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柔性高压直流双极带金属回线系统电缆电磁暂态建模与极线故障特性
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作者 胡钰骁 李江涛 +2 位作者 张文娇 张晓晶 徐阳 《高电压技术》 北大核心 2025年第10期5003-5013,I0003,共12页
交联聚乙烯(cross-linked polyethylene,XLPE)绝缘电缆作为柔性直流系统的重要传输设备,受系统各类暂态事件的影响,其绝缘长期承受暂态电应力以致逐渐劣化。为提升高压电缆暂态计算精度,该文提出考虑电缆多层结构与材料特性的分布参数... 交联聚乙烯(cross-linked polyethylene,XLPE)绝缘电缆作为柔性直流系统的重要传输设备,受系统各类暂态事件的影响,其绝缘长期承受暂态电应力以致逐渐劣化。为提升高压电缆暂态计算精度,该文提出考虑电缆多层结构与材料特性的分布参数等效电路解析算法;基于此,在PSCAD/EMTDC软件中搭建了柔性高压直流双极带金属回线系统,分析了直流极线故障暂态电压、电流形成机理及电缆极线与金属回线的暂态特性,深入讨论了长距离传输下的电缆故障暂态特性变化。研究表明,故障电缆极线的非故障位置将出现过零阻尼振荡波,其伪周期分布与故障距离及波速度相关,其振荡幅值与故障距离、故障阻抗、阀侧阻抗、电缆特征阻抗及衰减特性相关,振荡所导致的反向电压峰值随着离故障点距离的增加而增大,最大值接近-1 pu(基准值320 kV)。同时,极线故障将导致故障极与金属回线产生幅值相近的较高过电流水平,电流幅值取决于MMC闭锁后不控整流稳态阶段及交流断路器的跳闸时间,直流极线首端接地故障所导致的电流峰值最高。短电缆线路(千米级)面临更大的故障极电缆与金属回线暂态电流,长电缆线路(百千米级)面临更严重的金属回线过电压与单极故障时健康极电缆过电压问题。研究结果旨在为柔性直流系统中电缆暂态电应力的评估与绝缘配合提供准确的电缆模型与仿真数据参考。 展开更多
关键词 交联聚乙烯电缆 柔性高压直流系统 电磁暂态 极线故障 金属回线
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Nonlinear finite-element-based structural system failure probability analysis methodology for gravity dams considering correlated failure modes 被引量:5
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作者 胡江 马福恒 吴素华 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第1期178-189,共12页
The structural system failure probability(SFP) is a valuable tool for evaluating the global safety level of concrete gravity dams.Traditional methods for estimating the failure probabilities are based on defined mathe... The structural system failure probability(SFP) is a valuable tool for evaluating the global safety level of concrete gravity dams.Traditional methods for estimating the failure probabilities are based on defined mathematical descriptions,namely,limit state functions of failure modes.Several problems are to be solved in the use of traditional methods for gravity dams.One is how to define the limit state function really reflecting the mechanical mechanism of the failure mode;another is how to understand the relationship among failure modes and enable the probability of the whole structure to be determined.Performing SFP analysis for a gravity dam system is a challenging task.This work proposes a novel nonlinear finite-element-based SFP analysis method for gravity dams.Firstly,reasonable nonlinear constitutive modes for dam concrete,concrete/rock interface and rock foundation are respectively introduced according to corresponding mechanical mechanisms.Meanwhile the response surface(RS) method is used to model limit state functions of main failure modes through the Monte Carlo(MC) simulation results of the dam-interface-foundation interaction finite element(FE) analysis.Secondly,a numerical SFP method is studied to compute the probabilities of several failure modes efficiently by simple matrix integration operations.Then,the nonlinear FE-based SFP analysis methodology for gravity dams considering correlated failure modes with the additional sensitivity analysis is proposed.Finally,a comprehensive computational platform for interfacing the proposed method with the open source FE code Code Aster is developed via a freely available MATLAB software tool(FERUM).This methodology is demonstrated by a case study of an existing gravity dam analysis,in which the dominant failure modes are identified,and the corresponding performance functions are established.Then,the dam failure probability of the structural system is obtained by the proposed method considering the correlation relationship of main failure modes on the basis of the mechanical mechanism analysis with the MC-FE simulations. 展开更多
关键词 gravity dam structural system failure probability nonlinear finite element response surface method computational platform
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