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プリム・レックス理論と国際エネルギー機関:エネルギー安全保障から気候収容力制約へ——世界エネルギーガバナンスの八次元再構築

English version: Prim-Lex Theory and the International Energy Agency: From Energy Security to Climate Carrying Capacity Constraints——Eight-Dimensional Restructuring of Global Energy Governance (原題)

Shen Xiaowang

Zenodo (CERN European Organization for Nuclear Research)プレプリント2026-08-01#エネルギー転換対象セクター: power
DOI: 10.5281/zenodo.21744170
原典: https://doi.org/10.5281/zenodo.21744170

🤖 gxceed AI 要約

日本語

本論文は、IEAのエネルギー見通しが「エネルギー安全保障」を優先し気候収容力を物理的制約として組み込んでいないと批判し、プリム・レックス理論に基づくREMCモデルとGCSOS枠組みを提案する。各国のエネルギー消費を代謝赤字として会計化し、再生可能エネルギーの空間配置を最適化する八次元枠組みを設計。気候収容力をエネルギー安全保障の新たな定義次元とすることを提唱する。

English

This paper critiques the IEA's energy outlook for prioritizing 'energy security' without incorporating climate carrying capacity as a physical constraint. It proposes the REMC model and GCSOS framework based on Prim-Lex Theory, introducing 'energy metabolic deficit' accounting and an eight-dimensional optimization scheme for renewable energy layout, arguing that climate carrying capacity should redefine energy security.

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GX政策(GX推進戦略、エネルギー基本計画)において、気候収容力を明示的に考慮したエネルギー計画の理論的裏付けを提供する。特に、再生可能エネルギー導入拡大と原子力の位置づけを巡る議論に、物理的制約の観点から新たな視座を与える。

In the global GX context

This paper contributes to global energy governance scholarship by proposing a framework that integrates climate carrying capacity into energy security definitions, relevant to IEA, IPCC, and UNFCCC processes. It offers a novel theoretical lens for transition finance and climate policy design, potentially influencing international energy outlooks and investment decisions.

👥 読者別の含意

🔬研究者:Provides a novel theoretical framework for integrating climate limits into energy governance models.

🏢実務担当者:Offers a conceptual basis for aligning corporate energy strategies with climate carrying capacity constraints.

🏛政策担当者:Suggests incorporating climate carrying capacity into national energy planning and international governance frameworks.

📄 Abstract(原文)

The International Energy Agency's (IEA) World Energy Outlook series serves as the core reference document for global energy policy-making. However, the IEA's energy outlook framework has always prioritized "energy security" and has failed to adequately incorporate climate carrying capacity as a physical hard constraint. "Energy security" is defined as "access to adequate, reliable, and diversified energy supplies at affordable prices"——a human-centric definition that ignores the physical limits of the Earth system regarding energy metabolism: the waste heat emissions from fossil fuel combustion cannot indefinitely exceed the atmosphere's radiative cooling capacity, and the carbon sink's absorption of CO₂ cannot indefinitely exceed its biogeochemical capacity. Based on the complete theoretical system of Prim-Lex Theory (Economic Climatology)——the Fourfold Prim-Fire (Physical Prim-Fire, Animal Prim-Fire, Plant Prim-Fire, and Prim-Fire of Mind), the GC⁴A three-tier governance architecture, the Five-Element dynamic coupling equations, the Eight-Dimensional Framework, and the Prim-Nexus Guidance——this paper proposes to reconstruct the global energy governance framework using the REMC (Regional Economic Metabolism Cap) model and the GCSOS (Global Climate Safe Operating Space) framework. It redefines "energy security" as "the sustainable operational capacity of the energy system under the hard constraints of climate carrying capacity," and proposes the concept of "energy metabolic deficit"——converting each country's energy consumption structure into REMC metabolic deficit accounting. This paper designs an eight-dimensional optimization scheme for renewable energy layout——using GCSOS three-color zoning to guide the global spatial configuration of solar, wind, geothermal, and other renewable energy sources. Using the 2026 IEA World Energy Outlook and World Energy Investment Report as the policy window, it demonstrates that climate carrying capacity should become the new defining dimension of energy security. This paper systematically elaborates the specific applications, mathematical expressions, data collection sources, and empirical cases of each dimension of the Eight-Dimensional Framework in energy governance, providing a complete mathematical foundation and operational pathway for the transition of global energy governance from "fossil energy security" to "renewable energy security under climate carrying capacity constraints."

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