Investigating the disparities between experimental and computational analyses of thermal performance in prefabricated wall panels

被引:9
|
作者
Palani, Hevar [1 ]
Karatas, Aslihan [1 ]
机构
[1] Univ Illinois, Dept Civil Mat & Environm Engn, 842 West Taylor St, Chicago, IL 60607 USA
关键词
Buildings; Thermal performance testing; Walls; Prefabricated buildings; Prefabricated wall panels; Experimental analysis; Built environment; Building envelope; MODEL CALIBRATION; ENERGY USE; BUILDINGS;
D O I
10.1016/j.applthermaleng.2023.121568
中图分类号
O414.1 [热力学];
学科分类号
摘要
Prefabricated buildings are increasingly popular worldwide, driven by technological advancements and the demand for sustainable and energy-efficient construction. However, the thermal performance of typical multi layered and compacted prefabricated wall panels remains uncertain, leading to overdesigned HVAC and building envelope systems. This results in higher utility bills, unnecessary expenses, and increased material, labor, and transportation costs. While experimental analysis and computational simulations have proven effective for measuring the thermal performance of on-site wall panels (e.g., precast concrete, masonry), their effectiveness for exterior insulation finishing system (EIFS) prefab wall panels is unclear. This study aims to test the hypothesis that both experimental and computational analyses accurately measure the thermal performance of EIFS prefab wall panels under various climate conditions and yield to similar results. To achieve this, (1) experimental test analysis was conducted in an environmental chamber based on ASTM C1363 and ISO 8990 standards, and (2) computational simulation was conducted by employing THERM (R) at hot (65 degrees C) and cold (-16 degrees C) climates. The results showed that the experimental thermal resistance exceeded the computational thermal resistance by about 17% across hot and cold climates. These thermal resistances were then incorporated into a typical hospital building prototype in the U.S. modeled by U.S. Department of Energy in EnergyPlusTM, resulting in substantial cost savings of approximately $396,000 over a 20-year lifespan due to the thermal resistance variations between experimental and computational analyses. The savings were achieved through a reduction in construction costs, accurate HVAC system selection, and lower utility bills. This study contributes to the improvement of prefabricated building design and energy performance analysis, leading to potential cost reductions in HVAC and building envelope system overdesign.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] Thermal Performance of LSF Wall Systems with Vacuum Insulation Panels
    Rajanayagam, Heshachanaa
    Upasiri, Irindu
    Poologanathan, Keerthan
    Gatheeshgar, Perampalam
    Sherlock, Paul
    Konthesingha, Chaminda
    Nagaratnam, Brabha
    Perera, Dilini
    BUILDINGS, 2021, 11 (12)
  • [22] Experimental Study on Effect of Concrete Frame Ratio on Thermal Performance of Structural Insulation Integrated Wall Panels
    Xiong, Feng
    Lou, Guangya
    Ran, Mingming
    Hunan Daxue Xuebao/Journal of Hunan University Natural Sciences, 2025, 52 (01): : 69 - 83
  • [23] Experimental and numerical study on the thermal performance of polycarbonate panels
    Cekon, Miroslav
    Sikula, Ondrej
    JOURNAL OF BUILDING ENGINEERING, 2020, 32
  • [24] Numerical analyses of novel prefabricated structural wall panels in residential buildings based on laboratory tests in scale 1:1
    Skarzynski, Lukasz
    Marzec, Ireneusz
    Drag, Krzysztof
    Tejchman, Jacek
    EUROPEAN JOURNAL OF ENVIRONMENTAL AND CIVIL ENGINEERING, 2020, 24 (09) : 1450 - 1482
  • [25] Experimental Study on Compressive Strength of Ultrahigh Performance Concrete Prefabricated Wall Structure
    Cao, Jianfeng
    Dai, Yunfei
    Hu, Liqiang
    Luo, Yu
    Long, Fang
    Ding, Shiying
    JOURNAL OF CHEMISTRY, 2022, 2022
  • [26] Experimental study on seismic performance of multi-story prefabricated shear wall
    Xiao M.
    Han W.
    Lü W.
    Wang Z.
    Li W.
    Li L.
    Jianzhu Jiegou Xuebao/Journal of Building Structures, 2023, 44 (12): : 32 - 45
  • [27] Experimental and computational analysis of thermal consolidation of prefabricated vertical drains using solar energy
    Xia, Changqing
    Deng, Yuebao
    Zhu, Min
    Zheng, Liangke
    Chen, Xiangsheng
    JOURNAL OF CLEANER PRODUCTION, 2023, 387
  • [28] In Situ Thermal Transmittance Measurements for Investigating Differences between Wall Models and Actual Building Performance
    Evangelisti, Luca
    Guattari, Claudia
    Gori, Paola
    Vollaro, Roberto De Lieto
    SUSTAINABILITY, 2015, 7 (08): : 10388 - 10398
  • [29] Thermal performance test of the new sandwich insulation composite wall panels
    Yang, JianGuo
    Wang, Gang
    Ding, KeWei
    ADVANCED RESEARCH ON MATERIAL ENGINEERING AND ELECTRICAL ENGINEERING, 2013, 676 : 22 - +
  • [30] Experimental Analysis of the Thermal Performance of Wood Fiber Insulating Panels
    Asdrubali, Francesco
    Evangelisti, Luca
    Guattari, Claudia
    Roncone, Marta
    Milone, Daniele
    SUSTAINABILITY, 2023, 15 (03)