Augmented reality visualization of SWAT+ hydrological simulations via a GPS-based mobile application

Hydrological models like Soil and Water Assessment Tool Plus (SWAT+) are essential for watershed management, although their outputs are difficult for non-technical users to interpret. This study presents an Augmented Reality (AR) application integrating SWAT+ outputs for visualization. A data converter transforms SWAT+ outputs to cloud datasets. The AR system visualizes precomputed SWAT+ outputs using the nearest HRU or channel centroid, including soil water, water yield, percolation, evapotranspiration, precipitation, uncalibrated sediment and nutrient outputs, and streamflow, with spatial filtering to reduce clutter. In the Geumho River watershed (268 HRUs and 268 channels), soil water in agricultural and paddy-field HRUs ranged from 33–74 mm, while channel discharge varied from <1 to >2000 m3/s. SWAT+ showed satisfactory performance (NSE = 0.67/0.55; KGE = 0.82/0.77; R2 = 0.69/0.60), although predictive uncertainty remained limited during peak-flow conditions. The proposed framework supports interpretation of precomputed SWAT+ outputs rather than independent model validation.

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Publication Details

Journal
Urban Water Journal
Published
2026-09-28
DOI
https://doi.org/10.1080/1573062x.2026.2736591
Primary Topic
Hydrology and Watershed Management Studies
Type
article
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Augmented reality visualization of SWAT+ hydrological simulations via a GPS-based mobile application

Jihyeon Park, Sang-Soo Baek, Fergian Yoga Aditama, Daeun Yun et al.
Urban Water Journal
Hydrology and Watershed Management Studies
article

Augmented reality visualization of SWAT+ hydrological simulations via a GPS-based mobile application

Jihyeon Park, Sang-Soo Baek, Fergian Yoga Aditama, Daeun Yun, Minhyuk Jeung, Soobin Kim
article en

Abstract

Hydrological models like Soil and Water Assessment Tool Plus (SWAT+) are essential for watershed management, although their outputs are difficult for non-technical users to interpret. This study presents an Augmented Reality (AR) application integrating SWAT+ outputs for visualization. A data converter transforms SWAT+ outputs to cloud datasets. The AR system visualizes precomputed SWAT+ outputs using the nearest HRU or channel centroid, including soil water, water yield, percolation, evapotranspiration, precipitation, uncalibrated sediment and nutrient outputs, and streamflow, with spatial filtering to reduce clutter. In the Geumho River watershed (268 HRUs and 268 channels), soil water in agricultural and paddy-field HRUs ranged from 33–74 mm, while channel discharge varied from <1 to >2000 m3/s. SWAT+ showed satisfactory performance (NSE = 0.67/0.55; KGE = 0.82/0.77; R2 = 0.69/0.60), although predictive uncertainty remained limited during peak-flow conditions. The proposed framework supports interpretation of precomputed SWAT+ outputs rather than independent model validation.

Urban Water Journal
Electronics and Telecommunications Research Institute (KR), University of Florida (US), Yeungnam University (KR)
Life in Land
Openalex Percentile: Top 21%
Hydrology and Watershed Management Studies
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Augmented reality visualization of SWAT+ hydrological simulations via a GPS-based mobile application — Jihyeon Park, Sang-Soo Baek, et al. · Urban Water Journal (2026) | TGRS Research Map | TGRS