选择不同短路电压的电力变压器并联运行

I. Plotnikov
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引用次数: 0

摘要

变压器并联运行是提高供电、生产、牵引变电站、港口生产能力可靠性的关键解决方案之一。TR运行影响设备运行不同周期的成本效益和设备不运行时的空载损失。考虑创造整个港口基础设施最经济的运行周期,既保证设备运行,又保证供电周期无故障的可维护性。TR运行需要精确的计算和必要的切换条件,以便及时修复设备,正确控制各TR和各节点的运行。在不需要设备期间,可以完全关闭设备并进一步保护设备。对TR并联运行进行了计算,证明了TR并联运行的经济效益。有些公式是从电气工程的理论基础推导出来的。许多计算提供了变压器工程和电网领域的经验研究。实用的解决方案总结在表格中,其中提供了不同护照数据的TR选项。已经找到了市场上哪些TRs符合并联条件。有被认为是最方便获得所需功率的TRs。研究结果可为设计新供电段和改造现有供电段时TR的选择提供参考。已经指出,设计用于在恶劣的地理气候条件下作业的TR模型,在海上平台上,在极端寒冷和高温地区,没有提出。由于工作条件的特殊性,本设计的TR需要单独研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selecting power transformers with different short circuit voltages for parallel operation
Parallel operation of transformers (TR) is one of the key solutions for improving the reliability of power supply, production, traction power substations, port production capacities. TR operation influences the cost effectiveness of different cycles of equipment operation and no-load losses when the equipment is not operated. Creating the most economical cycle of operation of the entire port infrastructure is considered, which will ensure not only the equipment operation, but also maintainability with trouble-free power supply cycle. TR operation requires the precise calculation and necessary conditions for switching, which allows to conduct prompt repair of equipment, proper control of the operation of each TR and each node separately. A complete shutdown of equipment with its further conservation during the period when the equipment is not needed is found possible. There were carried out calculations for the TR parallel operation, which prove the economic benefits of TR parallel operation. Some formulas are derived from the theoretical foundations of electrical engineering. Many calculations present the empirical studies in the field of transformer engineering and power networks. Practical solutions are summarized in tables, where TR options with different passport data are presented. There has been found which of the TRs on the market meet the condition of parallel connection. There are considered the TRs most convenient for gaining the required power. The research results can facilitate the choice of TR when designing new power supply sections and upgrading existing ones. It has been stated that the TR models designed for operation in difficult geoclimatic conditions, on the offshore platforms, in zones of extreme cold and high temperatures are not presented. TR of this design require a separate study due to the specific working conditions.
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