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隔河岩水电厂SF_6全封闭组合电器简介
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作者 王传忠 《华中电力》 1993年第S1期87-91,共5页
隔河岩电厂地处湖北省长阳县,总装机容量4×300MW,保证出力187MW,多年平均发电量30.4亿kW·h,装机利用小时数2530h,一般来水年份,枯水期的发电出力为250 MW。该电厂具有年调节水库,因此,是系统中理想的调峰、调频、事故备用电厂... 隔河岩电厂地处湖北省长阳县,总装机容量4×300MW,保证出力187MW,多年平均发电量30.4亿kW·h,装机利用小时数2530h,一般来水年份,枯水期的发电出力为250 MW。该电厂具有年调节水库,因此,是系统中理想的调峰、调频、事故备用电厂,它的投运,有利于提高电网的供电质量,其技术、经济效益明显。由于它所处的地位和地理环境,决定了选择SF<sub>6</sub>全封闭组合电器(以下简称GIS),设备安全、可靠而且较为经济。 展开更多
关键词 隔河岩 SF6 备用电厂 全封闭组合电器 利用小时数 年平均发电量 总装机容量 湖北省长阳县 发电出力 保证出力
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提高厂用备用电源自投成功率的工业改造
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作者 林建华 《电力学报》 2008年第5期421-422,426,共3页
电厂厂用备用电源是关系到电厂安全稳定运行的重要问题,而缩短响应时间是提高备用电源自投成功率的保证。通过对备用自投失败事故切换的理论讨论与实际工程测算,分析了事故产生原因,并提出有针对性的技术改造措施。改造后的备用电源自... 电厂厂用备用电源是关系到电厂安全稳定运行的重要问题,而缩短响应时间是提高备用电源自投成功率的保证。通过对备用自投失败事故切换的理论讨论与实际工程测算,分析了事故产生原因,并提出有针对性的技术改造措施。改造后的备用电源自投系统效果达到了设计要求,为同类型问题的解决提供了参考。 展开更多
关键词 电厂备用电源 自投系统 响应时间 故障
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Utilization of Data Communication according to the IEC61850 Standard for Nuclear Power Plant Electrical Equipment Testing 被引量:1
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作者 Milos Kaska Oto Marecek 《Journal of Energy and Power Engineering》 2014年第4期765-769,共5页
This paper deals with an integration of directly measured electrical parameters with data acquired by data communication from protections and terminals into an advanced monitoring system. Based on the periodic test, t... This paper deals with an integration of directly measured electrical parameters with data acquired by data communication from protections and terminals into an advanced monitoring system. Based on the periodic test, the authors of this paper present the possibility of an extended evaluation and more accurate analysis of transient and failure events. For periodical testing, as implemented during the commissioning of power plants in the Czech Republic, a monitoring system of electrical equipment has been used, to record the courses of important electrical parameters and thus, proving the proper functioning of complex technological systems in various operation modes. Data from monitoring system were used to prove the successful results of the test or as a base data for further analysis of failures. The monitoring system has proved itself as a very useful device also when recording unexpected failure events, the cause of which was very quickly and accurately detected by the follow-up analysis. Initially, only the voltage and current data from measuring transformers, analogue transducers and contact relays were used as input data for the monitoring system. After the implementation of new digital protection technology and controlling terminals with inner data recorder, the data from digital devices could be also utilized for the monitoring system. 展开更多
关键词 Power plant data communication emergency source TRANSIENT FAILURE TERMINAL electrical protection.
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