Studying the thermal analysis of rectangular cross section porous fin: A numerical approach

Publish Year: 1401
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_CMDE-10-2_005

تاریخ نمایه سازی: 9 بهمن 1401

Abstract:

In this work, a direct computational method has been developed for solving the thermal analysis of porous fins with a rectangular cross-section with the aid of Chebyshev polynomials. The method transforms the nonlinear differential equation into a system of nonlinear algebraic equations and then solved using a novel technique. The solution of the system gives the unknown Chebyshev coefficients. An algorithm for solving this nonlinear system is presented. The results are obtained for different values of the variables and a comparison with other methods is made to demonstrate the effectiveness of the method.

Authors

Waleed Adel

Department of Mathematics and Engineering Physics, Faculty of Engineering, Mansoura University, Egypt.

Ahmet Yildirim

Department of Mathematics, Faculty of Science, Ege University, ۳۵۱۰۰ Izmir, Bornova, Turkey.

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  • W. Adel and Z. Sabir, Solving a new design of ...
  • H. Binous, S. Kaddeche, and A. Bellagi, Solving two‐dimensional chemical ...
  • J. Body, Chebyshev and Fourier Spectral Methods, University of Michigan, ...
  • I. Celik, Free vibration of non-uniform Euler–Bernoulli beam under various ...
  • A. Chamkha, Hydromagnetic natural convection from an isothermal inclined surface ...
  • A. Dabiri and E. Butcher, Stable fractional Chebyshev differentiation matrix ...
  • M. Delkhosh and K. Parand, Numerical Solution of the Nonlinear ...
  • S. Hoseinzadeh, A. Moafi, A. Shirkhani, and A. Chamkha, Numerical ...
  • S. Hoseinzadeh, P. Heyns, A. J. Chamkha, and A. Shirkhani, ...
  • H. Jouybari, S. Javaniyan, S. Saedodin, A. Zamzamian, and M. ...
  • H. Jouybari, S. Javaniyan, S. Saedodin, A. Zamzamian, M. Eshagh ...
  • F. Keshavarz, A. Mirabdolah Lavasani, and H. Bayat, Numerical analysis ...
  • Y. Menni, A. Azzi, and A. Chamkha, Enhancement of convective ...
  • M. Morgado, M. Rebelo, L. Ferras, and N. J. Ford, ...
  • J. Mason and D. C. Handscomb, Chebyshev polynomials, CRC press, ...
  • A. Nematpour and M. Sheikholeslami, Nanoparticle enhanced PCM applications for ...
  • E. Lublóy, K. Kopecskó, G. L. Balázs, I. Miklós Szilágyi, ...
  • M. Iman, Novel Chebyshev wavelets algorithms for optimal control and ...
  • Y. Oztürk, Numerical solution of systems of differential equations using ...
  • M. Sahlan and H. Feyzollahzadeh, Operational matrices of Chebyshev polynomials ...
  • V. Saw and S. Kumar, Fourth Kind Shifted Chebyshev Polynomials ...
  • F. Selimefendigil, H. Oztop, and A. J. Chamkha, MHD mixed ...
  • F. Selimefendigil, H. Oztop, and A. J. Chamkha, Natural convection ...
  • M. Sheikholeslami, New computational approach for exergy and entropy analysis ...
  • M. Sheikholeslami and A. Zeeshan, Analysis of flow and heat ...
  • M. Sheikholeslami and D. D. Ganji, Nanofluid hydrothermal behavior in ...
  • M. Sheikholeslami and O. Mahian, Enhancement of PCM solidification using ...
  • M. Sheikholeslami and O. Mahian, Enhancement of PCM solidification using ...
  • M. Sheikholeslami and S. A. Shehzad, Simulation of water based ...
  • M. Sheikholeslami, D. D. Ganji, and M. M. Rashidi, Magnetic ...
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  • M. Sheikholeslami, M. Jafaryar, Ahmad Shafee, and Z. Li, Nanofluid ...
  • M. Sheikholeslami, M. Gorji-Bandpy, and D. Domiri Ganji, Lattice Boltzmann ...
  • M. Sheikholeslami, R. ul Haq, A. Shafee, and Z. Li, ...
  • M. Sheikholeslami, Z. Ziabakhsh, and D. D. Ganji, Transport of ...
  • M. Sheikholeslami and D. Domairry Ganji, Applications of nanofluid for ...
  • M. Sheikholeslami and D. Domairry Ganji, Nanofluid flow and heat ...
  • M. Sheikholeslami, Application of Darcy law for nanofluid flow in ...
  • I. Szilágyi, J. Madarász, G. Pokol, P. Király, G. Tárkányi, ...
  • I. Szilágyi, S. Saukko, J. Mizsei, A. Tóth, J. Madarász, ...
  • J. Xie, Z. Yao, H. Gui, F. Zhao, and D.Li, ...
  • G.Yang, Modified Chebyshev collocation method for pantograph-type differential equations, Applied ...
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