Exact(26)
Based upon the design, a simple algorithm was developed and interpreted into Microsoft C Sharp computer programming language to enable scale up of the reactor.
A simple algorithm was proposed to determine saltwater and freshwater withdrawal rates at a pumping well at which a total pumping rate was specified.
The numerical treatment of convection terms in governing equations was based on the QUICK scheme, and the SIMPLE algorithm was used to treat the coupling of pressure and velocity fields.
A simple algorithm was then used to calculate the overall cooling load to ascertain that the daylighting strategies used do not invoke an increase in thermal gains through walls and glazings.
In order to solve this problem numerically, governing equations were discretized using finite volume method, SIMPLE algorithm was used for pressure-velocity coupling and k − ε model was chosen as turbulent model.
Also, a simple algorithm was proposed to examine the difference value (Dvalue) between the inflow and outflow under different reservoir operation rules and it was used to evaluate the impacts of the reservoir operation rules during the drought on the correlation of the HD and MD.
Similar(34)
SIMPLE algorithm is utilized to satisfy pressure velocity coupling.
To optimize system efficiency, a simple algorithm is developed for system sizing.
The SIMPLE algorithm is applied to relax the system of algebraic equations.
The results show that this simple algorithm is very efficient and precise.
Moreover, in order to find the vector solution, a simple algorithm is proposed.
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