Dynamic simulation of breakaway characteristics of tethered aerostats

Author:

Dai Qiumin,Fang Xiande,Li Xiaojian

Publisher

Elsevier BV

Subject

Space and Planetary Science,Aerospace Engineering,General Earth and Planetary Sciences,Atmospheric Science,Geophysics,Astronomy and Astrophysics

Reference14 articles.

1. Colozza, A. Initial feasibility assessment of a high altitude long endurance airship. NASA CR-21272, 2003.

2. Numerical Methods for Partial Differential Equations;Dai,2002

3. A study of thermal simulation of stratospheric airships;Fang;Spacecraft Recovery & Remote Sensing,2007

4. Farley, R.E. BalloonAscent: 3-D simulation tool for the ascent and float of high-altitude balloons. AIAA 2005–7412, 2005.

5. Hongjun, R., Reid, T., Dimitri, M. A comprehensive global model of broadband direct solar radiation for solar cell simulation. AIAA 2007–33, 2007.

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1. Natural convection within enclosures for thermal management in low-pressure environments;International Journal of Heat and Fluid Flow;2024-04

2. Thermal modeling of stratospheric airships;Progress in Aerospace Sciences;2015-05

3. Numerical study of forced convective heat transfer around a spherical aerostat;Advances in Space Research;2013-12

4. Dynamic Simulation of Breakaway tethered Aerostat including Thermal effects;AIAA Lighter-Than-Air Systems Technology (LTA) Conference;2013-03-23

5. Performance simulation of high altitude scientific balloons;Advances in Space Research;2012-03

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