首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Resistance Factors for LRFD of Laterally Loaded Drilled Shafts in Sands Characterized for Transmission Line Structures
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Resistance Factors for LRFD of Laterally Loaded Drilled Shafts in Sands Characterized for Transmission Line Structures

机译:用于传输线结构的砂岩中横向装载钻井轴LRFD的电阻因子

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摘要

In this study, the resistance factors (RF) in the load and resistance factor design (LRFD) for the drilled-shaft foundation of transmission line structures subjected to lateral loads were investigated. Various load test results were collected to establish a database and used in the reliability analysis. The first-order reliability method (FORM) was implemented to calibrate RF for the Broms, Brinch-Hansen, and Prasad and Chari methods. Loads for transmission line structures were categorized and characterized statistically for calibrating RF. Uncertainties of the transverse tension load (TTL), wind-on-structure load (WL_s), and wind-on-ice-coated conductor load (WL_c), all dominant in transmission line structures, were evaluated. RF varied largely with nominal load ratios of WL_s/TTL and WL_c/TTL, which should be considered for the selection of RF in the design to maintain a consistent safety margin. Increases in nominal WL_s and WL_c induced higher RF while increasing nominal TTL yielded lower RF. The higher RF values obtained in this study were due to the low bias factors of wind-induced loads and the large load factors of the tension and wind loads. The equivalent factor of safety (FS~(eq)) was evaluated and analyzed for the proposed RFs.
机译:在该研究中,研究了对经受横向载荷的透射线结构的钻轴基础的负载和电阻因子设计(LRFD)中的电阻因子(RF)。收集各种负载测试结果以建立数据库并用于可靠性分析。实现了一阶可靠性方法(形式)以校准褐色,Brinch-Hansen和Prasad和Chari方法的RF。传输线结构的负载被分类和特征在统计上用于校准RF。横向拉伸载荷(TTL),风上结构负载(WL_s)的不确定性,以及风上冰包覆导体负载(WL_c),所有在主导传输线结构,进行了评价。 RF在很大程度上变化,具有WL_S / TTL和WL_C / TTL的标称载荷比,这应该被认为是在设计中选择RF以保持一致的安全余量。标称WL_S和WL_C诱导较高的RF增加,同时增加标称TTL产生的较低RF。本研究中获得的较高的RF值是由于风引起的负载的低偏差因素和张力和风荷载的大负载因子。评估并分析所提出的RFS的等效对安全性因子(FS〜(EQ))。

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