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Technical Note

Effects of Froude, Reynolds, and Weber numbers on an air-entraining vortex

(Post-Doctoral Research Fellow) & (Professor)
Pages 421-425 | Received 10 Jul 2013, Accepted 24 Dec 2013, Published online: 28 May 2014

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Muhammed Hashid & T. I. Eldho. (2023) Effect of intake pipe blockage on the critical submergence for lateral dual intakes. Journal of Hydraulic Research 61:4, pages 573-582.
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Kaiwen Yu, Changhai Han, Kang Han & Junfeng Shi. (2024) Experiments on the evolution process of intermittent air-entraining vortices and its influencing factors. Experimental Thermal and Fluid Science 155, pages 111194.
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Xijie Song, Yongyao Luo, Liu Chao, Zhengwei Wang & Yan Jin. (2023) Numerical simulation and experimental study on an innovative vortex eliminator using a modified SST turbulence model for gas-liquid two-phase flow. Ocean Engineering 268, pages 113383.
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Muhammed Hashid & Zulfequar Ahmad. (2022) Critical Submergence for Horizontal Dual Water Intakes under Perpendicular Uniform Approach Flow. Journal of Hydraulic Engineering 148:10.
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Emre Haspolat & Mustafa Gogus. (2022) Estimation of Critical Submergence at Single Horizontal Intakes Under Asymmetric Flow Conditions. Arabian Journal for Science and Engineering 47:10, pages 12509-12520.
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Xijie Song, Yongyao Luo & Zhengwei Wang. (2022) Numerical prediction of the influence of free surface vortex air-entrainment on pump unit performance. Ocean Engineering 256, pages 111503.
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Maedeh Keihanpour & Abdorreza Kabiri-Samani. (2021) Effects of modern marguerite-shaped inlets on hydraulic characteristics of swirling flow in shaft spillways. Water Science and Engineering 14:3, pages 246-256.
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Miao Guo, Huijun Zou, Baoyu Chen, Zhigang Zuo & Shuhong Liu. (2021) Experimental performance of a pump and the related vortices in a pump intake of a model pump station. Journal of Physics: Conference Series 1909:1, pages 012045.
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Kerem Taştan. (2020) Critical submergence for a horizontal pipe intake. Ain Shams Engineering Journal 11:4, pages 933-938.
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Qiang Guo, Xianbei Huang, Baoyun Qiu, Xiaoli Feng & Can Luo. (2020) The formation of the steady and unsteady air-entrained vortices in pump sump. International Journal of Multiphase Flow 129, pages 103312.
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Kerem Taştan & Nevzat Yıldırım. (2018) Su alma ağzı giriş şeklinin hava girişli çevrinti üzerindeki ölçek etkisi. Gazi Üniversitesi Fen Bilimleri Dergisi Part C: Tasarım ve Teknoloji 6:3, pages 492-506.
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Ruidi Bai, Faxing Zhang, Shanjun Liu & Wei Wang. (2018) Experiments on Turbulence Intensity and Bubble Frequency in Self-Aerated Open Channel Flows. Water 10:9, pages 1201.
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Morteza Monshizadeh, Ahmad Tahershamsi, Hassan Rahimzadeh & Hamed Sarkardeh. (2017) Vortex Dissipation Using a Hydraulic-Based Anti-Vortex Device at Intakes. International Journal of Civil Engineering 16:9, pages 1137-1144.
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Kerem TaştanNevzat Yıldırım. (2018) Effects of Intake Geometry on the Occurrence of a Free-Surface Vortex. Journal of Hydraulic Engineering 144:4.
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Kerem Taştan. (2018) Prediction of critical submergence in a two-layer-stratified fluid flow. Journal of the Brazilian Society of Mechanical Sciences and Engineering 40:4.
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Ruidi BaiShanjun LiuZhong TianWei WangFaxing Zhang. (2018) Experimental Investigation of Air–Water Flow Properties of Offset Aerators. Journal of Hydraulic Engineering 144:2.
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Kerem Taştan. (2017) Scale and flow boundary effects for air-entraining vortices. Proceedings of the Institution of Civil Engineers - Water Management 170:4, pages 198-206.
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Ruidi Bai, Faxing Zhang, Shanjun Liu & Wei Wang. (2016) Air concentration and bubble characteristics downstream of a chute aerator. International Journal of Multiphase Flow 87, pages 156-166.
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Kerem Taştan. (2016) Critical submergence for isolated and dual rectangular intakes. Sādhanā 41:4, pages 425-433.
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Mustafa Gogus, Mete Koken & Ali Baykara. (2016) Formation of air-entraining vortices at horizontal intakes without approach flow induced circulation. Journal of Hydrodynamics 28:1, pages 102-113.
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Georg MöllerMartin DetertRobert M. Boes. (2015) Vortex-Induced Air Entrainment Rates at Intakes. Journal of Hydraulic Engineering 141:11.
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