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Organizational Management in the VUCA Hydrogen Era: Towards a Hybrid Model of Adaptive Theories

VUCA水素時代における組織マネジメント:適応理論のハイブリッドモデルに向けて (AI 翻訳)

Pablo Mauricio Sánchez-Rojas, José David Peñuela-Lizcano, Miguel Ángel Zea-Sandoval, F. Galleguillos-Madrid, Y. Eguigure-Torres, José Rolando Bedoya-Ávalos, Ignacio Bonaza-Alzuria, María Elena Medina-Almendra, Galvarino Casanueva-Yáñez

Journal of Cultural Analysis and Social Change📚 査読済 / ジャーナル2026-03-30#水素
DOI: 10.64753/jcasc.v11i1.4731
原典: https://doi.org/10.64753/jcasc.v11i1.4731

🤖 gxceed AI 要約

日本語

本稿は、VUCA(変動性・不確実性・複雑性・曖昧性)の水素時代におけるエネルギー組織のマネジメント変革を探求。古典的組織論と新しいパラダイムの統合を提案し、水素や再生可能エネルギーの導入に必要な適応的マネジメントのハイブリッドモデルを構築。従来理論の限界を指摘し、産学官連携と継続的学習の重要性を強調する。

English

This paper explores organizational management transformation in the VUCA hydrogen era, proposing a hybrid model that integrates classical theories with adaptive approaches. It highlights the limitations of traditional management in addressing rapid technological change and market volatility, emphasizing collaboration among academia, industry, and government to foster innovation for hydrogen and renewable energy adoption.

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

日本は水素基本戦略を掲げ、水素社会の実現に向けた政策を推進している。本稿が提案する適応型マネジメントのハイブリッドモデルは、日本のエネルギー企業や政府がVUCA環境下で水素プロジェクトを推進する際の組織設計や意思決定プロセスに示唆を与える。特に産学官連携の重要性は、日本のGX推進策とも合致する。

In the global GX context

Globally, hydrogen is a key pillar of decarbonization strategies. This paper's hybrid management model offers a theoretical framework for energy organizations navigating the uncertainties of hydrogen deployment. It contributes to the discourse on organizational agility in the energy transition, relevant for companies and policymakers balancing stability and innovation in hydrogen projects.

👥 読者別の含意

🔬研究者:This paper provides a theoretical synthesis of classical and adaptive management theories applied to hydrogen era organizations, offering a conceptual foundation for further empirical research.

🏢実務担当者:Corporate sustainability teams can use the hybrid model to design organizational structures that balance operational efficiency with the flexibility needed for hydrogen and renewable energy projects.

🏛政策担当者:Policymakers can reference the framework to understand how to foster collaborative ecosystems among industry, academia, and government to accelerate hydrogen adoption.

📄 Abstract(原文)

In a world defined by volatility, uncertainty, complexity, and ambiguity (VUCA), energy organizations must rapidly adapt to the transition towards clean and sustainable sources, such as green hydrogen and other renewable energies. This manuscript explores the transformation of organizational management within this context, emphasizing the importance of integrating classical theories with emerging paradigms to address the challenges of the contemporary energy sector. The analysis reveals that, while traditional management theories provide a solid framework for understanding organizational dynamics, their capacity to respond to the speed of technological change and the fluctuations of the energy market is limited. In this regard, organizations must adopt a more flexible and adaptive approach that fosters innovation and collaboration among diverse actors such as academia, industry, and government. A hybrid model of adaptive management is proposed, combining the stability of classical organizational structures with the agility and collective intelligence demanded by VUCA environments in hydrogen era. This approach seeks not only to optimize operational efficiency but also to promote a culture of continuous learning and experimentation, essential for facing the uncertainty inherent in the adoption of new energy technologies. The manuscript concludes that the integration of classical management theories with digital and agile approaches enables a more comprehensive understanding of organizational phenomena in the energy sector. This theoretical synthesis is crucial for developing effective strategies that not only address the specific challenges of hydrogen and other renewable energies but also facilitate the transition towards a more sustainable and resilient global energy future.

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