首页> 外文期刊>Elektrotechnik und Informationstechnik >Ceramic and hybrid support insulators for UHVDC systems
【24h】

Ceramic and hybrid support insulators for UHVDC systems

机译:用于UHVDC系统的陶瓷和混合支撑绝缘子

获取原文
获取原文并翻译 | 示例

摘要

The requirements for UHVDC installations in terms of length, mechanical strength, permissible deflection, creepage distance, shed profiles and pollution resistance are still a challenge for all existing technologies and solutions. Based on the positive long time experience with solid core porcelain post insulators and the pollution experience of insulators with silicone housings the fundamental concept of both were used to develop a new type post insulator with inside ceramic core and housing of silicone. The challenge was to provide a reliable and economical solution, which combines the advantages of both technologies. Realising the needs for high strength, low deflection under load for many applications PPC Insulators Austria began the development of hybrid post insulators. The ceramic solid core design provides superior advantages in terms of bending strength, also for torsion load and compression load. The silicone rubber housing allows thinner sheds and greater creepage distances, provides improved long term pollution flashover performance and protects the core from short circuit arc damage. As design for DC hybrid post insulators was chosen upright tapered, uniform and underhung tapered insulators columns stacked of single hybrid insulator sections. The single sections could be varied in core diameter, length, creepage distance, fittings and holepattern. The shed profile used for DC applications was defined according the recommendations given by CIGRE. Selected design tests, electrical and mechanical type tests were conducted according to the relevant parts of IEC standards for composite and ceramic insulators. Also a long term test installation was performed to establish a confidence in this product. The long term test installation has been energized at 725 kV DC and later the voltage was increased to 761 kV DC. The tests have served well in providing final qualification. Beside these voltage tests measurements of ESDD/NSDD, hydrophobicity and also visual inspections were carried out. The mechanical properties were driven from the seismic requirements and have been calculated by finite element modelling of the reactor and its support structure. For post insulators with silicone rubber sheds and with solid core porcelain may be the most stable solution and this type has been adopted in different 800 kV projects. One of the new insulator was chosen for smoothing reactor support for 800 kV DC system in India.
机译:对UHVDC装置的长度,机械强度,允许的挠度,爬电距离,棚型和抗污染性的要求仍然是所有现有技术和解决方案的挑战。基于长期使用实心瓷柱绝缘子的积极经验以及带有硅树脂外壳的绝缘子的污染经验,两者的基本概念被用于开发一种新型的具有陶瓷芯和硅树脂外壳的柱形绝缘子。面临的挑战是提供一种既可靠又经济的解决方案,该解决方案将两种技术的优点结合在一起。认识到许多应用都需要高强度,低载荷下的挠曲PPC绝缘子奥地利开始开发混合支柱绝缘子。陶瓷实心芯设计在抗弯强度,扭转载荷和压缩载荷方面均具有优越的优势。硅橡胶外壳允许更薄的脱落和更大的爬电距离,提供改善的长期污染闪络性能,并保护铁芯免受短路电弧的损害。在直流混合支柱绝缘子的设计中,选择了由单个混合绝缘子部分堆叠而成的直立锥形,均匀和悬挂式锥形绝缘子列。单个部分的芯直径,长度,爬电距离,配件和孔型可以改变。用于直流应用的棚架轮廓是根据CIGRE的建议定义的。根据IEC复合材料和陶瓷绝缘子标准的相关部分,进行了选定的设计测试,电气和机械类型测试。还进行了长期测试安装,以建立对该产品的信心。长期测试安装已在725 kV DC通电,后来电压增加到761 kV DC。这些测试在提供最终资格方面表现良好。除了这些电压测试以外,还进行了ESDD / NSDD的测量,疏水性以及外观检查。机械性能是由地震要求决定的,并已通过反应堆及其支撑结构的有限元建模进行了计算。对于带有硅橡胶棚和实心瓷的后绝缘子,可能是最稳定的解决方案,并且该类型的绝缘子已在不同的800 kV项目中采用。选择了一种新的绝缘子来平滑印度800 kV DC系统的电抗器支撑。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号