首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Accuracy of kinematic wave and diffusion wave approximations for time-independent flows
Authors:V P Singh  V Aravamuthan
Abstract:Errors in the kinematic wave and diffusion wave approximations for time-independent (or steady-state) cases of channel flow were derived for three types of boundary conditions: zero flow at the upstream end, and critical flow depth and zero depth gradient at the downstream end. The diffusion wave approximation was found to be in excellent agreement with the dynamic wave approximation, with errors in the range 1–2% for values of KFurn:x-wiley:08856087:media:HYP3360090704:tex2gif-stack-1 (? 7.5), where K is the kinematic wave number and F0 is the Froude number. Even for small values of KFurn:x-wiley:08856087:media:HYP3360090704:tex2gif-stack-2 (e.g. KF20 = 0.75), the errors were typically less than 15%. The accuracy of the diffusion wave approximation was greatly influenced by the downstream boundary condition. The error of the kinematic wave approximation was found to be less than 13% in the region 0.1 ? x ? 0.95 for KFurn:x-wiley:08856087:media:HYP3360090704:tex2gif-stack-3 = 7.5 and was greater than 30% for smaller values of KFurn:x-wiley:08856087:media:HYP3360090704:tex2gif-stack-4 (? 0.75). This error increased with strong downstream boundary control.
Keywords:kinematic wave models  diffusion wave models  errors  time-independent flows
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号