Considering the dynamics of electricity demand and production for the environmental benchmark of Swiss residential buildings that exclusively use electricity
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[1] D. Vuarnoz,et al. Integrating hourly life-cycle energy and carbon emissions of energy supply in buildings , 2018, Sustainable Cities and Society.
[2] Morten Birkved,et al. Environmental performance assessment of the use stage of buildings using dynamic high-resolution energy consumption and data on grid composition , 2019, Building and Environment.
[3] Gregor Wernet,et al. The ecoinvent database version 3 (part I): overview and methodology , 2016, The International Journal of Life Cycle Assessment.
[4] Pradip P. Kalbar,et al. Life cycle based dynamic assessment coupled with multiple criteria decision analysis: A case study of determining an optimal building insulation level , 2017 .
[5] Marine Fouquet,et al. Methodological challenges and developments in LCA of low energy buildings: Application to biogenic carbon and global warming assessment , 2015 .
[6] Didier Vuarnoz,et al. Temporal variations in the primary energy use and greenhouse gas emissions of electricity provided by the Swiss grid , 2018, Energy.
[7] W. O. Collinge,et al. Dynamic Life Cycle Assessments of a Conventional Green Building and a Net Zero Energy Building: Exploration of Static, Dynamic, Attributional, and Consequential Electricity Grid Models. , 2018, Environmental science & technology.
[8] Patrick Schalbart,et al. Development of an electricity system model allowing dynamic and marginal approaches in LCA—tested in the French context of space heating in buildings , 2017, The International Journal of Life Cycle Assessment.
[9] Alex K. Jones,et al. Dynamic life cycle assessment: framework and application to an institutional building , 2012, The International Journal of Life Cycle Assessment.
[10] Xiaocun Zhang,et al. Analysis of embodied carbon in the building life cycle considering the temporal perspectives of emissions: A case study in China , 2017 .
[11] Patrick Schalbart,et al. Accounting for temporal variation of electricity production and consumption in the LCA of an energy-efficient house , 2016 .
[12] Melissa M. Bilec,et al. Hybrid Dynamic-Empirical Building Energy Modeling Approach for an Existing Campus Building , 2016 .
[13] Patrick Schalbart,et al. Integrating climate change and energy mix scenarios in LCA of buildings and districts , 2016 .