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DESIGN OF AN ECONOMICAL COUNTER ROTATING FAN - COMPARISON OF THE CALCULATED AND MEASURED STEADY AND UNSTEADY RESULTS

机译:经济型柜台旋转风扇的设计-稳态和非稳态结果计算与测量的比较。

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Within the framework of the EU funded Project VITAL, SNECMA (Group Safran), as the work package leader, developed a counter rotating low-speed fan-concept for a high bypass ratio engine. The detailed aerodynamic and mechanical optimization of one blading version (CRTF2.b) was carried out at the German Aerospace Center (DLR), by applying one of the newest design methods featuring a multi-objective automatic optimization method based on an Evolutionary Algorithm [1]. The final design goals were high efficiency, a sufficient stall margin and adequate acoustic performances for the given cycle parameters. The fan stage developed was tested in an anechoic test facility at CIAM in Moscow. The test routine included the measurement of the performance map based on total pressure and total temperature measurements at the inlet and the outlet of the test rig and acoustic measurement as well. The unsteady flow field of the low speed Contra-Rotating Turbo Fan has been measured with four hot-wire probes at different axial positions. In the evaluation the measured data are compared with high resolution CFD results. Special emphasis was given to the comparison of the radial distribution of total pressure and total temperature in the bypass channel, the comparison of the measured and the calculated fan maps and to the comparison of the hot-wire measurements with high resolution, unsteady CFD results. The tests and the URANS-results confirmed the design goals.
机译:在欧盟资助的VITAL项目的框架内,SNECMA(赛峰集团)作为工作包的负责人,开发了用于高旁路比发动机的反向旋转低速风扇概念。在德国航空航天中心(DLR)进行了一种叶片设计(CRTF2.b)的详细空气动力学和机械优化,方法是应用一种最新的设计方法,该方法采用了基于进化算法的多目标自动优化方法[1]。 ]。对于给定的循环参数,最终的设计目标是高效率,足够的失速裕度和足够的声学性能。所开发的风扇舞台已在莫斯科CIAM的消声测试设备中进行了测试。测试程序包括基于测试台的入口和出口处的总压力和总温度测量以及声学测量来测量性能图。低速对流涡轮风扇的非稳态流场已通过四个热线探头在不同的轴向位置进行了测量。在评估中,将测得的数据与高分辨率CFD结果进行比较。特别强调了在旁路通道中总压力和总温度的径向分布的比较,测得的风扇图和计算出的风扇图的比较,以及具有高分辨率,不稳定CFD结果的热线测量的比较。测试和URANS结果确认了设计目标。

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