Fabrication, electrical characterization and sub-ng mass resolution of sub-μm air-gap bulk mode MEMS mass sensors for the detection of airborne particles

Soysal, U., Marty, F.,Gehin, E., Motzkus, Algre, E,  (2020) Fabrication, electrical characterization and sub-ng mass resolution of sub-μm air-gap bulk mode MEMS mass sensors for the detection of airborne particles, Microelectronic Engineering, Volume 221, Pages 111190

Estimation des performances thermiques de parois de bâtiment et de ponts thermiques par thermographie infrarouge active et méthodes inverses

Adrien FRANCOIS, soutenance le 15 décembre 2020, Directeur de thèse : L. Ibos, Co-encadrants : V. Feuillet, J. Meulemans.  

Mesure de la résistance thermique de parois opaques de bâtiments par méthode active

Thanh-Tung HA,  soutenance le 10 décembre 2020, Directeur de thèse : L. Ibos, Co-encadrant : V. Feuillet.

Measurement of pore size distribution of building materials by thermal method

N. Dujardin, T. Salem, V. Feuillet, M. Fois, L. Ibos, C. Poilâne, R. Manuel (2020), Measurement of pore size distribution of building materials by thermal method, Construction and Building Materials, 245:118417, DOI: 10.1016/j.conbuildmat.2020.118417.

Novel in situ measurement methods of the total heat transfer coefficient on building walls

A. François, L. Ibos, V. Feuillet, J. Meulemans (2020) Novel in situ measurement methods of the total heat transfer coefficient on building walls, Energy and Buildings, 219:110004, DOI: 10.1016/j.enbuild.2020.110004.

Benchmark of identification methods for the estimation of building wall thermal resistance using active method: numerical study for IWI and single-wall structures

T.-T. Ha, V. Feuillet, J. Waeytens, K. Zibouche, S. Thébault, R. Bouchié, V. Le Sant, L. Ibos (2020), Benchmark of identification methods for the estimation of building wall thermal resistance using active method: numerical study for IWI and single-wall structures, Energy and Buildings, 224:110130, DOI: 10.1016/j.enbuild.2020.110130.

In situ quantitative diagnosis of insulated building walls using passive infrared thermography

M.H.A. Larbi Youcef, V. Feuillet, L. Ibos, Y. Candau (2020), In situ quantitative diagnosis of insulated building walls using passive infrared thermography, Quantitative InfraRed Thermography Journal, DOI: 10.1080/17686733.2020.1805939

Estimation of the thermal resistance of a building wall with inverse techniques based on rapid in situ measurements and white-box or ARX black-box models

A. François, L. Ibos, V. Feuillet, J. Meulemans (2020) Estimation of the thermal resistance of a building wall with inverse techniques based on rapid in situ measurements and white-box or ARX black-box models, Energy and Buildings, 226:110346, DOI: 10.1016/j.enbuild.2020.110346.

In situ measurement of the heat transfer coefficient on a building wall surface: h-measurement device based on a harmonic excitation

A. François, L. Ibos, V. Feuillet, J. Meulemans (2020), In situ measurement of the heat transfer coefficient on a building wall surface: h-measurement device based on a harmonic excitation, Entropie, 
DOI: 10.21494/ISTE.OP.2020.0547.

Measurement of pore size distribution of building materials by thermal method

Dujardin N., Salem T., Feuillet V., Fois M., Ibos L., Poilane C., Manuel R. (2020), Measurement of pore size distribution of building materials by thermal method,  Construction and Building Materials, vol. 245, 118417 https://doi.org/10.1016/j.conbuildmat.2020.118417

Measurement of pore size distribution of building materials by thermal method

Dujardin N., Salem T., Feuillet V., Fois M., Ibos L., Poilane C., Manuel R. (2020), Measurement of pore size distribution of building materials by thermal method,  Construction and Building Materials, vol. 245, 118417 https://doi.org/10.1016/j.conbuildmat.2020.118417

Investigation of Fiber Surface Treatment Effect on Thermal, Mechanical and Acoustical Properties of Date Palm Fiber-Reinforced Cementitious Composites

Lahouioui M., Ben Arfi R., Fois M., Ibos L., Ghorbal A. (2020), Investigation of Fiber Surface Treatment Effect on Thermal, Mechanical and  Acoustical Properties of Date Palm Fiber-Reinforced Cementitious Composites,  Waste and Biomass Valorization, vol. 11, pp. 4441–4455.

https://doi.org/10.1007/s12649-019-00745-3