OPTIMIZATION IN THERMAL DESIGN OF SURFACE CONDENSER BY CHANGING TUBE MATERIAL
Keywords:
Tube Materials, Thermal Conductivity, Heat Transfer Rate, Design of Condensers, Aspen Tech SoftwareAbstract
Owing to the wide utilization of heat exchangers in industrial processes, their cost minimization is an important target for both designers and users. Traditional design approaches are based on iterative procedures which gradually change design parameters until a satisfying solution, which meets the design specifications, is reached. However, such methods, besides being time consuming, do not guarantee the reach of an economically optimal solution. In this paper a procedure for optimal design of shell and tube heat exchangers is proposed, which utilizes a aspen plus software to minimize the total cost of the equipment including capital investment and the sum of discounted annual energy expenditures related to pumping. With changes of different parameters like thermal conductivity, Heat transfer rate, flow rate, Inlet and outlet of cooling water required for cooling purpose, we can optimise the thermal design by reducing area of surface condenser. Owing to the wide utilization of heat exchangers in industrial processes, their cost minimization is an important target for both designers and users: journal article [1]
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References
Andre L H Costa and Eduardo M Queiroz (2008), “Design Optimization of Shell-and-Tube Heat Exchangers”, Journal of Science direct Applied Thermal Engineering, Vol. 28 1798–1805
Antonio C Caputo and Pacifico M Pelagagge, (2008) “Heat Exchanger Design based on Economic Optimization”, Journal of Science direct Applied Thermal Engineering, Vol. 28, 1151–1159
Standards of the tabular Exchanger Manufacturers Association (1999), Eighth Edition
Yunush A Cengel (2006), “Heat and Mass Transfer”, 3rd edition, TATA McGraw HILL.
ABENER Project: Sikalbaha 225 MW ± 10% Combined Cycle (Dual Fuel) Power Plant Project data.
Jim Lang (2000), “Design Procedure for Heat Exchangers on Aspen Plus Software” Design Manual.
Aspen plus Simulator 10.0-1. User Interface (1998)
Ivan A Franson (1985), “Selection of Stainless Steel For Steam Surface Condenser Applications” Jt. ASME/IEEE Power Generation Conference, Milwaukee
HTRI design manual, Page D6.2.1 (Rev.1)
Rainer Greffrath (2002), “Effect of Scaling on Design and Operation of Thermal Seawater Desalination Plants”.