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Internal variability in a 1000-yr control simulation with the coupled climate model ECHO-G – I. Near-surface temperature, precipitation and mean sea level pressure Cover

Internal variability in a 1000-yr control simulation with the coupled climate model ECHO-G – I. Near-surface temperature, precipitation and mean sea level pressure

Open Access
|Jan 2005

Abstract

The internal variability in a 1000-yr control simulation with the coupled atmosphere–ocean global climate model ECHO-G is analysed using near-surface temperature, precipitation and mean sea level pressure variables, and is compared with observations and other coupled climate model simulations. ECHO-G requires annual mean flux adjustments for heat and freshwater in order to simulate no significant climate drift for 1000 yr, but no flux adjustments for momentum. The ECHO-G control run captures well most aspects of the observed seasonal and annual climatology and of the interannual to decadal variability of the three variables. Model biases are very close to those in ECHAM4 (atmospheric component of ECHO-G) stand-alone integrations with prescribed observed sea surface temperature. A trend comparison between observed and modelled near-surface temperatures shows that the observed near-surface globalwarming is larger than internal variability produced by ECHO-G, supporting previous studies. The simulated global mean near-surface temperatures, however, show a 2-yr spectral peak which is linked with a strong biennial bias of energy in the El Niño Southern Oscillation signal. Consequently, the interannual variability (3–9 yr) is underestimated.

Language: English
Page range: 605 - 621
Submitted on: Jul 30, 2004
Accepted on: Dec 20, 2004
Published on: Jan 1, 2005
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2005 Seung-Ki Min, Stephanie Legutke, Andreas Hense, Won-Tae Kwon, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.