About: NRLMSISE-00   Sponge Permalink

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NRLMSISE-00 is an empirical, global model of the Earth's atmosphere from ground to space. It models the temperatures and densities of the atmosphere's components. A primary use of this model is to aid predictions of satellite orbital decay due to atmospheric drag. The model, developed by Mike Picone, Alan Hedin, and Doug Drob, is based on the earlier models MSIS-86 and MSISE-90, but updated with actual satellite drag data. It also predicts anomalous oxygen. According to the NRL website, NRLMSISE-00 is the standard for international space research. The inputs for the model are;

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  • NRLMSISE-00
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  • NRLMSISE-00 is an empirical, global model of the Earth's atmosphere from ground to space. It models the temperatures and densities of the atmosphere's components. A primary use of this model is to aid predictions of satellite orbital decay due to atmospheric drag. The model, developed by Mike Picone, Alan Hedin, and Doug Drob, is based on the earlier models MSIS-86 and MSISE-90, but updated with actual satellite drag data. It also predicts anomalous oxygen. According to the NRL website, NRLMSISE-00 is the standard for international space research. The inputs for the model are;
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  • NRLMSISE-00 is an empirical, global model of the Earth's atmosphere from ground to space. It models the temperatures and densities of the atmosphere's components. A primary use of this model is to aid predictions of satellite orbital decay due to atmospheric drag. The model, developed by Mike Picone, Alan Hedin, and Doug Drob, is based on the earlier models MSIS-86 and MSISE-90, but updated with actual satellite drag data. It also predicts anomalous oxygen. NRL stands for the US Naval Research Laboratory. MSIS stands for Mass Spectrometer and Incoherent Scatter Radar respectively, the two primary data sources for development of earlier versions of the model. E indicates that the model extends from the ground through exosphere and 00 is the year of release. According to the NRL website, NRLMSISE-00 is the standard for international space research. The inputs for the model are; * Year and day * time of day * altitude * geodetic latitude * geodetic longitude * local apparent solar time * 81 day average of F10.7 solar flux * daily F10.7 solar flux for previous day * Daily magnetic index Output of the model is; * Helium Number density * Oxygen(O) Number density * Oxygen (O2) Number density * Nitrogen (N) Number density * Nitrogen (N2) Number density * Argon Number density * H Hydrogen Number density * total mass density * Anomalous oxygen Number density * Exospheric temperature * temperature at altitude
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