Thermal performance optimisation of Pavement Solar Collectors using response surface methodology

被引:9
作者
Ghalandari, Taher [1 ]
Kia, Alalea [2 ]
Taborda, David M. G. [2 ]
Bergh, Wim Van den [1 ]
Vuye, Cedric [1 ]
机构
[1] Univ Antwerp, Dept Construction Engn, Sustainable Pavements & Asphalt Res SuPAR, Antwerp, Belgium
[2] Imperial Coll London, Dept Civil & Environm Engn, London SW7 2AZ, England
关键词
Renewable energy; Energy harvesting; Solar energy; Urban Heat Island (UHI); Pavement Solar Collector (PSC); Asphalt pavement; Response Surface Methodology (RSM); HYDRONIC ASPHALT PAVEMENT; EXPERIMENTAL VALIDATION; SENSITIVITY-ANALYSIS; CFD ANALYSIS; ENERGY; ROAD; DESIGN; SYSTEM;
D O I
10.1016/j.renene.2023.04.083
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Recent studies have highlighted the factors influencing the thermal performance of Pavement Solar Collectors (PSC), such as thermophysical properties of materials, geometrical specifications, and operational conditions. The present study introduces a new approach to investigating the impact of various parameters on the long-term performance of PSCs. The Response Surface Methodology (RSM) is used to optimise the experimental design by reducing the number of simulations resulting from the combination of several design parameters and ample design space. Hence, the proposed PSC system design aims to: i) assess the heat extraction capacity; ii) investigate the ability to diminish the asphalt surface temperature (STR); and iii) determine the reduction in asphalt layers' rutting potential (RTR), through a coupled RSM and Finite Element (FE) simulation framework. The proposed statistical prediction regression models for heat harvesting capacity, STR, and RTR, adequately represent the experimental data with predicted R2 values above 0.95. The pipe spacing, flow rate, and inlet supply temperature show a high sensitivity to the objective functions, while other parameters display a less sensitive response. Finally, a multi-objective optimisation framework using the NSGA-II is proposed to seek a Pareto front solution in the design space, considering different (or equal) weights for the objective functions.
引用
收藏
页码:656 / 670
页数:15
相关论文
共 50 条
  • [21] Thermal Performance Analysis of an Absorption Cooling System Based on Parabolic Trough Solar Collectors
    Wang, Jiangjiang
    Yan, Rujing
    Wang, Zhuang
    Zhang, Xutao
    Shi, Guohua
    ENERGIES, 2018, 11 (10)
  • [22] Prediction Model of the Coring Asphalt Pavement Performance through Response Surface Methodology
    Shaffie, Ekarizan
    Jaya, Ramadhansyah Putra
    Ahmad, Juraidah
    Arshad, Ahmad Kamil
    Zihan, Mohd Afiq
    Shiong, Fiona
    ADVANCES IN MATERIALS SCIENCE AND ENGINEERING, 2022, 2022
  • [23] Heat transfer model for thermal performance analysis of parabolic trough solar collectors using nanofluids
    Tagle-Salazar, Pablo D.
    Nigam, K. D. P.
    Rivera-Solorio, Carlos I.
    RENEWABLE ENERGY, 2018, 125 : 334 - 343
  • [24] Experimental investigation and performance optimisation of a catalytic reforming micro-reactor using response surface methodology
    Sarafraz, M. M.
    Safaei, Mohammad Reza
    Goodarzi, Marjan
    Arjomandi, M.
    ENERGY CONVERSION AND MANAGEMENT, 2019, 199
  • [25] Optimization of irradiated waste polyethylene terephthalate modified asphalt pavement using response surface methodology
    Usman, Aliyu
    Sutanto, Muslich H.
    Napiah, Madzlan
    Zoorob, Salah E.
    Al-Sabaeei, Abdulnaser M.
    GEOMECHANICS AND ENGINEERING, 2021, 26 (06) : 513 - 527
  • [26] Design and performance optimization of non-imaging concentrating photovoltaic thermal systems using grey relational analysis and response surface methodology
    Ustaoglu, Abid
    Kursuncu, Bilal
    Akgul, Volkan
    Okajima, Junnosuke
    APPLIED THERMAL ENGINEERING, 2025, 273
  • [27] A review of the enhancement of solar thermal collectors using nanofluids and turbulators
    Aissa, Abderrahmane
    Qasem, Naef A. A.
    Mourad, Abed
    Laidoudi, Houssem
    Younis, Obai
    Guedri, Kamel
    Alazzam, Anas
    APPLIED THERMAL ENGINEERING, 2023, 220
  • [28] Parametric optimisation of supercritical CO2 thermal-hydraulic characteristics in micro-channels using response surface methodology
    Rao, N. T.
    Oumer, A. N.
    Noor, M. M.
    Kadirgama, K.
    Basrawi, F.
    Siregar, J. P.
    AUSTRALIAN JOURNAL OF MECHANICAL ENGINEERING, 2023, 21 (03) : 894 - 910
  • [29] Performance optimisation of solid oxide electrolyser cell (SOEC) using response surface method (RSM) for thermal gradient reduction
    Hasbi, Syafawati
    Amber, Ityona
    Hossain, Mamdud
    Saharudin, Mohd Shahneel
    INTERNATIONAL JOURNAL OF SUSTAINABLE ENERGY, 2025, 44 (01)
  • [30] PROCESS PARAMETERS OPTIMISATION FOR SPRING SEAT BASED ON RESPONSE SURFACE METHODOLOGY
    Yu, Y. X.
    Huang, Y.
    Geng, H. H.
    Cha, L. L.
    INTERNATIONAL JOURNAL OF SIMULATION MODELLING, 2022, 21 (02) : 332 - 340