通流
空气动力学
入口
计算流体力学
解算器
气体压缩机
总压力
机械
失真(音乐)
流量(数学)
工程类
质量流
边界层
海洋工程
轴流压缩机
航空航天工程
控制理论(社会学)
无量纲量
模拟
推进
边界(拓扑)
边值问题
计算机科学
质量流量
理论(学习稳定性)
过程(计算)
流动分离
计算机模拟
静压
流入
势流
领域(数学)
作者
Djordje Petkovic,Milan Banjac,Teodora Madzar,Srdjan Milic,Milan Petrović,Satoshi Yamashita,Y. Koike
摘要
Abstract Next-generation aircraft with boundary layer ingesting (BLI) engines can reduce fuel consumption but pose challenges for fan and compressor operation due to inlet distortion. To optimize the design of such engines, it is essential to assess the impact of nonuniform inlet flow on stability and performance, with the final result of a distortion-tolerant machine. One of the first steps in this process is estimating the aerodynamic performance using fast but reliable mathematical models. This article presents an extension of the existing throughflow solver that predicts the effects of the upstream distortion. The proposed method, based on the parallel compressor theory, introduces multiple planes to accurately define and track the circumferential distribution of parameters as they advance through the machine. It applies to all types of distortion: total pressure, total temperature, and swirl. The model is demonstrated for a high-pressure, low hub-to-tip diameter ratio fan with nonuniform total pressure at the inlet. Flow physics associated with distortion is analyzed using results from full-annulus unsteady Reynolds-averaged Navier–Stokes (RANS) simulations for three operating points: near stall, design, and near choke. The flow field results are compared with the computational fluid dynamics (CFD) data at the design point. The overall performance is evaluated against a clean inlet case.
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