Keywords
Team
ETB - Eco-conception et Thermique du Bâtiment
Biography
Patrick Schalbart is a researcher specializing in environmental and energy analysis of buildings and urban systems. His work focuses on assessing impacts using methods such as life cycle assessment (LCA), dynamic thermal simulation, and multi-criteria optimization, applied to issues such as energy-efficient retrofits, indoor air quality, urban heat islands, and the integration of renewable energy. His research aims to develop decision-support tools to balance energy performance, thermal comfort, and the reduction of environmental impacts by integrating dynamic data (electricity mix, climatic conditions) and prospective models. His expertise also covers the modeling of geothermal heat pump systems, optimized management of electrical loads, and the assessment of uncertainties in energy and environmental simulations.
Publication(s)
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2026
Balancing positive and negative environmental impacts of urban greening considering future climate: A case study in the Paris region, France DOI : 10.1016/j.cacint.2025.100277
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2025
A method for integrating indoor air quality into the life cycle assessment of buildings: application to the sizing of ventilation rates DOI : 10.1007/s11367-025-02509-9
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2024
Enhancing life cycle assessment for reversible ground-coupled heat pump systems through dynamic analysis DOI : 10.1016/j.jclepro.2024.143498
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2024
Integrating effects of overheating on human health into buildings’ life cycle assessment DOI : 10.1007/s11367-024-02353-3
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2023
LIFE CYCLE ASSESSMENT APPLIED TO THE ECO-DESIGN OF URBAN PROJECTS IN FRANCE DOI : 10.4324/9781003277927-21
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2023
Quantitative Evaluation of the Effects of Heat Island on Building Energy Simulation: A Case Study in Wuhan, China DOI : 10.3390/en16073032
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2023
Computationally efficient sensitivity analysis for building ecodesign with many-level categorical input factors DOI : 10.1051/ijmqe/2023016
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2023
Development of a short duration method to assess the envelope thermal performance of multi-family housings DOI : 10.1007/s12273-022-0969-x
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2023
Dealing with uncertainties in comparative building life cycle assessment DOI : 10.1016/j.buildenv.2023.110543
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2023
Distributed model predictive control using a trigger time search for optimal heating of multizone buildings DOI : 10.26868/25222708.2023.1358
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2023
Life cycle assessment of building reversible ground-coupled heat pump systems supported by dynamic electricity mix data DOI : 10.26868/25222708.2023.1541
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2022
Application of optimisation, building energy simulation and life cycle assessment to the design of an urban project DOI : 10.26868/25222708.2021.30616
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2022
A global model for fast calculation of the thermal response factor of large-scale boreholes heat exchangers combining the FLS model, the 2D heat equation and a three-points method DOI : 10.1016/j.enbuild.2022.112536
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2022
Optimal Control Strategies for Energy Production Systems using Buildings Thermal Mass DOI : 10.26868/25222708.2021.30405
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2022
Life cycle assessment of a residential building in China accounting for spatial and temporal variations of electricity production DOI : 10.1016/j.jobe.2022.104461
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2021
Stochastic prediction of residents' activities and related energy management DOI : 10.1007/978-3-030-76477-7_17
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2021
Identifying optimal renovation schedules for building portfolios: Application in a social housing context under multi-year funding constraints DOI : 10.1016/j.enbuild.2021.111290
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2020
Modelling of a large vertical ground heat exchanger integrated with a heat pump for building energy simulation in China DOI : 10.1088/1755-1315/588/2/022050
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2020
Dynamic and consequential LCA aspects in multi-objective optimisation for NZEB design DOI : 10.1088/1755-1315/588/3/032031
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2019
Model reduction and model predictive control of energy-efficient buildings for electrical heating load shifting DOI : 10.1016/j.jprocont.2018.03.007
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2019
Building life cycle assessment tools developed in France
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2019
Overview of a large scale monitoring project of energy positive houses: Complementarity between simulations and measurements
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2018
Comprehensive assessment of sensitivity analysis methods for the identification of influential factors in building life cycle assessment DOI : 10.1016/j.jclepro.2018.07.070
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2018
Empirical validation of different internal superficial heat transfer models on a full-scale passive house DOI : 10.1080/19401493.2017.1331376
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2018
Optimal control of heating in a two-zone building using price decomposition-coordination method
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2018
Derivation of simplified control rules from an optimal strategy for electric heating in a residential building DOI : 10.1080/19401493.2017.1349835
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2017
Development of an electricity system model allowing dynamic and marginal approaches in LCA—tested in the French context of space heating in buildings DOI : 10.1007/s11367-016-1229-z
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2017
Energy performance contracting methodology based upon simulation and measurement DOI : 10.26868/25222708.2017.021
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2016
Integrating climate change and energy mix scenarios in LCA of buildings and districts DOI : 10.1016/j.apenergy.2016.10.043
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2016
Accounting for temporal variation of electricity production and consumption in the LCA of an energy-efficient house DOI : 10.1016/j.jclepro.2015.11.052
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2015
Ice-cream storage energy efficiency with model predictive control of a refrigeration system coupled to a PCM tank DOI : 10.1016/j.ijrefrig.2014.08.001
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2015
Numerical study of energy performance of nanofluids used in secondary loops of refrigeration systems DOI : 10.1016/j.ijrefrig.2014.10.011
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2014
Integration of a comprehensive stochastic model of occupancy in building simulation to study how inhabitants influence energy performance
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2014
Numerical study of energy performance of nanofluids for refrigeration systems
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2013
Comparison of paraffin nanoemulsions prepared by low-energy emulsification method for latent heat storage DOI : 10.1016/j.ijthermalsci.2012.12.007
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2013
Simulation of the behaviour of a centrifugal chiller during quick start-up DOI : 10.1016/j.ijrefrig.2012.09.015
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2010
Formation of tetradecane nanoemulsion by low-energy emulsification methods DOI : 10.1016/j.ijrefrig.2010.09.002
Teaching
ATHENS - MP30 - Life Cycle of Energy Systems
The course alternates formal lectures on the various aspects of the life cycle—technical, economic, and ecological—with project-based sessions led by practitioners. In this way, the concepts introduced gradually are applied through case studies in workshops. The course therefore requires fairly intensive work concentrated over the course of one week. Feedback from previous years confirms this.
Energy Efficiency of Systems (Research Quarter)
Thematic Course Content (Week of November 27–December 1) Introduction: Background, Challenges, and Objectives of Energy Efficiency in Systems Energy Efficiency in Transportation Energy Efficiency in Industry Energy Efficiency in Buildings Urban Energy Modeling Heat conversion and thermodynamic systems District heating networks CO2 capture and utilization Presentations of individual assignments and conclusions 2. Individual Assignments Each student must conduct a literature review on a topic of their choice related to energy efficiency and then present this work orally. Two half-days of class will be devoted to library research training (instructor: Sylvain MÉTAFIOT). 3. Seminar The seminar will complement the thematic course by offering two days of field visits, allowing students to see firsthand how energy efficiency is implemented in the field. Each student will be assigned to a research group and will work for two months on a topic of their choice, from December 4 to February 9.
PhD supervision
- 2025 Study of the application of machine learning to renovation project design HANNAD Ayoub
- 2025 Absolute environmental assessment of urban blocks VESIREDDY Niveditha
- 2025 Consideration of bio-based materials in eco-design tools for buildings and districts CAI Xiying
- 2025 Study of an optimal strategy for managing openings and solar protections to reduce overheating in buildings ANGELONI Leo
- 2025 Consideration of indoor air quality and overheating in the life cycle assessment of buildings SOULMANI Ahlam
- 2024 Study of photovoltaic electricity production and storage to meet the decarbonization needs of airports PERRIN Clémence
- 2024 Study of the contribution of artificial intelligence to the robust optimization of building energy management GHOUTI Ryad Adel
- 2023 Integration of planetary boundaries and regionalization of environmental impact assessment methods applied to buildings and districts. KHAZAAL Khaled
- 2021 Study of a method for identifying thermal models of individual houses LAURENT Quentin
- 2021 Comparative life cycle analysis of building cooling technologies LIANG Caipeng
- 2020 Integration of indoor air quality into the life cycle assessment of buildings BHOONAH Rachna
- 2020 Study of an optimal management strategy integrating local renewable production BENALI Fatima Zohra
- 2019 Study of a multicriteria environmental optimization procedure at the block scale. WURTZ Aurore
- 2019 Study and improvement of the application of Bayesian calibration in building energy models AKKARI Samih
- 2018 Study of optimization strategies for control-command of an energy system leveraging building inertia SALAMEH Charbel
- 2017 Robust multi-criteria optimization for zero-energy building eco-design FROSSARD Mija
- 2017 Evaluation of the environmental impacts of buildings in China PEI Long
- 2015 Development of a methodology for guaranteeing energy performance by combining simulation with a measurement and verification protocol LIGIER Simon
- 2015 Study of real-time energy management strategies at the multi-zone scale FRAPIN Marie
