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NUMERICAL ANALYSIS ON THE SWIRL FLOWS IN THE EXHAUST HOOD OF STEAM TURBINE AND OPTIMIZATION DESIGN

机译:汽轮机排气罩中旋流的数值分析及优化设计

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A well-designed exhaust hood of large steam turbines would recover some kinetic energy from the flow between the last stage blades and condenser, which improves the efficiency of the cylinder. The internal flow field of the exhaust hood was firstly numerical investigated using three-dimensional Reynolds-Averaged Navier-Stokes (RANS) solutions based on the ANSYS-CFX. Then, the effects of the dimensions of the cylinder, bearing cone, diffuser guide, and diffuser ribs on the static pressure recovery performance of the exhaust hood were numerically conducted. The numerical results show that the cylinder length has significantly impact on the static pressure recovery coefficient of the exhaust hood by comparison of the cylinder section area at the fixed bearing cone and diffuser size. The bearing cone and diffuser were optimized to improve the aerodynamic performance of the exhaust hood. The rotationally symmetrical and enlarged diffusers show the different static pressure recovery performance of the exhaust hood. The optimized exhaust hood shows the improved aerodynamic performance by comparison of the initial design. The detailed flow pattern of the initial and optimized exhaust hood is also illustrated and discussed. This paper explicitly shows the interaction, and offers a good strategy for optimization, which has not been thoroughly discussed.
机译:大型汽轮机的精心设计的排气罩将从最后舞台叶片和冷凝器之间的流动恢复一些动能,这提高了气缸的效率。排气罩的内部流场首先使用基于ANSYS-CFX的三维雷诺平均天Navier-Stokes(RANS)解决方案来研究数值研究。然后,在数量地进行圆柱体的尺寸,轴承锥,漫射器引导件和扩散器肋的效果在输出排气罩的静压回收性能上。数值结果表明,通过在固定轴承锥和漫射器尺寸处比较汽缸部分区域的汽缸部分区域对排气罩的静压回收系数显着影响。轴承锥和扩散器被优化以改善排气罩的空气动力学性能。旋转对称和放大的扩散器显示出排气罩的不同静态压力恢复性能。优化的排气罩通过初始设计比较,显示了改进的空气动力学性能。还示出并讨论了初始和优化的排气罩的详细流动模式。本文明确地显示了互动,并提供了良好的优化策略,这尚未彻底讨论。

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