Browsing by Author "Rodriguez Neyra, Manuel Santiago"
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Item “diseño óptimo de condensador de doble entrada de alcohol etilico, en funcion del flujo de vapor”(Universidad Nacional de Trujillo, 2016) Rodriguez Neyra, Manuel SantiagoThis study aimed to make a proposal of optimal design of a dual input capacitor ethyl alcohol, depending on the flow of alcohol vapor ascends the column distillation and rectification, to the condenser to recover the spirit of the solution - tánica aqueous ethanol as part of the processing of the tare. The methodology used is the experimental scaling technique made from data laboratory and pilot scales, made using both distillers with their respective condensation stages for the condensation of alcohol vapor and recover factorial design. The optimum design of a double input capacitor ethyl alcohol for use in distillation and rectification, according to the steam flow can be determined by the relations: Heat transfer surface: A = 0.05 W For A in m² and W in kg/h Mass flow of condensate and cooling: w = 2221W: Optimal diameter input coupling capacitor: Dopt = 0,03W0,5 en m. Keywords: Ethyl Alcohol, condenser design optimization.Item “diseño óptimo de condensador de doble entrada de alcohol etilico, en funcion del flujo de vapor”(Universidad Nacional de Trujillo, 2016) Rodriguez Neyra, Manuel SantiagoThis study aimed to make a proposal of optimal design of a dual input capacitor ethyl alcohol, depending on the flow of alcohol vapor ascends the column distillation and rectification, to the condenser to recover the spirit of the solution - tánica aqueous ethanol as part of the processing of the tare. The methodology used is the experimental scaling technique made from data laboratory and pilot scales, made using both distillers with their respective condensation stages for the condensation of alcohol vapor and recover factorial design. The optimum design of a double input capacitor ethyl alcohol for use in distillation and rectification, according to the steam flow can be determined by the relations: Heat transfer surface: A = 0.05 W For A in m² and W in kg/h Mass flow of condensate and cooling: w = 2221W: Optimal diameter input coupling capacitor: Dopt = 0,03W0,5 en m. Keywords: Ethyl Alcohol, condenser design optimization.