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Chapter 7 Conclusions and Suggestions for Future Work 7.1 Summary and Conclusions The inverse design theory and the accompanying computational procedure have been extended to include the design of splitter blade. In particular, the present study has concentrated on blade design that attempts to make the blade filament along constant z section more radial. The extent of region of reversed flow on the pressure side has also been examined. In addition, the present study also includes two situations that have not been con- sidered by Yang. They are the condition of non-vanishing at the leading edge (non-zero incidence) and the condition of non-vanishing 8B at the leading and trail- ing edge. The present study examines the influence of various parameters on blade design; these include the length of splitter blades, stacking position, rV0 distribution, non-zero incidence angle, blockage, and slip factor. Based on the results from these parametric design calculations, we deduce the following conclusions: (1) The use of splitter blades gives more flexibility for tailoring the loading on the main blades and this has resulted in the reduction or elimination of inviscid reversed flow region on the pressure side of the blades. Its use has also resulted in blades with nearly radial blade filament at an axial location. (2) The extent of the reversed flow region is more influenced by the specified loading than by the stacking position or the slip factor.PDF Image | Radial Inflow Splitter Blades in Three-Dimensional
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