Bernard A. Engel
Environmental Science · Purdue University West Lafayette
Publications
406
Citations
12,461
Est. group size
~6
Recurring co-author estimate
Active years
39
Publishing since 1988
Bernard A. Engel's research focuses on water resources and environmental modeling, including watershed hydrology, urban flood risk under climate change and urbanization, sediment and nutrient transport, and evapotranspiration estimation using remote sensing. Much of the work applies computational models like SWAT (Soil and Water Assessment Tool) and machine learning to problems in flood prediction, irrigation demand, and water-energy-food resource management. This research is relevant to students interested in applying data-driven and simulation-based approaches to environmental and water management challenges.
Publication output was relatively high and variable from 2017-2019, then generally declined over the following years, with recent annual counts lower than the decade's earlier peak.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Increasing irrigation demand coincides with declining irrigation development potential under climate change
Communications Earth & Environment · 2026
- A comparative assessment of sampling strategies for tree-based machine learning models in urban flood susceptibility prediction with imbalanced data
Sustainable Cities and Society · 2026
- Improvement approaches and performance of temperature-based remote sensing evapotranspiration models in agricultural fields: A meta analysis
Agricultural and Forest Meteorology · 2026
- City-scale integrated flood risk prediction under future climate change and urbanization based on the shared socioeconomic pathways (SSP) scenarios
Journal of Hydrology · 2025
- Evaluating supply and demand relationship of urban flood regulation service and identifying priority areas for green infrastructure implementation in urban functional zones
International Journal of Disaster Risk Reduction · 2025
- Web-Based Baseflow Estimation in SWAT Considering Spatiotemporal Recession Characteristics Using Machine Learning
Environments · 2025
- Exploring spatiotemporal dynamics of urban flood socioeconomic exposure risk and driving factors under future precipitation change and urbanization scenarios
Journal of Environmental Management · 2025
- Estimating cropland evapotranspiration based on remote sensing models: A global meta-analysis
European Journal of Agronomy · 2025
- Enhancement of Sediment Routing Method of <scp>SWAT</scp> Model Considering Sediment Occurrence Trends of Rise and Fall of Streamflow
JAWRA Journal of the American Water Resources Association · 2025
- Exotic plant species with longer seed bank longevity and lower seed dry mass are more likely to be invasive in China
Journal of Plant Ecology · 2024
- Developing a framework taking into account negative environmental impacts to evaluate water-energy-food coupling efficiency
Journal of Cleaner Production · 2024
- Integrating environmental footprints and planetary boundaries for assessing environmental sustainability in food production
Sustainable Production and Consumption · 2024
- Developing a sustainable assessment framework for identifying industrial water suitability: Perspective on the water-energy-food nexus
Agricultural Systems · 2024
- Estimation of potential topsoil organic carbon loss due to industrial complex development: Implications for topsoil conservation in South Korea
Environmental Impact Assessment Review · 2024
- Hydraulic characteristics and flow measurement performance of portable primary and subsidiary fish-shaped flumes in U-shaped channels
Flow Measurement and Instrumentation · 2024
- Journal of Hydrology×17
- The Science of The Total Environment×16
- Water×16
- Journal of Cleaner Production×11
- Agricultural Water Management×11
- Margaret W. Gitau
Environmental Science · Purdue University West Lafayette
- Sara K. McMillan
Environmental Science · Purdue University West Lafayette
- Grey R. Evenson
Environmental Science · The Ohio State University
- Asmita Murumkar
Environmental Science · The Ohio State University
- Jane Frankenberger
Environmental Science · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
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