Team:Michigan/Modeling
From 2010.igem.org
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<pre> dPseudo_n/dt = kdegrade*NA_n*Pseudo_n - kdeath*(Pseudo_n)^2</pre> | <pre> dPseudo_n/dt = kdegrade*NA_n*Pseudo_n - kdeath*(Pseudo_n)^2</pre> | ||
+ | {| border="1" | ||
+ | |Rate: | ||
+ | |Value: | ||
+ | |- | ||
+ | |kinflow | ||
+ | |0.1 | ||
+ | |- | ||
+ | |kdegrade | ||
+ | |10.0 | ||
+ | |- | ||
+ | |kdeath | ||
+ | |1.0 | ||
+ | |} | ||
+ | {| border="1" | ||
+ | |Initial value: | ||
+ | |Note: | ||
+ | |Value: | ||
+ | |- | ||
+ | |NA_0 | ||
+ | |A constant | ||
+ | |0.5 | ||
+ | |- | ||
+ | |NA_n | ||
+ | |n > 0 | ||
+ | |0.0 | ||
+ | |- | ||
+ | |Pseudo_n | ||
+ | |0 =< n =< 8 | ||
+ | |1.0 | ||
+ | |} | ||
Ideally, a drip flow bioreactor should be modeled by a plug flow reactor model, which describes a fluid flowing through a pipe with perfect mixing in the radial direction and no mixing in the axial direction. However, we deemed the method above to be sufficient for our purposes and more intuitive in design. [https://2009.igem.org/Team:uOttawa/Modeling uOttawa] used plug flow model to describe nutrient flow in the intestines. | Ideally, a drip flow bioreactor should be modeled by a plug flow reactor model, which describes a fluid flowing through a pipe with perfect mixing in the radial direction and no mixing in the axial direction. However, we deemed the method above to be sufficient for our purposes and more intuitive in design. [https://2009.igem.org/Team:uOttawa/Modeling uOttawa] used plug flow model to describe nutrient flow in the intestines. | ||
Revision as of 05:46, 16 October 2010