Published 2007 | Version v1
Miscellaneous

A Study on the Hydraulic and Heat Transfer Characteristics for the Wire-woven Bulk Kagome(WBK) Composed of Aluminum Helix Wires

  • 1. Chonnam National Univ., Gwangju (Korea, Republic of)

Description

Recently, ultra-lightweight materials with open, periodic cell structures take much attention owing to its potential for multi-functionality such as load bearing, thermal dissipation, and actuation. This paper presents experimental results on the hydraulic and heat transfer characteristics for the Wire-woven Bulk Kagome(WBK) composed of aluminum 1100 wires. The overall pressure drop and heat transfer of the WBK specimen have been experimentally investigated under forced air convection condition. The pressure loss and heat transfer performance of the aluminum WBK are compared with other heat dissipation media. It was shown that heat transfer depended on relative density and surface area density. Comparison with metal foams and other heat dissipation media such as packed beds, lattice frame materials, louvered fins, and other materials suggests that the aluminum WBK competes favorably with the best available heat dissipation media in heat transfer performance

Part of:
Proceedings of the KSME 2007 spring annual meeting

Additional details

Publishing Information

Publisher
KSME
Imprint Place
Seoul (Korea, Republic of)
Imprint Title
Proceedings of the KSME 2007 spring annual meeting
Imprint Pagination
[2 CD-ROMS]
Journal Page Range
p. 2061-2066

Conference

Title
KSME 2007 spring annual meeting
Dates
30 May - 1 Jun 2007
Place
Busan (Korea, Republic of)

INIS

Country of Publication
Korea, Republic of
Country of Input or Organization
Korea, Republic of
INIS RN
38113873
Subject category
S42: ENGINEERING;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
AIR; ALUMINIUM; DISSIPATION FACTOR; FOAMS; FORCED CONVECTION; HEAT TRANSFER; PRESSURE DROP; WIRES
Descriptors DEC
COLLOIDS; CONVECTION; DIMENSIONLESS NUMBERS; DISPERSIONS; ELEMENTS; ENERGY TRANSFER; FLUIDS; GASES; HEAT TRANSFER; MASS TRANSFER; METALS

Optional Information

Notes
15 refs, 8 figs, 4 tabs