분리막 제습공조시스템의 내부 유동 해석에 관한 연구

The summer climate is very hot and humid in Korea. Humidity is an important factor in determining thermal comfort. Recently, research on dehumidification device development has been attempted to save the energy required for operating the dehumidifier. Existing dehumidification systems have disadvant...

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Published in설비공학 논문집, 27(12) Vol. 27; no. 12; pp. 620 - 625
Main Authors 정용호(Yong-Ho Jung), 박성룡(Seong-Ryong Park)
Format Journal Article
LanguageKorean
Published 대한설비공학회 2015
Subjects
Online AccessGet full text
ISSN1229-6422
2465-7611
DOI10.6110/KJACR.2015.27.12.620

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Abstract The summer climate is very hot and humid in Korea. Humidity is an important factor in determining thermal comfort. Recently, research on dehumidification device development has been attempted to save the energy required for operating the dehumidifier. Existing dehumidification systems have disadvantages such as wasting energy to drive the compressor. Meanwhile, dehumidification systems with membranes can dehumidify humid air without increasing the dry bulb temperature. Therefore. they don't have to consume cooling energy. In this paper, the installation conditions for a membrane system were analyzed to improve the shape and optimum performance of the system. The results showed that the distance between elements was the critical system design factor, and that a distance of 20 mm was the optimal condition for the pressure drop and flow characteristics of the internal air flow.
AbstractList The summer climate is very hot and humid in Korea. Humidity is an important factor in determining thermal comfort. Recently, research on dehumidification device development has been attempted to save the energy required for operating the dehumidifier. Existing dehumidification systems have disadvantages such as wasting energy to drive the compressor. Meanwhile, dehumidification systems with membranes can dehumidify humid air without increasing the dry bulb temperature. Therefore. they don’t have to consume cooling energy. In this paper, the installation conditions for a membrane system were analyzed to improve the shape and optimum performance of the system. The results showed that the distance between elements was the critical system design factor, and that a distance of 20 mm was the optimal condition for the pressure drop and flow characteristics of the internal air flow. KCI Citation Count: 3
The summer climate is very hot and humid in Korea. Humidity is an important factor in determining thermal comfort. Recently, research on dehumidification device development has been attempted to save the energy required for operating the dehumidifier. Existing dehumidification systems have disadvantages such as wasting energy to drive the compressor. Meanwhile, dehumidification systems with membranes can dehumidify humid air without increasing the dry bulb temperature. Therefore. they don't have to consume cooling energy. In this paper, the installation conditions for a membrane system were analyzed to improve the shape and optimum performance of the system. The results showed that the distance between elements was the critical system design factor, and that a distance of 20 mm was the optimal condition for the pressure drop and flow characteristics of the internal air flow.
Author 박성룡(Seong-Ryong Park)
정용호(Yong-Ho Jung)
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DocumentTitleAlternate A Study on Air Flow Analysis for the Internal Space of the Dehumidifying Air-Conditioning System with A Membrane
DocumentTitle_FL A Study on Air Flow Analysis for the Internal Space of the Dehumidifying Air-Conditioning System with A Membrane
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Issue 12
Keywords Boundary condition(경계조건)
Pressure drop(압력손실)
Membrane(분리막)
Dehumidifying air-conditioner(제습 공조)
Computational fluid dynamics(전산유체역학)
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PublicationTitle 설비공학 논문집, 27(12)
PublicationTitleAlternate Korean journal of air-conditioning and refrigeration engineering
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Title 분리막 제습공조시스템의 내부 유동 해석에 관한 연구
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