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Transient Flow Dynamics in Tesla Valve Configurations: Insights from Computational Fluid Dynamics Simulations

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“This study investigates the transient flow dynamics and pressure interactions within Tesla valve configurations through comprehensive CFD simulations. Tesla valves offer efficient passive fluid control without the need for external power, making them favorable in various applications. Previous observations indicated that Tesla valves effectively reduce the amplitude of pressure transients, prolonging their duration and distributing energy over an extended timeframe. While suggesting a potential role for Tesla valves as pressure dampers during transient events, the specific mechanisms behind this behavior remain unexplored. This research focuses on elucidating the internal dynamics of Tesla valves during transient events, aiming to unravel the processes responsible for the observed attenuation in pressure transients. This study reveals the emergence of “pressure pockets” within Tesla valves, deviating from conventional uniform pressure fronts. These pockets manifest as discrete chambers with varying lengths and volumes, contributing to the non-uniform propagation of pressure throughout the system. This investigation employs advanced CFD simulations as a crucial tool to unravel the governing dynamics of transient flow within Tesla valve configurations. By elucidating underlying fluid dynamics, this study lays the groundwork for future Tesla valve design optimization, holding potential implications for applications where the control of transient flow events is crucial.”

(Citation: Zeidan, M., Németh, M., Abhijith, G.R., et.al. – Transient Flow Dynamics in Tesla Valve Configurations: Insights from Computational Fluid Dynamics Simulations – Water 16(2024)23, art. no. 3492 – DOI: 10.3390/w16233492 – (Open Access))

(This article belongs to the Special Issue Applications of Artificial Intelligence (AI) in Water Resources Systems)

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