A Remotely Operated Framework Based on Internet of Things (IoT) Technology to Release Water from Ponded Systems
Author:
Affiliation:
1. Dept. of Civil and Environmental Engineering, Florida International Univ., Miami, FL.
Publisher
American Society of Civil Engineers
Link
https://ascelibrary.org/doi/pdf/10.1061/9780784484258.001
Reference18 articles.
1. A Deterministic Topographic Wetland Index Based on LiDAR-Derived DEM for Delineating Open-Water Wetlands;Bian L.;Water,2021
2. Bian L. Verma V. Li J. Zanje S. R. Vento A. Filgueiras L. Ozecik D. Leon A. S. Bogosian B. and Grant S. (2021b). “A Feasibility Study on Harvesting Rainwater from Large Solar Panel Canopies to Supplement Makeup Water for Cooling Towers by Using Remotely Controlled and Self-Cleaning Rain Cistern.” World Environmental and Water Resources Congress 2021. pp. 1118–1134.
3. Bian L. Verma V. Rojiali A. Ozecik D. and Leon A. S. (2021c). “Operational Reliability Assessment of a Remotely Controlled Siphon System for Draining Shallow Storage Ponds.” World Environmental and Water Resources Congress 2021. pp. 607–620.
4. Bian L. Verma V. Yin Z. Leon A. S. and Melesse A. M. (2021d). “A Cell Size Sensitivity Study on the Accuracy of Wetland Delineation by Using Deterministic Topographic Wetland Index.” AGU Fall Meeting 2021. AGU.
5. Effects of Flood Hazards on Property Values: Evidence before and after Hurricane Floyd
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1. An Integrated Framework for Automatic Flood Mitigation at the Watershed Scale;International Low Impact Development Conference 2023;2023-08-03
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