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While a service-oriented paradigm has been successfully applied for integrating water resource data, this paper considers service-oriented computing as an approach for integrating water resource models.
We present an interface design for exposing water resource models as web services and demonstrate how it can be used to simulate a rainfall/runoff event within a watershed system.
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To estimate water stress under projected climate-change conditions, rice growth model should be required to link with water resource model, which includes natural processes and anthropogenic regulations.
Morphometric analysis and prioritization of watersheds are very important for water resource modeling and flood management (Youssef et al. 2011; Miller and Craig 2010; Bali et al. 2012).
To improve the behavioural realism of a water resource model, this study coupled hydrologic modelling with stated preference research, thereby incorporating an empirical estimate of behavioural parameters to represent residents' landscape decisions in an urban environment.
When used as hydrologic forcing in WATFLOOD™, results indicate that CaPA is a reliable product for water resource modeling and predictions, but that the quality of CaPA data varies annually and seasonally, as does the quality of observations.
The resulting generic basis allows for an easy coupling of energy system model components with new model components of other research areas (e.g. components in water resource modelling, investment delays due to public acceptance, demand changes due to behaviour changes).
Many existing land and water resources models are, however, not amenable to integration.
The use of large-scale, high-resolution water resources models enables consistent and comprehensive examination of integrated system behavior through physically-based, data-driven simulation.
The main idea of this paper is to present a new approach which enables the combined use of hydrological models and water resources models developed with AQUATOOL Decision Support System (DSS) to fill in the physical water supply and use tables and the asset accounts presented in the System of Economic and Environmental Accounts for Water (SEEAW).
The paper discusses a software package that has been designed to enhance the efficiency of applying a range of hydrological and water resource simulation models.
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