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Investigation of flow behavior in a refrigerator machine room using magnetic resonance velocimetryopen access

Authors
Dong, HangfeiIm, ChaehyukKang, ChihoCho, Jee-HyunJang, IlhoonSong, Simon
Issue Date
Nov-2023
Publisher
Elsevier Ltd
Keywords
Magnetic resonance velocimetry (MRV); Refrigerator machine room; Turbulent kinetic energy (TKE); Flow uniformity
Citation
International Journal of Heat and Mass Transfer, v.214, pp.1 - 10
Indexed
SCIE
SCOPUS
Journal Title
International Journal of Heat and Mass Transfer
Volume
214
Start Page
1
End Page
10
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/192298
DOI
10.1016/j.ijheatmasstransfer.2023.124446
ISSN
0017-9310
Abstract
This study aims to improve the energy efficiency and reduce flow noise in a refrigerator machine room by investigating the flow behavior using magnetic resonance velocimetry (MRV). A 1/2 scale model of the machine room was fabricated using stereolithography 3D printing, and the 3-dimensional mean velocity and turbulent kinetic energy (TKE) field were measured. Results from the reference model showed highly non-uniform flow distribution and high TKE regions. An improved machine room geometry was proposed, which led to an increase in mean flowrate through the condenser by 17.3% and a reduction in high TKE regions by over 77%, potentially resulting in improved energy efficiency and reduced turbulence-induced noise. These findings demonstrate the effectiveness of MRV in analyzing the flow behavior of complex 3D geometry such as the refrigerator machine rooms. The proposed improvements, including repositioning of flow-blocking pillars, relocating refrigerant pipes, changing inlet configurations, and increasing the area of inlet and outlet grilles, were validated using MRV. The results also confirm the accuracy of the MRV measurements, which were validated using an electromagnetic flowmeter. These findings have implications for the practical application of cooling systems and highlight the potential of MRV for future research in analyzing fan noise and applying MRV to models with built-in fans.
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