The Joint UK Land Environment Simulator (JULES), model description – Part 1: Energy and water fluxes

Совместный британский симулятор наземной среды (JULES): описание модели — часть 1. Потоки энергии и воды
Sue Grimmond, Peter M. Cox, Richard Essery, Stephen Sitch, Eleanor Blyth, Oliviér Boucher, John Edwards, Nicola Gedney, Douglas B. Clark, Lina M. Mercado, Martin Best, Milton Pryor, G. G. Rooney, R. J. Harding, Cécile B. Ménard, Margaret A. Hendry, Aurore Porson
2011-09-01

Joint UK Land Environment SimulatorMet Office Unified Modelclimate predictionenergy and water fluxesland surface model
Abstract. This manuscript describes the energy and water components of a new community land surface model called the Joint UK Land Environment Simulator (JULES). This is developed from the Met Office Surface Exchange Scheme (MOSES). It can be used as a stand alone land surface model driven by observed forcing data, or coupled to an atmospheric global circulation model. The JULES model has been coupled to the Met Office Unified Model (UM) and as such provides a unique opportunity for the research community to contribute their research to improve both world-leading operational weather forecasting and climate change prediction systems. In addition JULES, and its forerunner MOSES, have been the basis for a number of very high-profile papers concerning the land-surface and climate over the last decade. JULES has a modular structure aligned to physical processes, providing the basis for a flexible modelling platform.
1
JULES and its predecessor MOSES have supported influential research on land-surface processes and climate over the preceding decade.
2
JULES has been coupled to the Met Office Unified Model, enabling community contributions to operational weather forecasting and climate-change prediction systems.
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JULES is a new community land-surface model describing terrestrial energy and water fluxes, developed from the Met Office Surface Exchange Scheme.
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JULES uses a modular structure organized around physical processes, providing a flexible platform for land-surface research and model development.
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The model can operate as a standalone land-surface model driven by observed forcing data or be coupled to an atmospheric global circulation model.

The energy and water components of the Joint UK Land Environment Simulator (JULES) land surface model

Representation and simulation of energy and water fluxes in the JULES land surface model

Publication Details
Publication Date
2011-09-01
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Authors
Sue Grimmond
Peter M. Cox
Richard Essery
Stephen Sitch
Eleanor Blyth
Oliviér Boucher
John Edwards
Nicola Gedney
Douglas B. Clark
Lina M. Mercado
Martin Best
Milton Pryor
G. G. Rooney
R. J. Harding
Cécile B. Ménard
Margaret A. Hendry
Aurore Porson
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