Conjugate heat transfer effects on bubble growth during flow boiling heat transfer in microchannels

Type: Article

Publication Date: 2024-12-01

Citations: 0

DOI: https://doi.org/10.1063/5.0242693

Abstract

Flow boiling in microchannel heat sinks is an efficient way to dissipate high heat flux by utilizing the large surface-to-volume ratio and high latent heat. Previous studies of boiling heat transfer in microchannels mainly consider the fluid flow in channels only, but often neglect the conjugate effects of the heat conduction in the solid wall, which becomes important for microchannels because of the comparable sizes of the flow channel and the solid wall. In the present study, the effects of conjugate heat transfer on bubble growth during flow boiling in microchannels are examined by numerical simulation. The results indicate that the bubble growth is non-uniform for different bottom wall thicknesses or different solid materials even with the same heat flux at the wall. As the bottom wall thickness increases, the bubble growth rate increases because of the heat conduction in the solid wall along the channel direction. The increased bubble size also increases the perturbation to the flow field, and enhances the thermal convection between the fluid and the wall. For different solid materials, the high-thermal-diffusivity material possesses a higher heat transfer performance because of the quick diffusion of thermal energy from the heat source to the solid–fluid interface.

Locations

  • Physics of Fluids - View
  • arXiv (Cornell University) - View - PDF

Similar Works

Action Title Year Authors
+ PDF Chat Conjugate Heat Transfer Effects on Bubble Growth During Flow Boiling Heat Transfer in Microchannels 2024 Odumuyiwa A. Odumosu
Hongying Li
Tianyou Wang
Zhizhao Che
+ Conjugate heat transfer effects on flow boiling in microchannels 2022 Federico Municchi
I. El Mellas
Omar Matar
Mirco Magnini
+ Conjugate heat transfer effects on flow boiling in microchannels 2022 F. Municchi
Ismail El Mellas
O. K. Matar
M. Magnini
+ Hybrid phase-change lattice Boltzmann simulation of the bubble nucleation and different boiling regimes of conjugate boiling heat transfer 2019 Wandong Zhao
Jianhan Liang
Mingbo Sun
Xiaodong Cai
Peibo Li
+ Study of boiling heat transfer on the wall with an improved hybrid lattice Boltzmann model 2018 Anjie Hu
Dong Liu
+ TECHNOLOGICAL IMPLICATIONS OF FLUID FLOW AND HEAT TRANSFER IN MICROCHANNELS 2019 Arunabha Chanda
+ Computational Fluid Dynamics Study of Taylor Flow in Microreactors:Investigating the Effect of Surface Tension and Contact Angle on the Heatand Mass Transfer 2021 Behrouz Behdani
Hayder A. Alhameedi
+ Computational Fluid Dynamics Study of Taylor Flow in Microreactors:Investigating the Effect of Surface Tension and Contact Angle on the Heatand Mass Transfer 2021 Behrouz Behdani
Hayder A. Alhameedi
+ PDF Chat Numerical simulation of liquid film formation and its heat transfer through vapor bubble expansion in a microchannel 2019 Junnosuke Okajima
Peter Stephan
+ Lattice Boltzmann simulations of the pool boiling curves above horizontal heaters with homogenous and heterogeneous wettability 2019 Wandong Zhao
Jianhan Liang
Mingbo Sun
Xiaodong Cai
+ Improving DSMC with New Pressure Boundary Conditions for Heat and Mass Transfer of Microchannel Flows 2009 Jian Yang
Jianjun Ye
Jinyang Zheng
Ieong Wong
Yanbao Ma
Chik Lam
Shmuel Link
+ Enhanced boiling heat transfer using conducting-insulating microcavity surfaces in an electric field: A lattice Boltzmann study 2023 Fanming Cai
Zhaomiao Liu
Nan Zheng
Yan Pang
+ Heat transfer in plane microchannel under a thermal asymmetry boundary 2010 Huanling Liu
Xiaodong Shao
Wenchao Tian
+ PDF Chat Multi-fidelity topology optimization of flow boiling heat transfer in microchannels 2024 Yi Yuan
Li Chen
Qirui Yang
Lingran Gu
Wen‐Quan Tao
+ PDF Chat Achievements and Prospects of Molecular Dynamics Simulations in Thermofluid Sciences 2024 Yunmin Ran
Volfango Bertola
+ Plenary lecture 1: modeling and solution for micro/nano scale gas flow and heat transfer 2010 Tiantian Zhang
+ Heat and Mass Transfer With Phase Change and Chemical Reactions in Microscale 2010 V. V. Kuznetsov
+ Parametric study on hydrothermal properties of condensing flow in microtube heat exchangers using numerical and experimental approaches 2021 Abdolali Khalili Sadaghiani
+ PDF Chat A Thermodynamically Consistent Phase-Field Model and an Entropy Stable Numerical Method for Simulating Two-Phase Flows with Thermocapillary Effects 2024 Yanxiao Sun
Jiang Wei Wu
Maosheng Jiang
Steven M. Wise
Zhenlin Guo
+ Slip-Flow and Conjugate Heat Transfer in Rectangular Microchannels 2008 Hiroshan Hettiarachchi
Mihajlo Golubovic
William Worek
W.J. Minkowycz

Works That Cite This (0)

Action Title Year Authors