scholarly journals A multi-scale conjugate heat transfer modelling approach for corrugated heat exchangers

Author(s):  
Evaldas Greiciunas ◽  
Duncan Borman ◽  
Jonathan Summers ◽  
Steve J. Smith
Author(s):  
Gonzalo Brito Gadeschi ◽  
Christoph Siewert ◽  
Andreas Lintermann ◽  
Matthias Meinke ◽  
Wolfgang Schröder

Energies ◽  
2019 ◽  
Vol 12 (15) ◽  
pp. 2965 ◽  
Author(s):  
Augusto Della Torre ◽  
Gianluca Montenegro ◽  
Angelo Onorati ◽  
Sumit Khadilkar ◽  
Roberto Icarelli

Plate heat exchangers including offset-strip fins or dimple-type turbulators have a wide application in the automotive field as oil coolers for internal combustion engines and transmissions. Their optimization is a complex task since it requires targeting different objectives: High compactness, low pressure drop and high heat-transfer efficiency. In this context, the availability of accurate Computational Fluid Dynamics (CFD) simulation models plays an important role during the design phase. In this work, the development of a computational framework for the CFD simulation of compact oil-to-liquid heat exchangers, including offset-strip fins and dimples, is presented. The paper addresses the modeling problem at different scales, ranging from the characteristic size of the turbulator geometry (typically µm–mm) to the full scale of the overall device (typically cm–dm). The simulation framework is based on multi-scale concept, which applies: (a) Detailed simulations for the characterization of the micro-scale properties of the turbulator, (b) an upscaling approach to derive suitable macro-scale models for the turbulators and (c) full-scale simulations of the entire cooler, including the porous models derived for the smaller scales. The model is validated comparing with experimental data under different operating conditions. Then, it is adopted to investigate the details of the fluid dynamics and heat-transfer process, providing guidelines for the optimization of the device.


2020 ◽  
Vol 161 ◽  
pp. 112051
Author(s):  
Francesco Edemetti ◽  
Emanuela Martelli ◽  
Alessandro Del Nevo ◽  
Fabio Giannetti ◽  
Pietro Arena ◽  
...  

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