The spatiotemporal structure of the lapse-rate tropopause is examined by using state-of-the-art Global Positioning System radio occultation measurements from the Constellation Observing System for Meteorology, Ionosphere and Climate (COSMIC) Formosa Satellite Mission 3 mission. The high temporal and spatial resolutions of the data reveal the detailed structure of tropopause properties such as pressure (pt), temperature (Tt), and sharpness (Nt^2) and their relationships to upper tropospheric and lower stratospheric processes. The overall results are generally in good agreement with previous studies. The climatology of all three tropopause properties shows largely homogeneous structure in the zonal direction: noticeable asymmetries are found ...
Recent high-resolution radiosonde climatologies have revealed a tropopause inversion layer (TIL) in ...
[1] Temperature profiles in the extratropics often exhibit multiple tropopauses (as defined using th...
The Tenth Symposium on Polar Science/Special session: [IW] Whole atmosphere, Wed. 4 Dec. / 3F Semino...
Characteristics of the lapse rate tropopause are analyzed globally for tropopause altitude and te...
Journal ArticleResearch suggests that changes in tropopause structure can both indicate and impact c...
In this study, the relationship between gravity wave (GW) potential energy (Ep) and the tropopause h...
Lapse rate tropopause (LRT) heights in the extratropics have been shown to display a bimodal distrib...
Global characteristics of the extratropical tropopause inversion layer identified in radiosonde obse...
This study characterizes the relationship between extratropical precipitation systems to changes in ...
This study characterizes the relationship between extratropical precipitation systems to changes in ...
Accurate depictions of the tropopause and its changes are important for studies on stratosphere–trop...
Detrended fluctuation analysis is applied to the time series of the global tropopause height derived...
Structure and variability of the tropical tropopause are presented using radio occultation measureme...
The status of the tropopause has impact on weather phenomena and climate change occurring in the atm...
The global characteristics and trends of the tropopause physical parameters, height and temperature,...
Recent high-resolution radiosonde climatologies have revealed a tropopause inversion layer (TIL) in ...
[1] Temperature profiles in the extratropics often exhibit multiple tropopauses (as defined using th...
The Tenth Symposium on Polar Science/Special session: [IW] Whole atmosphere, Wed. 4 Dec. / 3F Semino...
Characteristics of the lapse rate tropopause are analyzed globally for tropopause altitude and te...
Journal ArticleResearch suggests that changes in tropopause structure can both indicate and impact c...
In this study, the relationship between gravity wave (GW) potential energy (Ep) and the tropopause h...
Lapse rate tropopause (LRT) heights in the extratropics have been shown to display a bimodal distrib...
Global characteristics of the extratropical tropopause inversion layer identified in radiosonde obse...
This study characterizes the relationship between extratropical precipitation systems to changes in ...
This study characterizes the relationship between extratropical precipitation systems to changes in ...
Accurate depictions of the tropopause and its changes are important for studies on stratosphere–trop...
Detrended fluctuation analysis is applied to the time series of the global tropopause height derived...
Structure and variability of the tropical tropopause are presented using radio occultation measureme...
The status of the tropopause has impact on weather phenomena and climate change occurring in the atm...
The global characteristics and trends of the tropopause physical parameters, height and temperature,...
Recent high-resolution radiosonde climatologies have revealed a tropopause inversion layer (TIL) in ...
[1] Temperature profiles in the extratropics often exhibit multiple tropopauses (as defined using th...
The Tenth Symposium on Polar Science/Special session: [IW] Whole atmosphere, Wed. 4 Dec. / 3F Semino...