Articles | Volume 7, issue 4
https://doi.org/10.5194/gmd-7-1629-2014
https://doi.org/10.5194/gmd-7-1629-2014
Model experiment description paper
 | 
14 Aug 2014
Model experiment description paper |  | 14 Aug 2014

High-resolution global climate modelling: the UPSCALE project, a large-simulation campaign

M. S. Mizielinski, M. J. Roberts, P. L. Vidale, R. Schiemann, M.-E. Demory, J. Strachan, T. Edwards, A. Stephens, B. N. Lawrence, M. Pritchard, P. Chiu, A. Iwi, J. Churchill, C. del Cano Novales, J. Kettleborough, W. Roseblade, P. Selwood, M. Foster, M. Glover, and A. Malcolm

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Cited articles

Delworth, T. L., Rosati, A., Anderson, W., Adcroft, A. J., Balaji, V., Benson, R., Dixon, K., Griffies, S. M., Lee, H.-C., Pacanowski, R. C., Vecchi, G. A., Wittenberg, A. T., Zeng, F., and Zhang, R.: Simulated climate and climate change in the GFDL CM2.5 high-resolution coupled climate model, J. Climate, 25, 2755–2781, https://doi.org/10.1175/JCLI-D-11-00316.1, 2012.
Demory, M.-E., Vidale, P.-L., Roberts, M., Berrisford, P., Strachan, J., Schiemann, R., and Mizielinski, M. S.: The role of horizontal resolution in simulating drivers of the global hydrological cycle, Clim. Dynam., 42, 2201–2225, https://doi.org/10.1007/s00382-013-1924-4, 2014.
Dennis, J. M., Edwards, J., Loy, R., Jacob, R., Mirin, A. A., Craig, A. P., and Vertenstein, M.: An application-level parallel I/O library for Earth system models, Int. J. High Perform. C., 26, 43–53, https://doi.org/10.1177/1094342011428143, 2012.
Desgagné, M., McTaggart-Cowan, R., Ohfuchi, W., Brunet, G., Yau, P., Gyakum, J., Furukawa, Y., and Valin, M.: Large atmospheric computation on the earth simulator: The LACES project, Scientific Programming, 14, 13–25, 2006.