油田配电

R. A. Durham, T. Brinner
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引用次数: 5

摘要

油田配电系统设计的独特性很少得到承认和重视。公用事业公司提供典型的商业或农村应用的建设。油田通常有很大的集中负荷,它们之间相隔数千英尺。为了尽量减少线路损耗,在使用点分配和降压中压功率。除了常见的负荷流分析和保护协调外,变压器、避雷器和接地连接是可靠生产运行的重要考虑因素。住宅配电系统中典型的重合闸设置会对潜水泵造成重大损坏。在偏远地区,长中性线是必要的,牢固接地的电源会导致设备故障,但对于地面设备的安全是必要的。角接地的三角连接消除了中性线,尽管有危险,但农村公用事业经常使用。高压三线结构会引起铁磁共振。接地影响防雷和开关防雷的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Oilfield electric power distribution
The uniqueness of power system designs for oilfield distribution is seldom acknowledged or addressed. Utilities provide construction typical of either commercial or rural applications. Oilfields commonly have large concentrated loads separated by thousands of feet. To minimize line losses, medium voltage power is distributed and stepped-down at the point of use. In addition to common load flow analysis and protection coordination, transformers, surge arresters and grounding connections are important considerations for reliable production operations. Recloser settings typical for residential distribution cause major damage to submersible pumps. In remote areas where long neutral wires are necessary solidly grounded power contributes to equipment failure, but is nevertheless necessary for safety in surface equipment. The corner-grounded delta connection eliminates the neutral wire and is often used by rural utilities, despite its dangers. High-voltage three-wire construction can cause ferroresonance. Grounding influences the effectiveness of lightning and switching surge protection.
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