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1

Drobot, Radu, Aurelian Florentin Draghia, Cristian Dinu, Nicolai Sîrbu, Viorel Chendeș, and Petrișor Mazilu. "Adaptive Operating Rules for Flood Control of a Multi-Purpose Reservoir." Hydrology 11, no. 9 (2024): 147. http://dx.doi.org/10.3390/hydrology11090147.

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Almost all multipurpose reservoirs in Romania were put into operation 30–50 years ago or even earlier. Meanwhile, a large volume of hydrologic data has been collected, and the initial design flood should be reconsidered. Consequently, the operating rules of flow control structures (bottom gates and weir gates) should be re-examined, mainly for medium and low-frequency floods. The design flood is not unique, being characterized by different shapes and time to peak, which has consequences for flood mitigation rules. Identifying the critical design flood is an important preliminary step, although
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2

Yi, Xiu Yong, and Yang Zhang. "Study of Urban Flood Control Planning in Taiyuan." Advanced Materials Research 838-841 (November 2013): 1709–14. http://dx.doi.org/10.4028/www.scientific.net/amr.838-841.1709.

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Considering topography, climate, river system, and existing problems in Taiyuan, the urban flood control planning in Taiyuan boils down to the following points: determine the flood control standard according to the size of city; study the flood alleviating measures in the upstream area; provide adequate water and soil conservation measures in the mountainous areas reduce flash floods; divert flood from mountainous areas to the downstream area instead of to the urban; improve the river channels in the urban area; provide flood detention and retarding area in the downstream area; study non-engin
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3

Yan, Jun, Chang You Jiang, Sai Nan Chen, and Ju Zhang. "Control and Utilization Method for Urban Rain-Flood." Applied Mechanics and Materials 50-51 (February 2011): 910–14. http://dx.doi.org/10.4028/www.scientific.net/amm.50-51.910.

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Urban rain-flood disasters become more ordinary and serious recently under global warming and unreasonable exploitation. Summed up the characters of urban rain-floods, the mechanism of urban rain-flood disasters is analyzed. More ever, the main countermeasures to control and utilize urban rain-flood comprehensively and effectively are put forward.
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4

Zhang, Tao, Wanmin Zhao, and Dongjun Tong. "Multiscale Model for Urban Flood Control Planning Based on Microcirculation." Open House International 41, no. 3 (2016): 66–70. http://dx.doi.org/10.1108/ohi-03-2016-b0011.

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Flood season in our country is characterized by frequent heavy rains, and flood problems are becoming increasingly serious. The uneven distribution of water resources causes conflicts in the occurrence of floods and droughts. Implementing effective flood control planning and solving drought and flood disasters are the research highlights of relevant institutions both domestic and abroad. This study develops a multiscale method of urban flood control planning based on microcirculation. A microcirculation water ecosystem, which consists of six elements, namely, collecting, interacting, precipita
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5

Criss, Robert E., and Everett L. Shock. "Flood enhancement through flood control." Geology 29, no. 10 (2001): 875. http://dx.doi.org/10.1130/0091-7613(2001)029<0875:fetfc>2.0.co;2.

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6

Pandit, Dr Bashir Ahmad. "A Concentrated Analysis of the Situation of Flood Control Management: A Review." International Journal for Research in Applied Science and Engineering Technology 12, no. 10 (2024): 133–37. http://dx.doi.org/10.22214/ijraset.2024.64469.

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Floods are happening more often and with greater severity due to socioeconomic development and climate change. Flood control is widely acknowledged as an effective means of reducing the negative effects, and recent research has aimed to develop a more robust and sustainable approach to flood management. A thorough bibliometric examination of terms, keywords, and dates in the flood research field was employed in this work. It provides new insight into the flood research trends, by examining the research frontiers from 2000 to 2021. We conclude that there has been a shift in the focus of flood r
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7

Sukegawa, Noboru. "Flood control." International Journal of Water Resources Development 4, no. 1 (1988): 7–17. http://dx.doi.org/10.1080/07900628808722364.

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8

Yamashita, Sampei, Yukihiro Shimatani, Ryoichi Watanabe, et al. "Comprehensive flood control involving citizens in a Japanese watershed." Water Science and Technology 68, no. 4 (2013): 791–98. http://dx.doi.org/10.2166/wst.2013.293.

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In July 2009, the city of Fukuoka, Japan experienced a flood disaster along the Hii River, which runs through densely populated, concrete-covered areas of the city. The drainage system was overwhelmed and the river overflowed due to heavy rainfall and rapid runoff. The event led citizens in its watershed to plan and implement comprehensive flood control. The plan aims not only to mitigate floods but also to revitalize the river environment and populated communities in urban areas. This study reports the activities led by the citizens. They organized and carried out civic forums, workshops, and
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9

Hou, Wenang, Shichen Zhang, Jiangshan Yin, and Jianfeng Huang. "Research on Challenges and Strategies for Reservoir Flood Risk Prevention and Control Under Extreme Climate Conditions." Water 16, no. 23 (2024): 3351. http://dx.doi.org/10.3390/w16233351.

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In recent years, reservoir flood control and dam safety have faced severe challenges due to changing environmental conditions and intense human activities. There has been a significant increase in the proportion of dam breaks caused by floods exceeding reservoir design levels. Dam breaks have periodically occurred due to flood overtopping, threatening people’s lives and properties. This highlights the importance of describing the challenges encountered in reservoir flood risk prevention and control under extreme climatic conditions and proposing strategies to safeguard reservoirs against flood
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10

Minghong, Chen, Fang Hongwei, Zheng Yi, and He Guojian. "Integrated Flood Management for Beiyun River, China." Journal of Hydrology and Hydromechanics 61, no. 3 (2013): 177–87. http://dx.doi.org/10.2478/johh-2013-0023.

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Abstract Beiyun River Basin is holistically suffering a water shortage and relatively concentrated flood risk. The current operation (level-control) of dams and floodgates, which is in passive defense mode, cannot meet the demands of both flood control and storm water resources. An integrated flood forecasting and management system is developed by the connecting of the hydrological model and hydrodynamic model and coupling of the hydrodynamic model and hydraulic model for dams and floodgates. Based upon the forecasted runoff processes, a discharge-control operation mode of dams and floodgates
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11

Zhu, Di, Yadong Mei, Xinfa Xu, Junhong Chen, and Yue Ben. "Optimal Operation of Complex Flood Control System Composed of Cascade Reservoirs, Navigation-Power Junctions, and Flood Storage Areas." Water 12, no. 7 (2020): 1883. http://dx.doi.org/10.3390/w12071883.

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As more and more water projects are built on rivers, the flood control operation becomes more complex. Studies on the optimal flood control operation are very important to safeguard human life and property. This study focused on optimizing the operation of a complex flood control system composed of cascade reservoirs, navigation-power junctions, flood storage areas, and flood control points. An optimal model was established to jointly maximize flood peak reduction rates of downstream flood control points. A hybrid algorithm named the Dynamic Programming-Progressive Optimality Algorithm (DP-POA
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12

Nijssen, D., A. Schumann, M. Pahlow, and B. Klein. "Planning of technical flood retention measures in large river basins under consideration of imprecise probabilities of multivariate hydrological loads." Natural Hazards and Earth System Sciences 9, no. 4 (2009): 1349–63. http://dx.doi.org/10.5194/nhess-9-1349-2009.

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Abstract. As a result of the severe floods in Europe at the turn of the millennium, the ongoing shift from safety oriented flood control towards flood risk management was accelerated. With regard to technical flood control measures it became evident that the effectiveness of flood control measures depends on many different factors, which cannot be considered with single events used as design floods for planning. The multivariate characteristics of the hydrological loads have to be considered to evaluate complex flood control measures. The effectiveness of spatially distributed flood control sy
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13

Wang, Yang, Shuhui Zhang, Ziyi Zhang, Caichao Su, Peng Ding, and Guangtian Cao. "Frequency analysis of representative flood control water level stations in Puyang River." E3S Web of Conferences 329 (2021): 01002. http://dx.doi.org/10.1051/e3sconf/202132901002.

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Puyang river basin is located in the north central part of Zhejiang Province, which is one of the most important river basins in Zhejiang Province. The lower reaches of Puyang River are easily influenced by tide in Hangzhou Bay and flood in Qiantang River. When Puyang river floods, it often meets Fuchun River and floods occur at the same time. The flood discharge of Puyang river is blocked and the water level rises and rises, which makes the Puyang River vulnerable to disaster. Water level frequency analysis is the basis of Puyang river planning and flood control plan. The representative flood
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14

Shrestha, Badri Bhakta, Mohamed Rasmy, and Daisuke Kuribayashi. "Flood Exposure Dynamics and Quantitative Evaluation of Low-Cost Flood Control Measures in the Bengawan Solo River Basin of Indonesia." Hydrology 12, no. 2 (2025): 38. https://doi.org/10.3390/hydrology12020038.

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The frequent occurrence of floods puts additional pressure on people to change their activities and alter land use practices, consequently making exposed lands more vulnerable to floods. It is thus crucial to investigate dynamic changes in flood exposures and conduct quantitative evaluations of flood risk-reduction strategies to minimize damage to exposed items. This study quantitatively assessed dynamics of flood exposure and flood risk, and evaluated the effectiveness of flood control measures in the Bengawan Solo River basin, Indonesia. The Water and Energy Budget-Based Rainfall–Runoff–Inun
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15

Chang, Ming Qi. "Optimal Control of Large Flood of Ankang Reservoir." Key Engineering Materials 467-469 (February 2011): 625–28. http://dx.doi.org/10.4028/www.scientific.net/kem.467-469.625.

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Located in the upper stream of the Hanjiang River, the Ankang Reservoir is a large hydro-junction mainly for electric power generation as well as for flood prevention and shipping. Rainstorms in the Hanjiang River in summer have high occurrence with concentrated floods characterized by sudden surge and sudden fall. Considering staggering the Hanjiang River and the Yuehe River flood peaks, on the premise of ensuring the dam safety and meeting the flood prevention requirements of Ankang Town, this Thesis establishes the mathematical model for the Ankang Reservoir large flood multi-objective opti
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16

Huang, Yan, Eckart Lange, and Yichao Ma. "LIVING WITH FLOODS AND RECONNECTING TO THE WATER – LANDSCAPE PLANNING AND DESIGN FOR DELTA PLAINS." Journal of Environmental Engineering and Landscape Management 30, no. 1 (2022): 206–19. http://dx.doi.org/10.3846/jeelm.2022.16352.

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Although there is a consensus that landscape planning and design can play a positive role in flood mitigation, few specific reviews have explored how the strategies of landscape architecture could play a more effective and beneficial role in flood control. Focusing on the related knowledge about hydraulics, ecology, and practices of flood control, the paper explores the application of resilience theory on providing an improved theoretical framework for landscape planning and design for floods, especially for floods in delta plains, and highlights characteristics of different scales of flood co
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17

Afifah, R. C., S. Sangkawati, Suripin, and D. A. Wulandari. "Flood Control Rule in Bintang Bano Reservoir." IOP Conference Series: Earth and Environmental Science 1268, no. 1 (2023): 012036. http://dx.doi.org/10.1088/1755-1315/1268/1/012036.

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Abstract Flood is a disaster that occur since ancient times until now, and even in the future. Flood can be caused by nature, humans, or both. Constructing new dams are a good method to reduce flood and losses caused by floods, one of them is Bintang Bano Dam. The purpose of this study is to analyze the capacity of the gated spillway and ungated spillway, so that the allowable return period of discharge can be estimated through the both spillways. This research activity divided into 4 (four) stages are: the identification and data processing stage, the rainfall-runoff modeling stage, the reser
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18

Wang, Zixiong, Ya Sun, Chunhui Li, et al. "Analysis of Small and Medium–Scale River Flood Risk in Case of Exceeding Control Standard Floods Using Hydraulic Model." Water 14, no. 1 (2021): 57. http://dx.doi.org/10.3390/w14010057.

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Exceeding control standard floods pose threats to the management of small and medium–scale rivers. Taking Fuzhouhe river as an example, this paper analyzes the submerged depth, submerged area and arrival time of river flood risk in the case of exceeding control standard floods (with return period of 20, 50, 100 and 200 years) through a coupled one– and two–dimensional hydrodynamic model, draws the flood risk maps and proposes emergency plans. The simulation results of the one–dimensional model reveal that the dikes would be at risk of overflowing for different frequencies of floods, with a hig
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19

Fotian, C., F. A. Haqqi, and Yohandri. "A flood detection system and flood door control based on Arduino." Journal of Physics: Conference Series 2582, no. 1 (2023): 012026. http://dx.doi.org/10.1088/1742-6596/2582/1/012026.

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Abstract Flooding has become one of the most serious problems for Indonesians, particularly in flood-prone areas. Floods can be hazardous to the community, particularly if they occur suddenly, at night, or at unpredictable times. The answer to these problems is the installation of a flood detection system and a flood barrier door control system. In this paper, a flood detection system and flood door control based on will be presented. Ultrasonic sensors monitor the air level, a SIM800L module delivers signals, a stepper motor operates the door, an LCD shows the air level, and a buzzer offers a
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20

Zhang, Zhixiong, Qing Li, Changjun Liu, and Yao Chen. "A Study on the Zoning Method of Flash Flood Control for Mountainous Cities: A Case Study of Yunnan Province." Applied Sciences 15, no. 9 (2025): 4781. https://doi.org/10.3390/app15094781.

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Flash floods are the most serious natural disasters in China and seriously affect its social and economic development. The transformation of the underlying surface caused by urbanization also brings new challenges to the prevention and control of flash flood disasters in mountainous cities. Based on the results of the flash flood disaster investigation and evaluation, this study calculated and examined the prevention and control zoning of flash flood threat areas in Yunnan, China, and determined the distribution of the prevention and control zoning of flash flood threat areas in each city in Y
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21

Sun, N., C. Li, B. Guo, X. Sun, Y. Yao, and Y. Wang. "RESEARCH STATUS AND DEVELOPMENT TREND OF PHOTOGRAMMETRY AND REMOTE SENSING IN URBAN FLOOD DISASTERS." ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences X-3/W1-2022 (October 27, 2022): 147–56. http://dx.doi.org/10.5194/isprs-annals-x-3-w1-2022-147-2022.

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Abstract. In recent years, urban floods occur frequently in China, and urban flood disaster has become one of the important reasons for the sustainable development of cities. Photogrammetry and remote sensing technology has the advantages of large observation range, large amount of information, fast speed, good real-time performance and strong dynamic. It plays an increasingly important role in flood control and disaster reduction, and has become an important support means for flood control and flood reduction in China. This paper mainly reviews the research status and development trend of pho
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22

Zhang, Jing, Jun Shi He, and Lin Fei Zhou. "Analysis of Precipitation and Flood Processes Caused by Cyclone and Cold Front in Dahuofang Reservoir." Advanced Materials Research 1010-1012 (August 2014): 1084–88. http://dx.doi.org/10.4028/www.scientific.net/amr.1010-1012.1084.

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Cyclone and cold front are the important weather systems causing storm floods in Dahuofang reservoir. Through analyzing the precipitation daily distribution and flood processes affected by cyclone and cold front weather systems, the influence of different weather systems on reservoir flood control has been summarized. The study results show that flood processes caused by compound weather systems are the most serious threat to reservoir flood control, while flood processes caused by single cold front system have the least risk to reservoir flood safety and the flood threat caused by single cycl
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23

Variadi, Variadi, Iqbal Khairul, Mufti Fajarullah, and Adriman Ramzi. "Keureuto Dam Operation for Flood Control System." E3S Web of Conferences 476 (2024): 01049. http://dx.doi.org/10.1051/e3sconf/202447601049.

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Floods are one of the most destructive natural disasters. Dams are engineered structures built across rivers and streams to control water flow, primarily for purposes like water supply, hydroelectric power generation, and flood control. In the modern era, technological advancements and an enhanced understanding of hydrology have transformed dam operations within flood warning systems. Early warning systems for floods are founded on the principle of forecasting and alerting communities and authorities about imminent flood events. Keureuto Dam has multi-purpose benefits including to reduce flood
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24

Petrochenko, V. I., and O. V. Petrochenko. "Systematization of floods and anti-flood measures." Міжвідомчий тематичний науковий збірник "Меліорація і водне господарство", no. 1 (June 28, 2022): 50–59. http://dx.doi.org/10.31073/mivg202201-317.

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The problem of floods and conceptual issues of flood protection based on system analysis was considered. It is well-known that floods are among the most dangerous natural phenomena that have accompanied mankind since ancient times. Taking into account the global and multifaceted nature of the flood problem, there is a need to apply a systematic approach to its solution. The main areas in which the problem of floods has been systematically studied and solved in previous years were highlighted. It was found out that the most relevant is the area of developing the concept of flood protection. For
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25

Kumar, Vijendra, Kul Vaibhav Sharma, Tommaso Caloiero, Darshan J. Mehta, and Karan Singh. "Comprehensive Overview of Flood Modeling Approaches: A Review of Recent Advances." Hydrology 10, no. 7 (2023): 141. http://dx.doi.org/10.3390/hydrology10070141.

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As one of nature’s most destructive calamities, floods cause fatalities, property destruction, and infrastructure damage, affecting millions of people worldwide. Due to its ability to accurately anticipate and successfully mitigate the effects of floods, flood modeling is an important approach in flood control. This study provides a thorough summary of flood modeling’s current condition, problems, and probable future directions. The study of flood modeling includes models based on hydrologic, hydraulic, numerical, rainfall–runoff, remote sensing and GIS, artificial intelligence and machine lea
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26

Salehi, Farhad, Mohsen Najarchi, Mohammad Mahdi Najafizadeh, and Mohammad Mirhoseini Hezaveh. "Multistage Models for Flood Control by Gated Spillway: Application to Karkheh Dam." Water 14, no. 5 (2022): 709. http://dx.doi.org/10.3390/w14050709.

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The paper demonstrates a simulation optimization framework for enhancing the real-time flood control with gated spillways at places where no flood forecasting data are available. A multiobjective modeling scheme is presented for the flood management in a gated spillway in which the operator may specify the priorities on floods based on their different return periods. Two different operation strategies were devised. Both operating strategies employ ten-stage policies, which rely on the reservoir water level as the input data. The second strategy benefits from both the observed reservoir water l
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27

Mardjono, Airlangga, Pitojo Tri Juwon, Lily Montarcih Limantara, and Ery Suhartan. "Effectivity of kiwi and sukamahi dam on jakarta flood control." International Journal of Engineering & Technology 7, no. 3.29 (2018): 134. http://dx.doi.org/10.14419/ijet.v7i3.29.18541.

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Various infrastructures such as flood levees, dams and reservoirs of flood control began to be developed in the 19th century to the 20th century. These buildings are very effective in controlling the flow of rivers and preventing flood waters from entering residential areas located in flood-prone areas. Flooding in urban areas has a huge impact, covering all aspects of life as well as on the landscape. Ciliwung is one of the rivers that allegedly contributed to the problem of flood in Jakarta, various engineering done on Ciliwung to help control flooding in Jakarta. One of the engineering done
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28

Yari, Arezoo, Homa Yousefi Khoshsabegheh, Yadolah Zarezadeh, et al. "Behavioral, health- related and demographic risk factors of death in floods: A case-control study." PLOS ONE 16, no. 12 (2021): e0262005. http://dx.doi.org/10.1371/journal.pone.0262005.

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During the first half of 2019, many provinces of Iran were affected by floods, which claimed the lives of 82 people. The present study aimed to investigate the behavioral, health related and demographic risk factors associated with deaths due to floods. We measured the odds ratio and investigated the contribution and significance of the factors in relation to mortality. This case-control study was conducted in the cities affected by flood in Iran. Data were collected on the flood victims using a questionnaire. Survivors, a member of the flood victim’s family, were interviewed. In total, 77 sub
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29

Inomata, Hironori, Masaki Kawasaki, and Shun Kudo. "Quantification of the Risks on Dam Preliminary Release Based on Ensemble Rainfall Forecasts and Determination of Operation." Journal of Disaster Research 13, no. 4 (2018): 637–49. http://dx.doi.org/10.20965/jdr.2018.p0637.

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Preliminary release conducted at multipurpose dams is the operation which aims to temporarily increase their flood control capacity by releasing water stored for water utilization ahead of a flood based on rainfall forecasts. However, if rainfall forecasts overestimate actual rainfall, there is a risk that the volume needed for water utilization may not fully recover after preliminary release. Consequently, because of apprehension of such a risk, preliminary release has been seldom operated in Japan. This paper introduces the determination of preliminary release based on ensemble rainfall fore
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30

Wu, Yueqiu, Liping Wang, Yanke Zhang, Jiajie Wu, Qiumei Ma, and Lisha Yue. "Application of Marginal Rate of Transformation in Decision Making of Multi-Objective Reservoir Optimal Operation Scheme." Sustainability 13, no. 3 (2021): 1488. http://dx.doi.org/10.3390/su13031488.

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For reservoirs with combined storage capacity for flood control and beneficial purposes, there tends to be potential benefit loss when the flood control limited water level is used in medium and small floods. How to find the optimal water level scheme for profit-making and pursue the optimization of comprehensive benefits has always been a difficult problem in multi-objective reservoir optimal operation. Based on the principle of the maximum benefit obtained by the product conversion curve and the isorevenue line in microeconomics, taking flood control and power generation as two products of a
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31

Li, Haichao, Hiroshi Ishidaira, Yanqi Wei, Kazuyoshi Souma, and Jun Magome. "Assessment of Sponge City Flood Control Capacity According to Rainfall Pattern Using a Numerical Model after Muti-Source Validation." Water 14, no. 5 (2022): 769. http://dx.doi.org/10.3390/w14050769.

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Urban floods are a common urban disaster that threaten the economy and development of cities. Sponge cities can improve flood resistance ability and reduce floods by setting low-impact development measures (LID). Evaluating flood reduction benefits is the basic link in the construction of sponge cities. Therefore, it is of great significance to evaluate the benefits of sponge cities from the perspective of different rain patterns. In this study, we investigated the urban runoff of various rainfall patterns in Mianyang city using the Strom Water Management Model (SWMM). We employed 2–100-year r
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32

Ibeanu, Chima, Mazyar Ghadiri Nejad, and Matina Ghasemi. "Developing Effective Project Management Strategy for Urban Flood Disaster Prevention Project in EDO State Capital, Nigeria." Urban Science 7, no. 2 (2023): 37. http://dx.doi.org/10.3390/urbansci7020037.

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Emphasizing the need to provide a coordinated flood management strategy in the country and avoid acting in an isolated way when it occurs, improving the attitude of flood control during floods, and controlling floods with comprehensive analysis are among the main purposes of the current study. In this study, the environment’s physical, technological, social, economic, and political characteristics are considered to assess the urban flood risk. This study entails a discussion of flood hazard control in Benin City, the capital city of Edo State of Nigeria. The research methodology involves emplo
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33

Kenyon, Edgar C. "HISTORY OF OCEAN OUTLETS, LOS ANGELES COUNTY FLOOD CONTROL DISTRICT." Coastal Engineering Proceedings 1, no. 1 (2010): 31. http://dx.doi.org/10.9753/icce.v1.31.

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Los Angeles County has a number of watercourses which discharge into the Pacific Ocean. Three of these are of major importance in that they traverse the Coastal Plain area of the County. These three are the Los Angeles River, the San Gabriel River, and Ballona Creek. They have a combined drainage area of approximately 1,645 square miles, most of which is within Los Angeles County. Such area not only comprises over 40 percent of the land area of the County but, more important, includes within its boundaries, the great majority of the County's population. The Coastal Plain area of Los Angeles Co
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34

Fedorov, Mikhail, Vladimir Badenko, Alexander Chusov, and Vladimir Maslikov. "GIS technologies for selecting location of dams in the flood control systems." E3S Web of Conferences 91 (2019): 07001. http://dx.doi.org/10.1051/e3sconf/20199107001.

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Many floodplains are excluded from development because the floods cause considerable damage to people’s lives and properties. Systems of hydraulic engineering structures for flood protection working with hydropower facilities are analysed to solve the problem of reducing the flood control volume of hydropower station. Methods of reducing the risk of flooding in the river basin by means of a distributed system of detention self-regulated dams are discussed. A geoinformation method used to justify the selection of parameters of such dams, primarily location of dam that minimize impact on the env
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35

Li, L., M. Yu, H. Ma, L. Meng, and Z. Cui. "DEVELOPMENT AND APPLICATION OF FLOOD CONTROL AND WATERLOGGING PREVENTION INTELLIGENT MONITORING SYSTEM BASED ON SUBWAY "ONE MAP"." ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences X-3/W1-2022 (October 27, 2022): 93–98. http://dx.doi.org/10.5194/isprs-annals-x-3-w1-2022-93-2022.

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Abstract. Urban rainstorms and floods often occur, causing serious loss of life and property, and bringing great challenges to the safe operation of subways. In response to the need for prevention and control of urban subway floods and waterlogging, this project is based on geographic information technology, on the basis of "one map" of the subway, using intelligent sensing camera equipment, independent research and development of monitoring water level identification algorithms, and research and development of subway flood control and waterlogging prevention intelligent monitoring system It r
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36

Arash, Amir Mohammad, Kirstie Fryirs, and Timothy J. Ralph. "Using a Hydro-Morphic Classification of Catchments to Characterise and Explain High Flow and Overbank Flood Behaviour." Geosciences 15, no. 4 (2025): 141. https://doi.org/10.3390/geosciences15040141.

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The morphological characteristics of catchments are key controls on how flow is routed through catchments and the spatial and temporal dynamics of floods, therefore influencing the shape of hydrographs at any location. Here, we developed a hydro-morphic catchment classification to understand the extent to which various catchment characteristics act as controls on flood behaviour. The catchment characteristics include: size (as measured by gauge position in catchment and valley confinement at the gauge site), shape (elongation ratio and form factor), topography (catchment relief and longitudina
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37

Davydov, Roman, Valery Antonov, Dmitry Molodtsov, Alexey Cheremisin, and Vadim Korablev. "The simulation model for a flood management by flood control facilities." MATEC Web of Conferences 245 (2018): 15002. http://dx.doi.org/10.1051/matecconf/201824515002.

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The rapid spread of storm floods over large areas requires flood management throughout the river basin by the creation an innovative system of flood control facilities of various functional purposes distributed in the area. The central part of the system is the hydro system with hydro power plant. In addition, the flood control facilities on the side tributaries with self-regulating reservoir are included in the system. To assess the effect of controlling extreme water discharges by flood control facilities, it is necessary to develop special mathematical models reflecting the specifics of the
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38

Liu, Yizhuang, Shu-Qing Yang, Changbo Jiang, et al. "Flood Mitigation Using an Innovative Flood Control Scheme in a Large Lake: Dongting Lake, China." Applied Sciences 9, no. 12 (2019): 2465. http://dx.doi.org/10.3390/app9122465.

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A large lake plays an important role in mitigating flood disasters in its nearby regions during the flooding period; however, the effect is limited, because most of its storage capacity becomes dead storage prior to the arrival of the flood wave. In the current study, an innovative flood control scheme (IFCS) is applied to Dongting Lake (the second largest freshwater lake in China) to alleviate flood disasters. MIKE 21 FM was used to examine its feasibility to mitigate flood disasters. One of the largest floods in the 20th century, the 1998-type flood, was modelled and the maximum water levels
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39

Kim. "Resilience Assessment of Dams’ Flood-Control Service." Journal of the Korean Society of Civil Engineers 34, no. 6 (2014): 1919. http://dx.doi.org/10.12652/ksce.2014.34.6.1919.

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40

Bianucci, P., A. Sordo-Ward, J. I. Pérez, J. García-Palacios, L. Mediero, and L. Garrote. "Risk-based methodology for parameter calibration of a reservoir flood control model." Natural Hazards and Earth System Sciences 13, no. 4 (2013): 965–81. http://dx.doi.org/10.5194/nhess-13-965-2013.

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Abstract. Flash floods are of major relevance in natural disaster management in the Mediterranean region. In many cases, the damaging effects of flash floods can be mitigated by adequate management of flood control reservoirs. This requires the development of suitable models for optimal operation of reservoirs. A probabilistic methodology for calibrating the parameters of a reservoir flood control model (RFCM) that takes into account the stochastic variability of flood events is presented. This study addresses the crucial problem of operating reservoirs during flood events, considering downstr
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41

Rauf, Ichsan, Magfira I, Kusnadi, Zulkarnain, and Mahdani. "Flood control hydraulic modelling of Meja Watershed with structural approach using Hec-Ras 6.4." IOP Conference Series: Earth and Environmental Science 1454, no. 1 (2025): 012015. https://doi.org/10.1088/1755-1315/1454/1/012015.

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Abstract This research aims to model flood control in the Meja River Watershed using a structural approach with HEC-RAS 6.4 software. The Meja River, located in Akedaga Village, East Wasile District, East Halmahera Regency, is one of the rivers in North Maluku Province. In 2021 and 2022 there were major floods that inundated residential areas around the Meja river caused by the overflow of the Meja river due to very high rainfall upstream with flood heights varying from 40 to 50 cm. This research involves flood control modeling, such as river normalization or levee construction. To create accu
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42

Skoulikaris, Charalampos, and Eleni Tzanou. "Fostering flood control policy measures at basin scale hydrosystems with the use of geo-spatial technologies." Facta universitatis - series: Architecture and Civil Engineering, no. 00 (2023): 36. http://dx.doi.org/10.2298/fuace230630036s.

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The increased rate of floods occurrence during the last few decades, which is mainly attributed to climate change and mankind pressures on the hydrosystems, results on large scale horizontal flood control and protection policies. At European Union (EU) scale, the Directive on the Assessment and Management of Flood Risks of the year 2007 aims, after implementing sequential processes which amongst other include remote sensing and hydraulic modeling coupling, at proposing specific measures for mitigating the flood risks and the derived socioeconomic devastating impacts. The current research demon
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43

Li, J., M. Xie, K. Xie, and R. Li. "Comparison of methods for separating flood frequency of reservoir by sub-seasons." Hydrology and Earth System Sciences Discussions 12, no. 10 (2015): 10431–55. http://dx.doi.org/10.5194/hessd-12-10431-2015.

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Abstract. The development of separate flood frequency distributions for different sub-seasons within a year can be useful for protection, storage and utilization of flood flows for the reservoir operation management. This paper applies conventional statistical method, fractal method and the mixed Von Mises distribution to the separation of flood sub-seasons for inflows to Hongfeng Reservoir in China. Design floods are found for different sub-seasons, along with flood control levels for flood regulation. The flood season is divided into four sub-seasons using the fractal method: the pre-rainy s
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44

Gabogen, Rona Mae Q., Alvin M. Concepcion, Zimran Paul M. Lazaro, Mary Jane T. Curitana, Donna Fe A. Baylon, and Jhun M. Jacinto. "Evaluating Soil and Flood Conditions for Economical Flood Control of the Minanga River in Casiguran, Aurora." International Journal of Research and Scientific Innovation XII, no. IV (2025): 886–96. https://doi.org/10.51244/ijrsi.2025.12040074.

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Natural disasters like floods have the power to obliterate people, things, and buildings. However, numerous flood mitigation strategies were developed to lessen their effects or to stop floods from destroying buildings, lives, and property. And many factors, including the flood and soil conditions, the cost, duration, and availability of the materials to be utilized in the structure, should not be overlooked while implementing flood mitigation measures. This would assist in determining the most cost-effective method of flood management for a particular area. In addition, the current study is f
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45

Liao, Siyuan, Chao Wang, Renke Ji, et al. "Balancing Flood Control and Economic Development in Flood Detention Areas of the Yangtze River Basin." ISPRS International Journal of Geo-Information 13, no. 4 (2024): 122. http://dx.doi.org/10.3390/ijgi13040122.

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Serving as a crucial part of the Yangtze River Basin (YRB)’s flood control system, Flood Detention Areas (FDAs) are vital in mitigating large-scale floods. Urbanization has led to the development of urban FDAs, but significant losses could ensue if these FDAs are activated. With improved reservoirs and embankments, flood pressure in the middle reaches has lessened, posing challenges in balancing flood control and economic benefits. This paper presents a comparative analysis of land use, GDP, and population in FDAs and adjacent cities, enhancing our understanding of their disparities and interr
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46

Zhang, Keying, Zhansheng Ji, Xiaoliang Luo, Zhenyi Liu, and Hua Zhong. "Flood Simulation in the Complex River Basin Affected by Hydraulic Structures Using a Coupled Hydrological and Hydrodynamic Model." Water 16, no. 17 (2024): 2383. http://dx.doi.org/10.3390/w16172383.

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Due to the complexity of terrain and climate in the mountain–plain transition zone, it is difficult to simulate and forecast the flow discharge of river basins accurately. The poor regularity of the river thus leads to uncertain flood control scheduling. Meanwhile, reservoirs and flood detention areas are constructed to store and divert water when severe floods threaten the safety of the basin. In order to improve the accuracy of flood forecasts and the effectiveness of flood control, a hydrological and 1D/2D hydrodynamic coupling model was developed to enable the joint computation of multiple
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47

Kurihara, Shinichi, Yuki Yano, and Atsushi Maruyama. "Economic Implications of Government Flood Control Policy: A Case of Rice in Japan." Agriculture 14, no. 6 (2024): 814. http://dx.doi.org/10.3390/agriculture14060814.

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Japan’s susceptibility to and severity of floods have necessitated flood control policies by the government. “Overflowing flood control”, in which the floods due to torrential rains are systematically diverted to agricultural lands in the upper to middle reaches, is one of them. More information is needed on the public assessment of the overflowing flood control policy, and this research seeks to bridge this gap. Data evaluating rice affected by the policy were collected from a random nth-price auction using a developed online system. The sample consisted of 47 consumers living in the downstre
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48

Fukuoka, Shoji, and Yutaro Ishii. "Temporal and spatial distributions of flood water storage volume of the main river and tributaries in the Ishikari River basin." Proceedings of IAHS 386 (April 19, 2024): 47–53. http://dx.doi.org/10.5194/piahs-386-47-2024.

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Abstract. In recent years, Japan experienced frequent and intense heavy rainfalls, resulting in serious flood disasters in many areas. It is also necessary to control floods in tributaries and basins of these tributaries in addition to flood control of the main river. This will be accomplished by understanding flood formation process in the basins of tributaries as well as the main river. Integrated flood flow analysis for the main river and tributaries was conducted by the use of observed temporal changes in the water surface profiles of the 2016 flood in the Ishikari River, Hokkaido, Japan.
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49

Perera, Kumudika K. E. "An Analysis of Stream Flow and Flood Frequency: A Case Study from Downstream of Kelani River Basin, Sri Lanka." Athens Journal of Sciences 11, no. 1 (2024): 55–74. http://dx.doi.org/10.30958/ajs.11-1-4.

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River floods in Sri Lanka are mainly associated with extreme rainfall events. The Kelani and Kalu rivers are recorded the highest flood frequencies and the accompanying flood damages among the river basins in wet zone (UNDP, 2011). Therefore, the specific objective of the study is to estimate the temporal probability of occurrence of flood events in downstream of Kelani river basin. Secondary data were used for the study. Daily discharges data were obtained from Hanwella gauging station for the period of 1990 to 2019 from the Department of Irrigation, Sri Lanka. Trend analysis, normal distribu
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50

Sedyowati, Laksni, Nanang Mudjito, Gunawan Wibisono, and Danes Satria Prayogo. "Appropriate flood control technology in a local trading area: Case study at Pulosari Kiosk Area in Malang City." Jurnal Penelitian 19, no. 1 (2022): 46–58. http://dx.doi.org/10.26905/jp.v19i1.8262.

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To date, flood is a problem that often plagues the city of Malang. Floods that occur are mainly caused by poor drainage channels and silting of drainage channels due to people's habits of throwing garbage in rivers. In the Pulosari Kiosk Area of Malang city, the flood was worsened by the capacity of the Pulosari Channel which narrowed due to illegal building. In heavy rain, so much water overflowed into the Pulosari Road, resulting in losses to traders in the area. The purpose of this study was to find a solution to reduce flooding in the Pulosari Channel with the appropriate flood control tec
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