Available Potential Energy and the Maintenance of the General Circulation
Open Access
- 1 January 1955
- journal article
- Published by Stockholm University Press in Tellus A: Dynamic Meteorology and Oceanography
- Vol. 7 (2) , 157-167
- https://doi.org/10.3402/tellusa.v7i2.8796
Abstract
The available potential energy of the atmosphere may be defined as the difference between the total potential energy and the minimum total potential energy which could result from any adiabatic redistribution of mass. It vanishes if the density stratification is horizontal and statically stable everywhere, and is positive otherwise. It is measured approximately by a weighted vertical average of the horizontal variance of temperature. In magnitude it is generally about ten times the total kinetic energy, but less than one per cent of the total potential energy. Under adiabatic flow the sum of the available potential energy and the kinetic energy is conserved, but large increases in available potential energy are usually accompanied by increases in kinetic energy, and therefore involve nonadiabatic effects. Available potential energy may be partitioned into zonal and eddy energy by an analysis of variance of the temperature field. The zonal form may be converted into the eddy form by an eddy-transport of sensible heat toward colder latitudes, while each form may be converted into the corresponding form of kinetic energy. The general circulation is characterized by a conversion of zonal available potential energy, which is generated by low-latitude heating and high-latitude cooling, to eddy available potential energy, to eddy kinetic energy, to zonal kinetic energy.Keywords
This publication has 9 references indexed in Scilit:
- NOTES ON THE TRANSFORMATION OF MECHANICAL ENERGY FROM AND TO EDDYING MOTIONJournal of Meteorology, 1954
- Commentaries Concerning Research on the General CirculationTellus A: Dynamic Meteorology and Oceanography, 1954
- Note Concerning the Nature of the Large-Scale Eddies in the AtmosphereTellus A: Dynamic Meteorology and Oceanography, 1953
- Energy Conversions in the Atmosphere on the Scale of the General CirculationTellus A: Dynamic Meteorology and Oceanography, 1952
- A Note on the Kinetic Energy Balance of the Zonal Wind SystemsTellus, 1951
- ENERGY TRANSFORMATION FUNCTIONSJournal of Meteorology, 1950
- ENERGY CHANGES IN THE MEAN ATMOSPHEREJournal of Meteorology, 1949
- On the Distribution of Angular Velocity in Gaseous Envelopes Under the Influence of Large-Scale Horizontal Mixing Processes*Bulletin of the American Meteorological Society, 1947
- On the kinematics and thermodynamics of general circulation of the atmosphere in the higher latitudesEOS, Transactions American Geophysical Union, 1947