Affiliation:
1. Turbomachinery Laboratory, University of Hannover, Appelstr. 9, D-30167 Hannover, Germany
Abstract
The FVV sponsored project “Bow Blading” (cf. acknowledgments) at the Turbomachinery Laboratory of the University of Hannover addresses the effect of strongly bowed stator vanes on the flow field in a four-stage high-speed axial compressor with controlled diffusion airfoil (CDA) blading. The compressor is equipped with more strongly bowed vanes than have previously been reported in the literature. The performance map of the present compressor is being investigated experimentally and numerically. The results show that the pressure ratio and the efficiency at the design point and at the choke limit are reduced by the increase in friction losses on the surface of the bowed vanes, whose surface area is greater than that of the reference (CDA) vanes. The mass flow at the choke limit decreases for the same reason. Because of the change in the radial distribution of axial velocity, pressure rise shifts from stage 3 to stage 4 between the choke limit and maximum pressure ratio. Beyond the point of maximum pressure ratio, this effect is not distinguishable from the reduction of separation by the bow of the vanes. Experimental results show that in cases of high aerodynamic loading, i.e., between maximum pressure ratio and the stall limit, separation is reduced in the bowed stator vanes so that the stagnation pressure ratio and efficiency are increased by the change to bowed stators. It is shown that the reduction of separation with bowed vanes leads to a increase of static pressure rise towards lower mass flow so that the present bow bladed compressor achieves higher static pressure ratios at the stall limit.
Reference8 articles.
1. Joslyn, H. D.
, 1985, “Axial Compressor Stator Aerodynamics,” ASME J. Eng. Gas Turbines Power, 107, pp. 484–493.
2. Breugelmans, F. A. H. et al., 1984, “Influence of Dihedral on the Secondary Flow in a Two-Dimensional Compressor Cascade,” ASME J. Eng. Gas Turbines Power, 106, pp. 578–584.
3. Shang, E. et al., 1993, “The Experimental Investigations on the Compressor Cascades With Leaned and Curved Blade,” ASME, Paper No. 93-GT-50.
4. Weingold, H. D. et al., 1995, “Reduction of Compressor Stator Endwall Losses Through the Use of Bowed Stators,” ASME, Paper No. 95-GT-380.
5. Walkenhorst, J., 2000, “Axialverdichter mit Wandkonturierten Leitschaufeln—Pru¨fstandsentwicklung und Stro¨mungsuntersuchung,” “Axial Compressor With End-Wall Shaped Stator Vanes,” Ph.D. thesis, University of Hannover, Germany and VDI-Bericht Reihe 7, Nr. 390, Duesseldorf, Germany.
Cited by
41 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献