Sub-regional variability of residential electricity consumption under climate change and air-conditioning scenarios in France

被引:2
|
作者
Tao, Qiqi [1 ]
Naveau, Marie [1 ]
Tantet, Alexis [1 ]
Badosa, Jordi [1 ]
Drobinski, Philippe [1 ]
机构
[1] Sorbonne Univ, PSL Univ,Lab Meteorol Dynam, Inst Polytech Paris,Inst Pierre Simon Laplace, CNRS,Ecole Normale Super,Ecole Polytech, F-91128 Palaiseau, France
关键词
Residential electricity consumption; Cooling demand; Climate change impacts; ENERGY-CONSUMPTION; DEMAND; TEMPERATURE; PRECIPITATION; IMPACT; SIMULATIONS; SENSITIVITY; HOUSEHOLDS; EXTREMES; BENEFITS;
D O I
10.1016/j.cliser.2023.100426
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The residential sector is important for the energy transition to combat global warming. Due to the geographical variability of socio-economic factors, the highly dependent residential electricity consumption (REC) should be studied locally. This study aims to project future French REC considering climate change and air-conditioning (AC) scenarios and to quantify its spatial variability. For this purpose, a linear temperature sensitivity model fitted by annual observed electricity consumption data and historical temperature is applied at an intra-regional scale. Future temperature-sensitive REC is computed by applying the model to temperature projections under the climate change pathway RCP8.5. Three AC scenarios are considered: (1) A 100% AC rate scenario assuming that any region partially equipped with AC systems nowadays will have all its households equipped with AC, but local temperature sensitivity will no longer progress; (2) A gradual spreading scenario mimicking "do like my neighbor" behavior; (3) A combination of the two scenarios. Increasing temperatures lead to an overall REC decrease ( -8 TWh by 2040 and down to 20 TWh by 2100) with significant spatial variability, which had never been quantified and mapped due to a lack of suited methodology and limited available data at the finest scale. The evolution of REC is modulated by the evolution of cooling needs and the deployment of AC systems to meet those needs. In the first 2 AC scenarios, the decrease of REC due to climate change could be totally offset in the South of France, which would then display an increase in REC. When the 2 AC scenarios are combined, an increase in REC could be seen over the whole country. The most extreme AC scenario shows a potential REC rise due to AC usage by 2% by 2040 and even 32% by 2100, which could be canceled by increasing the cooling setpoint up to 26-27 degrees C.
引用
收藏
页数:15
相关论文
共 24 条
  • [21] A global analysis of residential heating and cooling service demand and cost-effective energy consumption under different climate change scenarios up to 2050
    Keii Gi
    Fuminori Sano
    Ayami Hayashi
    Toshimasa Tomoda
    Keigo Akimoto
    Mitigation and Adaptation Strategies for Global Change, 2018, 23 : 51 - 79
  • [22] Correction to: Past and future hydrogeological risk assessment under climate change conditions over urban settlements and infrastructure systems: the case of a sub-regional area of Piedmont, Italy
    Marta Ellena
    Ricciardi Guglielmo
    Barbato Giuliana
    Bufa Alessandra
    Villani Veronica
    Mercogliano Paola
    Natural Hazards, 2021, 105 : 3141 - 3141
  • [23] Past and future hydrogeological risk assessment under climate change conditions over urban settlements and infrastructure systems: the case of a sub-regional area of Piedmont, Italy (vol 102, pg 275, 2020)
    Ellena, Marta
    Guglielmo, Ricciardi
    Giuliana, Barbato
    Alessandra, Bufa
    Veronica, Villani
    Paola, Mercogliano
    NATURAL HAZARDS, 2021, 105 (03) : 3141 - 3141
  • [24] Influence of urban canopy green coverage and future climate change scenarios on energy consumption of new sub-urban residential developments using coupled simulation techniques: A case study in Alexandria, Egypt
    Fahmy, M.
    Mahdy, M.
    Mahmoud, S.
    Abdelalim, M.
    Ezzeldin, S.
    Attia, S.
    ENERGY REPORTS, 2020, 6 : 638 - 645