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Flow and temperature distributions in a disc type winding-part I: Forced and directed cooling modes

机译:盘式绕组中的流量和温度分布 - 第一部分:强制和定向冷却模式

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The thermal design of a power transformer determines its lifetime and loading capability, so correct modelling of liquid flow and temperature distributions in the winding is of vital importance. Existing standards and widely used simple calculation models can seriously under/overestimate winding hotspot temperatures under certain circumstances. In this paper, liquid flow and temperature distributions in a physical model representing a disctype winding in a liquid forced and directed cooling mode are investigated experimentally using Particle Image Velocimetry (PIV) and a temperature measurement system and numerically using Computational Fluid Dynamics (CFD), Dimensional analysis is used to generalise the results into a form useful for design review. The operating conditions investigated include different liquid inlet velocities, inlet temperatures, power losses in individual disc segments, and the effect of alternative liquids. It is shown that hotspot temperature and position within the winding are a non-linear function of liquid inlet velocity, with stagnation and reverse flow demonstrated in both experiments and CFD models. Comparisons of liquid flow and temperature distributions between measurements and CFO simulation results show that 2D ICED results are representative when there are no reverse flows and 3D CFD simulations are needed when reverse flows occur. The results are presented first in dimensional forms to show the effect of each parameter, and then in non-dimensional forms to provide a generalised insight into transformer thermal design.
机译:电力变压器的热设计确定其寿命和加载能力,因此绕组中的液体流量和温度分布的正确建模是至关重要的。在某些情况下,现有标准和广泛使用的简单计算模型可以严重下降/高估绕组热点温度。本文使用粒子图像速度(PIV)和温度测量系统在实验上研究了代表液体强制和定向冷却模式中的液体模型中的物理模型中的液体流动和温度分布。尺寸分析用于将结果概括为可用于设计审查的形式。研究的操作条件包括不同的液体入口速度,入口温度,单个盘区段中的功率损耗以及替代液体的效果。结果表明,绕组内的热点温度和位置是液体入口速度的非线性函数,在实验和CFD模型中显示出滞留和反向流动。测量和CFO仿真结果之间的液体流量和温度分布的比较表明,当没有反向流动时,2D次数结果是代表性,当发生反向流动时需要3D CFD仿真。结果首先以尺寸形式呈现以显示每个参数的效果,然后以非尺寸形式提供进入变压器热设计的广义洞察。

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