of Rocking Shallow Foundations Resting on Partially Saturated Soil

机译:估算部分饱和土壤岩土浅地面岩石浅层基础矩的新配方

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摘要

The ability of shallow bridge foundations to dissipate earthquake energy via rocking has gained significant attention by bridge engineers owing to recent efforts to quantify the performance of rocking footings. This paper presents a new formulation for estimating the moment capacity of rocking bridge foundations resting on all types of soils under varying saturation and surface flux boundary conditions. The proposed formulation uses the moment capacity equation originally employed for saturated soils, classical effective shear strength parameters, and a representation of the soil-water retention curve (SWRC) to accommodate partially saturated conditions that may commonly exist below the shallow foundations of bridge substructures. A closed-form equation is incorporated in this formulation for the matric suction and effective saturation profiles to directly implement surface flux boundary conditions when analyzing the moment capacity of rocking foundations supported on partially saturated soils. The formulation implements a new method to predict the air entry suction for partially saturated soils, representing a key step towards improving the accuracy of moment capacity. A parametric study is performed to investigate the sensitivity of the moment capacity to primary design variables and various surface flux boundary conditions. The analyses demonstrate that flow conditions have a negligible and strong influence on the moment capacity of coarse- and fine-grained soils, respectively. Predictions from the proposed formulation were compared against two sets of experimental data obtained from large-scale shaking table (on sand) and snap-back (on plastic silt) tests and indicated good agreement with experiments. (C) 2021 American Society of Civil Engineers.
机译:由于近来努力量化摇摆物流的努力,浅谈桥梁基金会通过摇摆消散地震能量的能力越来越大。本文提出了一种新的配方,用于估算摇摆桥梁基础围绕各种土壤的摇滚基地的力矩容量,在不同的饱和度和表面通量边界条件下。所提出的制剂利用最初用于饱和土壤的力矩容量方程,经典有效的剪切强度参数和土壤 - 水保持曲线(SWRC)的表示,以适应可能通常存在于桥梁子结构的浅层基础下方的部分饱和条件。在该配方中结合了闭合形式方程,用于测定的原料抽吸和有效饱和型材,以在分析在部分饱和的土壤上支撑的摇摆基础的力矩容量时直接实施表面磁通边界条件。制剂实现了一种新方法来预测部分饱和的土壤的空气进入抽吸,代表提高力矩容量精度的关键步骤。进行参数研究以研究瞬间能力对初级设计变量和各种表面磁通边界条件的敏感性。分析表明,流动条件分别对粗粒和细粒土壤的力矩容量具有可忽略不计的强烈影响。将来自所提出的制剂的预测与从大规模摇动台(沙子)上获得的两组实验数据进行比较,并对塑料淤泥电压(在塑料淤泥)测试中,并表明与实验良好。 (c)2021年美国土木工程师协会。

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  • 来源
    《Journal of bridge engineering》 |2021年第11期|04021084.1-04021084.15|共15页
  • 作者单位

    Oregon State Univ Sch Civil & Construct Engn 101 Kearney Hall Corvallis OR 97331 USA;

    Oregon State Univ Sch Civil & Construct Engn 101 Kearney Hall Corvallis OR 97331 USA;

    Oregon State Univ Sch Civil & Construct Engn 101 Kearney Hall Corvallis OR 97331 USA;

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