Publications
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- Acevedo O and Mahrt L (2010) Systematic Vertical Variation of Mesoscale Fluxes in the Nocturnal Boundary Layer. Boundary-Layer Meteorol., 135, 19-30
- Beluˇsi´c D, and L Mahrt (2008) Estimation of length scales from mesoscale networks. Tellus 60A: 706-715.
- Cardon, S. J., 2007: Obtaining eddy fluxes for a non-homogeneous environment using wavelet cospectra, M.S. thesis, Department of Atmospheric Science.
- Kelly, R. D., Leon, D., Cardon, S., Mahrt, L., and Vickers, D., in prepration: Wind shift patterns over a mountain basin during FLOSS.
- Mahrt L (2009) Characteristics of submeso winds in the stable boundary layer. Boundary-Layer Meteorol., 130, 1-14.
- Mahrt L. (2010) Variability and maintenance of turbulence in the very stable boundary layer. Boundary-Layer Meteorol. 135:118
- Mahrt, L (2008) Bulk Formulation of the surface fluxes extended to weak-wind stable conditions. Quart. J. Roy. Meteorol. Soc., 134, 1-10.
- Mahrt, L (2008) Mesoscale wind direction shifts in the stable boundary-layer. Tellus, 60A, 700-705.
- Mahrt, L (2008) The influence of transient flow distortion on turbulence in stable weak-wind conditions. Boundary-Layer Meteorol., 127, 1-16.
- Mahrt, L. (2017) Directional Shear in the Nocturnal Atmospheric Surface Layer. Boundary-Layer Meteorol doi:10.1007/s10546-017-0270-1
- Mahrt, L., 2007: The influence of nonstationarity on the turbulent flux–gradient relationship for stable stratification. Bound.-Layer Meteor., 125, doi:10.1007/s10546-007-9154-0.
- Mahrt, L., 2007: Weak-wind mesoscale meandering in the nocturnal boundary layer. Environ. Fluid Mech., 7, doi:10.1007/s10652-007-9024-9.
- Mahrt, L., and D. Vickers, 2005: Extremely Weak Mixing in Stable Conditions. Boundary-Layer Meteorology, 119(1), 19–39. doi:10.1007/s10546-005-9017-5.
- Vickers D, and L Mahrt (2006) A solution for flux contamination by mesoscale motions with very weak turbulence. Boundary-Layer Meteorol., 118, 431- 447.
- Vickers D, and L Mahrt (2007) Observations of the cross-wind velocity variance in the stable boundary layer. Env. Fluid Mech., 7, 55-71.
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