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500kV GIS开关站PT谐振的运行操作方法
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作者 董雪 《电子测试》 2019年第7期98-99,共2页
本文以500kVGIS开关站PT谐振现象作为研究对象,分析谐振产生原因,提出有效抑制方案,并针对500kVGIS开关站实际情况提出加装消谐设备等预防PT谐振的有效措施。
关键词 500kVGIS开关站 PT谐振 安全运行方法
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电力变压器高压试验的研究分析
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作者 梁勇 《江西建材》 2015年第3期238-238,共1页
本文就电力变压器高压试验方法、试验条件以及试验内容进行详细阐述,并进一步讨论了电力变压器高压试验的安全设计方法。
关键词 电力变压器 高压试验 安全运行方法
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Forecasting of wind velocity:An improved SVM algorithm combined with simulated annealing 被引量:2
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作者 刘金朋 牛东晓 +1 位作者 张宏运 王官庆 《Journal of Central South University》 SCIE EI CAS 2013年第2期451-456,共6页
Accurate forecasting of wind velocity can improve the economic dispatch and safe operation of the power system. Support vector machine (SVM) has been proved to be an efficient approach for forecasting. According to th... Accurate forecasting of wind velocity can improve the economic dispatch and safe operation of the power system. Support vector machine (SVM) has been proved to be an efficient approach for forecasting. According to the analysis with support vector machine method, the drawback of determining the parameters only by experts' experience should be improved. After a detailed description of the methodology of SVM and simulated annealing, an improved algorithm was proposed for the automatic optimization of parameters using SVM method. An example has proved that the proposed method can efficiently select the parameters of the SVM method. And by optimizing the parameters, the forecasting accuracy of the max wind velocity increases by 34.45%, which indicates that the new SASVM model improves the forecasting accuracy. 展开更多
关键词 wind velocity forecasting improved algorithm simulated annealing support vector machine
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Crosswind stability of high-speed trains in special cuts 被引量:3
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作者 张洁 高广军 +1 位作者 刘堂红 李志伟 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2849-2856,共8页
Analysis of the aerodynamic performance of high-speed trains in special cuts would provide references for the critical overturning velocity and complement the operation safety management under strong winds.This work w... Analysis of the aerodynamic performance of high-speed trains in special cuts would provide references for the critical overturning velocity and complement the operation safety management under strong winds.This work was conducted to investigate the flow structure around trains under different cut depths,slope angles using computational fluid dynamics(CFD).The high-speed train was considered with bogies and inter-carriage gaps.And the accuracy of the numerical method was validated by combining with the experimental data of wind tunnel tests.Then,the variations of aerodynamic forces and surface pressure distribution of the train were mainly analyzed.The results show that the surroundings of cuts along the railway line have a great effect on the crosswind stability of trains.With the slope angle and depth of the cut increasing,the coefficients of aerodynamic forces tend to reduce.An angle of 75°is chosen as the optimum one for the follow-up research.Under different depth conditions,the reasonable cut depth for high-speed trains to run safely is 3 m lower than that of the conventional cut whose slope ratio is 1:1.5.Furthermore,the windward slope angle is more important than the leeward one for the train aerodynamic performance.Due to the shield of appropriate cuts,the train body is in a minor positive pressure environment.Thus,designing a suitable cut can contribute to improving the operation safety of high-speed trains. 展开更多
关键词 high-speed train crosswind stability cut pressure distribution numerical simulation
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