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STRUCTURAL ANALYSIS OF SMALL SCALE RADIAL TURBINE FOR SOLAR POWERED BRAYTON CYCLE APPLICATION

机译:太阳能布雷顿循环小型径向涡轮的结构分析。

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Developing small scale turbines pauses challenges in terms of increased stresses due to high rotational speed leading to increase in component thicknesses and turbine overall weight. Therefore this study assesses both; the structural and aerodynamic performance of a Small Scale Radial Turbine SSRT by integrating finite-element methods FEM and Computational Fluid Dynamic CFD. Using Vista preliminary design model in ANSYS and detailed 3D CFD optimization, SSRT with 1-5 kW power for solar powered Brayton cycle was developed with high efficiency of 89.2%. Then both; the turbine's hub and blades were structurally analysed under various loading conditions to investigate the effect of various rotational speeds and blade shapes on the stress distribution and deformation of the blades. The results of the current study showed that a maximum increment of 65% stress and 57% deformation was noticed when reaching the maximum studied rotational speed at inlet air temperature of 450 K.
机译:小型涡轮机的开发因高转速导致应力增加而暂停了挑战,从而导致零件厚度和涡轮机总重量的增加。因此,本研究评估了两者。结合有限元方法FEM和计算流体动力学CFD,研究了小型径向涡轮SSRT的结构和空气动力学性能。利用ANSYS中的Vista初步设计模型和详细的3D CFD优化,开发了用于太阳能布雷顿循环的1-5 kW功率的SSRT,效率高达89.2%。然后两者;在各种载荷条件下对涡轮的轮毂和叶片进行了结构分析,以研究各种转速和叶片形状对叶片应力分布和变形的影响。当前研究的结果表明,在进气温度为450 K时达到最大研究转速时,最大应力增量为65%,变形为57%。

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