Author_Institution :
Cold & Arid Regions Environ. & Eng., Res. Inst., Lanzhou, China
Abstract :
Comprehensive integrated research on ecological and hydrological processes and the simulation of river basin environments are critical foundations for decision making by governments and river-basin managers. The demand for a holistic understanding of environmental systems such as river basins is increasing. Eco-hydrological research needs two types of monitoring platforms to access and collect data from basins: a modeling platform to support access, select, and run models online, and build new models with the collected data, and a manipulation platform to generate forcing data, run models, and visualize the results. Consequently, we developed an e-science environment framework comprising three platforms - a monitoring platform, a model platform, and a manipulation platform. The framework allows automatic data transmission, storage, management, analysis, model management, simulation, computing, and result visualization. The e-science environment integrates land surface models such as Simplified Simple Biosphere model, the Revised Simple Biosphere model and WRF, hydrological models such as SWAT and TOPMODEL, data assimilation filters including such as Kalman filter algorithm, and several tools and methods for dealing with data, principally artificial neural networks and Markov chains. We demonstrate the application of the framework that uses an SSIB land surface model ensemble Kalman filter to improve evapotranspiration, soil moisture, and ground temperature simulation in the Heihe inland river basin. The approach proves suitable for environmental simulation for inland river research.
Keywords :
data analysis; ecology; environmental science computing; hydrology; Heihe inland river basin; Kalman filter algorithm; SSIB land surface model; SWAT; TOPMODEL; automatic data transmission; data analysis; data assimilation filters; data management; data simulation; data storage; e-science environment; ecological simulation research; evapotranspiration; ground temperature simulation; hydrological simulation research; manipulation platform; model management; model platform; monitoring platform; simplified simple biosphere model; soil moisture; visualization; Analytical models; Biological system modeling; Computational modeling; Data models; Data visualization; Databases; Rivers; Heihe inland river basin; e-science environment; ecological and hydrological research; environmental simulation;