首页> 外文会议>Proceedings of 3rd international symposium on jet propulsion and power engineering. >INLET PRE-ROTATION INFLUENCE ON THE FLOW AND HEAT TRANSFER IN A ROTATING CAVITY
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INLET PRE-ROTATION INFLUENCE ON THE FLOW AND HEAT TRANSFER IN A ROTATING CAVITY

机译:入口预旋转对旋转腔内流动和传热的影响

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In order to get better knowledge of the flow and heat transfer in the rotating cavity an experimental rig is set up in the Institute of Steam and Gas Turbines at RWTH Aachen University. The rotating cavity with cooling air axial through flow is bound by two plane discs and a cylindrical shroud. The corresponding 3D time-dependent numerical investigation is carried out using a commercial CFD code, Fluent, with the RNG k-ε turbulence model. The influence of the inlet air pre-rotation on the flow pattern and the heat transfer in the cavity is analyzed. The sophisticated unstable flow patterns with cyclonic and anti-cyclonic circulations are captured in experiments and numerical simulations. Only one pair of circulations is observed in the simulations without inlet pre-rotation, two and three pairs of circulations are observed in the simulations of the inlet air with the same pre-rotational speed as the rotating cavity, i.e. full inlet pre-rotation. The numerical heat transfers are in reasonable agreement with the experiments. The local Nusselt numbers Nu on disks show basically an increasing radius distribution for the disks heated with radial increasing temperature profile. The simulations without inlet pre-rotation overestimate the heat transfer in the middle region of the disks and the simulations with full inlet pre-rotation overestimate the heat transfer in the region near the shroud. To get an accurate CFD simulation of the flow and heat transfer in rotating cavities, it is suggested that the inlet pre-rotation be a fraction of the rotational speed of the disks.
机译:为了更好地了解旋转腔中的流动和传热,亚琛工业大学蒸汽与燃气轮机研究所建立了一个试验台。具有轴向轴向流动的冷却空气的旋转腔被两个平面盘和一个圆柱形护罩限制。使用商业CFD代码Fluent和RNGk-ε湍流模型进行了相应的3D时变数值研究。分析了进气预旋转对腔内流型和传热的影响。在实验和数值模拟中捕获了具有旋风和反旋风循环的复杂不稳定流型。在没有进气口预旋转的模拟中仅观察到一对循环,在进气空气的模拟中观察到两对和三对环流具有与旋转腔相同的预旋转速度,即完全进气口预旋转。数值传热与实验合理吻合。盘上的局部努塞尔特数Nu基本上显示出随着径向温度分布曲线加热而增加的半径分布。没有入口预旋转的模拟会高估磁盘中间区域的传热,而充满入口预旋转的模拟会高估护罩附近区域的传热。为了对旋转腔中的流动和传热进行精确的CFD模拟,建议入口预旋转是圆盘转速的一部分。

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