Published 2001 | Version v1
Miscellaneous

The effects of impingement hole size on heat transfer of an impingement/effusion cooling system

  • 1. Yonsei Univ., Seoul (Korea, Republic of)

Description

Two perforated plates are used to investigate local heat/mass transfer characteristics in an impingement/effusion cooling system. A naphthalene sublimation method is conducted to determine the local heat/mass transfer coefficients on the upward facing surface of the effusion plate. The two plates are placed in parallel position with gap distances of 1, 2, 4 and 6 times of effusion hole diameter. The effects of hole arrangements of the plates are studied for staggered, square, and hexagonal arrays. The experiments are conducted at Reynolds number of 10,000 based on the effusion hole diameter. The results show that the smaller hole size in the staggered array has the higher transfer coefficients on the stagnation region due to the formation of higher momentum flows through the impingement holes. In the square array, heat/mass transfer on the target plate is more uniform as the number of impingement holes increases. High and uniform heat/mass transfer coefficients are obtained in the hexagonal array

Part of:
Proceedings of the KSME 2001 spring annual meeting D

Additional details

Publishing Information

Publisher
KSME
Imprint Place
Seoul (Korea, Republic of)
Imprint Title
Proceedings of the KSME 2001 spring annual meeting D
Imprint Pagination
1019 p.
Journal Page Range
p. 489-496

Conference

Title
KSME 2001 spring annual meeting D
Dates
27-29 Jun 2001
Place
Cheju (Korea, Republic of)

INIS

Country of Publication
Korea, Republic of
Country of Input or Organization
Korea, Republic of
INIS RN
36022301
Subject category
S42: ENGINEERING;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
COOLING SYSTEMS; HEAT TRANSFER; HEXAGONAL CONFIGURATION; IMPINGEMENT; MASS TRANSFER; NAPHTHALENE; REYNOLDS NUMBER; SQUARE CONFIGURATION; SUBLIMATION
Descriptors DEC
AROMATICS; CONDENSED AROMATICS; CONFIGURATION; ENERGY SYSTEMS; ENERGY TRANSFER; EVAPORATION; HYDROCARBONS; ORGANIC COMPOUNDS; PHASE TRANSFORMATIONS; RECTANGULAR CONFIGURATION

Optional Information

Notes
9 refs, 10 figs, 1 tab