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Static Structural and Modal Analysis of Gas Turbine Blade

机译:燃气轮机叶片的静态结构和模态分析

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Gas turbine is one of the most versatile items of turbo machinery nowadays. It is used in different modes such as power generation, oil and gas, process plants, aviation, domestic and related small industries. This paper is based on the problems concerning blade profile selection, material selection and turbine rotor blade vibration that seriously impact the induced stress-deformation and structural functioning of developmental gas turbine engine. In this paper for generating specific power by rotating blade at specific RPM, blade profile and material has been decided by static structural analysis. Gas turbine rotating blade RPM is decided by Modal Analysis so that the natural frequency of blade should not match with the excitation frequency. For the above blade profile has been modeled in SOLIDWORKS and analysis has been done in ANSYS WORKBENCH 14. Existing NACA6409 profile has been selected as base model and then it is modified by bending it through 72.5° and 145°. Hence these three different blade profiles have been analyzed for three different materials viz. Super Alloy X, Nimonic 80A and Inconel 625 at three different speed viz. 20000, 40000 and 60000RPM. It is found that NACA6409 with 72.5° bent gives best result for all material at all speed. Among all the material Inconel 625 gives best result. Hence Blade of Inconel 625 having 72.5° bent profile is the best combination for all RPM.
机译:燃气轮机是如今涡轮机械最通用的物品之一。它用于不同的模式,如发电,石油和天然气,工艺植厂,航空,国内和相关的小行业。本文基于关于叶片轮廓选择,材料选择和涡轮机转子叶片振动的问题,这严重影响了发育燃气轮机发动机的诱导应力变形和结构功能。本文通过在特定的RPM旋转刀片产生特定功率,通过静态结构分析来决定叶片轮廓和材料。燃气轮机旋转刀片RPM由模态分析决定,使刀片的固有频率不应与激励频率匹配。对于上述叶片轮廓已经在SolidWorks中建模,并且在ANSYS工作台14中已经完成了分析。已经选择了现有的NACA6409配置文件作为基础模型,然后通过将其弯曲通过72.5°和145°来修改。因此,已经分析了这三种不同的刀片轮廓,用于三种不同的材料viz。超级合金X,尼阴末端80a和Inconel 625以三种不同的速度viz。 20000,40000和60000rpm。发现NACA6409具有72.5°弯曲,为所有速度提供所有材料的最佳结果。在所有材料中,Inconel 625提供最佳结果。因此,具有72.5°弯曲曲线的Inconel 625的叶片是所有RPM的最佳组合。

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