Empirical validation and local sensitivity analysis of a lumped-parameter thermal model of an outdoor test cell

被引:27
作者
Cattarin, G. [1 ,2 ,3 ]
Pagliano, L. [1 ]
Causone, F. [1 ]
Kindinis, A. [2 ,3 ]
Goia, F. [4 ]
Carlucci, S. [5 ]
Schlemminger, C. [6 ]
机构
[1] Politecn Milan, Dept Energy, End Use Efficiency Res Grp, Milan, Italy
[2] Univ Paris Est, Inst Rech Constructibilite, ESTP, Cachan, France
[3] Efficacity, Marne La Vallee 2, France
[4] Norwegian Univ Sci & Technol, NTNU, Fac Architecture & Design, Dept Architecture & Technol, Trondheim, Norway
[5] Norwegian Univ Sci & Technol, NTNU, Fac Engn, Dept Civil & Environm Engn, Trondheim, Norway
[6] SINTEF Bldg & Infrastruct, Dept Architecture Mat & Struct, Trondheim, Norway
关键词
Guarded test cell; Experimental validation; Sensitivity analysis; Measurement techniques; Matlab; UNCERTAINTY ANALYSIS; ENERGY PERFORMANCE; SOLAR-RADIATION; CALIBRATION; BUILDINGS; ENVELOPE;
D O I
10.1016/j.buildenv.2017.12.029
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This paper presents the experimental validation of a thermal model describing the ZEB Test Cells Laboratory, located at the Gloshaugen campus of NTNU and SINTEF in Trondheim, Norway. Besides, a local sensitivity analysis identifies the parameters and inputs that are most influential on the thermal behaviour of the test cell, in terms of temperature profiles of the internal air and internal surfaces. The analysis shows that, in free-running conditions, the most important parameters and inputs, out of the 49 tested ones, are: the air temperature in the guard zone, the initial temperature(s) of the test cell envelope, the linear dimension of the square window, the solar irradiance on the vertical plane of the window, the depth of the test cell, the thermal conductivity and the thickness of the polyurethane layer in the envelope, the solar direct transmittance of the window, the internal height and width of the test cell, the external air temperature and the electrical power input to the mixing fan. Based on the outcome of the local sensitivity analysis and on in-field observations, some practical measures to improve the quality of the input data provided to a dynamic energy simulation tool, and thus the accuracy of prediction of the temperature evolution of the test cell. Based on the outcome of the local sensitivity analysis and on in-field observations, we propose some practical measures to improve the quality of the input data provided to a dynamic energy simulation tool, and thus the accuracy of prediction of the temperature evolution of the test cell. For example, we suggest monitoring accurately the environmental conditions in the guard zone, which are particularly influential under free-running conditions, and installing a global irradiance pyranometer next to the window in order to reduce the uncertainty related to the entering solar load.
引用
收藏
页码:151 / 161
页数:11
相关论文
共 48 条
[1]  
[Anonymous], 2007, Sensitivity analysis in practice: A guide to assessing scientific models (Reprinted)
[2]   Envelope and indoor thermal capacitance of buildings [J].
Antonopoulos, KA ;
Koronaki, E .
APPLIED THERMAL ENGINEERING, 1999, 19 (07) :743-756
[3]  
ASHRAE, 2009, FUND HDB
[4]  
Athienitis A.K., 2002, THERMAL ANAL DESIGN
[5]  
Bontemps S., 2015, VALIDATION EXPT MODE
[6]   Sensitivity analysis: A review of recent advances [J].
Borgonovo, Emanuele ;
Plischke, Elmar .
EUROPEAN JOURNAL OF OPERATIONAL RESEARCH, 2016, 248 (03) :869-887
[7]   Performance evaluation of passive cooling in office buildings based on uncertainty and sensitivity analysis [J].
Breesch, H. ;
Janssens, A. .
SOLAR ENERGY, 2010, 84 (08) :1453-1467
[8]   Empirical and comparative validation of an original model to simulate the thermal behaviour of outdoor test cells [J].
Cattarin, G. ;
Pagliano, L. ;
Causone, F. ;
Kindinis, A. .
ENERGY AND BUILDINGS, 2018, 158 :1711-1723
[9]   Outdoor test cells for building envelope experimental characterisation - A literature review [J].
Cattarin, G. ;
Causone, F. ;
Kindinis, A. ;
Pagliano, L. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 54 :606-625
[10]  
Causone F., 2015, CHEZ 10 C ADV BUILD