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管道内水流冲击滞留气团的二阶Godunov数学模型
引用本文:周领,李文娟,刘德有,欧传奇. 管道内水流冲击滞留气团的二阶Godunov数学模型[J]. 水电能源科学, 2021, 39(4): 95-99
作者姓名:周领  李文娟  刘德有  欧传奇
作者单位:河海大学水利水电学院,江苏南京210098;河海大学水利水电学院,江苏南京210098;国际小水电中心,浙江杭州310002;国际小水电中心,浙江杭州310002
基金项目:国家自然科学基金项目(51679066,51839008);霍英东教育基金会青年教师基金项目(161068)。
摘    要:长距离输水、城市供排水等工程管道系统中常存在水流冲击滞留气团的现象,极可能产生异常压力波动,严重时甚至发生爆管事故.对此,提出将一种准确高效的非恒定摩阻模型引入水流冲击滞留气团的计算中,建立了考虑非恒定摩阻的二阶Godunov模型;并采用“虚拟单元”处理上游入口边界及下游水气交界面,实现了边界通量和内部单元通量的统一计...

关 键 词:瞬变流  滞留气团  二阶Godunov格式  非恒定摩阻  虚拟单元  水气交界面

A Second Order Godunov Model of Transient Flow with Trapped Air
ZHOU Ling,LI Wen-juan,LIU De-youb,OU Chuan-qi. A Second Order Godunov Model of Transient Flow with Trapped Air[J]. International Journal Hydroelectric Energy, 2021, 39(4): 95-99
Authors:ZHOU Ling  LI Wen-juan  LIU De-youb  OU Chuan-qi
Affiliation:(College of Water Conservancy and Hydropower Engineering,Hohai University,Nanjing 210098,China;International Center on Small Hydro Power,Hangzhou 310002,China)
Abstract:Transient flow with entrapped air pockets often arises in urban water supply and drainage systems,which easily causes abnormal pressure surge and even induces pipeline damage accidents.In this paper,an accurate and efficient model considering unsteady friction is introduced into the calculation of transient flow with entrapped air pockets,and a second order Godunov model with unsteady friction is established.The " virtual units" is used to deal with the upstream entrance boundary and downstream air-water interface,which realizes the unified calculation of the boundary fluxes and internal fluxes,and avoids the tedious calculation of the two fluxes separately in the past.In addition,the application of "virtual units" also avoids the complex of numerical interpolation when dynamic tracking the air-water interface.The results obtained by the proposed model are compared to the model without considering the influence of unsteady friction and the experimental data measured.It shows that the new presented second order Godunov finite volume model with considering unsteady friction can accurately predict the pressure fluctuation and energy attenuation of air pockets.
Keywords:transient flow  trapped air  second order Godunov format  unsteady friction  virtual units  water-air interface
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