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Remote measurements of thermal transmittance measurements without approximating a steady state

Estevam Schmiedt, Jacob and Patel, Dhruvkumar and Röger, Marc and Groesdonk, Philip and Hoffschmidt, Bernhard (2024) Remote measurements of thermal transmittance measurements without approximating a steady state. In: Proceedings Bauphysiktage in Weimar 2024 : Bauphysik in Forschung und Praxis, 13. Bauphysiktage in Weimar 2024, 2024-03-06 - 2024-03-07, Weimar. doi: 10.25643/dbt.59940.

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Official URL: https://www.db-thueringen.de/receive/dbt_mods_00059940

Abstract

The thermal transmittance of the building envelope is a key parameter that determines the energy performance of a building. In order to estimate the potential of refurbishment options, accurate information about the thermal transmittance is desirable. This information should be obtained with as little impact on the use of the building and in as little time as possible. The use of thermography for this purpose has the advantage that it allows for remote measurements without installation of sensors on the envelope. Additionally, a non-intrusive measurement method from outside of the buidling envelope is favorable. For that, a model calibration approach is proposed to increase the accuracy under varying environmental conditions and to reduce the measurement time for thermography from the outside. A simplified physical model with a small number of thermal resistor and capacitor elements is used to represent the building wall and simulate the heat flow under transient conditions. Its parameters are varied and chosen such that the best reproduction of the measured surface temperature is obtained. The uncertainty of the determined transmittance depends on the thermographic measurements and on the uncertainties in the boundary conditions which describe convective and radiative heat exchange and also have to be determined by measurements. The uncertainty analysis is performed using a Monte-Carlo sampling of all measured quantities.

Item URL in elib:https://elib.dlr.de/206692/
Document Type:Conference or Workshop Item (Speech)
Title:Remote measurements of thermal transmittance measurements without approximating a steady state
Authors:
AuthorsInstitution or Email of AuthorsAuthor's ORCID iDORCID Put Code
Estevam Schmiedt, JacobJacob.EstevamSchmiedt (at) dlr.dehttps://orcid.org/0000-0002-0794-6769UNSPECIFIED
Patel, DhruvkumarDhruvkumar.Patel (at) dlr.deUNSPECIFIEDUNSPECIFIED
Röger, MarcMarc.Roeger (at) dlr.dehttps://orcid.org/0000-0003-0618-4253UNSPECIFIED
Groesdonk, PhilipPhilip.Groesdonk (at) dlr.dehttps://orcid.org/0000-0002-1274-0378UNSPECIFIED
Hoffschmidt, BernhardBernhard.Hoffschmidt (at) dlr.deUNSPECIFIEDUNSPECIFIED
Date:4 April 2024
Journal or Publication Title:Proceedings Bauphysiktage in Weimar 2024 : Bauphysik in Forschung und Praxis
Refereed publication:No
Open Access:Yes
Gold Open Access:No
In SCOPUS:No
In ISI Web of Science:No
Volume:13
DOI:10.25643/dbt.59940
Editors:
EditorsEmailEditor's ORCID iDORCID Put Code
Vogel, Albertalbert.vogel (at) uni-weimar.deUNSPECIFIEDUNSPECIFIED
Völker, Conradconrad.voelker (at) uni-weimar.deUNSPECIFIEDUNSPECIFIED
Kornadt, Oliveroliver.kornadt (at) uni-weimar.deUNSPECIFIEDUNSPECIFIED
Status:Published
Keywords:Bauphysik; Weimar; Akustik; Raumklima; Energie; Behaglichkeit; Weiterbildung; Thermal transmittance; thermography; remote measurement; model calibration; uncertainty analysis
Event Title:Bauphysiktage in Weimar 2024
Event Location:Weimar
Event Type:national Conference
Event Start Date:6 March 2024
Event End Date:7 March 2024
HGF - Research field:Energy
HGF - Program:Materials and Technologies for the Energy Transition
HGF - Program Themes:High-Temperature Thermal Technologies
DLR - Research area:Energy
DLR - Program:E SW - Solar and Wind Energy
DLR - Research theme (Project):E - Advanced Heat Transfer Media
Location: Jülich
Institutes and Institutions:Institute of Solar Research > Solar High Temperature Technologies
Deposited By: Estevam Schmiedt, Dr. Jacob
Deposited On:23 Oct 2024 09:47
Last Modified:23 Oct 2024 09:47

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