MPM BL: Difference between revisions
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<div class="title">Meyer-Peter Müeller Bedload Formulation</div> | <div class="title">Meyer-Peter Müeller Bedload Formulation</div> | ||
The [[Bibliography#Meyer-PeterE_1948a | Meyer-Peter Müeller (1948)]] formulation is | The [[Bibliography#Meyer-PeterE_1948a | Meyer-Peter Müeller (1948)]] formulation is | ||
<math display="block">\Phi = \max \left[ {8\left( {\theta _{sf} - \theta _c } \right)^{1.5} ,\quad 0} \right]</math> | |||
\tau _{sf} = \left( {\tau _{bx}^2 + \tau _{by}^2 } \right)^{0.5} | where <math>\Phi</math> is the magnitude of the non-dimensional transport rate for each sediment class, <math>\theta _{sf}</math> is the non-dimensional Shields parameter for skin stress | ||
where | <math display="block">\theta _{sf} = \frac{{\tau _{sf} }}{{\left( {s - 1} \right)gD_{50} }}</math> | ||
q_{blx} = q_{bl} \frac{{\tau _{bx} }} | <math>\theta _c = 0.047</math> is the critical Shields parameter, and <math>\tau _{sf}</math> is the magnitude of total skin-friction component of bottom stress computed from | ||
<math display="block">\tau _{sf} = \left( {\tau _{bx}^2 + \tau _{by}^2 } \right)^{0.5}</math> | |||
where <math>{\tau _{bx}}^2</math> and <math>{\tau _{bx}}^2</math> are the skin-friction components of bed stress, from currents alone or the maximum wave-current combined stress, in the <math>x</math> and <math>y</math> directions. These are computed at cell faces (<math>u</math> and <math>v</math> locations) and then interpolated to cell centers (<math>\rho</math> points). The bedload transport vectors are partitioned into <math>x</math> and <math>y</math> components based on the magnitude of the bed shear stress as | |||
<math display="block">q_{blx} = q_{bl} \frac{{\tau _{bx} }} | |||
{{\tau _{sf} }};\quad \quad q_{bly} = q_{bl} \frac{{\tau _{by} }} | {{\tau _{sf} }};\quad \quad q_{bly} = q_{bl} \frac{{\tau _{by} }} | ||
{{\tau _{sf} }} | {{\tau _{sf} }}</math> | ||
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Latest revision as of 12:02, 18 May 2016
Meyer-Peter Müeller Bedload Formulation
The Meyer-Peter Müeller (1948) formulation is
where is the magnitude of the non-dimensional transport rate for each sediment class, is the non-dimensional Shields parameter for skin stress
is the critical Shields parameter, and is the magnitude of total skin-friction component of bottom stress computed from
where and are the skin-friction components of bed stress, from currents alone or the maximum wave-current combined stress, in the and directions. These are computed at cell faces ( and locations) and then interpolated to cell centers ( points). The bedload transport vectors are partitioned into and components based on the magnitude of the bed shear stress as