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Computational Fluid Dynamics of a Corrugated Plate-and-Frame Heat Exchanger Used for Ocean Thermal-Energy Conversion

Authors
Kim, Albert S.Kim, Hyeon-JuLee, Ho-SaengKoh, Myung-Jin
Issue Date
6월-2020
Publisher
ASCE-AMER SOC CIVIL ENGINEERS
Keywords
Computational Fluid Dynamics; Corrugated Plate-and-Frame Heat Exchanger; OpenFOAM-based CFD; OTEC; Seawater Thermal Energy
Citation
JOURNAL OF ENVIRONMENTAL ENGINEERING, v.146, no.6
Journal Title
JOURNAL OF ENVIRONMENTAL ENGINEERING
Volume
146
Number
6
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/227
DOI
10.1061/(ASCE)EE.1943-7870.0001688
ISSN
0733-9372
1943-7870
Abstract
Computational fluid dynamics (CFD) simulations were employed in this paper to analyze the dynamic flow patterns within extremely thin slit spaces of two corrugated heat exchanger (HEx) plates. The entire plates are 1.0 m long and wide and 6.5 mm high, and the top and bottom parts consist of six unit plates of the same size (1.0 m long and 16.7 cm wide). A digital geometry of the assembled HEx was prepared as a stereolithography (STL) file (exported from AutoCAD), having excessive geometrical complexity. In this work, a numerical algorithm to reconstruct the STL file is developed, which converts a complex STL file consisting of skew triangles to one having a simple grid structure and an even size-distribution of surface triangles. The whole STL file is split into 36 square pieces (SPs), and each SP is meshed individually using NETGEN, and these meshes are merged as one for OpenFOAM-based CFD simulations. Finally, the flow and pressure profiles are obtained in the low Reynolds number region. The current CFD method with the split-and-merge scheme will be continuously used for the design and optimization for ocean thermal energy conversion technology in the future.
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친환경해양개발연구본부 (해수에너지연구센터)
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