ELISA: A Tool for Optimization of Rotor Hover Performance at Low Reynolds Number in the Mars Atmosphere

被引:1
|
作者
Koning, Witold J. F. [1 ]
Perez, B. Natalia Perez [1 ]
Cummings, Haley, V [2 ]
Romander, Ethan A. [2 ]
Johnson, Wayne [2 ]
机构
[1] NASA Ames Res Ctr, Aerosp Engineer Aerosp Engineer Sci & Technol Corp, Comp Sci Corp, Moffett Field, CA 94035 USA
[2] NASA Ames Res Ctr, Moffett Field, CA 94035 USA
关键词
DESIGN;
D O I
10.4050/JAHS.69.042005
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The Evolutionary aLgorithm for Iterative Studies of Aeromechanics (ELISA) was developed in support of the Rotorcraft Optimization for the Advancement of Mars eXploration (ROAMX) project. ELISA was developed to enable aerodynamic rotor hover optimization for low Reynolds number flows in the Mars atmosphere. The first module of the algorithm allows for unconventional airfoil parameterization and multiobjective airfoil geometry optimization using OVERFLOW. The Pareto-optimal airfoil sets are converted to a set of Pareto-optimal airfoil decks, providing the lowest drag airfoil geometry for each angle of attack. The second module allows for rotor geometry optimization with simultaneous maximization of blade loading and minimization of rotor power using the comprehensive analysis CAMRADII. The result is a Pareto-optimal rotor set, providing the lowest power rotor for each attainable blade loading, and one of the first tools for hover-optimized rotors for high-subsonic low Reynolds number conditions. The airfoil thickness can be modified after the airfoil optimization is complete, allowing for a post-airfoil optimization adjustment of blade thickness to facilitate conforming to external structural analysis requirements. The relevance of the code is demonstrated with case studies for the ROAMX rotor optimization for Ingenuity-sized single rotors in the Mars atmosphere and a performance study optimizing the chord and twist of Ingenuity's coaxial rotor resulting in the Sample Recovery Helicopters candidate rotor.
引用
收藏
页数:15
相关论文
共 50 条
  • [1] Investigation of the Reynolds number effect on the rotor hover performance
    China Aerodynamics Research and Development Center, Mianyang 621000, China
    Shiyan Liuti Lixue, 2008, 4 (11-14):
  • [2] Towards silent micro-air vehicles: optimization of a low Reynolds number rotor in hover
    Serre, Ronan
    Gourdain, Nicolas
    Jardin, Thierry
    Jacob, Marc C.
    Moschetta, Jean-Marc
    INTERNATIONAL JOURNAL OF AEROACOUSTICS, 2019, 18 (08) : 690 - 710
  • [3] Low-Reynolds number flows in Earth and Mars atmosphere
    Catalano, Pietro
    D'Aniello, Francesco Antonio
    AIAA AVIATION FORUM AND ASCEND 2024, 2024,
  • [4] Hover performance of a micro air vehicle: Rotors at low Reynolds number
    Hein, Benjamin R.
    Chopra, Inderjit
    JOURNAL OF THE AMERICAN HELICOPTER SOCIETY, 2007, 52 (03) : 254 - 262
  • [5] Experimental and Analytical Analysis of Rotor-Wing Interaction in Hover for Low Reynolds Number Flow
    Chen, Mingtai
    Hubner, James P.
    JOURNAL OF AEROSPACE ENGINEERING, 2021, 34 (06)
  • [6] Study on the Performance of a Cycloidal Rotor in Hover at Different Reynolds Numbers
    Zimmer, Florian
    Gagnon, Louis
    JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 2023, 145 (05):
  • [7] Flow past triangular airfoil of variable thickness with low Reynolds number in Mars atmosphere
    Wu, Wen-Chung
    Kumar, Ankit
    NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2024,
  • [8] An improved aerodynamic performance optimization method of 3-D low Reynolds number rotor blade
    Zhang, Shuyi
    Yang, Bo
    INTERNATIONAL JOURNAL OF TURBO & JET-ENGINES, 2023, 40 (03) : 317 - 328
  • [9] An improved aerodynamic performance optimization method of 3-D low Reynolds number rotor blade
    Zhang, Shuyi
    Yang, Bo
    INTERNATIONAL JOURNAL OF TURBO & JET-ENGINES, 2021,
  • [10] Hover Performance of a Small-Scale Helicopter Rotor for Flying on Mars
    Shrestha, Robin
    Benedict, Moble
    Hrishikeshavan, Vikram
    Chopra, Inderjit
    JOURNAL OF AIRCRAFT, 2016, 53 (04): : 1160 - 1167