Ulu, Ali EmreAydın, Mehmet CihanÖnen, Fevzi2023-10-022023-10-022023Ulu, A. E., Aydın, M. C. ve Önen, F. (2023). Energy dissipation potentials of grouped spur dikes in an open channel. Water Resources Management, 1-16.0920-4741https://link.springer.com/article/10.1007/s11269-023-03571-4https://hdl.handle.net/11468/12640Spur dikes are frequently preferred fow regulation structures, especially for open channels and coastal morphology due to their ease of application and economics. Since spur dikes placed on the edge of the stream isolated (single) or in groups do not have a length across the entire channel width, they can also play the role of a semi-permeable weir in the stream. In this study, the efects of spur dikes of the same length and height placed asymmetrically on both sides of the channels at fve diferent angles on the fow were investigated experimentally and numerically. The energy dissipation ratios of the spur dikes in the channel were calculated in submerged and unsubmerged fow conditions. A total of 45 tests were performed using nine diferent discharges, and comparisons were made by transferring the same characteristics from the experimental conditions to the numerical environment. According to the obtained data, the situation with the highest energy dissipation occurred at θ=120°. At low discharges, more vortex was observed in the eyes between the dikes, but as the discharge increased, the vortex seen in the fow decreased. The velocity distributions on the channel cross-sections were also presented to obtain fow patterns along disturbed fow in the channel. At the maximum discharge, the θ=30° placement showed the highest velocities in most cross-sections, while the lowest velocities were observed at the θ=120°.eninfo:eu-repo/semantics/closedAccessGrouped spur dikesEnergy dissipationOpen channelAngular layoutCFDEnergy dissipation potentials of grouped spur dikes in an open channelEnergy dissipation potentials of grouped spur dikes in an open channelArticle116WOS:0010388017000012-s2.0-8516631958110.1007/s11269-023-03571-4Q1N/A