Agricultural Sciences

Agricultural Sciences

ISSN Print: 2156-8553
ISSN Online: 2156-8561
www.scirp.net/journal/as
E-mail: [email protected]
"Comparison of the Damaged Area Caused by an Agricultural Dam-Break Flood Wave Using HEC-RAS and UAV Surveying"
written by Chung-Gil Jung, Seong-Joon Kim,
published by Agricultural Sciences, Vol.8 No.10, 2017
has been cited by the following article(s):
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[1] Exploring optimal deep tunnel sewer systems to enhance urban pluvial flood resilience in the gangnam region, South Korea
Journal of Environmental Management, 2024
[2] Simulation of one-dimensional dam-break flood routing based on HEC-RAS
Frontiers in Earth …, 2023
[3] Flood risk index mapping of an area downstream of a dam in case of a break
Mercator (Fortaleza), 2023
[4] MAPEAMENTO DE ÍNDICE DE RISCO DE INUNDAÇÃO DE ÁREA A JUSANTE DE UMA BARRAGEM EM CASO DE ROMPIMENTO
Mercator, 2023
[5] The role of artificial intelligence and digital technologies in dam engineering: Narrative review and outlook
Ardebili, G Mahdavi, LK Nuss… - Engineering Applications of …, 2023
[6] Potential dam breach analysis and flood wave risk assessment using HEC-RAS and remote sensing data: A multicriteria approach
2021
[7] Flood Hazard Assessment for the Tori Levee Breach of the Indus River Basin, Pakistan
2021
[8] Accuracy of DSM By Using Unmanned Aerial Vehicles on the Downstream of Welang Riverbank, District of Pasuruan, Jawa Timur
2021
[9] Flood Hazard Assessment for the Tori Levee Breach of the Indus River Basin, Pakistan. Water 2021, 13, 604
2021
[10] Use of large-scale hydrological models to predict dam break-related impacts
2020
[11] Utilização de modelos hidrológicos de larga escala na predição de impactos relacionados a rompimento de barragens
2020
[12] Application HEC-RAS Model to Simulate the Flood Wave Due to Dam Failure
2019
[13] Comparison between hydrostatic and total pressure simulations of dam-break flows
2019
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