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Numerical Heat Transfer, Part B: Fundamentals
An International Journal of Computation and Methodology
Volume 63, 2013 - Issue 3
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Original Articles

Thermal Wall Model Effect on the Lid-Driven Nanocavity Flow Simulation using the Molecular Dynamics Method

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Pages 248-261 | Received 06 Jun 2012, Accepted 03 Nov 2012, Published online: 30 Jan 2013

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Masoud Darbandi & Ali Mohammad. (2023) Numerical treatment of heat recovery steam generator harps constructed from multiple tube bundle configurations. Numerical Heat Transfer, Part A: Applications 0:0, pages 1-20.
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Kai Chen, Liangbi Wang, Yitung Chen & Qiuwang Wang. (2017) Molecular dynamics simulation of interfaces and microstructure evolution during high-speed sliding. Numerical Heat Transfer, Part A: Applications 72:7, pages 519-535.
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Chengzhi Hu, Minli Bai, Jizu Lv & Xiaojie Li. (2016) An investigation on the flow and heat transfer characteristics of nanofluids by nonequilibrium molecular dynamics simulations. Numerical Heat Transfer, Part B: Fundamentals 70:2, pages 152-163.
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S. L. Lee, R. Saidur, M. F. M. Sabri & T. K. Min. (2016) Molecular dynamic simulation: Studying the effects of Brownian motion and induced micro-convection in nanofluids. Numerical Heat Transfer, Part A: Applications 69:6, pages 643-658.
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S. L. Lee, R. Saidur, M. F. M. Sabri & T. K. Min. (2015) Molecular Dynamic Simulation on the Thermal Conductivity of Nanofluids in Aggregated and Non-Aggregated States. Numerical Heat Transfer, Part A: Applications 68:4, pages 432-453.
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Articles from other publishers (3)

Reza Rabani, Ghassem Heidarinejad, Jens Harting & Ebrahim Shirani. (2020) Interplay of wall force field and wall physical characteristics on interfacial phenomena of a nano-confined gas medium. International Journal of Thermal Sciences 153, pages 106394.
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Yingxia Qi, Xiangqi Meng, Defu Mu, Yangliu Sun & Hua Zhang. (2016) Study on mechanism and factors affecting the gas leakage through clearance seal at nano-level by molecular dynamics method. Energy 102, pages 252-259.
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Sergio De Luca, B. D. Todd, J. S. Hansen & Peter J. Daivis. (2014) A new and effective method for thermostatting confined fluids. The Journal of Chemical Physics 140:5.
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