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配电网静态安全度评估算法研究及应用
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作者 王笑棠 王曜飞 +1 位作者 宋维臣 柳建涛 《能源与环境》 2014年第4期4-5,共2页
配电网静态安全度是在假设一个故障发生的情况下,通过电网内负荷转移后,电网中负载率最高的那条线路的负载率就是当前电网的静态安全度。但是在将静态安全度用于配电网网架结构分析时,需要评估所有线路的在所有可能状况下最大的静态安全... 配电网静态安全度是在假设一个故障发生的情况下,通过电网内负荷转移后,电网中负载率最高的那条线路的负载率就是当前电网的静态安全度。但是在将静态安全度用于配电网网架结构分析时,需要评估所有线路的在所有可能状况下最大的静态安全度,便于找到需要改造的线路。所以研究电网模型中所有线路在可能情况下发生故障的最大静态安全度计算方法比传统的简单静态安全度计算更有实际意义。 展开更多
关键词 静态安全度 网架评估 配网改造 馈线负载率
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Relationship between critical seismic acceleration coefficient and static factor of safety of 3D slopes
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作者 SHI He-yang CHEN Guang-hui 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第5期1546-1554,共9页
Many analytical methods have been adopted to estimate the slope stability by providing various stability numbers,e.g.static safety of factor(static FoS)or the critical seismic acceleration coefficient,while little att... Many analytical methods have been adopted to estimate the slope stability by providing various stability numbers,e.g.static safety of factor(static FoS)or the critical seismic acceleration coefficient,while little attention has been given to the relationship between the slope stability numbers and the critical seismic acceleration coefficient.This study aims to investigate the relationship between the static FoS and the critical seismic acceleration coefficient of soil slopes in the framework of the upper-bound limit analysis.Based on the 3D rotational failure mechanism,the critical seismic acceleration coefficient using the pseudo-static method and the static FoS using the strength reduction technique are first determined.Then,the relationship between the static FoS and the critical seismic acceleration coefficient is presented under considering the slope angleβ,the frictional angleφ,and the dimensionless coefficients B/H and c/γH.Finally,a fitting formula between the static FoS and the critical seismic acceleration coefficient is proposed and validated by analytical and numerical results. 展开更多
关键词 static safety of factor critical seismic acceleration coefficient upper-bound limit analysis 3D rotational failure mechanism
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