The effects of design and operating factors on the frost growth and thermal performance of a flat plate fin-tube heat exchanger under the frosting condition

Author:

Lee Kwan-Soo,Kim Woo-Seung

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering

Reference10 articles.

1. Aoki, K., Hattori, M., and Itoh, T., 1985, “A Study of Extended Surface Heat Exchanger with Frosting,” 1st Report, Overall Heat Transfer Characteristics,JSME Transactions, Ser. B., Vol. 51, No. 469, pp. 3048–3054.

2. Barrow, H., 1985, “A Note on the Frosting of Heat Pump Evaporator Surfaces,”J. Heat Recovery Systems, Vol. 5, No. 3, pp. 195–201.

3. Gatchilov, T. S. and Ivanova, V. S., 1979. “Characteristics of Extended Surface Air Coolers during Operation under Frosting Conditions”,Int. J. Refrig., Vol. 2, No. 4, pp. 233–236.

4. Gates, R. R. and Sepsy, C. F., 1967, “Heat Transfer and Pressure Loss in Extended Surface Heat Exchangers Operating Under Frosting Conditions-Part 1: Literature Survey,” Test Apparatus and Preliminary Results,ASHRAE Transactions, Vol. 73, Part 2, I. 2. 1-1. 2. 13.

5. Hayashi, Y., Aoki, K., and Yuhara, H., 1977, “Study of Frost Formation Based on a Theoretical Model of the Frost Layer,”Heat Transfer Japanese Research, Vol. 6, No. 3, pp. 79–94.

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