Introduction to integrated environmental modelling to solve real world problems: methods, vision and challenges
Author:
Affiliation:
1. British Geological Survey, Nicker Hill, Keyworth, Nottingham NG12 5GG, UK
Publisher
Geological Society of London
Subject
Geology,Ocean Engineering,Water Science and Technology
Reference30 articles.
1. Barkwith A.K.A.P. , Pachocka M. , Watson C. & Hughes A.G. 2014. Couplers for Linking Environmental Models: Scoping Study and Potential Next Steps. British Geological Survey Internal Report, OR/14/022 British Geological Survey, Nottingham.
2. Managing uncertainty in integrated environmental modelling: The UncertWeb framework
3. Beven K. & Lamb R. 2014. The uncertainty cascade in model fusion. In: Riddick A.T. , Kessler H. & Giles J.R.A. (eds) Integrated Environmental Modelling to Solve Real World Problems: Methods, Vision and Challenges. Geological Society, London, Special Publications, 408. First published online June 30, 2014, https://doi.org/10.1144/SP408.3
4. Conrads P.A. & Roehl E.A. 2015. The use of data-mining techniques for developing effective decision support systems: a case study of simulating the effects of climate change on coastal salinity intrusion. In: Riddick A.T. , Kessler H. & Giles J.R.A. (eds) Integrated Environmental Modelling to Solve Real World Problems: Methods, Vision and Challenges. Geological Society, London, Special Publications, 408. First published online February 16, 2015, https://doi.org/10.1144/SP408.8
5. Farrell R. , Ververs M. , Davison P. , Howlett P. & Whiteman M. 2016. Splicing recharge and groundwater flow models in the Environment Agency National Groundwater Modelling System. In: Riddick A.T. , Kessler H. & Giles J.R.A. (eds) Integrated Environmental Modelling to Solve Real World Problems: Methods, Vision and Challenges. Geological Society, London, Special Publications, 408. First published online September 30, 2016, https://doi.org/10.1144/SP408.14
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