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リガの住宅ストックの脱炭素化:集合住宅における太陽光統合とエネルギー共有

Decarbonising Riga's housing stock: solar integration and energy sharing in multi-apartment buildings (原題)

Krista Petersone, Valdis Ratniks, Jeļena Ziemele

eceee Summer Study proceedings📚 査読済 / ジャーナル2026-08-31#再生可能エネルギーOrigin: EU経営インパクト: コスト削減対象セクター: real_estate
DOI: 10.66506/essp.204
原典: https://doi.org/10.66506/essp.204
📄 PDF

🤖 gxceed AI 要約

日本語

ラトビア・リガの集合住宅を対象に、屋上太陽光の統合とエネルギー共有の実現可能性を検討。給湯とEV充電の昼間消費がPV自家消費を高める一方、集合住宅では法的・規制上の障壁が大きい。市・国の支援策とCitizen Energy Packageの枠組み設計に示唆を与える。

English

This study examines rooftop PV integration and energy sharing in Riga's multi-apartment buildings. Daytime demand from domestic hot water and EV charging can improve self-consumption, but legal and regulatory barriers persist across the EU. Findings inform municipal and national support measures under the Citizen Energy Package.

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

集合住宅・区分所有という日本と共通する構造課題を扱い、エネルギーコミュニティや共有型太陽光の制度設計を考える上で参考になる。日本のマンションにおけるPV導入・電力共有の議論にも示唆。

In the global GX context

Adds EU empirical evidence on collective self-consumption barriers flagged by the European Court of Auditors, relevant to CSRD-era urban decarbonisation and the Citizen Energy Package. Complements global scholarship on energy communities and distributed PV governance.

👥 読者別の含意

🔬研究者:集合住宅におけるPV統合とエネルギー共有の技術・制度条件を都市規模で分析する事例として有用。

🏢実務担当者:集合住宅オーナーや管理組合がPV・EV充電・共有スキームを検討する際の制約条件を理解できる。

🏛政策担当者:集合住宅向けの再エネ統合支援策と共有型電力制度の設計に示唆を与える。

📄 Abstract(原文)

Extended abstract 4-293-26 Latvia has the second-highest share of flat-dwellers in the EU, with over 64% of residents living in apartment buildings – a pattern especially pronounced in Riga, where roughly 90% of the building stock predates 1990. Multi-apartment buildings sit at the centre of Riga's decarbonisation agenda: at least 6,000 require renovation, and a far greater number fall short of optimal energy performance. Complex property relations and fragmented housing management have long represented structural barriers to local renovation projects. The recent energy crisis has shifted energy governance higher on the urban policy agenda, as rising prices brought building-level energy systems into sharper focus and opened space for energy-community approaches combining renewable energy integration with efficiency measures. Residents of multi-apartment buildings might appear well positioned to form energy communities, given their proximity and shared interests. In practice, however, solar energy sharing remains difficult to implement. Building envelopes and electrical installations may require targeted upgrades before renewable integration is feasible, while collective self-consumption continues to face legal and regulatory barriers across many EU member states – a situation recently flagged by the European Court of Auditors. Renewable energy integration in multi-apartment buildings thus represents both a technical challenge and a policy frontier, requiring configuration-specific models and scenarios. This study addresses the topic from two angles. First, it maps city-wide needs for decarbonising heat supply through local renewable energy and system integration. Second, it examines an energy-sharing concept for multi-apartment buildings, accounting for the specific conditions governing customer connections, metering, and energy-market data exchange. The analysis prioritises buildings with domestic hot-water heating and electric vehicle charging, where daytime consumption can improve the local use of rooftop PV generation. Realising the full benefits of rooftop PV would also require enabling individual apartment-level consumption – feasible under the current framework primarily in buildings with a single distribution system connection point. These findings inform the design of municipal and national support measures for renewable energy integration in multi-apartment buildings and contribute to the broader objective of enabling energy-sharing frameworks and affordable energy solutions under the Citizen Energy Package. Download presentation.

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