Scopes
(The following topics include but are not limited to)
Track 1: Hydropower Engineering
Hydropower planning, hydropower station construction
Hydraulic steel structures
Engineering hydrology, hydraulics
River dynamics
Hydroelectricity and water energy calculation
Hydraulic systems, irrigation and water conservancy, soil and water conservation
Design of hydraulic structures such as dams, ship locks, pumping stations, spillways, etc.
Analysis of stress, deformation, seepage and anti-sliding stability of hydraulic structures
Durability and temperature control of concrete for hydropower structures
Optimal allocation of water resources in river basins, water quantity distribution and ecological flow guarantee
Reservoir operation, flood evolution and urban flood control and drainage
Planning and operation optimization of pumped storage power stations
Control of variable-speed units and wide-load operation of pumped storage power stations
Integration of hydropower and wind power, photovoltaic and other multi-energy complementary systems
Environmental impact and restoration technologies of hydropower projects
Hydraulic engineering and management
Agricultural and soil engineering
Track 2: Intelligent Construction
Hydropower engineering BIM design, construction and digital delivery
All-domain digital twin engineering based on BIM and GIS integration
Intelligent construction equipment for hydropower projects (unmanned compaction, intelligent vibration, intelligent temperature control)
Intelligent temperature control, simulation and crack prevention technology for large-volume concrete
Prestressed water engineering structures, modular construction and prefabricated components
Automation of construction process, intelligent progress control and safety warning
Construction simulation, material site management and resource scheduling driven by digital twin
Integration of water conservancy projects with Internet of Things, edge computing and smart construction sites
Unmanned inspection by drones/robots and intelligent detection of water conservancy projects
Digital management platform for the entire life cycle of the project
Automation of dam safety monitoring, intelligent sensors and wireless sensor networks
Automated monitoring and early warning of high slopes, landslide masses and geological disasters
Application of optical fiber sensing (distributed optical temperature/ vibration measurement) in hydraulic structures
Modeling analysis of monitoring data, anomaly identification and safety assessment models
Dynamic feedback and operation decision-making driven by digital twin for engineering safety
Deformation prediction, seepage analysis and risk warning based on artificial intelligence ......
Track 1: Hydropower Engineering
Hydropower planning, hydropower station construction
Hydraulic steel structures
Engineering hydrology, hydraulics
River dynamics
Hydroelectricity and water energy calculation
Hydraulic systems, irrigation and water conservancy, soil and water conservation
Design of hydraulic structures such as dams, ship locks, pumping stations, spillways, etc.
Analysis of stress, deformation, seepage and anti-sliding stability of hydraulic structures
Durability and temperature control of concrete for hydropower structures
Optimal allocation of water resources in river basins, water quantity distribution and ecological flow guarantee
Reservoir operation, flood evolution and urban flood control and drainage
Planning and operation optimization of pumped storage power stations
Control of variable-speed units and wide-load operation of pumped storage power stations
Integration of hydropower and wind power, photovoltaic and other multi-energy complementary systems
Environmental impact and restoration technologies of hydropower projects
Hydraulic engineering and management
Agricultural and soil engineering
Track 2: Intelligent Construction
Hydropower engineering BIM design, construction and digital delivery
All-domain digital twin engineering based on BIM and GIS integration
Intelligent construction equipment for hydropower projects (unmanned compaction, intelligent vibration, intelligent temperature control)
Intelligent temperature control, simulation and crack prevention technology for large-volume concrete
Prestressed water engineering structures, modular construction and prefabricated components
Automation of construction process, intelligent progress control and safety warning
Construction simulation, material site management and resource scheduling driven by digital twin
Integration of water conservancy projects with Internet of Things, edge computing and smart construction sites
Unmanned inspection by drones/robots and intelligent detection of water conservancy projects
Digital management platform for the entire life cycle of the project
Automation of dam safety monitoring, intelligent sensors and wireless sensor networks
Automated monitoring and early warning of high slopes, landslide masses and geological disasters
Application of optical fiber sensing (distributed optical temperature/ vibration measurement) in hydraulic structures
Modeling analysis of monitoring data, anomaly identification and safety assessment models
Dynamic feedback and operation decision-making driven by digital twin for engineering safety
Deformation prediction, seepage analysis and risk warning based on artificial intelligence ......
Important Dates/重要日期
- Submission Deadline: 2026.8.20
- Registration Deadline: 2026.8.27
- Conference Date: 2026.9.4
- Notification Date: About a week after the submission
Submission Portal/投稿方式
Mail Address: icmla_conference@163.com
If you have any question or need any assistance regarding the conference, please feel free to contact our conference specialists:
蒋老师
+86-15680824672(微信同号)
3761629232
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+86---(微信同号)
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