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http://dx.doi.org/10.21289/KSIC.2018.21.5.191

CFD/CAE Analysis of QC/DC Bellows for LNG Bunkering  

Jang, Sung-Cheol (Department of Mechanical System Engineering, Polytechnic)
Eom, Jeong-Pil (Shipbuilding Marine Engineering R&D Center, GNTP)
Jung, Hyun-Cheol (NEC CO. Ltd, R&D Center)
Publication Information
Journal of the Korean Society of Industry Convergence / v.21, no.5, 2018 , pp. 191-195 More about this Journal
Abstract
By using an ANSYS product suite (CFX, Ansys Multiphysics), which is a powerful tool for multiphysics analysis of complicated physical phenomena, we performed a structural stress analysis based on fluid flow and heat transfer phenomena within a quick connect/disconnect (QC/DC) bellows system. Considering the extremely low temperatures in the QC/DC environment, an approach to the problem based on complex multi-physics phenomena, where different phenomena interact with each other, is crucial. Therefore, we use a numerical analysis technique where fluid-thermal-structural interactions are combined. In conclusion, when low temperature fluids flow inside bellows, the expected service life is conspicuously reduced due to the thermal stress caused by heat transfer. Therefore, in future research, a structure with considerably reduced thermal stress by robust design optimization will be derived.
Keywords
Quick Connect/Disconnect (QC/DC) Bellows; Fluid-Thermal-Structural;
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  • Reference
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