Thermal performance prediction models for a pulsating heat pipe using Artificial Neural Network (ANN) and Regression/Correlation Analysis (RCA)

被引:0
作者
Vipul M Patel
Hemantkumar B Mehta
机构
[1] Sardar Vallabhbhai National Institute of Technology,Department of Mechanical Engineering
来源
Sādhanā | 2018年 / 43卷
关键词
PHP; prediction models; ANN; RCA; Kutateladze (; ) number;
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摘要
Pulsating heat pipe (PHP) is one of the prominent research areas in the family of heat pipes. Heat transfer and fluid flow mechanism associated with PHP are quite involved. The analytical models are simple in nature and limited in scope and applicability. The regression models and Artificial Neural Network (ANN) are also limited to a number of input parameters, their ranges and accuracy. The present paper discusses the thermal performance prediction models of a PHP based on ANN and RCA approach. Totally 1652 experimental data are collected from the literature (2003–2017). Nine major influencing input variables are considered for the first time to develop the prediction models. Feed-forward back-propagation neural network is developed and verified. Backward regression analysis is used in RCA-based regression model. Linear and power-law regression correlations are developed for input heat flux in terms of dimensionless Kutateladze (Ku) number, which is a function of Jakob number (Ja), Morton number (Mo), Bond number (Bo), Prandtl number (Pr) and geometry of a PHP. The prediction accuracy of present regression models (R2 = 0.95) is observed to be better as compared with literature-based correlations.
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  • [1] Han X(2016)Review of the development of pulsating heat pipe for heat dissipation Renewable and Sustainable Energy Reviews 59 692-709
  • [2] Wang X(2017)Influence of working fluids on startup mechanism and thermal performance of a closed loop pulsating heat pipe Applied Thermal Engineering 110 1568-1577
  • [3] Zheng H(2002)Analysis of liquid–vapor pulsating flow in a U-shaped miniature tube International Journal of Heat and Mass Transfer 45 2501-2508
  • [4] Xu X(2003)Oscillatory flow in pulsating heat pipes with arbitrary numbers of turns Journal of Thermophysica and Heat and Transfer 17 340-347
  • [5] Chen G(2010)Flow and heat transfer of liquid plug and neighbouring vapor slugs in a pulsating heat pipe International Journal of Heat and Mass Transfer 53 1260-1268
  • [6] Patel VM(2008)Heat Transport Capability in an Oscillating Heat Pipe Journal of Heat Transfer 130 081501-51
  • [7] Gaurav HB(2013)Effects of fluctuations of heating and cooling section temperatures on the performance of a pulsating heat pipe Applied Thermal Engineering 58 42-1338
  • [8] Mehta YW(2011)Effects of Film Evaporation and Condensation on Oscillatory Flow and Heat Transfer in an Oscillating Heat Pipe Journal of Heat Transfer 133 042901-1008
  • [9] Zhang A(2013)A parametric study of oscillatory two-phase flows in a single turn pulsating heat pipe using a non-isothermal vapor model Applied Thermal Engineering 51 1328-1047
  • [10] Faghri MB(2004)Operation modeling of closed-end and closed-loop oscillating heat pipes at normal operating condition Applied Thermal Engineering 24 995-3489