典型文献
Energy dissipation on stepped spillways and hydraulic challenges-Prototype and laboratory experiences
文献摘要:
Stepped cascades,chutes and spillways have been in use for more than three millennia.With the introduction of new construction materials and techniques,the staircase chute design has regained some interest within the last forty years.The stepped invert increases significantly the energy dissipation occurring above the steep chute and reduces the size of the required downstream stilling structure.The application of stepped chutes further encompasses in-stream re-aeration and water treatment plant cascades,to enhance the air-water transfer of atmospheric gases and of volatile organic components.However,the engineering design of stepped spillways is not simple because of the hydrodynamic challenges,with several markedly different flow regimes,some complicated two-phase air-water fluid dynamics and massive rate of energy dissipation above the stepped chute.Simply,the technical challenges in the hydraulic design of stepped spillways are massive.This review paper examines the hydraulic characteristics of stepped chute flows and develops a reflection on nearly three decades of active hydraulic research,including recent field measurements during major flood events.The author aims to share his passion for the complicated hydraulic engineering,as well as some advice for engineering professionals and researchers.
文献关键词:
中图分类号:
作者姓名:
Hubert Chanson
作者机构:
School of Civil Engineering,The University of Queensland,Brisbane,Australia
文献出处:
引用格式:
[1]Hubert Chanson-.Energy dissipation on stepped spillways and hydraulic challenges-Prototype and laboratory experiences)[J].水动力学研究与进展B辑,2022(01):52-62
A类:
spillways,Stepped,chutes,staircase,stilling,Simply
B类:
Energy,dissipation,stepped,hydraulic,challenges,Prototype,laboratory,experiences,cascades,have,been,more,than,three,millennia,With,introduction,new,construction,materials,techniques,design,regained,some,interest,within,last,forty,years,invert,increases,significantly,energy,occurring,above,steep,reduces,size,required,downstream,structure,application,further,encompasses,aeration,water,treatment,plant,enhance,transfer,atmospheric,gases,volatile,organic,components,However,engineering,not,simple,because,hydrodynamic,several,markedly,different,regimes,complicated,two,phase,fluid,dynamics,massive,rate,technical,This,review,paper,examines,characteristics,flows,develops,reflection,nearly,decades,active,including,recent,field,measurements,during,major,flood,events,author,aims,share,passion,well,advice,professionals,researchers
AB值:
0.527345
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