Attenuation and phase shift in linear flood routing

  • KUNDZEWICZ Z
  • DOOGE J
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Abstract

Abstract The necessary and sufficient conditions for non-zero phase shift and non-zero attenuation in linear flood routing can be derived from the continuity equation alone and are found to depend on the existence of an imaginary part in the expression for frequency or in the expression for wave number. It is shown that in linear flood routing the phase lag between flow rate and area of flow is directly related to the attenuation per unit wave length. The effects of using various forms of the momentum equation, in addition to the continuity equation, are exemplified by deriving analytical expressions in terms of the frequency, both for attenuation per unit channel length and for phase shift, for the kinematic wave, the general diffusion analogy, and the complete St. Venant equation.

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KUNDZEWICZ, Z. W., & DOOGE, J. C. I. (1989). Attenuation and phase shift in linear flood routing. Hydrological Sciences Journal, 34(1), 21–40. https://doi.org/10.1080/02626668909491306

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