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A STUDY OF THE THREE-DIMENSIONAL UNSTEADY REAL-GAS FLOWS WITHIN A TRANSONIC ORC TURBINE

机译:跨声速透平内三维非定常真实气流的研究

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In this paper we investigate the three-dimensional unsteady real-gas flows which occur within Organic Rankine Cycle (ORC) turbines. A radial-inflow turbine stage operating with supersonic vane exit flows (M ≈ 1.4) is simulated using a RANS solver which includes real-gas effects. Steady CFD simulations show that small changes in the inducer shape can have a significant effect on turbine efficiency due to the development of supersonic flows in the rotor. Unsteady predictions show the same trends as the steady CFD, however a strong interaction between the vane trailing-edge shocks and rotor leading-edge leads to a significant drop in efficiency.
机译:在本文中,我们研究了有机朗肯循环(ORC)涡轮机中发生的三维非稳态真实气流。使用包括实气效应的RANS解算器模拟了以超音速叶片出口流(M≈1.4)运行的径向流入涡轮级。稳定的CFD仿真表明,由于转子中超音速流的产生,诱导器形状的细微变化会对涡轮效率产生重大影响。不稳定的预测显示出与稳定CFD相同的趋势,但是叶片后缘冲击和转子前缘之间的强烈相互作用会导致效率显着下降。

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