Real-time high-resolution modelling of grid carbon emissions intensity

被引:3
|
作者
Aryai, Vahid [1 ]
Goldsworthy, Mark [1 ]
机构
[1] CSIRO Energy, 10 Murray Dwyer Cr, Mayfield West, NSW 2304, Australia
关键词
Carbon intensity; Carbon accounting; Net zero; Flow tracing; Grid carbon; National electricity market; FLOW; DEMAND;
D O I
10.1016/j.scs.2024.105316
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Reducing greenhouse gas emissions in the energy industry is broadly acknowledged as important with numerous countries implementing targets to reduce emissions. Understanding the carbon emissions intensity of electricity grids is an important step in this process, and higher spatial and temporal granularity estimates are critical for delivering actionable insights. Existing emissions intensity models are limited in terms of their real-time availability and, in particular, their spatial granularity. Here we outline a method for estimating emissions intensity of large-scale interconnected electricity networks in real-time at substation -level resolution. This is realized by integrating nation-wide high -resolution electricity generation and demand data, regional population data, a detailed model of the electricity grid, and power flow simulation and flow tracing models. Results for Australia ' s National Electricity Market reveal that most capital city locations have higher emissions intensity than neighbouring regional areas, though the variation within a city can also be substantial. In general, emissions intensity is higher in areas closer to, or directly fed by emissions intensive coal and gas generators. These results have important implications for the design of energy efficiency incentives and demand response strategies, in the rollout of distributed renewable generation, and in carbon accounting.
引用
下载
收藏
页数:17
相关论文
共 50 条
  • [1] Evaluating high-resolution aviation emissions using real-time flight data
    Zhao, Yiwei
    Zhu, Meiyin
    Zhou, Limin
    Gao, Mengyun
    Xu, Zheng
    Zhong, Shenghui
    Pan, Kang
    Chen, Longfei
    SCIENCE OF THE TOTAL ENVIRONMENT, 2024, 951
  • [2] Real-Time High-Resolution Background Matting
    Lin, Shanchuan
    Ryabtsev, Andrey
    Sengupta, Soumyadip
    Curless, Brian
    Seitz, Steve
    Kemelmacher-Shlizerman, Ira
    2021 IEEE/CVF CONFERENCE ON COMPUTER VISION AND PATTERN RECOGNITION, CVPR 2021, 2021, : 8758 - 8767
  • [3] HIGH-RESOLUTION REAL-TIME ULTRASONIC SCANNER
    BERSON, M
    VAILLANT, L
    PATAT, F
    POURCELOT, L
    ULTRASOUND IN MEDICINE AND BIOLOGY, 1992, 18 (05): : 471 - 478
  • [4] HIGH-RESOLUTION REAL-TIME SONOGRAPHY OF THE THYROID
    SIMEONE, JF
    DANIELS, GH
    MUELLER, PR
    MALOOF, F
    VANSONNENBERG, E
    HALL, DA
    OCONNELL, RS
    FERRUCCI, JT
    WITTENBERG, J
    RADIOLOGY, 1982, 145 (02) : 431 - 435
  • [5] HIGH-RESOLUTION REAL-TIME SONOGRAPHY FOR VARICOCELES
    GRITZMANN, N
    HALLER, J
    CZEMBIREK, H
    LEITNER, H
    KUMPAN, W
    FLOTH, A
    FORTSCHRITTE AUF DEM GEBIETE DER RONTGENSTRAHLEN UND DER NUKLEARMEDIZIN, 1986, 144 (02): : 166 - 169
  • [6] HIGH-RESOLUTION REAL-TIME SONOGRAPHY OF THE PARATHYROID
    SIMEONE, JF
    MUELLER, PR
    FERRUCCI, JT
    VANSONNENBERG, E
    WANG, CA
    HALL, DA
    WITTENBERG, J
    RADIOLOGY, 1981, 141 (03) : 745 - 751
  • [7] HIGH-RESOLUTION REAL-TIME ULTRASONOGRAPHY OF THE HEAD IN INFANCY
    BABCOCK, DS
    HAN, BK
    AMERICAN JOURNAL OF ROENTGENOLOGY, 1980, 135 (03) : 641 - 641
  • [8] High-resolution real-time MRI for vascular interventions
    Terashima, M
    De la pena-Almageur, E
    Nayak, KS
    Yang, PC
    Pauly, JM
    Hu, BS
    McConnell, MV
    CIRCULATION, 2001, 104 (17) : 638 - 638
  • [9] A real-time high-resolution optical SAR processor
    Marchese, Linda
    Doucet, Michel
    Harnisch, Bernd
    Suess, Martin
    Bourqui, Pascal
    Legros, Mathieu
    Desnoyers, Nichola
    Guillot, Ludovic
    Mercier, Luc
    Savard, Maxime
    Martel, Anne
    Chateauneuf, Francois
    Bergeron, Alain
    RADAR SENSOR TECHNOLOGY XIV, 2010, 7669
  • [10] Real-time video mosaicing with a high-resolution microendoscope
    Bedard, Noah
    Quang, Timothy
    Schmeler, Kathleen
    Richards-Kortum, Rebecca
    Tkaczyk, Tomasz S.
    BIOMEDICAL OPTICS EXPRESS, 2012, 3 (10): : 2428 - 2435