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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 57, 2010 - Issue 8
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Original Articles

Second-Law Analysis for an Inclined Channel Containing Porous-Clear Fluid Layers by Using the Differential Transform Method

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Pages 603-623 | Received 21 Jul 2009, Accepted 21 Feb 2010, Published online: 06 May 2010

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Read on this site (4)

Tien-Mo Shih, Yingbin Zheng, Martinus Arie & Jin-Cheng Zheng. (2013) Literature Survey of Numerical Heat Transfer (2010–2011). Numerical Heat Transfer, Part A: Applications 64:6, pages 435-525.
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R. Anandalakshmi & Tanmay Basak. (2013) Numerical Simulations for the Analysis of Entropy Generation During Natural Convection in Porous Rhombic Enclosures. Numerical Heat Transfer, Part A: Applications 63:4, pages 257-284.
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Guven Komurgoz, Aytac Arikoglu & Ibrahim Ozkol. (2012) Analysis of the Magnetic Effect on Entropy Generation in an Inclined Channel Partially Filled with a Porous Medium. Numerical Heat Transfer, Part A: Applications 61:10, pages 786-799.
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Damian Słota. (2011) Homotopy Perturbation Method for Solving the Two-Phase Inverse Stefan Problem. Numerical Heat Transfer, Part A: Applications 59:10, pages 755-768.
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Articles from other publishers (11)

Tantumita Das, Musawenkhosi Patson Mkhatshwa, Rajib Gope & Sabyasachi Mondal. (2023) Analyses of entropy generation in micropolar liquid using overlapping multi-domain spectral quasilinearization method. Heliyon 9:3, pages e14432.
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Ramanuja Mani & Gopi Krishna G.. (2022) Entropy analysis of MHD flow of Jeffrey fluid in an inclined channel. Heat Transfer 51:6, pages 5789-5807.
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Zafar Said, Ahmed Amine Hachicha, Sadegh Aberoumand, Bashria A.A. Yousef, Enas Taha Sayed & Evangelos Bellos. (2021) Recent advances on nanofluids for low to medium temperature solar collectors: energy, exergy, economic analysis and environmental impact. Progress in Energy and Combustion Science 84, pages 100898.
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D. Prakash, N. Elango & I. Sadham Hussain. Effect of heat generation on MHD free convective flow of viscous fluid in a vertical channel in the presence of variable properties. Effect of heat generation on MHD free convective flow of viscous fluid in a vertical channel in the presence of variable properties.
Muhammad Sohail Khan, Rehan Ali Shah & Aamir Khan. (2019) Effect of variable magnetic field on the flow between two squeezing plates. The European Physical Journal Plus 134:5.
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Elgiz Baskaya, Guven Komurgoz & Ibrahim Ozkol. (2017) Investigation of Oriented Magnetic Field Effects on Entropy Generation in an Inclined Channel Filled with Ferrofluids. Entropy 19:7, pages 377.
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D. Srinivasacharya & K. Hima Bindu. (2016) Entropy generation in a micropolar fluid flow through an inclined channel. Alexandria Engineering Journal 55:2, pages 973-982.
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J. Srinivas, J.V. Ramana Murthy & Ali J Chamkha. (2016) Analysis of entropy generation in an inclined channel flow containing two immiscible micropolar fluids using HAM. International Journal of Numerical Methods for Heat & Fluid Flow 26:3/4, pages 1027-1049.
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Abhishek Kumar Singh, Tanmay Basak, Avijit Nag & S. Roy. (2015) Role of entropy generation on thermal management during natural convection in tilted porous square cavities. Journal of the Taiwan Institute of Chemical Engineers 50, pages 153-172.
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Hakan F. Oztop & Khaled Al-Salem. (2012) A review on entropy generation in natural and mixed convection heat transfer for energy systems. Renewable and Sustainable Energy Reviews 16:1, pages 911-920.
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A. Arikoglu, G. Komurgoz, I. Ozkol & A. Y. Gunes. (2010) Combined Effects of Temperature and Velocity Jump on the Heat Transfer, Fluid Flow, and Entropy Generation Over a Single Rotating Disk. Journal of Heat Transfer 132:11.
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