Bottom Friction: Difference between revisions
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''<math>\lambda_{wc} = </math>'' nonlinear bottom friction enhancement factor ''<math> \left( \lambda_{wc} \geq 1 \right)</math>'' [-] | ''<math>\lambda_{wc} = </math>'' nonlinear bottom friction enhancement factor ''<math> \left( \lambda_{wc} \geq 1 \right)</math>'' [-] | ||
''<math>\tau_c = </math>'' current-related bed shear stress vector [Pa] | |||
The current bed shear stress is given by | |||
''<math>\tau_{ci} = \rho c_b UU_i</math>'' (2-9) | |||
where |
Revision as of 18:56, 16 July 2014
Bottom Friction
The mean (short-wave averaged) bed shear stress, , is calculated as
(2-8)
where
nonlinear bottom friction enhancement factor [-]
current-related bed shear stress vector [Pa]
The current bed shear stress is given by
(2-9)
where