Articles | Volume 10, issue 3
https://doi.org/10.5194/gmd-10-1291-2017
https://doi.org/10.5194/gmd-10-1291-2017
Model evaluation paper
 | 
27 Mar 2017
Model evaluation paper |  | 27 Mar 2017

Evaluation of JULES-crop performance against site observations of irrigated maize from Mead, Nebraska

Karina Williams, Jemma Gornall, Anna Harper, Andy Wiltshire, Debbie Hemming, Tristan Quaife, Tim Arkebauer, and David Scoby

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Cited articles

AmeriFlux collaboration: AmeriFlux Site Information, http://public.ornl.gov/ameriflux/ (note: this data is currently being transitioned to a new location: http://fluxnet.fluxdata.org/), last access: 7 December 2016.
Atkin, O. K. K., Westbeek, M., Cambridge, M. L. L., Lambers, H., and Pons, T. L. L.: Leaf Respiration in Light and Darkness (A Comparison of Slow- and Fast-Growing Poa Species), Plant Physiol., 113, 961–965, 1997.
Bänziger, M., Edmeades, G. O., Beck, D., and Bellon, M.: Breeding for Drought and Nitrogen Stress Tolerance in Maize: From Theory to Practice. Mexico, D.F.: CIMMYT, 2000.
Best, M. J., Pryor, M., Clark, D. B., Rooney, G. G., Essery, R. L. H., Ménard, C. B., Edwards, J. M., Hendry, M. A., Porson, A., Gedney, N., Mercado, L. M., Sitch, S., Blyth, E., Boucher, O., Cox, P. M., Grimmond, C. S. B., and Harding, R. J.: The Joint UK Land Environment Simulator (JULES), model description – Part 1: Energy and water fluxes, Geosci. Model Dev., 4, 677–699, https://doi.org/10.5194/gmd-4-677-2011, 2011.
Bilionis, I., Drewniak, B. A., and Constantinescu, E. M.: Crop physiology calibration in the CLM, Geosci. Model Dev., 8, 1071–1083, https://doi.org/10.5194/gmd-8-1071-2015, 2015.
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Short summary
This study looks in detail at how well the crop model within the Joint UK Land Environment Simulator (JULES), a community land-surface model, is able to simulate irrigated maize in Nebraska. We use the results to point to future priorities for model development and describe how our methodology can be adapted to set up model runs for other sites and crop varieties.