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首页> 外文期刊>JSME International Journal. Series B >Development of a Highly Loaded Rotor Blade for Steam Turbines (2nd Report, Three-Dimensional Stage Performance Verifications)
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Development of a Highly Loaded Rotor Blade for Steam Turbines (2nd Report, Three-Dimensional Stage Performance Verifications)

机译:开发用于汽轮机的高负荷转子叶片(第二份报告,三维阶段性能验证)

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摘要

In order to improve steam turbine internal efficiency, a new highly loaded rotor blade for the high and intermediate pressure (HIP) stages, has been developed. The blade configuration is expressed by a 5th-order Bezier curve and an interactive technique is adopted in combination with a 2-D turbulent blade-to-blade flow analysis. The inverse method is adopted to modify the blade shape by optimizing the blade aerodynamic loading distribution near the root section which should decrease not only profile loss, but also endwall loss. Three-dimensional stage flow analysis and air turbine tests are carried out to verify the stage performance of the new blade. It is found that the new blade has improved blade performance near the root and the midspan; in particular, higher blade performance near the midspan contributes to an improvement in stage efficiency by about 0.3% at the design point. Consequently, it is verified that the new rotor blade is effective to improve steam turbine internal efficiency and to lower manufacturing cost by reducing the blade number by 15%.
机译:为了提高蒸汽轮机的内部效率,已经开发出一种用于高压和中压(HIP)级的新型高负荷转子叶片。叶片配置由5阶Bezier曲线表示,并且采用交互式技术结合二维湍流叶片到叶片流动分析。采用逆方法通过优化叶片根部附近的空气动力载荷分布来修改叶片形状,这不仅应减少轮廓损失,而且应减少端壁损失。进行了三维级流分析和空气涡轮机测试,以验证新叶片的级性能。发现新刀片在根部和中跨附近具有改进的刀片性能;尤其是在中跨附近具有更高的叶片性能,可在设计时使载物台效率提高约0.3%。因此,证实了新的转子叶片通过将叶片数量减少15%可以有效地提高汽轮机内部效率并降低制造成本。

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