LAPSE:2023.18035
Published Article
LAPSE:2023.18035
Detailed Thermodynamic Modeling of Multi-Zone Buildings with Resistive-Capacitive Method
Filip Belić, Dražen Slišković, Željko Hocenski
March 7, 2023
Abstract
Increased use of energy in buildings and HVAC systems requires advanced control schemes like model-based control to improve energy efficiency, which in turn requires accurate thermodynamic models of buildings. The Resistive-Capacitive (RC) method is a popular and versatile approach for thermal modeling of buildings. Despite this, it is not easy to find practical solutions of implementation of the RC method. It is the goal of this paper to clarify the RC method and demonstrate simple implementation of this method, especially for multi-zone buildings, which have more potential for energy savings from use of model-based control. This paper provides two contributions. First is a detailed explanation of the RC method, focusing on its use for developing a structure of a model and first-principles approach for estimation of parameters of a model. Second is a demonstration of an algorithm that enables automatic development of the structure of a model from basic information about a building (layout, construction elements) and its combination with data-based parameter estimation. Use of the algorithm is presented with a case-study on industrial multi-zone building, for which such a grey-box model is developed and analyzed. The resulting model is rapidly developed and used in a simulation with the measured data. The outputs of the model are compared with the measured temperatures and they show good fit.
Keywords
automatic model development, buildings, grey-box model, parameter estimation, thermal network, thermodynamic model
Suggested Citation
Belić F, Slišković D, Hocenski Ž. Detailed Thermodynamic Modeling of Multi-Zone Buildings with Resistive-Capacitive Method. (2023). LAPSE:2023.18035
Author Affiliations
Belić F: TEO-Belišće, Radnička 3, 31551 Belišće, Croatia
Slišković D: FERIT, Josip Juraj Strossmayer University of Osijek, Kneza Trpimira 2B, 31000 Osijek, Croatia
Hocenski Ž: FERIT, Josip Juraj Strossmayer University of Osijek, Kneza Trpimira 2B, 31000 Osijek, Croatia
Journal Name
Energies
Volume
14
Issue
21
First Page
7051
Year
2021
Publication Date
2021-10-28
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en14217051, Publication Type: Journal Article
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LAPSE:2023.18035
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https://doi.org/10.3390/en14217051
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