Buizza et al., 1995 - Google Patents
The singular-vector structure of the atmospheric global circulationBuizza et al., 1995
View HTML- Document ID
- 7661993108884561517
- Author
- Buizza R
- Palmer T
- Publication year
- Publication venue
- Journal of Atmospheric Sciences
External Links
Snippet
The local phase-space instability Of the atmospheric global circulation is Characterized by its (nonmodal) singular vectors. The formalism of singular vector analysis is described. The relations between singular vectors, normal modes, adjoint modes, Lyapunov vectors …
- 239000005436 troposphere 0 abstract description 9
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01W—METEOROLOGY
- G01W1/00—Meteorology
- G01W1/10—Devices for predicting weather conditions
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Buizza et al. | The singular-vector structure of the atmospheric global circulation | |
Simmons et al. | An energy and angular-momentum conserving vertical finite-difference scheme and hybrid vertical coordinates | |
Kuik et al. | A method for the routine analysis of pitch-and-roll buoy wave data | |
Thornton et al. | Surf zone longshore currents and random waves: Field data and models | |
Roemmich | Optimal estimation of hydrographic station data and derived fields | |
Gu et al. | Secular changes of annual and interannual variability in the tropics during the past century | |
Chapman et al. | On the origin of shelf water in the Middle Atlantic Bight | |
Bringi et al. | Multiparameter radar measurements in Colorado convective storms. Part II: Hail detection studies | |
Palecki et al. | Freeze-up and break-up of lakes as an index of temperature changes during the transition seasons: a case study for Finland | |
Reynolds et al. | Random error growth in NMC's global forecasts | |
Smith | An improved system for tropical ocean subsurface temperature analyses | |
Holopainen et al. | High-frequency transient eddies and blocking | |
Senff et al. | Measurement of water vapor flux profiles in the convective boundary layer with lidar and radar-RASS | |
Mitchell et al. | ENSO Seasonality: 1950–78 versus 1979–92 | |
Xu | On the relationship between the stratospheric quasi-biennial oscillation and the tropospheric Southern Oscillation | |
Temperton | On scalar and vector transform methods for global spectral models | |
Tsuyuki | Variational data assimilation in the Tropics using precipitation data. Part II: 3D model | |
Zhang et al. | Response characteristics of the UW sonic anemometer | |
Barkmeijer | Constructing fast-growing perturbations for the nonlinear regime | |
Brink | Energy conservation in coastal-trapped wave calculations | |
Crook et al. | Numerical simulations initialized with radar-derived winds. Pail II: Forecasts of three gust-front cases | |
Wyngaard | Toward convective boundary layer parameterization: A scalar transport module | |
Xu | The joint modes of the coupled atmosphere-ocean system observed from 1967 to 1986 | |
Milliff et al. | Structure and dynamics of the Rhodes gyre system and dynamical interpolation for estimates of the mesoscale variability | |
Stening et al. | Lunar tidal winds measured in the upper atmosphere (78–105 km) at Saskatoon, Canada |