首页> 外文会议>ASME (American Society of Mechanical Engineers) Turbo Expo 2002: Heat Transfer Manufacturing Materials and Metallurgy >PREDICTIONS OF EXTERNAL HEAT TRANSFER FOR TURBINE VANES AND BLADES WITH SECONDARY FLOWFIELDS
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PREDICTIONS OF EXTERNAL HEAT TRANSFER FOR TURBINE VANES AND BLADES WITH SECONDARY FLOWFIELDS

机译:带有二次流的涡轮叶片和叶片的外部传热预测

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Detailed heat transfer distributions on the endwall and along the vane/blade surface are essential for component mechanical integrity and life predictions. Due to secondary flows, high gradients in heat transfer are present at the endwall and at the vane or blade surface itself where the passage vortex influences the mainstream flow. This paper documents the benchmarking of three turbulence models; (1) k-ε realizable with wall functions (2) k-ε realizable with two layer model, and (3) the V2F model for endwall and surface heat transfer and flowfield predictions. Benchmark experimental data from a scaled-up low speed rig for both a stator and rotor geometry are used for comparisons of heat transfer and flowfield. While the k- e realizable turbulence models give a good prediction of the secondary flow pattern, the heat transfer at the endwall and at the surface is not well predicted due to the inadequate modeling of near wall turbulence. The V2F model gives better agreement with the experiments on the endwall and vane midspan heat transfer is also well predicted, although transition occurs too far upstream on the suction surface. The results from this study represent the feasibility of CFD utilization as a predictive tool for local heat transfer distributions on a vane/blade endwall.
机译:端壁以及沿叶片/叶片表面的详细传热分布对于组件的机械完整性和寿命预测至关重要。由于二次流动,在端壁处以及叶片或叶片表面本身处存在传热的高梯度,其中通道涡流影响主流。本文介绍了三种湍流模型的基准测试。 (1)可通过壁函数实现的k-ε(2)可通过两层模型实现的k-ε,以及(3)用于端壁和表面传热以及流场预测的V2F模型。来自放大的低速钻机的定子和转子几何尺寸的基准实验数据被用于传热和流场的比较。尽管可以通过k-可实现的湍流模型很好地预测了二次流模式,但由于对近壁湍流的建模不足,因此无法很好地预测端壁和表面的传热。 V2F模型与端壁上的实验更好地吻合,并且叶片中跨传热也得到了很好的预测,尽管在吸力表面上游发生的过渡太远了。这项研究的结果表明,利用CFD作为叶片/叶片端壁上局部传热分布的预测工具的可行性。

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