Article citationsMore>>
Jacob, D., Van den Hurk, B.J.J.M., Andrae, U., Elgered, G., Fortelius, C., Graham, L.P., Jackson, S.D., Karstens, U., Kopken, C., Lindau, R., Podzun, R., Rockel, B., Rubel, F., Sass, B.H., Smith, R.N.B. and Yang, X. (2001) A Comprehensive Model Inter-Comparison Study Investigating the Water Budget during the Baltex-Pidcap Period. Meteorology and Atmospheric Physics, 77, 19-43.
http://dx.doi.org/10.1007/s007030170015
has been cited by the following article:
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TITLE:
Influence of the Boundary Forcing on the Internal Variability of a Regional Climate Model
AUTHORS:
Kevin Sieck, Daniela Jacob
KEYWORDS:
Regional Climate Model, Internal Variability, Boundary Forcing, Circulation Type Classification
JOURNAL NAME:
American Journal of Climate Change,
Vol.5 No.3,
August
24,
2016
ABSTRACT: The internal variability of a ten-member ensemble of the regional climate model REMO over Europe is investigated. It is shown that the annual cycle of internal variability behaves differently compared to earlier studies that focused on other regions. To gain better insight into the dependence of the internal variability on the boundary forcing variability, a circulation type classification is performed on the forcing data. It can be shown that especially in the winter season internal variability is dependent on the circulation type included in the boundary forcing, whereas in the summer season the level and pattern of internal variability is rather independent from the circulation type of the driving field. It is concluded that for Europe the internal variability of REMO in winter is governed by circulation patterns related to the North-Atlantic Oscillation, whereas in summer local processes play a bigger role.
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