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Tree-shaped flow architectures: Strategies for increasing optimization speed and accuracy

Publication ,  Journal Article
Wechsatol, W; Bejan, A; Lorente, S
Published in: Numerical Heat Transfer; Part A: Applications
November 1, 2005

This article is about novel applications of computational heat transfer and fluid dynamics: the optimization and design of complex tree-shaped flow structures for cooling high-density heat-generating volumes (e.g., electronics). The focus is on computational cost, and how to reduce it by devising effective strategies for identifying paths that lead to the optimal complex flow structure. The method is illustrated by considering dendritic architectures that connect with laminar fluid flow the center of a circle with points distributed equidistantly on the circle. Optimal architectures are pursued numerically based on several methods: the optimization of every geometric detail of the complex structure, the minimization of every duct length, and the optimization of every angle of bifurcation. It is shown that strategy leads to dramatic increases in optimization speed, and provides an effective albeit approximate description of the optimal complex flow structure. Copyright © Tavlor & Francis Inc.

Duke Scholars

Published In

Numerical Heat Transfer; Part A: Applications

DOI

EISSN

1521-0634

ISSN

1040-7782

Publication Date

November 1, 2005

Volume

48

Issue

8

Start / End Page

731 / 744

Related Subject Headings

  • Mechanical Engineering & Transports
  • 4901 Applied mathematics
  • 4012 Fluid mechanics and thermal engineering
  • 0913 Mechanical Engineering
  • 0905 Civil Engineering
  • 0102 Applied Mathematics
 

Citation

APA
Chicago
ICMJE
MLA
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Wechsatol, W., Bejan, A., & Lorente, S. (2005). Tree-shaped flow architectures: Strategies for increasing optimization speed and accuracy. Numerical Heat Transfer; Part A: Applications, 48(8), 731–744. https://doi.org/10.1080/10407780500197707
Wechsatol, W., A. Bejan, and S. Lorente. “Tree-shaped flow architectures: Strategies for increasing optimization speed and accuracy.” Numerical Heat Transfer; Part A: Applications 48, no. 8 (November 1, 2005): 731–44. https://doi.org/10.1080/10407780500197707.
Wechsatol W, Bejan A, Lorente S. Tree-shaped flow architectures: Strategies for increasing optimization speed and accuracy. Numerical Heat Transfer; Part A: Applications. 2005 Nov 1;48(8):731–44.
Wechsatol, W., et al. “Tree-shaped flow architectures: Strategies for increasing optimization speed and accuracy.” Numerical Heat Transfer; Part A: Applications, vol. 48, no. 8, Nov. 2005, pp. 731–44. Scopus, doi:10.1080/10407780500197707.
Wechsatol W, Bejan A, Lorente S. Tree-shaped flow architectures: Strategies for increasing optimization speed and accuracy. Numerical Heat Transfer; Part A: Applications. 2005 Nov 1;48(8):731–744.

Published In

Numerical Heat Transfer; Part A: Applications

DOI

EISSN

1521-0634

ISSN

1040-7782

Publication Date

November 1, 2005

Volume

48

Issue

8

Start / End Page

731 / 744

Related Subject Headings

  • Mechanical Engineering & Transports
  • 4901 Applied mathematics
  • 4012 Fluid mechanics and thermal engineering
  • 0913 Mechanical Engineering
  • 0905 Civil Engineering
  • 0102 Applied Mathematics