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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 52, 2007 - Issue 3
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Original Articles

Comparison of 3-D and 2-D DSMC Heat Transfer Calculations of Low-Speed Short Microchannel Flows

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Pages 239-250 | Received 23 Apr 2006, Accepted 28 Oct 2006, Published online: 05 Jul 2007

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Niraj Shah, Amit Agrawal & Upendra Bhandarkar. (2018) 3D study of temperature drop behavior of subsonic rarefied gas flow in microchannel. Numerical Heat Transfer, Part A: Applications 73:9, pages 654-665.
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Abhimanyu Gavasane, Amit Agrawal, A. M. Pradeep & Upendra Bhandarkar. (2017) Simulation of a temperature drop for the flow of rarefied gases in microchannels. Numerical Heat Transfer, Part A: Applications 71:10, pages 1066-1079.
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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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Tse-Yang Hsieh, Zuu-Chang Hong & Ying-Che Pan. (2010) Flow Characteristics of Three-Dimensional Microscale Backward-Facing Step Flows. Numerical Heat Transfer, Part A: Applications 57:5, pages 331-345.
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Zuu-Chang Hong, Chaw-En Zhen & Chien-Yuh Yang. (2008) Fluid Dynamics and Heat Transfer Analysis of Three Dimensional Microchannel Flows with Microstructures. Numerical Heat Transfer, Part A: Applications 54:3, pages 293-314.
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Articles from other publishers (16)

P M Wadekar, A B Shinde, V B Patil, P D. Kulkarni, P V Kengar & S.V. Jadhav. (2021) Computational Investigation of Micro-channel Heat Sink with Rectangular Shape Obstacles. Journal of Physics: Conference Series 2070:1, pages 012181.
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Amin Ebrahimi, Vahid Shahabi & Ehsan Roohi. (2021) Pressure-Driven Nitrogen Flow in Divergent Microchannels with Isothermal Walls. Applied Sciences 11:8, pages 3602.
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Guang-Ming Guo, Qin Luo, Lin Zhu & Yi-Xiang Bian. (2019) Flow characteristics of supersonic gas passing through a circular micro-channel under different inflow conditions*. Chinese Physics B 28:6, pages 064702.
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Abhimanyu Gavasane, Amit Agrawal & Upendra Bhandarkar. (2018) Study of rarefied gas flows in backward facing micro-step using Direct Simulation Monte Carlo. Vacuum 155, pages 249-259.
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Wei Liu, Guihua Tang, Wei Su, Lei Wu & Yonghao Zhang. (2018) Rarefaction throttling effect: Influence of the bend in micro-channel gaseous flow. Physics of Fluids 30:8.
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Niraj Shah, Abhimanyu Gavasane, Amit Agrawal & Upendra Bhandarkar. (2018) Comparison of Various Pressure Based Boundary Conditions for Three-Dimensional Subsonic DSMC Simulation. Journal of Fluids Engineering 140:3.
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Vadiraj Hemadri, Vijay V. Varade, Amit Agrawal & U. V. Bhandarkar. (2017) Rarefied gas flow in converging microchannel in slip and early transition regimes. Physics of Fluids 29:3, pages 032002.
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O.I. Rovenskaya. (2016) Computational study of 3D rarefied gas flow in microchannel with 90 bend. European Journal of Mechanics - B/Fluids 59, pages 7-17.
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A.M. MaqablehS.A. AmmourahA.F. KhadrawiM.A. Al-NimrA.C. Benim. (2012) Hydrodynamics behaviour of a fluid flow in micro-venturi. Canadian Journal of Physics 90:1, pages 83-89.
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Masoud Darbandi & Ehsan Roohi. (2011) DSMC simulation of subsonic flow through nanochannels and micro/nano backward-facing steps. International Communications in Heat and Mass Transfer 38:10, pages 1443-1448.
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H.A. Mohammed, P. Gunnasegaran & N.H. Shuaib. (2011) Influence of channel shape on the thermal and hydraulic performance of microchannel heat sink. International Communications in Heat and Mass Transfer 38:4, pages 474-480.
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A.F. Khadrawi & Ahmad Al-Shyyab. (2010) Slip flow and heat transfer in axially moving micro-concentric cylinders. International Communications in Heat and Mass Transfer 37:8, pages 1149-1152.
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J. Yang, J. J. Ye, J. Y. Zheng, I. Wong, C. K. Lam, P. Xu, R. X. Chen & Z. H. Zhu. (2010) Using Direct Simulation Monte Carlo With Improved Boundary Conditions for Heat and Mass Transfer in Microchannels. Journal of Heat Transfer 132:4.
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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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Hamid Niazmand, Metin Renksizbulut & Ehsan Saeedi. (2008) Developing slip-flow and heat transfer in trapezoidal microchannels. International Journal of Heat and Mass Transfer 51:25-26, pages 6126-6135.
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Renqiang Xiong & Jacob N. Chung. (2008) Effects of miter bend on pressure drop and flow structure in micro-fluidic channels. International Journal of Heat and Mass Transfer 51:11-12, pages 2914-2924.
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