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BS ISO 27852:2024

$198.66

Space systems. Estimation of orbit lifetime

Published By Publication Date Number of Pages
BSI 2024 58
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PDF Catalog

PDF Pages PDF Title
2 undefined
6 Foreword
7 Introduction
9 1 Scope
2 Normative references
3 Terms, definitions, symbols and abbreviated terms
3.1 Terms and definitions
13 3.2 Symbols
3.3 Abbreviated terms
4 Orbit lifetime estimation
4.1 General requirements
14 4.2 Definition of orbit lifetime estimation process
5 Orbit lifetime estimation methods and applicability
5.1 General
15 5.2 Method 1: high-precision numerical integration
5.3 Method 2: rapid semi-analytical orbit propagation
16 5.4 Method 3: numerical table look-up, analysis and fit equation evaluations
5.5 Orbit lifetime sensitivity to Sun-synchronous orbit conditions
5.6 Orbit lifetime statistical approach for high-eccentricity orbits (e.g. GTO)
22 6 Atmospheric density modelling
6.1 General
6.2 Atmospheric drag models
25 6.3 Long-duration solar flux and geomagnetic indices prediction
26 6.4 Method 1: Monte Carlo random draw of solar flux and geomagnetic indices
32 6.5 Method 2: predicted F10.7 Bar solar activity prediction profile
6.6 Method 3: equivalent constant solar flux and geomagnetic indices
36 6.7 Method 4: reference solar forcing scenario
7 Atmospheric density implications of thermospheric global cooling
37 8 Estimating ballistic coefficient (Ī²)
8.1 General
8.2 Estimating aerodynamic force and solar radiation pressure coefficients
8.2.1 General
8.2.2 Aerodynamic and solar radiation pressure coefficient estimation via a ā€œpanel modelā€
41 8.2.3 Hypersonic rarefied gas flow adjustments via the Knudsen number and other considerations
8.3 Estimating cross-sectional area with tumbling and stabilization modes
42 8.4 Estimating mass
43 Annex A (informative) Space population distribution
46 Annex B (informative) 25-year lifetime predictions using random draw approach
52 Annex C (informative) Solar radiation pressure and 3rd-body perturbations
54 Bibliography
BS ISO 27852:2024
$198.66