Building on work from previous studies a strong case is presented for the existence of a long-term density decline in the thermosphere. Using a specially developed orbital propagator to predict satellite orbit evolution, combined with a new and accurate method of determining satellite ballistic coefficients, a long-term thermospheric density change has been detected using a different method compared to previous studies. Over a 40-year period between the years 1970 and 2010, thermospheric density has appeared to reduce by a few percent per decade. However, the results do not show the thermospheric density reduction to vary linearly with time. Therefore, by analyzing the derived density data over varying solar activity levels, as well as perf...
The goal of this study is to characterize the semiannual thermospheric density variation at low alti...
Thermospheric density impacts satellite position and lifetime through atmospheric drag. More accurat...
Accurate estimation of thermosphere mass density is critical to determining how satellite orbits evo...
Predicting the positions of satellites in Low Earth Orbit (LEO) requires a comprehensive understandi...
Atmospheric density has an important influence in predicting the positions of satellites in low Eart...
Faculty members, undergraduate and graduate students of the School of Communication and Aerospace En...
We investigate possible impact of stratospheric sudden warmings (SSWs) on the thermosphere by using ...
Orbital data from the year 1967 onwards has allowed for historical observations of the thermosphere,...
Whilst it is well known that an increase in the density of the greenhouse gases CO2, CH4and others r...
Nowadays a large number of artificial satellites orbit the Earth, of which many of them have complet...
A major problem in the precise orbit determination (POD) of satellites at altitudes below 1,000 km i...
This is the published version. Copyright 2013 American Geophysical Union.This paper examines atmosph...
In this study, we present an empirical model, named CH-Therm-2018, of the thermospheric mass densit...
Satellite drag data plays an important role in the estimation of atmospheric density and the study o...
This paper presents measurements of the amplitudes and timings of the combined, annual, and semiannu...
The goal of this study is to characterize the semiannual thermospheric density variation at low alti...
Thermospheric density impacts satellite position and lifetime through atmospheric drag. More accurat...
Accurate estimation of thermosphere mass density is critical to determining how satellite orbits evo...
Predicting the positions of satellites in Low Earth Orbit (LEO) requires a comprehensive understandi...
Atmospheric density has an important influence in predicting the positions of satellites in low Eart...
Faculty members, undergraduate and graduate students of the School of Communication and Aerospace En...
We investigate possible impact of stratospheric sudden warmings (SSWs) on the thermosphere by using ...
Orbital data from the year 1967 onwards has allowed for historical observations of the thermosphere,...
Whilst it is well known that an increase in the density of the greenhouse gases CO2, CH4and others r...
Nowadays a large number of artificial satellites orbit the Earth, of which many of them have complet...
A major problem in the precise orbit determination (POD) of satellites at altitudes below 1,000 km i...
This is the published version. Copyright 2013 American Geophysical Union.This paper examines atmosph...
In this study, we present an empirical model, named CH-Therm-2018, of the thermospheric mass densit...
Satellite drag data plays an important role in the estimation of atmospheric density and the study o...
This paper presents measurements of the amplitudes and timings of the combined, annual, and semiannu...
The goal of this study is to characterize the semiannual thermospheric density variation at low alti...
Thermospheric density impacts satellite position and lifetime through atmospheric drag. More accurat...
Accurate estimation of thermosphere mass density is critical to determining how satellite orbits evo...