Advancing model calibration and uncertainty analysis of SWAT models using cloud computing infrastructure: LCC-SWAT

Author:

Zamani Masood12,Shrestha Narayan Kumar1,Akhtar Taimoor1,Boston Trevor3,Daggupati Prasad1

Affiliation:

1. School of Engineering, University of Guelph, 50 Stone Road West, Guelph, ON, Canada N1G 2W1

2. St.Michael's Hospital, University of Toronto, 1 King's College Circle, Toronto, ON, Canada M5S 1A8

3. Greenland International Consulting Ltd, 120 Hume Street, Collingwood, ON, Canada L9Y 1V5

Abstract

Abstract Calibration and uncertainty analysis of a complex, over-parameterized environmental model such as the Soil and Water Assessment Tool (SWAT) requires thousands of simulation runs and multiple calibration iterations. A parallel calibration system is thus desired that can be deployed on cloud-based architectures for reducing calibration runtime. This paper presents a cloud-based calibration and uncertainty analysis system called LCC-SWAT that is designed for SWAT models. Two optimization techniques, sequential uncertainty fitting (SUFI-2) and dynamically dimensioned search (DDS), have been implemented in LCC-SWAT. Moreover, the cloud-based system has been deployed on the Southern Ontario Smart Computing Innovation Platform's (SOSCIP) Cloud Analytics platform for diagnostic assessment of parallel calibration runtime on both single-node and multi-node CPU architectures. Unlike other calibrations/uncertainty analysis systems developed on the cloud, this system is capable of generating a comprehensive set of statistical information automatically, which facilitates broader analyses of the performance of the SWAT models. Experimental results on SWAT models of different complexities showed that LCC-SWAT can reduce runtime significantly. The runtime reduction is more pronounced for more complex and computationally intensive models. However, the reported runtime efficiency is significantly higher for single node systems. Comparative experiments with DDS and SUFI-2 show that parallel DDS outperforms parallel SUFI-2 in terms of both parameter identifiability and reducing uncertainty in model simulations. LCC-SWAT is a flexible calibration system and other optimization algorithms and asynchronous parallelization strategies can be added to it in future.

Funder

Natural Sciences and Engineering Research (NSERC) discovery grant

Publisher

IWA Publishing

Subject

Atmospheric Science,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering,Water Science and Technology

Reference59 articles.

1. Abbaspour K. C. 2015 SWAT Calibration and Uncertainty Programs – A User Manual. Swiss Federal Institute of Aquatic Science and Technology (Eawag).

2. Estimating uncertain flow and transport parameters using a sequential uncertainty fitting procedure;Vadose Zone Journal,2004

3. Modelling hydrology and water quality in the pre-alpine/alpine Thur watershed using SWAT;Journal of Hydrology,2007

4. Calibration and validation of watershed models and advances in uncertainty analysis in TMDL studies;Journal of Hydrologic Engineering,2019

5. Large area hydrologic modeling and assessment part I: model development;Journal of the American Water Resources Association,1998

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