Application of Multivariate Adaptive Regression Spline-Assisted Objective Function on Optimization of Heat Transfer Rate Around a Cylinder

被引:17
作者
Dey, Prasenjit [1 ]
Das, Ajoy K. [1 ]
机构
[1] Natl Inst Technol, Dept Mech Engn, Agartala, India
关键词
Multivariate Adaptive Regression Splines; Optimized Heat Transfer Rate; Particle Swarm Optimization; Rounded Cornered Square Cylinder; SQUARE CYLINDER; CIRCULAR-CYLINDER; STEADY FLOW; PRANDTL NUMBERS; LAMINAR-FLOW; REYNOLDS; CONVECTION; CHANNEL; WAKE; GEP;
D O I
10.1016/j.net.2016.06.011
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
The present study aims to predict the heat transfer characteristics around a square cylinder with different corner radii using multivariate adaptive regression splines (MARS). Further, the MARS-generated objective function is optimized by particle swarm optimization. The data for the prediction are taken from the recently published article by the present authors [P. Dey, A. Sarkar, A.K. Das, Development of GEP and ANN model to predict the unsteady forced convection over a cylinder, Neural Comput. Appl. (2015) 1-13]. Further, the MARS model is compared with artificial neural network and gene expression programming. It has been found that the MARS model is very efficient in predicting the heat transfer characteristics. It has also been found that MARS is more efficient than artificial neural network and gene expression programming in predicting the forced convection data, and also particle swarm optimization can efficiently optimize the heat transfer rate. Copyright (C) 2016, Published by Elsevier Korea LLC on behalf of Korean Nuclear Society. This is an open access article under the CC BY-NC-ND license.
引用
收藏
页码:1315 / 1320
页数:6
相关论文
共 34 条
[1]  
[Anonymous], NEURAL COMPUT APPL
[2]  
Azarkish H., 2012, E PS, V5, P262
[3]   Predicting modulus elasticity of recycled aggregate concrete using M5′ model tree algorithm [J].
Behnood, Ali ;
Olek, Jan ;
Glinicki, Michal A. .
CONSTRUCTION AND BUILDING MATERIALS, 2015, 94 :137-147
[4]   Vortex shedding around a heated square cylinder under the influence of buoyancy [J].
Bhattacharyya, S ;
Mahapatra, S .
HEAT AND MASS TRANSFER, 2005, 41 (09) :824-833
[5]   Wall effects in flow past a circular cylinder in a plane channel: a numerical study [J].
Chakraborty, J ;
Verma, N ;
Chhabra, RP .
CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 2004, 43 (12) :1529-1537
[6]   Steady non-Newtonian flow past a circular cylinder: a numerical study [J].
Chhabra, RP ;
Soares, AA ;
Ferreira, JM .
ACTA MECHANICA, 2004, 172 (1-2) :1-16
[7]   Capability to predict the steady and unsteady reduced aerodynamic forces on a square cylinder by ANN and GEP [J].
Dey, Prasenjit ;
Sarkar, Abhijit ;
Das, Ajoy Kumar .
NEURAL COMPUTING & APPLICATIONS, 2017, 28 (08) :1933-1945
[8]   Numerical analysis of drag and lift reduction of square cylinder [J].
Dey, Prasenjit ;
Das, Ajoy Kr. .
ENGINEERING SCIENCE AND TECHNOLOGY-AN INTERNATIONAL JOURNAL-JESTECH, 2015, 18 (04) :758-768
[9]   A utilization of GEP (gene expression programming) metamodel and PSO (particle swarm optimization) tool to predict and optimize the forced convection around a cylinder [J].
Dey, Prasenjit ;
Das, Ajoy Kumar .
ENERGY, 2016, 95 :447-458
[10]   PREDICTION OF UNSTEADY MIXED CONVECTION OVER CIRCULAR CYLINDER IN THE PRESENCE OF NANOFLUID- A COMPARATIVE STUDY OF ANN AND GEP [J].
Dey, Prasenjit ;
Sarkar, Abhijit ;
Das, Ajoy Kumar .
JOURNAL OF NAVAL ARCHITECTURE AND MARINE ENGINEERING, 2015, 12 (01) :57-71