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Computational fluid dynamics calculus and analysis for gas and water turbines

机译:燃气轮机和水轮机的计算流体动力学计算与分析

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The paper presents the utilization of Computational Fluid Dynamics for calculating the flow through turbines. The first and most extended part of the paper is focused on gas turbines where the simulations are very precise and can be successfully used even for optimization of blade geometry. Flow details and results for an axial turbine are presented along with a proposal of optimization algorithm. The second part of the paper is dedicated to water turbines and there is presented the calculus realized for a kinetic water turbine. I this case, the flow around the turbine blades is presented and some data about the predicted performances along with many ways for improving the simulations. The conclusions of the paper are related to similarities and differences between the two types of simulations and to the many ways of using these simulations for practical applications.
机译:本文介绍了利用计算流体动力学来计算通过涡轮的流量。本文的第一部分也是扩展最多的部分是针对燃气轮机,其模拟非常精确,甚至可以成功用于优化叶片几何形状。提出了轴向涡轮的流量细节和结果以及优化算法的建议。本文的第二部分专门针对水轮机,并介绍了为动态水轮机实现的演算。在这种情况下,将显示涡轮机叶片周围的流动,以及有关预测性能的一些数据以及许多改进模拟的方法。本文的结论与两种类型的仿真之间的异同以及在实际应用中使用这些仿真的多种方式有关。

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