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Dynamic Modeling of Starting Aerodynamics and Stage Matching in an Axi-Centrifugal Compressor

机译:轴流-离心压缩机中启动空气动力学和级匹配的动力学建模

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摘要

A DYNamic Turbine Engine Compressor Code (DYNTECC) has been modified to model speed transients from 0-100% of compressor design speed. The impetus for this enhancement was to investigate stage matching and stalling behavior during a start sequence as compared to rotating stall events above ground idle. The model can simulate speed and throttle excursions simultaneously as well as time varying bleed flow schedules. Results of a start simulation are presented and compared to experimental data obtained from an axi-centrifugal turboshaft engine and companion compressor rig. Stage by stage comparisons reveal the front stages to be operating in or near rotating stall through most of the start sequence. The model matches the starting operating line quite well in the forward stages with deviations appearing in the rearward stages near the start bleed. Overall, the performance of the model is very promising and adds significantly to the dynamic simulation capabilities of DYNTECC.
机译:修改了动态涡轮发动机压缩机代码(DYNTECC),以模拟从压缩机设计速度的0%到100%的速度瞬变。这种增强的动力是研究启动序列期间的阶段匹配和失速行为,与地面空转上方的旋转失速事件相比。该模型可以同时模拟速度和节气门偏移,以及随时间变化的排放流程。给出了启动模拟的结果,并将其与从轴离心式涡轮轴发动机和配套压缩机装置获得的实验数据进行了比较。逐阶段比较显示,在大多数启动顺序中,前级将在旋转失速中或附近运行。该模型在前阶段与启动操作线非常匹配,在后阶段靠近开始放气的地方出现了偏差。总体而言,该模型的性能非常有前途,并大大增强了DYNTECC的动态仿真功能。

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