2015
DOI: 10.1016/j.ast.2015.04.002
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Experimental study of the effect of blade curvature and aspect ratio on the performance of a rotary-wing decelerator

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Cited by 6 publications
(4 citation statements)
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References 12 publications
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“…In the present study, the flight and rotation speed of SIV are chosen to be approximately 20-80 m s −1 , 20-40 r/s, respectively, which are higher than those for decelerators with parachutes (≈10 m s −1 , 4 r/s [1,38]) or wings (≈20 m s −1 and 12 r/s [2,13,14,[39][40][41][42][43]). However, compared with aviation vehicles, (e.g., rockets, missiles, airplanes, etc) that rely on rotation and fins to achieve a stable flight [44], the flight speed and rotation speed of SIV are much lower.…”
Section: The Force Acting On Sivmentioning
confidence: 99%
“…In the present study, the flight and rotation speed of SIV are chosen to be approximately 20-80 m s −1 , 20-40 r/s, respectively, which are higher than those for decelerators with parachutes (≈10 m s −1 , 4 r/s [1,38]) or wings (≈20 m s −1 and 12 r/s [2,13,14,[39][40][41][42][43]). However, compared with aviation vehicles, (e.g., rockets, missiles, airplanes, etc) that rely on rotation and fins to achieve a stable flight [44], the flight speed and rotation speed of SIV are much lower.…”
Section: The Force Acting On Sivmentioning
confidence: 99%
“…Nadal-Mora and Sanz-Andr es (2006) obtained the stability range of pararotors via equations of motion, and Piechocki et al (2008) developed an analytical model and analyzed the stability of a type of pararotor whose blade is aligned with the mass center of the whole system. Additionally, in Piechocki et al (2014Piechocki et al ( , 2016, parameters such as displacement of mass center affecting their dynamic behavior were examined, and in Francisco-Martiarena et al (2015), the influence of aspect ratio on their performance was shown experimentally. Kellas (2007) designed, constructed and controlled a singlebladed vehicle deploying no motors in the auto-rotating phase.…”
Section: Introductionmentioning
confidence: 99%
“…Inflatable heat shields use flexible air-tight chambers that are folded before inflation, then deploy and rigidise under internal gas pressure. Flexible thermal protection layers based on commercial materials are wrapped onto the chambers to maintain an acceptable structural temperature [11,12,13,14,15,16,17,18,19,20,21,22,23]. The foldable mechanisms utilise umbrella-like designs where a skirt made of flexible thermal protection materials is bounded onto rigid deployable ribs.…”
Section: Introductionmentioning
confidence: 99%