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A feed F to the flash tank is split into a vapor product V and a liquid product L. The feed contains NC number of
A feed F to the flash tank is split into a vapor product V and a liquid product L. The feed contains NC number of components. The temperature and pressure are maintained constant. A heat exchanger keeps constant temperature and a valve on the vapor product stream that keeps constant pressure. Assume ideal liquid mixture and ideal gas (Raoult's law). (i)Write the material and component balance equations. For composition independent equilibrium constant K values, simplify the model equations for the simulation of percent vaporization ( ), liquid and gas phase composition. (ii)Draw the information flow diagram and write the algorithm of the numerical technique to be used for solving the percent vaporization ( ). A feed F to the flash tank is split into a vapor product V and a liquid product L. The feed contains NC number of components. The temperature and pressure are maintained constant. A heat exchanger keeps constant temperature and a valve on the vapor product stream that keeps constant pressure. Assume ideal liquid mixture and ideal gas (Raoult's law). (i)Write the material and component balance equations. For composition independent equilibrium constant K values, simplify the model equations for the simulation of percent vaporization ( ), liquid and gas phase composition. (ii)Draw the information flow diagram and write the algorithm of the numerical technique to be used for solving the percent vaporization ( )
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