Energy Sustainable Development/Energy for sustainable development· 2026Q1
Assessing power system vulnerability to climate-related stressors and shocks: The case of Indonesia
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- Q1SCImago
- 2026year
Short summary
Indonesia's power system faces up to a 36 percentage point erosion of reserve margins by 2030 due to climate change, with generation capacity reduced by heat and transmission infrastructure threatened by extreme weather.
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Key points
- An integrated, spatially explicit approach was developed to assess climate vulnerabilities in Indonesia's power system.
- Generation capacity is projected to decrease due to heat stressors, while transmission infrastructure is at risk from climate shocks like floods and landslides.
- Reserve margins in Indonesia's power system could decline by up to 36 percentage points under a 10-year plan due to climate impacts.
- The Jawa-Madura-Bali system, the largest, faces a 20.8 percentage point margin decline, falling below planning thresholds.
AI-generated from the title and abstract; the full text is not read.
Abstract
Climate change and extreme weather are increasing the vulnerability of power systems globally, particularly in emerging economies such as Indonesia. Yet, existing studies often assess these impacts in isolation, focusing on individual components or specific hazards, leaving system-level implications under-examined. To address this gap, we develop an integrated, spatially explicit approach to assess an energy system's climate-related vulnerabilities and their impacts, and apply the approach to Indonesia. We quantify climate-based vulnerabilities in generation and transmission infrastructure as well as in demand by distinguishing stressors (temperature rise) and shocks (disruptive hazards due to sea-level rise, flooding, and landslides). Through geospatial data analysis, derating models, and regression analysis, we examine existing and planned assets and demand under historical and future climate conditions. Results indicate that both existing and planned generation are likely to experience stress, which implies a reduction in usable capacity, even as electricity demand increases due to temperature rise, and transmission assets face potential disruption from climate change-induced shocks. Together, these effects erode reserve margins by up to 36 percentage points under the 10-year plan, indicating a substantial reduction in system resilience. The largest system, Jawa-Madura-Bali, experiences a 20.8 percentage point decline, leaving a remaining margin of 26.5%, below the 10-year planning threshold. Importantly, the findings suggest that a growing share of future capacity expansion may be absorbed by climate-induced losses, implying that adaptation-related investments may increasingly be required simply to maintain existing supply levels rather than meet future requirements. We conclude that there is an urgent need to embed climate considerations more explicitly into power sector planning.
The authors' abstract, as published at the source. Energy Sustainable Development/Energy for sustainable development, 2026 · DOI ↗
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Field: Civil and Structural Engineering
Civil and Structural EngineeringEngineering