Vortex-driven pulsating flow control and pollutant transport enhancement in enclosed environment via fluidic oscillatorsOA
Vortex-driven pulsating flow control and pollutant transport enhancement in enclosed environment via fluidic oscillators
Ziyang Yu;Haidong Wang;Yuke Wang;Yufei Sun;Zhijun Zou;Wentao Wu;Yuwei Dai
School of Environment and Architecture,University of Shanghai for Science and Technology,516 Jungong Road,Shanghai 200093,China||Department of Civil,Environmental and Architectural Engineering,University of Colorado at Boulder,Boulder,80309,USASchool of Environment and Architecture,University of Shanghai for Science and Technology,516 Jungong Road,Shanghai 200093,ChinaSchool of Environment and Architecture,University of Shanghai for Science and Technology,516 Jungong Road,Shanghai 200093,ChinaSchool of Environment and Architecture,University of Shanghai for Science and Technology,516 Jungong Road,Shanghai 200093,ChinaSchool of Environment and Architecture,University of Shanghai for Science and Technology,516 Jungong Road,Shanghai 200093,ChinaSchool of Built Environment,Massey University,Auckland,New ZealandSchool of Environment and Architecture,University of Shanghai for Science and Technology,516 Jungong Road,Shanghai 200093,China
fluidic oscillatorpulsating ventilationunsteady CFD simulationpollutant dispersionventilation efficiency
fluidic oscillatorpulsating ventilationunsteady CFD simulationpollutant dispersionventilation efficiency
《建筑模拟(英文版)》 2026 (3)
685-702,18
This research is supported by the National Natural Science Foundation of China(No.52278116,No.52200219)and the Chen Guang project(No.22CGA54),supported by the Shanghai Municipal Education Commission and Shanghai Education Development Foundation.
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