Numerical Research on Effect of 3-D Blade Surface Profiles on Aerodynamic Performance of Centrifugal Compressor Impellers[J]. 2015, 49(11): 135-141.
DOI:
Numerical Research on Effect of 3-D Blade Surface Profiles on Aerodynamic Performance of Centrifugal Compressor Impellers[J]. 2015, 49(11): 135-141.DOI: 10.7652/xjtuxb201511022.
Numerical Research on Effect of 3-D Blade Surface Profiles on Aerodynamic Performance of Centrifugal Compressor Impellers
A centrifugal compressor impeller with arbitrary curved surface is analyzed. The surface is transformed into ruled surface for the purpose of reducing manufacture costs
however the transformation leads to a worse aerodynamic performance. To improve the performance of impeller with ruled surface
8+1 sets of schemes are designed by changing control points of shape lines of leading edge and/or trailing edge
and the internal flow field and performance curves are evaluated by commercial CFD software Numeca. The aerodynamic performance worsens when the inlet blade angle increases and vice versa. The pressure ratio rises more considerably as the outlet blade angle increases
while the efficiency is improved more obviously as the outlet blade angle decreases. The integrated method combines the results from the changing of both leading and trailing edges to effectively enhance the aerodynamic performance. This approach indicates that the impeller with ruled surface is very sensitive to the modification of shape lines
and the aerodynamic performance of the appropriately modified impeller with ruled surface can be comparable with that of impeller with arbitrary curved surface.
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references
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