Optimization Design of Electrical Axial Fan Based on NSGA - II Algorithm

Author:

Zhao Yu-Shu

Publisher

Springer Nature Singapore

Reference12 articles.

1. Ian, M., Allan, S.: Aircraft Systems. 3rd edn. Aviation Industry Press, Beijing (2011)

2. Roy, R.F., Hinduja, S., Teti, R.T.: Recent advances in engineering design optimisation: challenges and future trends. Manufacturing Technol. 57(2), 697–715 (2008)

3. Huang, L., Yu, H.-W.: Multi-objective optimization design of single-stage transonic fan rotor blade. Gas Turbine Experiment and Res. 29(3), 30–34 (2016)

4. Chen, M.Y., Lu, H.N., Pan T Y.: Multi-objective optimization of a fan airfoil adaptive for the inlet distortion. Chinese J. Turbomachinery (2019)

5. Kim, J.H.: Axial-flow ventilation fan design through multi-objective optimization to enhance aerodynamic performance. J. Fluids Eng. 133(10), 101101 (2011)

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