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Statistical assessment of load model accuracy for steel grid-reinforced soil walls

机译:钢锯钢钢钢钢钢筋钢筋钢筋钢筋电压模型精度的统计评价

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摘要

The focus of this paper is on quantitative evaluation of four different methods that use closed-form equations to calculate the nominal load in steel grid-reinforced soil walls under operational (end of construction) conditions. The four methods are the Coherent Gravity Method used in the UK, the AASHTO Simplified Method (USA), the PWRC Method used in Japan and the Simplified Stiffness Method. The accuracy of the methods is quantified based on analysis of bias statistics where bias is the ratio of measured to predicted (nominal) load. A large database of 113 measured reinforcement loads collected from 11 instrumented field walls is used in the study. For walls constructed with frictional soils, the Coherent Gravity Method and PWRC Method were the least accurate. The AASHTO Simplified Method demonstrated better accuracy and the Simplified Stiffness Method was the most accurate of all methods examined. The Coherent Gravity Method and the updated Simplified Stiffness Method for steel grid walls in the current study have the advantage that they can be used with soils that have a dependable soil cohesive strength component. However, the accuracy of the Simplified Stiffness Method was much better for all soil types based on bias analyses.
机译:本文的重点是定量评估四种不同方法,该方法使用闭合形式方程来计算钢网格钢筋土壁的标称载荷(在施工结束)条件下。这四种方法是英国,AASHTO简化方法(USA),日本使用的PWRC方法和简化刚度方法中使用的相干重力方法。基于对偏差统计的分析来量化方法的准确性,其中偏置为预测(标称)负载的比率。在研究中使用了从11个仪表场壁收集的113个测量的增强载荷的大型数据库。对于用摩擦土构造的墙壁,相干重力法和PWRC方法最不准确。 AASHTO简化的方法表明了更好的准确性,简化的刚度方法是所检查的所有方法的最准确。电流研究中的钢栅壁的相干重力法和更新的简化刚度方法具有可与具有可靠土壤粘性强度组分的土壤一起使用的优点。然而,基于偏置分析的所有土壤类型,简化刚度方法的准确性要好得多。

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