KJACR
Korean Journal of
Air-Conditioning and Refrigeration Engineering
SAREK
Contact
ISSN : 1229-6422 (Print)
ISSN : 2465-7611 (Online)
http://journal.auric.kr/kjacr
Mobile QR Code
Korean Journal of Air-Conditioning and Refrigeration Engineering
ISO Journal Title
Korean J. Air-Cond. Refrig. Eng.
Open Access, Monthly
Open Access
Monthly
ISSN : 1229-6422 (Print)
ISSN : 2465-7611 (Online)
Online Submission
Main Menu
Main Menu
최근호
Current Issue
저널소개
About Journal
논문집
Journal Archive
목적 및 범위
Aims and Scope
편집위원회
Editorial Board
윤리규정
Research &
Publication Ethics
논문투고안내
Instructions to Authors
BM
(Business Model)
연락처
Contact Info
논문투고
Online-Submission
Journal Search
Home
Archive
2018-06
(Vol.30 No.06)
10.6110/KJACR.2018.30.6.258
Journal XML
XML
PDF
INFO
REF
References
1
Kistler K. R., Cussler E. L., 2002, 제목, Trans. IChemE, Vol. 80, pp. 53-64
2
Kim N. H., Lee E. J., Song K. S., Oh W. K., 2010, Thermal performance of a paper-made enthalpy exchanger for different outdoor temperature and humidity, Trans. KSME B, Vol. 34, No. 7, pp. 697-702
3
Zhang L. Z., Jiang Y., 1999, Heat and mass transfer in a membrane-based energy recovery ventilator, J. Membr. Sci., Vol. 163, pp. 29-38
4
Niu J. L., Zhang L. Z., 2001, Membrane-based enthalpy exchanger: material considerations and clarification of moisture resistance, J. Membr. Sci., Vol. 189, pp. 179-191
5
Min J. C., Su M., 2010, Performance analysis of a membrane-based enthalpy exchanger: Effects of the membrane properties on the exchanger performance, J. Membr. Sci., Vol. 348, pp. 376-382
6
Lee E. J., Kim N. H., Song G. S., Lee J. P., 2011, Heat and moisture transfer characteristics of a plate-type enthalpy exchanger made of paper, Int. J. Air-Cond. Refrig., Vol. 19, No. 1, pp. 85-92
7
Min J. C., Su M., 2010, Performance analysis of a membrane-based enthalpy recovery ventilator : Effects of membrane spacing and thickness on the ventilator performance, Applied Thermal Engineering, Vol. 30, pp. 991-997
8
Kim N. H., 2016, Effect of channel height of the enthalpy exchanger on energy saving by ehthalpy recovery ventilator, Int. J. Air-Cond. Refrig., Vol. 24, No. 3, pp. 1650020
9
Al-Waked R., Nasif M. S., Morrison G., Behnia M., 2013, CFD simulation of air to air enthalpy heat exchanger, Energy Convers. Manage., Vol. 74, pp. 377-385
10
Al-Waked R., Nasif M. S., Morrison G., Behnia M., 2015, CFD simulation of air to air enthalpy heat exchanger: Variable membrane moisture resistance, Appl. Therm. Eng., Vol. 84, pp. 301-309
11
Li Z. X., Zhong T. S., Niu J. L., Xiao F., Zhang L. Z., 2015, Conjugate heat and mass transfer in a total heat exchanger with cross-corrugated triangular ducts and one-step made asymmetric membranes, Int. J. Heat Mass Transfer, Vol. 84, pp. 390-400
12
, http://samsungsg.co.kr/category/system air-con/46/
13
1986, Standard method for temperature measurement, ASHRAE Standard 41.1
14
1986, Standard method for laboratory airflow measurement, ASHRAE Standard 41.2
15
2017, Heat recovery ventilators, KS B 6879
16
Kline S. J., McClintock F. A., 1953, Describing uncertainties in single sample experiments, Mech. Eng., pp. 3-9