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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 69, 2016 - Issue 8
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Original Articles

Numerical investigation of two-phase laminar pulsating nanofluid flow in a helical microchannel

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Pages 921-930 | Received 11 Jun 2015, Accepted 11 Aug 2015, Published online: 21 Jan 2016

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Shahid Husain, M. Altamush Siddiqui & Suhail Ahmad Khan. (2019) Wall boiling in a vertical annulus: Effect of inlet subcooling and mass flow rate. Numerical Heat Transfer, Part A: Applications 75:11, pages 776-793.
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Yang Luo, Jingzhi Zhang, Wei Li, Ekaterina Sokolova, Yourong Li & W. J. Minkowycz. (2017) Numerical investigation of the bubble growth in horizontal rectangular microchannels. Numerical Heat Transfer, Part A: Applications 71:12, pages 1175-1188.
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Yue-Tzu Yang, Hsiang-Wen Tang & Kuan-Yu Chou. (2016) Numerical simulation and optimization of nanofluid in a C-shaped chaotic channel. Numerical Heat Transfer, Part A: Applications 70:4, pages 366-383.
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Prabhakar Bhandari, Kamal S. Rawat, Yogesh K. Prajapati, Diwakar Padalia, Lalit Ranakoti & Tej Singh. (2024) A review on design alteration in microchannel heat sink for augmented thermohydraulic performance. Ain Shams Engineering Journal 15:2, pages 102417.
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Prabhakar Bhandari, Kamal S. Rawat, Yogesh K. Prajapati, Diwakar Padalia, Lalit Ranakoti & Tej Singh. (2023) Design modifications in micro pin fin configuration of microchannel heat sink for single phase liquid flow: A review. Journal of Energy Storage 66, pages 107548.
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Milad Alizadeh, Amin Fazlollahtabar, Ahmed Kadhim Hussein, Hussein Ali Ameen, D. D. Ganji, Uddhaba Biswal & Bagh Ali. (2023) Effect of thermal radiation and magnetic field on heat transfer of SWCNT/water nanofluid inside a partially heated hexagonal cavity. Korean Journal of Chemical Engineering.
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Xing Yang, Kabin Lin, Daxing Zhang, Shaoyi Liu, Baoqing Han, Zhihai Wang, Kunpeng Yu, Wenzhi Wu, Dongming Ge & Congsi Wang. (2022) A Novel Manifold Dual-Microchannel Flow Field Structure with High-Performance Heat Dissipation. Micromachines 13:9, pages 1420.
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Syed S. Shah, Rizwan ul Haq, Luthais B. McCash, Haitham M.S. Bahaidarah & T. Aziz. (2022) Numerical simulation of lid driven flow in a curved corrugated porous cavity filled with CuO-water in the presence of heat generation/absorption. Alexandria Engineering Journal 61:4, pages 2749-2767.
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A Chandravadhana, V NandaKumar & K Venkatramanan. (2020) Mono and hybrid nanofluid based heat sink technologies - A review. Journal of Physics: Conference Series 1644:1, pages 012048.
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M. A. Mansour, S. Sivasankaran, A. M. Rashad, T. Salah & Hossam A. Nabwey. (2020) Impact of Partial Slip and Heat Source on MHD Mixed Convection Flow of Nanofluid in a Double Lid-Driven Cavity Containing Insulated Obstacle. Journal of Nanofluids 9:3, pages 230-241.
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S. Sivasankaran & K. Narrein. (2018) Influence of Geometry and Magnetic Field on Convective Flow of Nanofluids in Trapezoidal Microchannel Heat Sink. Iranian Journal of Science and Technology, Transactions of Mechanical Engineering 44:2, pages 373-382.
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Selma Akcay, Ünal Akdağ, Oktay Hacıhafızoğu & Doğan Demiral. (2019) Boru demeti üzerinden geçen Al2O3- su nanoakışkanın pulsatif akışının ısı transferine etkisi. DÜMF Mühendislik Dergisi 10:2, pages 621-631.
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S.A. Qasem, S. Sivasankaran, Z. Siri & W.A.M. Othman. (2018) Effect of solid body aspect ratio on natural convection of nanofluid in a square cavity. Journal of Physics: Conference Series 1139, pages 012082.
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O. Anwar Bég. 2018. Computational Approaches in Biomedical Nano-Engineering. Computational Approaches in Biomedical Nano-Engineering 113 145 .
Nor Azwadi Che Sidik, Muhammad Noor Afiq Witri Muhamad, Wan Mohd Arif Aziz Japar & Zainudin A. Rasid. (2017) An overview of passive techniques for heat transfer augmentation in microchannel heat sink. International Communications in Heat and Mass Transfer 88, pages 74-83.
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