Integrated multi-stage sensitivity analysis and multi-objective optimization approach for PCM integrated residential buildings in different climate zones

被引:10
作者
Saurbayeva, Assemgul [1 ]
Memon, Shazim Ali [1 ]
Kim, Jong [1 ]
机构
[1] Nazarbayev Univ, Sch Engn & Digital Sci, Dept Civil & Environm Engn, Astana, Kazakhstan
关键词
Energy consumption; Early design parameters; Phase change materials; Multi-stage sensitivity analysis; Multi-objective optimization; Payback period; SIMULATION-BASED APPROACH; ENERGY PERFORMANCE; DESIGN PARAMETERS; UNCERTAINTY; COMFORT; MODELS;
D O I
10.1016/j.energy.2023.127973
中图分类号
O414.1 [热力学];
学科分类号
摘要
The early design stage provides the greatest opportunities to achieve energy-efficient buildings; however, designers require relevant performance data to manage interdisciplinary and conflicting objectives. Thus, for the first time an integrated multi-stage sensitivity analysis and multi-objective optimization approach was developed for four different zones of arid climate in PCM integrated residential buildings. A multi-stage sensitivity analysis is proposed to identify the relative importance of early design stage parameters, which covers envelope thermophysics, building layout and energy-efficiency measures, considering energy and economic indicators. Three global sensitivity analysis approaches (Standardized rank regression coefficient, Partial rank correlation coefficient and Morris method) were employed in the first stage, while the local sensitivity analysis was employed in the second stage. A multi-objective optimization using the genetic algorithm was performed to obtain the Pareto frontier, and two sets of solutions were proposed: the most energy-efficient and the most cost-effective. Finally, multi-criteria decision making was carried out. It was found that sensitivity analysis results showed different rankings of parameters. For each climatic zone, a different set of optimal solutions existed. Compared to reference building, the best solutions reduced total energy consumption by 11.1-34.6%, while the payback period reduced by 17.6-48.5 years.
引用
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页数:25
相关论文
共 53 条
  • [1] Application and sensitivity analysis of the phase change material hysteresis method in EnergyPlus: A case study
    Al-Janabi, Ali
    Kavgic, Miroslava
    [J]. APPLIED THERMAL ENGINEERING, 2019, 162
  • [2] [Anonymous], Commercial Reference Buildings
  • [3] Building envelope design: Multi-objective optimization to minimize energy consumption, global cost and thermal discomfort. Application to different Italian climatic zones
    Ascione, Fabrizio
    Bianco, Nicola
    Mauro, Gerardo Maria
    Napolitano, Davide Ferdinando
    [J]. ENERGY, 2019, 174 : 359 - 374
  • [4] A new comprehensive framework for the multi-objective optimization of building energy design: Harlequin
    Ascione, Fabrizio
    Bianco, Nicola
    Mauro, Gerardo Maria
    Vanoli, Giuseppe Peter
    [J]. APPLIED ENERGY, 2019, 241 : 331 - 361
  • [5] Multi-objective optimization of cooling and heating loads in residential buildings integrated with phase change materials using the artificial neural network and genetic algorithm
    Bagheri-Esfeh, Hamed
    Safikhani, Hamed
    Motahar, Sadegh
    [J]. JOURNAL OF ENERGY STORAGE, 2020, 32
  • [6] SENSITIVITY AND UNCERTAINTY ANALYSIS OF COMPLEX-MODELS OF DISEASE TRANSMISSION - AN HIV MODEL, AS AN EXAMPLE
    BLOWER, SM
    DOWLATABADI, H
    [J]. INTERNATIONAL STATISTICAL REVIEW, 1994, 62 (02) : 229 - 243
  • [7] Brickworks Building Products, 2017, BRICK TECHN MAN
  • [8] Brown B.M. e., 1981, Biometrics, P621, DOI [10.2307/2530578, DOI 10.2307/2530578]
  • [9] A comprehensive sensitivity study of major passive design parameters for the public rental housing development in Hong Kong
    Chen, Xi
    Yang, Hongxing
    Zhang, Weilong
    [J]. ENERGY, 2015, 93 : 1804 - 1818
  • [10] Development, mechanical properties and numerical simulation of macro encapsulated thermal energy storage concrete
    Cui, Hongzhi
    Memon, Shazirn Ali
    Liu, Ran
    [J]. ENERGY AND BUILDINGS, 2015, 96 : 162 - 174