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PMID: 35877923 Published · epublish English Journal Article

Application of Double Piping Theory to Parallel-Arrayed Low-Pressure Membrane Module Header Pipe and Experimental Verification of Flow Distribution Evenness.

Membranes ·Vol. 12 ·No. 7 ·2022-07-20

Park NS, Yoon S, Jeong W, Jeong YW

Abstract

In this study, the improvement effect of flow distribution evenness is evaluated quantitatively by applying the double piping theory to a parallel-arrayed low-pressure membrane module header pipe structure, and its feasibility is discussed. Orifice inner pipes to be inserted into a full-scale membrane module header pipe are designed via the computational fluid dynamics (CFD) technique, and the flow rates into 10 membrane modules are measured in real time using a portable ultrasonic flowmeter during operation to verify the effect. Results of CFD simulation and actual measurements show that the outflow rate from the branch pipe located at the end of the existing header pipe is three times higher than the flow rate from the branch pipe near the inlet. By inserting two inner pipes (with an open end and a closed end into the existing header pipe) and applying the double pipe theory, the flow distribution evenness is improved. The CFD simulation and experimental results show that the flow uniformity can be improved by more than 70% and 50%, respectively.

Keywords
computational fluid dynamics double piping theory flow distribution evenness manifold pipe membrane module ultrasonic flowmeter
作者与单位
共 4 位作者,点击展开单位 / ORCID
Park No-Suk
Department of Civil Engineering, Engineering Research Institute, Gyeongsang National University, 501, Jinju-Daero, Jinju 52828, Korea.
Yoon Sukmin
Department of Civil Engineering, Engineering Research Institute, Gyeongsang National University, 501, Jinju-Daero, Jinju 52828, Korea.
Jeong Woochang ORCID
Department of Civil Engineering, Kyungnam University, 7, Kyungnamdaehak-ro, Masanhappo-gu, Changwon 51767, Korea.
Jeong Yong-Wook ORCID
Department of Architecture, Sejong University, 209, Neungdong-ro, Gwangjin-gu, Seoul 05006, Korea.
Article Info
Journal
Membranes
Abbr.
Membranes (Basel)
ISSN
2077-0375
Published
2022-07-20
电子出版
2022-00-20
Language
English
Country/Region
Switzerland
NLM ID
101577807
基金资助
National Research Foundation of Korea · 2020R1A2C1006495, 2022R1A2C10064941161382116530101
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