Performance estimation of membrane dehumidification based on heat exchanger analogy approaches using ε-NTU model

Author:

Lee Gilbong1,Roh Chul Woo1,Choi Bong Soo1,Wang Eunseok1,Ra Ho-Sang1,Cho Junhyun1,Baik Young-Jin1,Lee Young-Soo1,Shin Hyungki1,Lee Beomjoon1

Affiliation:

1. Thermal Energy Systems Laboratory, Korea Institute of Energy Research, Daejeon, Korea

Abstract

Abstract Reports by the US Department of Energy in 2014 evaluated membrane heat pump technology as one of the most promising alternatives to conventional vapour compression methods. Vapour compression methods maintain an evaporator temperature lower than the dew point to deal with the latent heat load. In membrane heat pump systems, only the water vapour is transferred and there is no phase change. The migration is caused by the difference in vapour pressure before and after the membrane. A vacuum pump or blower is used to create the pressure difference. However, there is no methodology for predicting dehumidification performance of membranes when used as part of a cooling system. In this study, using the assumption that there is a similarity between heat transfer and moisture pervaporation, the performance indices of the membrane are derived using a well-known heat exchanger method, the ε-NTU models. Performance estimations are calculated for two representative system layouts: bypass and vacuum. Simple relations between design parameters are suggested, giving design guidelines for researchers.

Funder

National Research Council of Science and Technology

Publisher

Oxford University Press (OUP)

Subject

General Environmental Science,Architecture,Civil and Structural Engineering

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