NASA-CR-2779
Finite state modeling of aeroelastic systems
Year: 1977
Abstract: A general theory of finite state modeling of aerodynamic loads on thin airfoils and lifting surfaces performing completely arbitrary, small, time-dependent motions in an airstream is developed and presented. The nature of the behavior of the unsteady airloads in the frequency domain is explained, using as raw materials any of the unsteady linearized theories that have been mechanized for simple harmonic oscillations. Each desired aerodynamic transfer function is approximated by means of an appropriate Pade approximant, that is, a rational function of finite degree polynomials in the Laplace transform variable. The modeling technique is applied to several two dimensional and three dimensional airfoils. Circular, elliptic, rectangular and tapered planforms are considered as examples. Identical functions are also obtained for control surfaces for two and three dimensional airfoils.
Subject: AERODYNAMIC
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| contributor author | NASA - National Aeronautics and Space Administration (NASA) | |
| date accessioned | 2017-09-04T17:50:18Z | |
| date available | 2017-09-04T17:50:18Z | |
| date copyright | 01/01/1977 | |
| date issued | 1977 | |
| identifier other | EWMKAEAAAAAAAAAA.pdf | |
| identifier uri | http://yse.yabesh.ir/std/handle/yse/173582 | |
| description abstract | A general theory of finite state modeling of aerodynamic loads on thin airfoils and lifting surfaces performing completely arbitrary, small, time-dependent motions in an airstream is developed and presented. The nature of the behavior of the unsteady airloads in the frequency domain is explained, using as raw materials any of the unsteady linearized theories that have been mechanized for simple harmonic oscillations. Each desired aerodynamic transfer function is approximated by means of an appropriate Pade approximant, that is, a rational function of finite degree polynomials in the Laplace transform variable. The modeling technique is applied to several two dimensional and three dimensional airfoils. Circular, elliptic, rectangular and tapered planforms are considered as examples. Identical functions are also obtained for control surfaces for two and three dimensional airfoils. | |
| language | English | |
| title | NASA-CR-2779 | num |
| title | Finite state modeling of aeroelastic systems | en |
| type | standard | |
| page | 192 | |
| status | Active | |
| tree | NASA - National Aeronautics and Space Administration (NASA):;1977 | |
| contenttype | fulltext | |
| subject keywords | AERODYNAMIC | |
| subject keywords | AEROELASTICITY | |
| subject keywords | AERONAUTICAL | |
| subject keywords | AIRFOILS | |
| subject keywords | ANALYSIS | |
| subject keywords | APPROXIMATION | |
| subject keywords | BODIES | |
| subject keywords | DEVICES | |
| subject keywords | ENGINEERING | |
| subject keywords | LAPLACE | |
| subject keywords | LIFT | |
| subject keywords | LIFTING | |
| subject keywords | LOADS | |
| subject keywords | MATHEMATICAL | |
| subject keywords | MODELS | |
| subject keywords | PADE | |
| subject keywords | STABILITY | |
| subject keywords | STRUCTURAL | |
| subject keywords | SURFACES | |
| subject keywords | TRANSFORMATION |

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