Integral Model of a Multiphase Plume in Quiescent Stratification

نویسندگان

  • E. J. Wannamaker
  • B. C. Crounse
  • E. E. Adams
چکیده

The writers present a one-dimensional integral model to describe multiphase plumes discharged to quiescent stratified receiving waters. The model includes an empirical submodel for detrainment, and the capability to include dispersed phase dissolution. Model equations are formulated by conservation of mass, momentum, heat, dissolved species concentration, and salinity, and allow the tracking of dissolved material and changes in plume density due to solute density effects. The detrainment or peeling flux, Ep, is assumed to be a function of the dispersed phase slip velocity, ub, the integrated plume buoyancy, Bi, and the momentum of the entrained plume fluid, characterized by the fluid velocity, ui, given by the general relationship Ep= ub /ui 2 Bi /ui 2 . The parameter is calibrated to laboratory experimental data. Because Ep is based on a force balance, this algorithm allows numerical models to reproduce a wide range of characteristic plume behavior. Such a predictive algorithm is important for applying models to field scale plumes, especially where chemical processes within the plume may alter plume buoyancy and hence peeling behavior , as in the case of a CO2 droplet plume used for ocean sequestration of CO2. DOI: 10.1061/ ASCE 0733-9429 2007 133:1 70 CE Database subject headings: Bubbles; Buoyant jets; Plumes; Two phase flow; Stratification.

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تاریخ انتشار 2006