Peculiarities of the Calculations of the Gas Turbine Cooling Systems

A. Tarasov, Oksana Lytvynenko, Irina Myhaylova, V. Ismailov, S. Naumenko
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Abstract

Gas turbine cooling systems have the branched networks of various channels whose hydraulic and heat exchange capabilities define the air flow required for the cooling of turbine parts and, thus, directly influence the efficiency of gas turbines. Cooling system elements are, in particular, the throttles, diaphragms, seals, openings that act as regulating parts or elements to maintain pressure in the system. As a rule, the channels of this type have a significant pressure drop, and therefore during the calculations it is necessary to very carefully consider a change in air density along the channel. Therefore, we present in this paper the method developed by the authors for determining the hydraulic resistance in the openings, and the data obtained by it perfectly agree with the experimental data. It is shown how to take into account the effect of the air compressibility on the coefficient of hydraulic resistance in the cooling channels that allows for the use of the numerous experimental dependencies for the coefficients of hydraulic resistance of incompressible liquids. A method of calculating hydraulic resistances of the openings by defragmenting their total hydraulic resistance into separate components has been proposed. A generalized dependence was established for the hydraulic resistance of the discharge openings in the discs and in the mounting gaps between the shanks of the blades and the discs, taking into account the transverse air flows.
燃气轮机冷却系统计算的特殊性
燃气轮机冷却系统具有各种通道的分支网络,其水力和热交换能力决定了涡轮部件冷却所需的空气流量,从而直接影响燃气轮机的效率。冷却系统元件,特别是作为调节部件或元件维持系统压力的节流阀、隔膜、密封件、开口。通常,这种类型的通道具有显著的压降,因此在计算过程中有必要非常仔细地考虑沿通道的空气密度的变化。因此,本文提出了作者提出的测定孔口水阻力的方法,所得数据与实验数据吻合较好。它显示了如何考虑空气可压缩性对冷却通道中水力阻力系数的影响,这允许使用不可压缩液体的水力阻力系数的众多实验依赖项。提出了一种通过将开口的总水力阻力分解成单独的分量来计算开口水力阻力的方法。在考虑横向气流的情况下,建立了圆盘上的排气孔和叶片与圆盘之间的安装间隙的水力阻力的广义依赖关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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