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Finite Element Structural Integrity Analysis of First Stage Gas Turbine Rotor Blade Assembly Under Thermo- Mechanical Loads

机译:热力载荷下一级燃气轮机转子叶片总成的有限元结构完整性分析

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Turbines are used in the power plant due to high speed capacity. In the power plants, high speed is required to obtain higher rate of change of flux linkages by which more power can be produced. Since turbines rotate at higher speeds, inertia is very important parameter in increasing the stresses so, the material safety is very important under thermo-mechanical loads. In the present work, from standard formulas and using given input data the Forces, Temperature generation, and convective Heat transfer co-efficient are calculated for I stage rotor system. The model is designed with CATIA and ANSYS MIXED APPROACH SOFTWARE. The material used is NiCrome alloy. In first case only rotational load is applied and later along with the gas force, results are obtained for displacements and vonmises stresses. Coupled field analysis is carried out to find the structural safety. Finally Modal analysis has been performed to find resonance frequency in the assembly. The results shows developed stresses and deflections are within the allowable limit and also the complete safety of the problem.
机译:由于高速发电,涡轮机已在发电厂中使用。在发电厂中,需要高速以获得较高的磁链变化率,从而可以产生更多的功率。由于涡轮机以较高的速度旋转,因此惯性是增加应力的非常重要的参数,因此,在热机械载荷下材料的安全性非常重要。在当前工作中,根据标准公式并使用给定的输入数据,为I级转子系统计算了力,温度的产生和对流换热系数。该模型是使用CATIA和ANSYS混合方法软件设计的。使用的材料是NiCrome合金。在第一种情况下,仅施加旋转载荷,随后与气体力一起,获得位移和vonmises应力的结果。进行耦合场分析以发现结构安全性。最后,进行模态分析以找到组件中的共振频率。结果表明,所产生的应力和挠度均在允许的范围内,并且也完全解决了该问题。

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