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The Australian wildfires from a systems dependency perspective

Datos Bibliográficos

ID15546367
AutoresJohn Handmer (0000-0002-6674-7946, International Institute for Applied Systems Analysis, autor de correspondencia), Stefan Hochrainer‐stigler (0000-0002-9929-8171, International Institute for Applied Systems Analysis), Thomas Schinko (0000-0003-1156-7574, International Institute for Applied Systems Analysis), Franziska Gaupp (0000-0001-5291-8049, International Institute for Applied Systems Analysis), Reinhard Mechler (0000-0003-2239-1578, International Institute for Applied Systems Analysis)
Año2020
Volumen15
Número12
Páginas121001-121001
Fecha de publicación2020-10-13
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaEnvironmental Research Letters (JOURNAL)
Identificadores de la revistaISSN: 1748-9326 • E-ISSN: 1748-9326
EditorialIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/abc0bc
OpenAlexW3093315429
IdiomaEN
Citas recibidas5
Referencias citadas21

Wildfires are a normal occurrence in much of the world, with many fire adapted ecosystems and societies (Moritz et al 2014). However, a number of drivers appear to be increasing the fire risk and propensity for losses globally (Anon 2019). These drivers include global climate change which through heat and drying is increasing landscape flammability (Podur and Wotton 2010; IPCC 2019, Jones et al 2020). Exposure is being exacerbated through increasing use of fire prone landscapes for urban development, infrastructure and related activities. There is also widespread farmland abandonment, with the consequent loss of land and fire-risk management (Komac et al 2020). Importantly, there are now indications that wildfires are increasingly characterized by severe ecosystem impacts (Lewis 2020). While smaller wildfires often have a rejuvenating effect, the catastrophic fires recently seen in Australia, US and Indonesia seem to leave some ecosystems very seriously damaged (Duncombe 2020, Ward et al 2020). This also has important socio-economic implications, including health, tourism and economic development. How to assess and deal with extreme wildfire risks in the future is a key question that needs to be addressed at the local, country and even global level

Climatology · Dependency (UML · Perspective (graphical · Computer Science · Disaster Management and Resilience · Environmental Science · Fire effects on ecosystems · Flood Risk Assessment and Management · Artificial Intelligence · Geology

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    Open Access•Thomas Schinko, C Berchtold et al.•Nature Climate Change•2023

  • The Summer 2019–2020 Wildfires in East Coast Australia and Their Impacts on Air Quality and Health in New South Wales, Australia

    Open Access•Hiep Nguyen Duc, Merched Azzi et al.•International Journal of…•2021

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    Open Access•Stefan Hochrainer‐stigler, Teresa Maria Deubelli-Hwang et al.•One Earth•2024

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    Open Access•Stefan Hochrainer‐stigler, Reinhard Mechler et al.•Environmental Research Letters•2025

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    Open Access•Max A Moritz, Enric Batllori et al.•Nature•2014

  • Globally networked risks and how to respond

    Open Access•D Helbing•Nature•2013

  • Vegetation fires in the Anthropocene

    Open Access•David M J S Bowman, Crystal A Kolden et al.•Nature Reviews Earth & Environment•2020

  • Enhancing resilience of systems to individual and systemic risk

    Open Access•Stefan Hochrainer‐stigler, Célian Colon et al.•International Journal of Disaster…•2020

Obras citantes distintas5
Citas por año1
Intervalo de citas2021 - 2025 (5)
Velocidad de citaciónrecent
Altamente citadoNo
Tipos de citaNeutras: 5
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