A computationally efficient, intermediate complexity ocean-atmosphere-sea ice model (C-GOLDSTEIN) has been incorporated into the Grid ENabled Integrated Earth system modelling (GENIE) framework. This involved decoupling of the three component modules that were re-coupled in a modular way, to allow replacement with alternatives and coupling of further components within the framework. The climate model described here (referred to as “eb_go_gs” for short) is the most basic version of GENIE in which atmosphere, ocean and sea ice all play an active role. Among improvements on the original C-GOLDSTEIN model, latitudinal grid resolution is generalized to allow a wider range of surface grids to be used. The ocean, atmosphere and sea-ice components ...
In order to simulate at the multi-decadal time scale and beyond, climate models rely heavily on para...
A low-resolution coupled ocean–atmosphere general circulation model (OAGCM) is used to study the cha...
Overview:•GENIE Project•Multi-objective Optimisation•Surrogate Modelling•Grid Computing Infrastructu...
A computationally efficient, intermediate complexity ocean-atmosphere-sea ice model (C-GOLDSTEIN) ha...
Abstract. A computationally efficient, intermediate com-plexity ocean-atmosphere-sea ice model (C-GO...
We describe the development, tuning and climate of Planet Simulator (PLASIM)–Grid-ENabled Integrated...
We describe the development, tuning and climate of Planet Simulator (PLASIM)-Grid-ENabled Integrated...
International audienceWe examine several aspects of the ocean-atmosphere system over the last 30 000...
An understanding of the astonishing and, as yet, unexplained natural variability of past climate is ...
The integration of compute and data grids into a common problem solving environment enables collabor...
International audienceHere we describe GENIE-M, a new and improved version of the Grid ENabled Integ...
This paper presents and discusses an ensemble of transient model simulations from the Last Glacial M...
International audienceThis paper summarizes the formulation of the ocean component to the Geophysica...
GENIE is a flexible Earth system modelling framework supporting a distributed community of environme...
The formulation and simulation characteristics of two new global coupled climate models developed at...
In order to simulate at the multi-decadal time scale and beyond, climate models rely heavily on para...
A low-resolution coupled ocean–atmosphere general circulation model (OAGCM) is used to study the cha...
Overview:•GENIE Project•Multi-objective Optimisation•Surrogate Modelling•Grid Computing Infrastructu...
A computationally efficient, intermediate complexity ocean-atmosphere-sea ice model (C-GOLDSTEIN) ha...
Abstract. A computationally efficient, intermediate com-plexity ocean-atmosphere-sea ice model (C-GO...
We describe the development, tuning and climate of Planet Simulator (PLASIM)–Grid-ENabled Integrated...
We describe the development, tuning and climate of Planet Simulator (PLASIM)-Grid-ENabled Integrated...
International audienceWe examine several aspects of the ocean-atmosphere system over the last 30 000...
An understanding of the astonishing and, as yet, unexplained natural variability of past climate is ...
The integration of compute and data grids into a common problem solving environment enables collabor...
International audienceHere we describe GENIE-M, a new and improved version of the Grid ENabled Integ...
This paper presents and discusses an ensemble of transient model simulations from the Last Glacial M...
International audienceThis paper summarizes the formulation of the ocean component to the Geophysica...
GENIE is a flexible Earth system modelling framework supporting a distributed community of environme...
The formulation and simulation characteristics of two new global coupled climate models developed at...
In order to simulate at the multi-decadal time scale and beyond, climate models rely heavily on para...
A low-resolution coupled ocean–atmosphere general circulation model (OAGCM) is used to study the cha...
Overview:•GENIE Project•Multi-objective Optimisation•Surrogate Modelling•Grid Computing Infrastructu...