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  4. Uncertainty of the predictions of different programs and modelling teams based on a detailed empirical validation dataset
 
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May 10, 2024
Journal Article
Title

Uncertainty of the predictions of different programs and modelling teams based on a detailed empirical validation dataset

Abstract
The results obtained from programs predicting the thermal-energetic performance of buildings depend on the assumptions made when parameterizing the constructed models. This is because some parameters are not known or are subject to uncertainty. Common simulation programs are required to undergo rigorous quality control and validation. These involve analysis of predictions against analytical test cases, inter-model comparisons such as BESTEST (ASHRAE. Citation2020. ASHRAE 140-2020 Standard Method of Test for the Evaluation of Building Energy Analysis Computer Programs) and empirical validations against measurement data. This paper uses an empirical validation data set and corresponding modelling predictions from IEA EBC Annex 71 to analyse the uncertainty of different programs by means of a one-step-at-a-time sensitivity analysis. Since the results show a strong influence from the various sub-model calculations of the air flows, an additional sensitivity analysis is added regarding the air exchange through the envelope and between the zones.
Author(s)
Kersken, Matthias  
Fraunhofer-Institut für Bauphysik IBP  
Rojas, Gabriel
Universität Innsbruck
Strachan, Paul
University of Strathclyde, Glasgow  
Journal
Journal of building performance simulation  
Project(s)
EnOB: InSituNachweis - Entwicklung einer Methodik zur Bestimmung der Energieeffizienz von Gebäuden auf Basis von optimierten in situ Messungen  
Funder
Bundesministerium für Wirtschaft und Klimaschutz  
DOI
10.1080/19401493.2024.2343883
Language
English
Fraunhofer-Institut für Bauphysik IBP  
Keyword(s)
  • building energy simulation

  • empirical validation

  • measurement dataset

  • sensitivity analysis

  • airflow inside buildings

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