Multiobjective optimization of an ionizer nozzle structure based on RSM and CFD
Author:
Funder
the Key Research Project of Guangzhou, China
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s00158-024-03738-6.pdf
Reference38 articles.
1. Bae B, Park J, Kim J (2019) A low-voltage microwave plasma ionizer without the esd risk due to a high voltage source. In: 2019 41st Annual EOS/ESD Symposium (EOS/ESD).
2. Bo W, Ya-an H, Xin W et al (2021) Experimental and CFD study on the optimization of valve lintel’s structural parameters under critical self-aerated conditions. Eng Appl Comput Fluid Mech 15:1629–1644
3. Boulahbal C, Milinovic M, Rezgui N (2019) Nozzle flow gas-dynamical properties under dome deflector thrust vector control system effect. Therm Sci 23:1263–1277
4. Byungjin B, Jingook K (2021) A low-voltage microwave plasma ionizer with reduced electric overstress due to displacement current coupling from a high-ac voltage source. IEEE Trans Electromagn Compat 63:1501–1511
5. Das AK, Hiremath SS (2022) Experimental and numerical analysis of thermohydraulic performance and entropy-generation in a rectangular microchannel for laminar and single-phase flow: Parametric study and multi-objective optimization. Therm Sci Eng Prog 33:101375
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