References

Al Shaqsi, S., 2004. The Socio-Economic and Cultural Aspects in the Implementation of Water Demand Management: A Case Study in the sultanate of Oman. PhD Thesis submitted to The University of Nottingham.

Afshar, A., Mariño, M. A., Saadatpour, M., 2011. Fuzzy TOPSIS Multi-Criteria Decision Analysis Applied to Karun Reservoirs System. Water Resources Management, 25(2), 2011. http://doi. org/10.1007/s11269-010-9713-x

Akbar, M., Aliabadi, S., Patel, R., Watts, M., 2013. A Fully Automated and Integrated Multi-Scale Forecasting Scheme for Emergency Preparedness. Environmental Modelling and Software, 39, 24–38.

Castelletti, A., Soncini-Sessa, R., 2007. Coupling Real-Time Control and Socio-Economic Issues in Participatory River Basin Planning. Environmental Modelling and Software, 22(8), 1114–1128.

Grundmann, J., Schütze, N., Lennartz, F., 2013. Sustainable Management of a Coupled Groundwater-Agriculture Hydrosystem using Multi-Criteria Simulation Based Optimisation. Water Science and Technology, 67(3), 689–698.

Jongsawat, N., Poompuang, P., Premchaiswadi, W., 2008. Dynamic data feed to Bayesian network model and SMILE web application. Proc. 9th ACIS Int. Conf. Software Engineering, Artificial Intelligence, Networking and Parallel/Distributed Computing, SNPD 2008 and 2nd Int. Workshop on Advanced Internet Technology and Applications, 931–936.

Ministry of Agriculture and Fisheries (MAF), 2005. Ministry of Agriculture and Fisheries. Oman Agricultural Census (2004/2005).

Ministry of Agriculture and Fisheries (MAF), 2011: Agriculture and Livestock, Five-Year Research Strategy 2011-2015. Directorate General of Agriculture & Livestock Research.

Ministry of Regional Municipalities and Water Resources (MRMEW), 2011. Water Situation report, 2011. Internal Document.

Ministry of Regional Municipalities and Water Resources. Muscat, Sultanate of Oman.

Neil, M., Fenton, N., Nielson, L. (2000). Building Large-Scale Bayesian Networks. The Knowledge Engineering Review, 15(3), S0269888900003039. http://doi.org/10.1017/S0269888900003039

Rounsevell, M. D. A., Arneth, A., Alexander, P., Brown, D. G., de Noblet-Ducoudré, N., Ellis, E., Young, O., 2014. Towards Decision- Based Global Land Use Models for Improved Understanding of the Earth System. Earth System Dynamics, 5(1), 117–137.

Simonovic, S. P., Fahmy, H., 1999. A New Modeling Approach for Water Resources Policy Analysis. Water Resources Research, 35(1), 295–304.

Stoery, D., 1995. An Approach to Water Resources Assessment and Management using an Integrated Catchment Model: A case Study from Northern Oman. In International Conference on water resources management in arid countries (Vol. 2, pp. 401–410).

Subagadis, Y., Grundmann, J., Schütze, N., Schmitz, G.H., 2014: An integrated approach to conceptualise hydrological and socioeconomic interaction for supporting management decisions of coupled groundwater–agricultural systems. Environmental Earth Sciences, DOI: 10.1007/s12665-014-3238-1.

Subagadis, Y. H., 2015. A New Integrated Modeling Approach to Support Management Decisions of Water Resources systems Under Multiple Uncertainties. A PhD Thesis Submitted to the Faculty of Environmental Sciences Technische Universität Dresden.

Suermondt, H. J., 1992. Explanation in Bayesian belief networks. Stanford University.

Sun, S., Wang, Y., Liu, J., Cai, H., Wu, P., Geng, Q., Xu, L., 2016. Sustainability assessment of regional water resources under the DPSIR framework. Journal of Hydrology, 532, 140–148.

Ticehurst, J. L., Curtis, A., Merritt, W. S., 2011. Using Bayesian Networks to Complement Conventional Analyses to Explore Landholder Management of Native Vegetation. Environmental Modelling and Software, 26(1), 52–65.