首页> 外文会议>IEEE International Conference on Dielectric Liquids >Transient Thermal Condition of Natural Oil-cooled Disc-type Winding
【24h】

Transient Thermal Condition of Natural Oil-cooled Disc-type Winding

机译:天然油冷圆盘式绕组的瞬态热条件

获取原文

摘要

The degradation of solid insulations in windings of a power transformer is most often due to thermal stresses. In this contribution, Computational Fluid Dynamics (CFD) is used to predict the hot-spot and top-oil temperatures by applying various boundary conditions during transient states following, which are validated with temperatures measured from an experimental setup. The experimental model, which consists of a disc-type winding with 20 discs and four turns, is divided into 3 passes and equipped with PT-100 temperature sensors. Heating cartridges are installed into each conductor of the winding model to supply the electrical heat losses in the winding turns. In order to consider, the variations of the thermal characteristics of oil, its properties are changed at each time step by increasing the temperature. This investigation takes into consideration the transient thermal behaviour of natural cooling method inside winding model at various starting oil temperatures 40°C and 80°C. Transient curves of top - oil and hot - spot temperatures are compared to identify the time constants. On evaluating the measurement data, the locations and the temperature time constants of hot - spots at different starting oil temperature are found to be the same. Moreover, it is observed that there is no flow reversal or blockage caused by separation eddies, which can be attributed to low oil flow rate through horizontal channels. Finally, it is noted that the average volume temperatures of conductors and top-oil temperature reach steady state thermal condition over time.
机译:电力变压器绕组中的固体绝缘的劣化最常见于热应力。在这一贡献中,计算流体动力学(CFD)用于通过在瞬态状态期间施加各种边界条件来预测热点和顶油温度,这与从实验设置测量的温度验证。该实验模型由带有20个圆盘和四个匝数的盘式绕组组成,分为3次通过,配备有PT-100温度传感器。加热盒安装在绕组模型的每个导体中,以供应绕组转弯的电热损失。为了考虑,通过增加温度,在每次逐步改变其油的热特性的变化。本研究考虑了在40°C和80°C的各种起始油温下绕组模型内部绕组模型的瞬态热行为。比较顶部油和热点温度的瞬态曲线,以识别时间常数。在评估测量数据时,发现不同起始油温的热点的位置和温度时间常数是相同的。此外,观察到,通过分离漩涡没有引起的流动反转或阻塞,其可以通过水平通道归因于低油流量。最后,指出导体的平均体积温度和顶油温度随时间达到稳态热条件。

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