Difference between revisions of "Kharon theory manual"
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[[File:MassConservation.png|thumb|400px|Conservation of mass for an interior cell]] | [[File:MassConservation.png|thumb|400px|Conservation of mass for an interior cell]] | ||
− | Steady one-dimensional conservation of mass (of phase q) is given through the following relation | + | Steady one-dimensional conservation of mass (of phase ''q'') is given through the following relation |
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+ | <math> \nabla\cdot(\varepsilon \alpha_q \rho_q u_q) = \gamma_{pq} + s_{\text{mass},q}</math> | ||
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+ | <equation id="eqn:yhtalo"> <math> \nabla\cdot(\varepsilon \alpha_q \rho_q u_q) = \gamma_{pq} + s_{\text{mass},q}</math></equation> | ||
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+ | <xr id="eqn:yhtalo" /> | ||
== Conservation of Momentum == | == Conservation of Momentum == |
Revision as of 09:26, 12 April 2018
Conservation of Mass
Steady one-dimensional conservation of mass (of phase q) is given through the following relation

Equation 1
Conservation of Momentum