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Integrating hydrological modelling, data assimilation and cloud computing for real-time management of water resources

Authors :
Kurtz, Wolfgang
Lapin, Andrei
Schilling, Oliver S
Tang, Qi
Schiller, Eryk; https://orcid.org/0000-0003-2187-0382
Braun, Torsten
Hunkeler, Daniel
Vereecken, Harry
Sudicky, Edward
Kropf, Peter
Hendricks Franssen, Harrie-Jan
Brunner, Philip
Kurtz, Wolfgang
Lapin, Andrei
Schilling, Oliver S
Tang, Qi
Schiller, Eryk; https://orcid.org/0000-0003-2187-0382
Braun, Torsten
Hunkeler, Daniel
Vereecken, Harry
Sudicky, Edward
Kropf, Peter
Hendricks Franssen, Harrie-Jan
Brunner, Philip
Source :
Kurtz, Wolfgang; Lapin, Andrei; Schilling, Oliver S; Tang, Qi; Schiller, Eryk; Braun, Torsten; Hunkeler, Daniel; Vereecken, Harry; Sudicky, Edward; Kropf, Peter; Hendricks Franssen, Harrie-Jan; Brunner, Philip (2017). Integrating hydrological modelling, data assimilation and cloud computing for real-time management of water resources. Environmental Modelling & Software, 93:418-435.
Publication Year :
2017

Abstract

Online data acquisition, data assimilation and integrated hydrological modelling have become more and more important in hydrological science. In this study, we explore cloud computing for integrating field data acquisition and stochastic, physically-based hydrological modelling in a data assimilation and optimisation framework as a service to water resources management. For this purpose, we developed an ensemble Kalman filter-based data assimilation system for the fully-coupled, physically-based hydrological model HydroGeoSphere, which is able to run in a cloud computing environment. A synthetic data assimilation experiment based on the widely used tilted V-catchment problem showed that the computational overhead for the application of the data assimilation platform in a cloud computing environment is minimal, which makes it well-suited for practical water management problems. Advantages of the cloud-based implementation comprise the independence from computational infrastructure and the straightforward integration of cloud-based observation databases with the modelling and data assimilation platform.

Details

Database :
OAIster
Journal :
Kurtz, Wolfgang; Lapin, Andrei; Schilling, Oliver S; Tang, Qi; Schiller, Eryk; Braun, Torsten; Hunkeler, Daniel; Vereecken, Harry; Sudicky, Edward; Kropf, Peter; Hendricks Franssen, Harrie-Jan; Brunner, Philip (2017). Integrating hydrological modelling, data assimilation and cloud computing for real-time management of water resources. Environmental Modelling & Software, 93:418-435.
Notes :
application/pdf, info:doi/10.5167/uzh-175057, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1416176023
Document Type :
Electronic Resource