CMS-Flow:Hydro Eqs: Difference between revisions
Jump to navigation
Jump to search
Line 2: | Line 2: | ||
The depth-averaged 2-D continuity and momentum equations are given by | The depth-averaged 2-D continuity and momentum equations are given by | ||
<math> \frac{\partial h }{\partial t} + \frac{\partial (h u_j )}{\partial x_j} = S for | <math> \frac{\partial h }{\partial t} + \frac{\partial (h u_j )}{\partial x_j} = S for j=1,2 </math> | ||
<math> \frac{\partial ( h u_i ) }{\partial t} + \frac{\partial (h u_i u_j )}{\partial x_j} | <math> \frac{\partial ( h u_i ) }{\partial t} + \frac{\partial (h u_i u_j )}{\partial x_j} | ||
Line 8: | Line 8: | ||
+ \frac{1}{\rho_0} \frac{\partial p_a }{\partial x_j} | + \frac{1}{\rho_0} \frac{\partial p_a }{\partial x_j} | ||
+ \frac{\partial }{\partial x_j} \biggl[ \nu_t h \frac{\partial u_i }{\partial x_j} \biggr ] | + \frac{\partial }{\partial x_j} \biggl[ \nu_t h \frac{\partial u_i }{\partial x_j} \biggr ] | ||
+ \frac{\tau_i }{\rho} for | + \frac{\tau_i }{\rho} for i=1,2 and j=1,2 </math> | ||
where <math> t </math> is time, <math> u_j </math> is the current velocity in the jth direction, <math> h </math> is the total water depth, <math> C_{sa} </math> is the salinity concentration, and <math> K_{sa} </math> is the salinity mixing coefficient. | where <math> t </math> is time, <math> u_j </math> is the current velocity in the jth direction, <math> h </math> is the total water depth, <math> C_{sa} </math> is the salinity concentration, and <math> K_{sa} </math> is the salinity mixing coefficient. |
Revision as of 22:11, 12 May 2010
Governing Equation
The depth-averaged 2-D continuity and momentum equations are given by
where is time, is the current velocity in the jth direction, is the total water depth, is the salinity concentration, and is the salinity mixing coefficient.