马赫数
雷诺数
机械
涡轮机
空气动力学
欧拉数(物理)
级联
数学
欧拉方程
物理
工程类
湍流
热力学
数学分析
化学工程
半隐式欧拉法
反向欧拉法
作者
Wei Jia,Qingguo Kong,Guanyu Xiao,Handong Mu
出处
期刊:International journal of turbo & jet-engines
[De Gruyter]
日期:2022-09-23
被引量:1
标识
DOI:10.1515/tjeng-2022-0052
摘要
Abstract To improve the prediction accuracy of profile loss at low Reynolds number, a typical low-pressure turbine cascade T106D-EIZ was selected to numerically investigate the effect of Reynolds number on turbine cascade flow. A detailed analysis of profile loss was performed and a profile loss model considering the low-Re effect was developed. Results showed that the incidence angle has a great effect on the inlet and outlet Mach number at low Reynolds number, and the variation of inlet and outlet Mach number further affects the blade profile loss. A correction factor was introduced to consider the effect of incidence angle and Mach number on the profile loss. The profile loss coefficient and stalling incidence angle were both extended to lower Reynolds number based on the numerical results. A Smart Through Flow Analysis Program (STFAP) was developed using the finite volume method to solve the circumferentially averaged Euler equations of S2 surface. Aerodynamic performance of E3 5-stage low-pressure turbine was predicted by STFAP coupled with low-Re profile loss model. Compared with K-O model, the prediction accuracy of efficiency of low-pressure turbine last stage is improved by nearly 1.1 percentage points when the 5-stage low-pressure turbine is in a low Reynolds number state.
科研通智能强力驱动
Strongly Powered by AbleSci AI