Applicability of Open Channel Bed Variation Analysis on A Steep Tunnel
Yuji OMOTO, Chihiro YOIDA, Akihiko Nakayama
Abstract
Open-access reader
Yuji OMOTO, Chihiro YOIDA, Akihiko Nakayama
Abstract
Open-access reader
Sediment bypass system has been proposed as a countermeasure against sedimentation and turbid effluence that occur in reservoirs over long period of operation. The system allows both bed load and suspended sediment to bypass the reservoir via a steep-sloped tunnel connecting the upstream of reservoir and the downstream river. In order to provide a guide for rational design of such bypass system, the sediment transport mechanism in a steep tunnel has been studied both experimentally and numerically. The phenomenon observed in the experiment indicates highly unsteady flow, but the analysis method for flows in open-channel with movable bed is found to reproduce overall phenomenon. Better representation of the rapidly changing parts of the flow will further improve results.
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Sediment bypass system has been proposed as a countermeasure against sedimentation and turbid effluence that occur in reservoirs over long period of operation. The system allows both bed load and suspended sediment to bypass the reservoir via a steep-sloped tunnel connecting the upstream of reservoir and the downstream river. In order to provide a guide for rational design of such bypass system, the sediment transport mechanism in a steep tunnel has been studied both experimentally and numerically. The phenomenon observed in the experiment indicates highly unsteady flow, but the analysis method for flows in open-channel with movable bed is found to reproduce overall phenomenon. Better representation of the rapidly changing parts of the flow will further improve results.
Key concepts: Bed load, Sedimentation, Geology, Flow (mathematics), Sediment, Sediment transport, Channel (broadcasting), Open-channel flow