Indoor environmental quality assessment: Part 1: choice of the indoor environmental quality sub-component models M Piasecki, K Kostyrko, S Pykacz Journal of Building Physics 41 (3), 264-289, 2017 | 67 | 2017 |
Experimental confirmation of the reliability of Fanger’s thermal comfort model—Case study of a near-zero energy building (NZEB) office building M Piasecki, M Fedorczak-Cisak, M Furtak, J Biskupski Sustainability 11 (9), 2461, 2019 | 54 | 2019 |
The approach of including TVOCs concentration in the indoor environmental quality model (IEQ)—Case studies of BREEAM certified office buildings M Piasecki, M Kozicki, S Firląg, A Goljan, K Kostyrko Sustainability 10 (11), 3902, 2018 | 38 | 2018 |
NZEB renovation definition in a heating dominated climate: Case study of Poland S Firląg, M Piasecki Applied Sciences 8 (9), 1605, 2018 | 38 | 2018 |
Budownictwo zrównoważone budownictwem przyszłości L Czarnecki, M Kaproń, M Piasecki, S Wall Inżynieria i Budownictwo 68 (1), 18-21, 2012 | 36 | 2012 |
Implementation of the Indoor Environmental Quality (IEQ) Model for the Assessment of a Retrofitted Historical Masonry Building M Piasecki, E Radziszewska-Zielina, P Czerski, M Fedorczak-Cisak, ... Energies 13 (6051), 2020 | 34 | 2020 |
Development of Weighting Scheme for Indoor Air Quality Model Using a Multi-Attribute Decision Making Method M Piasecki, K Kostyrko Energies 13 (12), 2020 | 29 | 2020 |
Emission of Volatile Organic Compounds (VOCs) from Dispersion and Cementitious Waterproofing Products M Kozicki, M Piasecki, A Goljan, H Deptuła, A Niesłochowski Sustainability 10 (7), 1-16, 2018 | 29 | 2018 |
Influence of rendering type on the environmental characteristics of expanded polystyrene-based external thermal insulation composite system B Michałowski, M Marcinek, J Tomaszewska, S Czernik, M Piasecki, ... Buildings 10 (3), 47, 2020 | 28 | 2020 |
Indoor environmental quality assessment, part 2: Model reliability analysis M Piasecki, KB Kostyrko Journal of Building Physics, 2018 | 28 | 2018 |
Practical Implementation of the Indoor Environmental Quality Model for the Assessment of Nearly Zero Energy Single-Family Building M Piasecki Buildings 9 (214), 2019 | 25 | 2019 |
Air enthalpy as an IAQ indicator in hot and humid environment—experimental evaluation M Piasecki, K Kostyrko, M Fedorczak-Cisak, K Nowak Energies 13 (6), 1481, 2020 | 24 | 2020 |
Combined model for IAQ assessment: Part 1—Morphology of the model and selection of substantial air quality impact sub-models M Piasecki, KB Kostyrko Applied Sciences 9 (18), 3918, 2019 | 21 | 2019 |
Metoda oceny budynku pod kątem zrównoważonego rozwoju M Piasecki Materiały Budowlane, 34-36, 2010 | 15 | 2010 |
Environmental Footprint of Cementitious Adhesives—Components of ETICS S Czernik, M Marcinek, B Michałowski, M Piasecki, J Tomaszewska, ... Sustainability 12 (8998), 2020 | 11 | 2020 |
Ventilation and indoor air quality A Kumar, A Moreno-Rangel, MAI Khan, M Piasecki Atmosphere 13 (10), 1730, 2022 | 8 | 2022 |
Quantifying environmental burdens of plasters based on natural vs. Flue gas desulfurization (FGD) gypsum E Baran, S Czernik, M Hynowski, B Michałowski, M Piasecki, ... Sustainability 13 (8), 4298, 2021 | 8 | 2021 |
Identification of MVOCs Produced by Coniophora puteana and Poria placenta Growing on WPC Boards by Using Subtraction Mass Spectra M Kozicki, A Wiejak, M Piasecki, A Abram International Journal of Environmental Research and Public Health 16 (14), 2499, 2019 | 8 | 2019 |
Kryteria oceny wyrobów i obiektów budowlanych pod kątem zgodności z wymaganiami zrównoważonego rozwoju M Piasecki Budownictwo, Technologie, Architektura, 40-46, 2010 | 8 | 2010 |
The ability to control VOC emissions from multilayer building materials M Piasecki, KB Kostyrko, A Goljan Applied Sciences 11 (11), 4806, 2021 | 7 | 2021 |