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用可压缩流涡方法模拟叶轮机动静叶的相互作用
引用本文:陈矛章,彭波.用可压缩流涡方法模拟叶轮机动静叶的相互作用[J].中国工程科学,2000,2(2):15-23.
作者姓名:陈矛章  彭波
作者单位:北京航空航天大学,北京,100083
摘    要:本课题组发展了一种扰动涡方法,用以研究叶轮机内动、静叶相互作用。其优点是物理图画清楚,计算收敛快。它采用了一个重要假设:扰动胀量为零,从而大大简化 了计算过程。文章的目的是研究此假设的影响,并取消此假设,使扰动涡方法建立在完全严格的数学基础上。由于取消了“扰动胀量为零的假设,需要耦合求解扰动质量方程、扰动涡量输运方程和扰动能量输运方程。这是文章与文献1,2]的主要区别。

关 键 词:叶轮机  动、静叶相互作用  扰动涡方法  非定常流  可压缩流
收稿时间:1999/6/21 0:00:00
修稿时间:1999年6月21日

Numerical Simulation of Rotor/Stator Interaction in Turbomachinery by Use of a Disturbance Vortex Method for Compressible Flow
chenmaozhang and pengbo.Numerical Simulation of Rotor/Stator Interaction in Turbomachinery by Use of a Disturbance Vortex Method for Compressible Flow[J].Engineering Science,2000,2(2):15-23.
Authors:chenmaozhang and pengbo
Abstract:A disturbance vortex method for simulating rotor/stator interaction in turbomachinery was developed 1,2] .This method has some obvious advantages in simulating unsteady flow in turbomachinery,such as understandable physical picture and good convergency.However,there is an important simplification in reference 1,which ignores the disturbance expansion.As a result,the computational process is greatly simplified.The main purpose of the present paper is to take the disturbance expansion into consideration with the aim to lay down a solid mathematical and physical foundation for the disturbance vortex method.Since the disturbance expansion has been taken into account,one has to solve the mass,vorticity transport and energy transport equations for disturbance motion in a coupled way.These are the main differences between the present paper and reference 1. To validate the computational method,the unsteady flows caused by rotor/stator interaction in the first stage of NASA67 compressor were simulated in reference 1.And unsteady velocity correlation parameters at several locations inside the passage were compared with the experimental data.In order to find out the influence of ignoring the disturbance expansion on computational results,the same example was studied in the present paper.From the simulation results it can seen that the disturbance vortex method still converges fast even the disturbance expansion is taken into consideration. It is noted that the additional velocity component which is needed to meet the nonpenetrate condition on the body surface is expressed by an elliptic type Laplace equation rather than a hyperbolic type equation even the flow is unsteady and compressible.It is also noted that setting the disturbance expansion to be zero is not equivalent to an incompressible disturbance motion.
Keywords:turbomachinery  rotor/stator interaction  disturbance vortex method  compressible flow  unsteady  flow  
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