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防衛の脱炭素化:海軍基地設計のための低炭素フレームワーク

Decarbonizing Defense: A Low-Carbon Framework for Naval Base Design (原題)

Victor Chima Onwuchekwa

INTERNATIONAL JOURNAL OF ENGINEERING AND MODERN TECHNOLOGY📚 査読済 / ジャーナル2026-08-24#エネルギー転換対象セクター: defense
DOI: 10.56201/ijemt.vol.12.no5.2026.pg181.188
原典: https://doi.org/10.56201/ijemt.vol.12.no5.2026.pg181.188

🤖 gxceed AI 要約

日本語

本研究は、ナイジェリアのNNSパスファインダー海軍基地を事例に、防衛施設の低炭素設計フレームワークを提案する。太陽光発電や風力補助船舶などの再生可能エネルギー技術、電気タクシーや自転車ネットワークなどの持続可能な交通、低体積エネルギー建材を統合し、環境フットプリントを削減する。緑のインフラと空間計画により、気候対応型で資源自給型のキャンパスを目指す。

English

This study proposes a low-carbon design framework for naval bases, using Nigeria's NNS Pathfinder as a case study. It integrates renewable energy (solar PV, wind-assisted ships), sustainable transport (electric taxis, cycling), and low-embodied-energy materials (stabilized earth blocks, recycled steel) to reduce environmental footprint. Green infrastructure and spatial planning aim for climate-resilient, resource-sufficient campuses.

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

日本の防衛施設や自衛隊基地の脱炭素化は、政府のGX実現に向けた取り組みの一環として注目されている。本フレームワークは、防衛施設の省エネ・再エネ導入の参考事例となり得るが、日本の気候・規制条件に合わせた適応が必要。

In the global GX context

Globally, defense sectors are increasingly under pressure to align with climate goals. This framework offers a template for integrating renewables and sustainable design into military infrastructure, relevant to NATO and other nations' defense decarbonization strategies.

👥 読者別の含意

🔬研究者:Provides a conceptual framework for low-carbon military infrastructure design, useful for further empirical studies.

🏢実務担当者:Offers practical design elements (renewables, sustainable transport, materials) for defense facility projects.

🏛政策担当者:Highlights the potential for defense sectors to contribute to national decarbonization targets.

📄 Abstract(原文)

The architectural design of military infrastructure has often prioritized security and functionality over environmental sustainability. This thesis proposes a low-carbon naval base, using NNS Pathfinder as a case study to address the need for reducing greenhouse gas emissions in defense facilities. Integrating naval architecture, ecological design, and city ecology, the design framework applies renewable energy technologies such as solar photovoltaics and wind-assisted ships to reduce fossil fuel use. It supports sustainable transport through electric taxis, cycle networks, and walker corridors, and employs construction materials with low embodied energy, including stabilized earth blocks and recycled steel. Spatial planning harmonizes operation demands with environmental considerations, establishing specific areas for administration, residential, training, and environmental-recreation. Green infrastructure, such as rainwater harvesting and intensive vegetations, boosts resilience and minimizes the environmental footprint. The book asserts that naval facilities can be redesignated as climate-aware and resource-sufficient campuses, achieving worldwide reduction of carbon emissions as they act as beacons of sustainability in the contemporary world.

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