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Radial Inflow Splitter Blades in Three-Dimensional

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Radial Inflow Splitter Blades in Three-Dimensional ( radial-inflow-splitter-blades-three-dimensional )

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Fig. 6.3a Fig. 6.3b Fig. 6.3c Fig. 6.4a Fig. 6.4b Fig. 6.4c Fig. 6.5a Fig. 6.5b Fig. 6.5c Fig. 6.6a Fig. 6.6b Fig. 6.6c Fig. 6.7 Fig. 6.8 Fig. 6.9 Fig. 6.10 Fig. 6.11 The distribution of rVg, !L, and 2 0.53) The distribution of rVo, 1 1, and 9' 0.61) The distribution of rV9 , Ws, and 0.74) along the shroud for case a (length along the shroud for case b (length ' along the shroud for case c (length Radial distribution of main blade camber along constant z-section for case a (length 0.53) Radial distribution of main blade camber along constant z-section for case b (length 0.61) Radial distribution of main blade camber along constant z-section for case c (length 0.74) The Mre. on the pressure side of main blade for case a (length 0.53) The M,,. on the pressure side of main blade for case b (length 0.61) The Mr,,. on the pressure side of main blade for case c (length 0.74) The M,, 1. on the pressure side of splitter blade for case a (length 0.53) The M16, . on the pressure side of splitter blade for case b (length 0.61) The Mr,,. on the pressure side of splitter blade for case c (length 0.74) The distribution of rVe, - O,and 2 along the hub for case d (stacking at 1/3 chord) The distribution of rV, - -, and valong the shroud for case d (stack- ing at 1/3 chord) The distribution of rVe on main blade for case d (stacking at 1/3 chord) The distribution of rVe on splitter blade for case d (stacking at 1/3 chord) Radial distribution of main blade camber along constant z-section for case d (stacking at 1/3 chord) Fig. 6.12a The M,,r. on the pressure side of main blade for case d (stacking at 1/3 chord) Fig. 6.12b The Me1. on the pressure side of main blade for case e (stacking further downstream) Fig. 6.13a The M,,r. on the pressure side ofsplitter blade for case d (stacking at 1/3 chord)

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