MEMSDUKEPRATT School of engineering


publications by Adrian Bejan.


Papers Published

  1. Zimparov, V.D. and da Silva, A.K. and Bejan, A., Thermodynamic optimization of tree-shaped flow geometries, International Journal of Heat and Mass Transfer, vol. 49 no. 9-10 (2006), pp. 1619 - 1630 [016] .
    (last updated on 2007/04/06)

    Abstract:
    In this paper we optimize the performance of several classes of simple flow systems consisting of T- and Y-shaped assemblies of ducts, channels and streams. In each case, the objective is to identify the geometric configuration that maximizes performance subject to several global constraints. Maximum thermodynamic performance is achieved by minimization of the entropy generated in the assemblies. The boundary conditions are fixed heat flow per unit length and uniform and constant heat flux. The flow is assumed laminar and fully developed. Every geometrical detail of the optimized structure is deduced from the constructal law. Performance evaluation criterion is proposed for evaluation and comparison of the effectiveness of different tree-shaped design heat exchangers. This criterion takes into account and compare the entropy generated in the system with heat transfer performance achieved. © 2005 Elsevier Ltd. All rights reserved.

    Keywords:
    Entropy;Laminar flow;Ducts;Channel flow;Stream flow;Boundary conditions;Optimization;

The mission of Duke's Mechanical Engineering and Materials Science educational programs is to provide the knowledge, skills, and credentials needed to be successful in the practice of engineering; the preparation necessary to undertake professional registration; an educational preparation for graduate or professional study; and an education background that is the basis for professional growth and leadership throughout a career that may encompass a broad range of endeavors, both technical and non-technical.