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Effect of Stage Axial Distances on the Aerodynamic Performance of Three-stage Axial Turbine using Experimental Measurements and Numerical Simulations

机译:实验测量和数值模拟的级距对三级轴流涡轮空气动力性能的影响

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The stage axial distance significantly influences the aerodynamic performance of turbines under some constraints. Experimental measurements and numerical simulations are used to analyze the effect of stage axial distances on the aerodynamic performance of three-stage axial turbine in this work. The aerodynamic performance of three-stage axial turbine with three different stage axial distances is experimentally measured at the air turbine test rig of Dongfang Steam Turbine Co. LTD. Experimental results show that efficiency increases when the stage axial distance decreases for the geometry under study with relative stage distance ranged from 0.14 to 0.35, and the effect of stage axial distance on the optimization velocity ratio here is very limited. In addition, unsteady Reynolds-Averaged Navier-Stokes (RANS) simulations were carried out with nonlinear harmonic method to analyze the detailed flow field of the experimental three-stage axial turbine. The numerical aerodynamic efficiency of three-stage axial turbine is in good agreement with the experimental data. Furthermore, the small stage axial distance is preferred for the higher efficiency. The detailed flow field and aerodynamic parameters of three-stage axial turbine are also illustrated and discussed.
机译:在某些约束条件下,级的轴向距离会显着影响涡轮的空气动力性能。实验测量和数值模拟被用来分析阶段轴向距离对三阶段轴向涡轮的空气动力性能的影响。在东方汽轮机有限公司的空气涡轮机试验台上,通过实验测量了具有三个不同轴距的三级轴流式涡轮机的空气动力性能。实验结果表明,当所研究的几何体的载物台轴向距离减小时,相对载物台距离在0.14至0.35之间时,效率会提高,并且载物台轴向距离对最优化速比的影响非常有限。此外,还采用非线性谐波方法对非稳态雷诺平均纳维-斯托克斯(RANS)进行了仿真,以分析实验三级轴流式涡轮机的详细流场。三级轴流式涡轮的数值空气动力学效率与实验数据吻合良好。此外,为了提高效率,优选小级轴向距离。还说明并讨论了三级轴流式涡轮机的详细流场和空气动力学参数。

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