Bibliografía

1
Smith, Chemical Process Design.
McGraw-Hill, 1995.

2
B. Linnhoff and D. Fernández-Polanco, ``Minimización del coste de servicios industriales. Tecnología de pinch,'' Ingeniería Química, pp. 130-137, Mayo 2002.

3
O. Hougen, K. Watson, and R. Ragatz, Principios de los procesos químicos. Tomo I: Balances de Materia y Energía.
Ed. Reverté, 1982.

4
Douglas, Conceptual design of chemical processes.
McGraw-Hill, 1988.

5
G. Wells and L. Rose, The art of chemical process design.
Elvesier, 1986.

6
Linnhoff and Ahmad, ``Cost optimum heat exchanger networks. I: Minimum energy and capital using simple models for capital cost,'' Computers and Chemical Engineering, vol. 14, no. 7, pp. 729-750, 1990.

7
F. Incropera and D. DeWitt, Fundamentos de transferencia de calor.
Prentice Hall, 1999.

8
J. Jezowski, H. Shetna, and F. Castillo, ``Area target for heat exchanger networks using linear programming.,'' Industrial and Engineering Chemistry Research, no. 42, pp. 1723-1730, 2003.

9
Perry, Chemical Engineers Handbook.
McGraw-Hill, 1984.

10
Zhu and Nie, ``Pressure drop considerations for heat exchanger network grasroots design,'' Computers and Chemical Engineering, vol. 26, pp. 1661-1676, 2002.

11
D. Kern, Procesos de transferencia de calor.
McGraw-Hill Book Co., 1965.

12
Ravagnani, ``Detailed equipment design in heat exchanger network synthesis and optimisation,'' Applied Thermal Engineering, vol. 23, pp. 141-151, 2003.

13
Linnhoff, User guide on process integration for the efficient use of energy.
The Institution of Chemical Engineers, 1994.

14
Gundersen and Naess, ``The synthesis of cost optimal heat exchanger networks. An industrial review of the state of the art.,'' Computers and Chemical Engineering, vol. 12, no. 6, pp. 503-530, 1988.

15
Sorin and Paris, ``Integrated exergy load distribution method and pinch analysis.,'' Computers and Chemical Engineering, vol. 23, pp. 497-507, 1999.

16
Sorin and Paris, ``Combined exergy and pinch approach to process analysis.,'' Computers and Chemical Engineering, vol. 21, no. Supplement, pp. S23-S28, 1997.

17
J. Szargut, D. Morris, and F. Steward, Exergy analysis of thermal, chemical and metallurgical processes.
Hemisphere Publishing Corporation, 1988.

18
C.J. Renedo, P. Fernández Díez, and D. Silió, ``Tecnología pinch para el diseño de redes de intercambiadores de calor. Líneas térmicas con capacidad calorífica variable.,'' Ingeniería Química, Noviembre 2003.

19
M. Lutz, Programming Python.
O'Reilly, 2nd. ed., 2001.

20
A. Marzal and I. Gracia, Introducción a la programación con Python.
Universitat Jaume I, http://marmota.act.uji.es/MTP/pdf/python.pdf, 2004.


2004-05-30