A Levenberg–Marquardt Backpropagation Neural Network for the Numerical Treatment of Squeezing Flow With Heat Transfer Model
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Muhammad Asif Zahoor Raja | Muhammad Shoaib | Eman Salem Alaidarous | Maryam Mabrook Almalki | Dalal Adnan Maturi | M. Raja | M. Shoaib | D. Maturi | E. Alaidarous
[1] J. Stefan,et al. Versuche über die scheinbare Adhäsion , 1875 .
[2] Muhammad Asif Zahoor Raja,et al. Integrated intelligent computing for heat transfer and thermal radiation-based two-phase MHD nanofluid flow model , 2019, Neural Computing and Applications.
[3] Raja Muhammad Asif Zahoor,et al. Design of Bio-inspired Heuristic Techniques Hybridized with Sequential Quadratic Programming for Joint Parameters Estimation of Electromagnetic Plane Waves , 2017, Wirel. Pers. Commun..
[4] G. Domairry,et al. Approximate Analysis of MHD Squeeze Flow between Two Parallel Disks with Suction or Injection by Homotopy Perturbation Method , 2009 .
[5] W. Waseem,et al. Investigation of singular ordinary differential equations by a neuroevolutionary approach , 2020, PloS one.
[6] E. A. Hamza. The Magnetohydrodynamic Squeeze Film , 1988 .
[7] Nazri Mohd Nawi,et al. A New Levenberg Marquardt Based Back Propagation Algorithm Trained with Cuckoo Search , 2013 .
[8] M. A. Rana,et al. A Novel Design of Three-Dimensional MHD Flow of Second-Grade Fluid past a Porous Plate , 2019, Mathematical Problems in Engineering.
[9] Zulqurnain Sabir,et al. Design of neuro-swarming-based heuristics to solve the third-order nonlinear multi-singular Emden–Fowler equation , 2020, The European Physical Journal Plus.
[10] Carl D. Laird,et al. A stochastic programming approach for gas detector placement using CFD-based dispersion simulations , 2012, Comput. Chem. Eng..
[11] Davood Domiri Ganji,et al. Heat transfer of Cu-water nanofluid flow between parallel plates , 2013 .
[12] Ayaz Hussain Bukhari,et al. Neuro-fuzzy modeling and prediction of summer precipitation with application to different meteorological stations , 2020 .
[13] Yi Li,et al. An explicit series solution of the squeezing flow between two infinite plates by means of the homotopy analysis method , 2009 .
[14] Tasawar Hayat,et al. Melting heat transfer in the stagnation‐point flow of an upper‐convected Maxwell (UCM) fluid past a stretching sheet , 2012 .
[15] Poom Kumam,et al. Fractional Neuro-Sequential ARFIMA-LSTM for Financial Market Forecasting , 2020, IEEE Access.
[16] S. Mohyud-Din,et al. Analytical and Numerical Approaches to Squeezing Flow and Heat Transfer between Two Parallel Disks with Velocity Slip and Temperature Jump , 2012 .
[17] S. Bhattacharyya,et al. Unsteady MHD squeezing flow between two parallel rotating discs , 1997 .
[18] Sheikh Irfanullah Khan,et al. Heat transfer analysis for squeezing flow between parallel disks , 2015 .
[19] M. Raja,et al. A new heuristic computational solver for nonlinear singular Thomas–Fermi system using evolutionary optimized cubic splines , 2020 .
[20] Muhammad Tariq,et al. Design of artificial neural network models optimized with sequential quadratic programming to study the dynamics of nonlinear Troesch’s problem arising in plasma physics , 2016, Neural Computing and Applications.
[21] R. A. Elco,et al. Magnetohydrodynamic lubrication flow between parallel rotating disks , 1962, Journal of Fluid Mechanics.
[22] Muhammad Asif Zahoor Raja,et al. Integrated intelligent computing paradigm for nonlinear multi-singular third-order Emden–Fowler equation , 2020, Neural Computing and Applications.
[23] Poom Kumam,et al. Design of a hybrid NAR-RBFs neural network for nonlinear dusty plasma system , 2020 .
[24] R. Grimm. Squeezing flows of Newtonian liquid films an analysis including fluid inertia , 1976 .
[25] Poom Kumam,et al. Design of Neural Network With Levenberg-Marquardt and Bayesian Regularization Backpropagation for Solving Pantograph Delay Differential Equations , 2020, IEEE Access.
[26] Higinio Ramos,et al. Integrated neuro-evolution-based computing solver for dynamics of nonlinear corneal shape model numerically , 2020, Neural Computing and Applications.
[27] S. Kamiyama. Inertia Effects in MHD Hydrostatic Thrust Bearing , 1969 .
[28] W. Waseem,et al. A study of changes in temperature profile of porous fin model using cuckoo search algorithm , 2020 .
[29] Muhammad Saeed Aslam,et al. Novel applications of intelligent computing paradigms for the analysis of nonlinear reactive transport model of the fluid in soft tissues and microvessels , 2019, Neural Computing and Applications.
[30] Abdul Majeed Siddiqui,et al. Unsteady squeezing flow of a viscous MHD fluid between parallel plates, a solution using the homotopy perturbation method , 2008 .