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1-20 of 43
Keywords: flow boiling
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Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. January 2024, 146(1): 011006.
Paper No: HT-23-1193
Published Online: November 6, 2023
...Bin Hu; Di Qi; Yongsheng Xu; Mei Lin; Qiuwang Wang With the continuous development of power electronic devices toward miniaturization and compactness, it is necessary to develop more efficient flow boiling heat transfer technologies. In this work, the flow boiling heat transfer and pressure drop...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. July 2023, 145(7): 071601.
Paper No: HT-22-1515
Published Online: February 21, 2023
...Lingnan Lin; Mark A. Kedzierski Recent studies report an anomalous phenomenon, particularly for small diameter microfin tubes, where the flow boiling heat transfer coefficient decreases with increasing mass velocity in the convective regime, which is contrary to that found for smooth tubes...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. April 2023, 145(4): 041603.
Paper No: HT-22-1470
Published Online: February 3, 2023
... in the aforementioned applications. The analyzed polymer microgap features a dedicated vapor pathway design which is proven to assist in the efficient removal of vapor from the microsystem. The dielectric refrigerant HFE-7100 is used as the working fluid under flow boiling conditions, reporting on the two-phase flow...
Journal Articles
Bubble Dynamics and Heat Transfer Characteristics of Flow Boiling in a Single Pentagonal Rib Channel
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. January 2023, 145(1): 011602.
Paper No: HT-22-1230
Published Online: November 17, 2022
...Zhenlin Zhou; Shuang Wang; Jing He; Hanbing Ke; Mei Lin; Qiuwang Wang Two-phase flow boiling is the preferred method for efficient heat dissipation in electronic equipment, so the bubble dynamics and heat transfer characteristics of flow boiling in a single pentagonal rib channel are numerically...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. September 2021, 143(9): 091601.
Paper No: HT-20-1752
Published Online: July 21, 2021
...Anwarul Karim; Yoon Jo Kim; Jong-Hoon Kim As technology becomes increasingly miniaturized, thermal management becomes challenging to keep devices away from overheating due to extremely localized heat dissipation. Two-phase cooling or flow boiling in microspaces utilizes the highly efficient thermal...
Journal Articles
Publisher: ASME
Article Type: Technical Briefs
J. Heat Mass Transfer. April 2021, 143(4): 044503.
Paper No: HT-20-1272
Published Online: February 22, 2021
...Wei Li; Junye Li; Kan Zhou; Hua Zhu; Zhengjiang Zhang; Jincai Du In this short paper, the method of analyzing microchannel flow boiling phenomena by the image processing tool was briefly introduced. The experiments of subcooled and saturated flow boiling on various micro-/nanostructured modified...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. March 2021, 143(3): 033001.
Paper No: HT-20-1307
Published Online: January 18, 2021
... d t = P s 2 ρ l V o P o ( M − m 1 − m 2 ) e-mail: emadurphy@gmail.com e-mail: suneet.singh@iitb.ac.in 16 05 2020 28 10 2020 18 01 2021 flow boiling two-phase flow instabilities symmetry...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. December 2020, 142(12): 121601.
Paper No: HT-19-1673
Published Online: September 18, 2020
... with a width of 1 mm, a height of 5.5 mm, and a pitch of 1 mm and has a Z-type inlet/outlet arrangement. Nine separate heaters offer thermal load to the heat sink in order to provide a uniform or nonuniform heat flux. The flow boiling process is captured by a high-speed camera. The temperatures of the heaters...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. December 2020, 142(12): 121602.
Paper No: HT-19-1683
Published Online: September 18, 2020
.... Flow boiling visualization experiments were carried out by high-speed camera in triangular groove-wall and plain-wall microchannels at mass fluxes of 148–490 kg/m 2 ·s and inlet temperatures of 42 °C and 60 °C. The boiling curve, heat transfer coefficient (HTC), pressure drop, and two-phase flow...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. April 2019, 141(4): 042901.
Paper No: HT-18-1062
Published Online: February 27, 2019
...S. R. Darr; J. W. Hartwig; J. Dong; H. Wang; A. K. Majumdar; A. C. LeClair; J. N. Chung Recently, two-phase cryogenic flow boiling data in liquid nitrogen (LN 2 ) and liquid hydrogen (LH 2 ) were compared to the most popular two-phase correlations, as well as correlations used in two of the most...
Journal Articles
Publisher: ASME
Article Type: Technical Briefs
J. Heat Mass Transfer. October 2018, 140(10): 104501.
Paper No: HT-17-1318
Published Online: June 7, 2018
... computational cost. e-mail: j.f.dunne@sussex.ac.uk 31 05 2017 16 02 2018 07 06 2018 flow boiling IC engines CFD large eddy simulation Reynolds averaged Navier–Stokes Predicting the heat transfer levels that occur in nucleate boiling is important for many engineering...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. November 2015, 137(11): 111501.
Paper No: HT-13-1405
Published Online: June 9, 2015
... significant increases because of the presence of flow boiling. Reynolds numbers range from 250 to 1200, Weber numbers from 2 to 14, and boiling numbers from O(10 −4 ) to O(10 −3 ). Exit quality can reach 30% in some cases. Overall heat transfer coefficients of 40 kW/m 2 K are obtained. Pressure drops for both...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. January 2015, 137(1): 011501.
Paper No: HT-14-1023
Published Online: January 1, 2015
... 01 2014 04 10 2014 11 11 2014 The preferable cooling solution for micro-electronic systems could be forced flow boiling in micro heat exchangers. Nanoparticle deposition affects nucleate boiling via alteration of surface roughness, capillary wicking, wettability, and nucleation site...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. August 2014, 136(8): 081504.
Paper No: HT-13-1486
Published Online: May 2, 2014
... [4] Kandlikar , S. G. , 2002 , “ Fundamental Issues Related to Flow Boiling in Minichannels and Microtubes ,” Exp. Therm. Fluid Sci. , 26 ( 2-4 ), pp. 389 – 407 . 10.1016/S0894-1777(02)00150-4 [5] Lin , L. , 1998 , “ Microscale Thermal Bubble Formation: Thermophysical Phenomena...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. June 2014, 136(6): 061502.
Paper No: HT-13-1316
Published Online: March 11, 2014
... due to unstable growth, shear, buoyancy, hydrodynamic pressure, and contact pressure force for analyzing the bubble departure diameter during flow boiling in horizontal square channel and Yeoh and Tu [ 27 ] considered same forces for analyzing the bubble departure diameter during flow boiling...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. May 2014, 136(5): 051502.
Paper No: HT-13-1245
Published Online: February 26, 2014
... difference. Flow boiling with microchannels has shown a great potential with its high surface area to volume ratio and latent heat removal. However, flow instabilities and low critical heat flux (CHF) have prevented its successful implementation. A novel flow boiling design is experimentally investigated...
Journal Articles
Publisher: ASME
Article Type: Technical Briefs
J. Heat Mass Transfer. February 2014, 136(2): 024501.
Paper No: HT-12-1563
Published Online: November 7, 2013
... ), pp. 250 – 256 . 10.1016/0140-7007(94)90041-8 [12] Meng , M. , and Peng , X. F. , 2011 , “ Influence of U-Bend Heterogeneous Effects on Bubble Dynamics and Local Flow Boiling Heat Transfer in Hairpin Tubes ,” Int. J. Therm. Sci. , 50 ( 10 ), pp. 2016 – 2026 . 10.1016/j.ijthermalsci...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. October 2013, 135(10): 101009.
Paper No: HT-12-1434
Published Online: September 11, 2013
.... Editor: Sushanta K. Mitra. 14 08 2012 13 03 2013 A variety of predictive correlations for critical heat flux (CHF) are examined in light of the growing body of work exploring enhanced flow boiling CHF via cross-sectional expansion. The analysis considers the effect of a small...
Journal Articles
Satish G. Kandlikar, Stéphane Colin, Yoav Peles, Srinivas Garimella, R. Fabian Pease, Juergen J. Brandner, David B. Tuckerman
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. September 2013, 135(9): 091001.
Paper No: HT-12-1415
Published Online: July 26, 2013
... with a focus on the future research needs. After providing a brief introduction, the paper addresses six topics related to transport phenomena in microchannels: single-phase gas flow, enhancement in single-phase liquid flow and flow boiling, flow boiling instability, condensation, electronics cooling...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. August 2013, 135(8): 081501.
Paper No: HT-11-1430
Published Online: June 27, 2013
... online June 27, 2013. Assoc. Editor: Srinivas Garimella. 03 09 2011 14 02 2013 This paper presents the visualization results obtained for an experimental study of R134a during flow boiling in a horizontal microchannel. The microchannel used was a fused silica tube having an internal...
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