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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 54, 2008 - Issue 4
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Original Articles

Bubble Dynamics, Flow, and Heat Transfer during Flow Boiling in Parallel Microchannels

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Pages 390-405 | Received 11 Jun 2008, Accepted 05 Mar 2008, Published online: 16 Jun 2008

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Read on this site (3)

F. Moukalled & M. Darwish. (2012) Transient Schemes for Capturing Interfaces of Free-Surface Flows. Numerical Heat Transfer, Part B: Fundamentals 61:3, pages 171-203.
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Tien-Mo Shih, Martinus Arie & Derrick Ko. (2011) Literature Survey of Numerical Heat Transfer (2000–2009): Part II. Numerical Heat Transfer, Part A: Applications 60:11-12, pages 883-1096.
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Articles from other publishers (16)

Moon Soo Lee & Amir Riaz. (2022) Direct numerical simulation of taylor bubble with phase change. International Journal of Heat and Mass Transfer 194, pages 123039.
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Yuhao Lin, Yang Luo, Wei Li, Junye Li, Zhichuan Sun, Yanlong Cao & W.J. Minkowycz. (2021) Numerical study of flow reversal during bubble growth and confinement of flow boiling in microchannels. International Journal of Heat and Mass Transfer 177, pages 121491.
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Yuhao Lin, Yang Luo, Wei Li, Yanlong Cao, Zhi Tao & Tom I-P. Shih. (2021) Single-phase and Two-phase Flow and Heat Transfer in Microchannel Heat Sink with Various Manifold Arrangements. International Journal of Heat and Mass Transfer 171, pages 121118.
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V.S. Devahdhanush, Yuchuan Lei, Zhenqian Chen & Issam Mudawar. (2021) Assessing advantages and disadvantages of macro- and micro-channel flow boiling for high-heat-flux thermal management using computational and theoretical/empirical methods. International Journal of Heat and Mass Transfer 169, pages 120787.
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Chirag R. Kharangate & Issam Mudawar. (2017) Review of computational studies on boiling and condensation. International Journal of Heat and Mass Transfer 108, pages 1164-1196.
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Sujoy Kumar Saha & Gian Piero CelataSujoy Kumar Saha & Gian Piero Celata. 2015. Critical Heat Flux in Flow Boiling in Microchannels. Critical Heat Flux in Flow Boiling in Microchannels 13 51 .
Arvind Pattamatta, Martin Freystein & Peter Stephan. (2014) A parametric study on phase change heat transfer due to Taylor-Bubble coalescence in a square minichannel. International Journal of Heat and Mass Transfer 76, pages 16-32.
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Z. Guo, D.F. Fletcher & B.S. Haynes. (2014) A Review of Computational Modelling of Flow Boiling in Microchannels. The Journal of Computational Multiphase Flows 6:2, pages 79-110.
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S. Szczukiewicz, M. Magnini & J.R. Thome. (2014) Proposed models, ongoing experiments, and latest numerical simulations of microchannel two-phase flow boiling. International Journal of Multiphase Flow 59, pages 84-101.
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M. Magnini, B. Pulvirenti & J.R. Thome. (2013) Numerical investigation of hydrodynamics and heat transfer of elongated bubbles during flow boiling in a microchannel. International Journal of Heat and Mass Transfer 59, pages 451-471.
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Woorim Lee, Gihun Son & Han Young Yoon. (2012) Direct numerical simulation of flow boiling in a finned microchannel. International Communications in Heat and Mass Transfer 39:9, pages 1460-1466.
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A. Mukherjee, S.G. Kandlikar & Z.J. Edel. (2011) Numerical study of bubble growth and wall heat transfer during flow boiling in a microchannel. International Journal of Heat and Mass Transfer 54:15-16, pages 3702-3718.
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Muhammad M. Rahman, Shantanu S. Shevade & Ejiro Ojada. (2010) Convective heat transfer in a composite trapezoidal microchannel during magnetic heating. International Communications in Heat and Mass Transfer 37:9, pages 1175-1181.
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X. Fu, P. Zhang, C.J. Huang & R.Z. Wang. (2010) Bubble growth, departure and the following flow pattern evolution during flow boiling in a mini-tube. International Journal of Heat and Mass Transfer 53:21-22, pages 4819-4831.
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Mostafa Shojaeian & Seyed Ahmad Reza Dibaji. (2010) Three-dimensional numerical simulation of the slip flow through triangular microchannels. International Communications in Heat and Mass Transfer 37:3, pages 324-329.
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Paisarn Naphon & Osod Khonseur. (2009) Study on the convective heat transfer and pressure drop in the micro-channel heat sink. International Communications in Heat and Mass Transfer 36:1, pages 39-44.
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