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Stream restoration and river engineering projects are employing engineered log jams (ELJs) increasingly for stabilization and in-stream improvements.
River engineering structures, such as bank protection or bed sills, act as constraints on the hydromorphology of rivers and limit morphodynamic processes.
This trend can in large part be attributed to advances in river engineering.
This is now the principal tool used by the Scottish Environment Protection Agency to control water use at distilleries, including the abstraction of water, impoundment of water, discharge of effluent and river engineering.
This technique is applied in river engineering for the geometric modeling and risk assessment to floods.
Based on all the results, this method suggests a good tool about river engineering problems.
Stepped spillways have many applications in dam structures, and river engineering.
The presented approach is promising regarding fish community assessment and ecological river engineering.
The fate of eroded soil particles impacts soil loss, river engineering and aquatic ecosystems.
However, relatively less is known about how channel bars in alluvial rivers respond to river engineering and regulations.
Accurate prediction of discharge in compound open channels is extremely important from river engineering point of view.
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