Biblio
Atmospheric boundary layers in storms: advanced theory and modelling applications. The 6th Plinius International Conference on Mediterranean Storms (Genoa Naples Palermo Palma de Mallorca Barcelona Marseille Genoa), 17-24 October 2004. (2004).
The effect of large eddies on the convective heat/mass transfer over complex terrain: Advanced theory and its validation against experimental and LES data. Croatian Meteorological Journal 20-26 (2005).
Atmospheric planetary boundary layer feedback in climate system and triggering of climate change at high latitudes. EGU General Assembly 11, (2009).
The effect of stratification on the roughness length and displacement height. ICTP Fall Colloquium on the Physics of Weather and Climate: Regional Weather Predictability and Modelling, Trieste, Italy, 29 September 10 October 2008. Abstract: the Colloquium web site (2008).
Energy- and flux-budget (EFB) turbulence closure model for stably stratified flows. Part I: steady-state, homogeneous regimes. Boundary-layer Meteorology 125, 167-191 (2007). Abstract
Download: fulltext-9.pdf (680.31 KB)
Energy- and flux-budget (EFB) turbulence closure model for stably stratified flows. Part I: steady-state, homogeneous regimes. Atmospheric Boundary Layers: Nature, Theory and Applications to Environmental Modelling and Security 11-35 (2007).doi:10.1007/978-0-387-74321-9_3 Abstract
Download: fulltext-8.pdf (727.04 KB)
Diagnostic and prognostic equations for the depth of the stably stratified Ekman boundary layer. Quarterly J. Royal Meteorol. Soc. 25-46 (2002).
On the exploitation of polarimetric ratio for oil spill detection. Electronic proceedings (EUSAR) 2016:7559371, (2016).
Total ozone variation between 50 and 60 N. Geophysical Research Letters 32, (2005). Download: 2005GL024012.pdf (225.86 KB)
Long-term variation in TOMS ozone over 60 deg.-70 deg. S. Geophysical Research Letters 24, 2295-2298 (1997).
Adaptively varying-coefficient spatiotemporal models. Journal of the Royal Statistical Society: Series B (Statistical Methodology) 71, (2009). Abstract
A model of solar coronal heating by classical inverse bremsstrahlung and generation of the solar wind. Astrophysical Journal 412, (1993).