イランにおける低炭素冷暖房の長期エネルギー転換経路
Long-term energy transition pathways for low-carbon heating and cooling in Iran (原題)
Saeed Ahmadi Kaliji, Bahareh Heidary
🤖 gxceed AI 要約
日本語
イランの分散型冷暖房部門をEnergyPLANでモデル化し、4つのシナリオを20年間シミュレーション。統合アプローチが最も効果的で、CO2排出量を70%、一次エネルギー消費を79%削減可能と示した。ヒートポンプ、地域冷暖房、CHP、太陽熱、PV、風力を組み合わせた統合的戦略の有効性を定量的に実証。
English
This study models Iran's distributed heating and cooling sector using EnergyPLAN, simulating four scenarios over 20 years. The combined approach proves most effective, cutting CO2 emissions by 70% and primary energy consumption by 79%. It demonstrates the efficacy of integrating heat pumps, district heating, CHP, solar thermal, PV, and wind for decarbonization.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本ではSSBJ開示やGX推進で、部門別の脱炭素経路の定量評価が求められており、本手法は地域冷暖房や再エネ導入の計画策定に参考となる。イラン固有の事情はあるが、統合シナリオ分析の枠組みは日本の自治体やエネルギー事業者にも応用可能。
In the global GX context
This paper provides a robust scenario framework for national heating and cooling transitions, relevant to global efforts under TCFD/ISSB and transition finance. It offers quantitative evidence for policy-making in fossil-fuel-dependent economies, complementing European-focused studies.
👥 読者別の含意
🔬研究者:Provides a replicable EnergyPLAN-based scenario methodology for national heating/cooling transitions.
🏢実務担当者:Offers insights for energy planners and utilities on integrating heat pumps, district heating, and renewables.
🏛政策担当者:Highlights the effectiveness of integrated approaches for decarbonizing heating/cooling, informing national strategies.
📄 Abstract(原文)
Introduction: The heating and cooling sector accounts for a substantial share of energy consumption and greenhouse gas emissions, making it a priority for national energy transition strategies. Although numerous studies have investigated low-carbon heating and cooling technologies in European countries, comprehensive scenario-based assessments of the long-term transition of Iran’s distributed heating and cooling sector remain limited. In particular, there is a lack of integrated analyses that simultaneously evaluate individual efficiency measures, district energy systems, and renewable energy technologies within a national energy system framework. This study aims to evaluate long-term energy transition pathways for Iran’s distributed heating and cooling sector and identify the most effective strategy for reducing primary energy consumption and carbon dioxide (CO2) emissions while improving overall system efficiency. Materials and methods: Iran’s heating and cooling system was modeled using EnergyPLAN version 12.6 based on national energy balance data, electricity demand, fuel consumption statistics, and technical parameters for the base year 2021–2022. Four transition scenarios were developed and simulated over a 20-year planning horizon: (i) Business as Usual, (ii) Individual Energy Approach, (iii) Integrated System Approach, and (iv) Combined Approach. The scenarios were compared in terms of primary energy consumption, CO2 emissions, energy efficiency, and overall system performance. Results: The simulations indicate that the Combined Approach outperforms all other scenarios. Compared with the Business-as-Usual scenario, it reduces CO2 emissions from approximately 200 Mt to 60 Mt (70% reduction) and decreases primary energy consumption from 845 TWh to 180 TWh (an approximately 79% reduction). The integrated deployment of heat pumps, district heating, combined heat and power (CHP), solar thermal systems, photovoltaic generation, and wind energy substantially improves system efficiency while reducing dependence on fossil fuels. Conclusions: The findings demonstrate that combining demand-side efficiency improvements with integrated energy infrastructure and renewable energy deployment provides the most effective pathway for decarbonizing Iran’s heating and cooling sector. The proposed framework offers quantitative evidence to support national energy transition planning and provides policy-relevant insights for other fossil fuel-dependent countries pursuing low-carbon heating and cooling strategies.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.20935/acadenergy8468first seen 2026-08-22 04:51:28
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