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Ac losses and mechanical stability in 630 kV A three-phase HTS transformer windings

机译:630 kV A三相HTS变压器绕组中的交流损耗和机械稳定性

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摘要

Analyses on ac losses and mechanical stability for three-phase HTS power transformer windings of 630 kV A operated at 77 K in rated operation and sudden short-circuit conditions, respectively, are presented in this paper. The primary winding of the HTS transformer is a solenoid and the secondary one is a double pancake; both of them were wound by hermetic multifilamentary Bi2223/Ag tapes with reinforcing stainless steel sheath. Ac losses induced in the windings are estimated based on the Bean model and magnetic field distribution, and are in qualitative agreement with the actual ones measured by conventional electrical methods at rated current operation and power frequency of 50 Hz at 77 K. It is shown that hysteresis loss in the windings is dominant in the total ac losses. On the other hand, the current and voltage profiles are analysed and the electromagnetic stress in the windings are simulated by the finite element method (FEM) in a sudden short-circuit fault based on the impulse current characteristics of the tape. Results show that the windings are stably safe according to the stress critical criteria of the tape in a sudden short-circuit accident.
机译:分别分析了额定工作和突然短路条件下,在77 K下工作的630 kV A三相HTS电力变压器绕组的交流损耗和机械稳定性。 HTS变压器的初级绕组是螺线管,次级绕组是双煎饼。它们都被带有增强不锈钢护套的密封多丝Bi2223 / Ag胶带缠绕。根据Bean模型和磁场分布估算绕组中产生的交流损耗,并且与通过常规电气方法在额定电流工作和50 KHz的电源频率下在77 K下测量的实际损耗定性一致。绕组的磁滞损耗在总交流损耗中占主导地位。另一方面,基于带的冲击电流特性,在突然短路故障中,通过有限元方法(FEM)分析了电流和电压曲线,并模拟了绕组中的电磁应力。结果表明,在突然发生的短路事故中,根据胶带的应力临界标准,绕组是稳定安全的。

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