EASI RBD-FAST: An efficient method of global sensitivity analysis for present and future challenges in building performance simulation
Author:
Funder
ADEME
Publisher
Elsevier BV
Subject
Mechanics of Materials,Safety, Risk, Reliability and Quality,Building and Construction,Architecture,Civil and Structural Engineering
Reference51 articles.
1. Why so many published sensitivity analyses are false: A systematic review of sensitivity analysis practices;Saltelli;Environ. Model. Software,2019
2. Uncertainty quantification for energy savings performance contracting: Application to an office building;Faggianelli;Energy Build.,2017
3. Guidelines for the Bayesian calibration of building energy models;Chong;Energy Build.,2018
4. Analysis of the influence of the definition of the interior dwelling temperature on the characterization of the heat loss coefficient via on-board monitoring;Senave;Energy Build.,2020
5. Early Building Design: informed decision-making by exploring multidimensional design space using sensitivity analysis;Østergård;Energy Build.,2017
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