Performance optimization of a heat exchanger with coiled-wire turbulator insert by using various machine learning methods

被引:4
|
作者
Celik, Nevin [1 ]
Tasar, Beyda [2 ]
Kapan, Sinan [1 ]
Tanyildizi, Vedat [1 ]
机构
[1] Firat Univ, Dept Mech Engn, TR-23119 Elazig, Turkiye
[2] Firat Univ, Dept Mechatron Engn, TR-23119 Elazig, Turkiye
关键词
Heat exchanger; Coiled-wire turbulator; Machine learning; Regression; Accurate prediction; TUBE;
D O I
10.1016/j.ijthermalsci.2023.108439
中图分类号
O414.1 [热力学];
学科分类号
摘要
In present study, heat transfer augmentation and pressure loss in a double pipe concentric type heat exchanger with a coiled-wire turbulator inserted in it, are discussed in terms of regression analysis by using various Machine Learning (ML) methods. The non-dimensional design parameters in question are; the Reynolds number (Re), the thickness (e/d), the pitch (p/d) and the length (l/d) of the coiled-wire. Nusselt number (Nu), friction factor (f) and thermal performance factor (eta) are the extracted results of the experiments, namely the outputs of the system. In the regression analysis four well-known methods are applied; Supported Vector Regression (SVR), Gaussian Process Regression (GPR), Random Forest (RF) and Multilayer Perceptron Network (MLP) (a kind of Artificial Neural Network (ANN)). The Multi Linear Regression (MLR) method is also applied to the results for comparison. The regression coefficient (R-2), mean square error (MSE), mean absolute error (MAE) and root mean square error (RMSE) are the performances obtained by each method. The findings demonstrated that, among the suggested techniques, the MLP and GPR models in particular can be effective tools for calculating Nusselt number, friction factor and thermal performance factor for the selected heat exchanger. The R-2 values for Nusselt number, friction factor and thermal performance factor in the MLP model are respectively found to be 1, 0.95 and 0.98. In terms of all performance criteria, the order from best to worst-performing method is as follows: MLP, GPR, SVR and RF. In addition, it was observed that all four methods applied give better results than MLR does.
引用
收藏
页数:16
相关论文
共 50 条
  • [1] Optimization of Heat Exchanger Shell and Tube Design Using Helical Baffle and Coiled Wire Insert Technology
    Syafii, Ahmad
    Biyanto, Totok R.
    [J]. ADVANCED INDUSTRIAL TECHNOLOGY IN ENGINEERING PHYSICS, 2019, 2088
  • [2] Performance Optimization of the Helical Heat Exchanger With Turbulator
    Xifeng, Wang
    Xiaoluan, Zhang
    Mahariq, Ibrahim
    Salem, Mohamed
    Ghalandari, Mohammad
    Ghadak, Farhad
    Abedini, Mostafa
    [J]. FRONTIERS IN ENERGY RESEARCH, 2022, 9
  • [3] Heat transfer enhancement of shell-and-coiled tube heat exchanger utilizing helical wire turbulator
    Panahi, Davood
    Zamzamian, Kamiar
    [J]. APPLIED THERMAL ENGINEERING, 2017, 115 : 607 - 615
  • [4] Thermal performance enhancement in a double tube heat exchanger using combination of bubble injection and helical coiled wire insert
    Wang, Ning
    Ghoushchi, S. P.
    Sharma, Kamal
    Elbadawy, Ibrahim
    Mouldi, Abir
    Loukil, Hassen
    Deifalla, Ahmed Farouk
    [J]. CASE STUDIES IN THERMAL ENGINEERING, 2023, 52
  • [5] Thermal-frictional behavior of solid magnetic strip turbulator and helical coiled wire turbulator inside a double tube heat exchanger
    Maleki, Nemat Mashoofi
    Pourahmad, Saman
    Tavousi, Ebrahim
    Perera, Noel
    Talebizadehsardari, Pouyan
    Keshmiri, Amir
    [J]. International Communications in Heat and Mass Transfer, 2025, 161
  • [6] A comprehensive optimization and design analysis of a heat exchanger with coiled wire turbulators
    Kapan, Sinan
    Celik, Nevin
    Turgut, Emre
    Tanyildizi, Vedat
    [J]. HEAT AND MASS TRANSFER, 2023, 59 (08) : 1507 - 1524
  • [7] A comprehensive optimization and design analysis of a heat exchanger with coiled wire turbulators
    Sinan Kapan
    Nevin Celik
    Emre Turgut
    Vedat Tanyildizi
    [J]. Heat and Mass Transfer, 2023, 59 : 1507 - 1524
  • [8] Thermal and economic investigation of straight and U-bend double tube heat exchanger with coiled wire turbulator
    Andrzejczyk, Rafal
    Muszynski, Tomasz
    [J]. ARCHIVES OF THERMODYNAMICS, 2019, 40 (02) : 17 - 33
  • [9] Improving hydrothermal performance of hybrid nanofluid in double tube heat exchanger using tapered wire coil turbulator
    Singh, Sumit Kr.
    Sarkar, Jahar
    [J]. ADVANCED POWDER TECHNOLOGY, 2020, 31 (05) : 2092 - 2100
  • [10] Hydrothermal performance of a turbulent nanofluid with different nanoparticle shapes in a duct fitted with various configurations of coiled-wire inserts
    Amro H. Al-Tohamy
    Olatomide G. Fadodun
    Amr Kaood
    [J]. Journal of Thermal Analysis and Calorimetry, 2023, 148 : 7795 - 7810