LJMM/2020...Mobiltherm entering at leaving at Shell side mefficient = W/(m: K) GIVEN - water in...

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LJMM/2020

Transcript of LJMM/2020...Mobiltherm entering at leaving at Shell side mefficient = W/(m: K) GIVEN - water in...

Page 1: LJMM/2020...Mobiltherm entering at leaving at Shell side mefficient = W/(m: K) GIVEN - water in Mobilürrm in Number of tute = Tubes are I in 16 B.W.G. Water flow rate = 225,000 =

LJMM/2020

Page 2: LJMM/2020...Mobiltherm entering at leaving at Shell side mefficient = W/(m: K) GIVEN - water in Mobilürrm in Number of tute = Tubes are I in 16 B.W.G. Water flow rate = 225,000 =

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Page 3: LJMM/2020...Mobiltherm entering at leaving at Shell side mefficient = W/(m: K) GIVEN - water in Mobilürrm in Number of tute = Tubes are I in 16 B.W.G. Water flow rate = 225,000 =

LJMM/2020

Page 4: LJMM/2020...Mobiltherm entering at leaving at Shell side mefficient = W/(m: K) GIVEN - water in Mobilürrm in Number of tute = Tubes are I in 16 B.W.G. Water flow rate = 225,000 =

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Page 5: LJMM/2020...Mobiltherm entering at leaving at Shell side mefficient = W/(m: K) GIVEN - water in Mobilürrm in Number of tute = Tubes are I in 16 B.W.G. Water flow rate = 225,000 =

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Page 6: LJMM/2020...Mobiltherm entering at leaving at Shell side mefficient = W/(m: K) GIVEN - water in Mobilürrm in Number of tute = Tubes are I in 16 B.W.G. Water flow rate = 225,000 =

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Page 7: LJMM/2020...Mobiltherm entering at leaving at Shell side mefficient = W/(m: K) GIVEN - water in Mobilürrm in Number of tute = Tubes are I in 16 B.W.G. Water flow rate = 225,000 =

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Page 8: LJMM/2020...Mobiltherm entering at leaving at Shell side mefficient = W/(m: K) GIVEN - water in Mobilürrm in Number of tute = Tubes are I in 16 B.W.G. Water flow rate = 225,000 =

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SE INCLUYE TAMBIÉN LA SOLUCIÓN DE LOS PRIMEROS EJERCICIOS, PERO RESUELTOS USANDO

EL FACTOR DE CORRECCIÓN. SE OBTIENEN RESULTADOS SIMILARES.

PARA CALENTAR AGUA EN UN INTERCAMBIADOR DE CALOR DE CORAZA Y TUBOS DE UN PASO POR

CORAZA Y DOS PASOS POR LOS TUBOS SE UTILIZA ACEITE (Cp = 2.1 KJ/KGK). EL COEFICIENTE DE

TRANSFERENCIA DE CALOR GLOBAL ES 525 W/M2K. LOS FLUJOS MÁSICOS SON 7 KG/S PARA EL

ACEITE Y 10 KG/S PARA EL AGUA. EL ACEITE Y EL AGUA ENTRAN AL INTERCAMBIADOR DE CALOR A

240 °C Y 20 °C, RESPECTIVAMENTE. EN EL DISEÑO DEL INTERCAMBIADOR SE TIENE QUE

CONSIDERAR QUE EL AGUA SALGA CON UNA TEMPERATURA MÍNIMA DE 80 °C. CALCULE EL ÁREA

SUPERFICIAL DE TRANSFERENCIA DE CALOR NECESARIA PARA LOGRAR ESTA TEMPERATURA.

SOLUCIÓN (ABAJO)

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BENCENO QUE FLUYE A 12.5 KG/S SE TIENE QUE ENFRIAR DE MANERA CONTÍNUA DE 82 A 54 °C

MEDIANTE 10 KG/S DE AGUA DISPONIBLE A 15.5 °C. CONSIDERANDO Uo = 990 w/m2K. CALCULAR EL

AREA SUPERFICIAL

A) UN ARREGLO EN PARALELO CONSIDERANDO 1 PASO EN CORAZA Y 6 PASOS EN TUBOS.

B) UN ARREGLO EN CONTRACORRIENTE CONSIDERANDO 1 PASO EN CORAZA Y 8 EN TUBOS

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