気象学と制御工学の協奏で探る台風制御可能性 ―現実的な台風抑制技術の発見に向けた第一歩―

2026-03-13 東京大学

東京大学大阪大学研究グループは、台風よう極端気象人工小さな介入弱める可能性探る新しいシミュレーション手法開発した。気象制御工学融合し、目標与える最適介入自動設計するデータ駆動の「アンサンブルルマン制御」提案。シミュレーションでは、台風中心から250km離れ大気下層水蒸気1%未満減らす介入により、中心気圧3hPa上昇最大風速5m/s低下させる可能性た。現時点実装困難だが、効率介入手法探索可能にし、将来台風制御防災技術研究基盤なる成果れる。

気象学と制御工学の協奏で探る台風制御可能性 ―現実的な台風抑制技術の発見に向けた第一歩―
シミュレーションにおいて青で示す介入を徐々に弱くし、台風弱化を実現する「小さい力」を探求する。

<関連情報>

熱帯低気圧の制御可能性に関するデータ駆動型探究 Data-Driven Exploration of Tropical Cyclone’s Controllability

Yohei Sawada, Masashi Minamide, Yuyue Yan, Kazumune Hashimoto, Le Duc
Geophysical Research Letters  Published: 13 March 2026
DOI:https://doi.org/10.1029/2025GL120393

Abstract

Although the chaotic nature of the atmosphere may enable efficient control of tropical cyclones (TCs) via small-scale perturbations, few studies have proposed data-driven optimization methods to identify such perturbations. Here, we apply the recently proposed Ensemble Kalman Control (EnKC) to a TC simulation. We show that EnKC finds small-scale perturbations that mitigate TC. An EnKC-estimated reduction in surface water vapor, located approximately 250 km from the TC center, suppresses convective activity and latent heat release in the eye wall, leading to a reduction of TC intensity. To advance the discovery of feasible TC mitigation strategies, we discuss the potential of this data-driven method for leveraging chaos, as well as its remaining challenges.

Plain Language Summary

Tropical cyclones are chaotic systems, which means that small changes to the atmosphere might change how strong they become. We tested an approach called Ensemble Kalman Control that searches for the effective “small tweaks” to weaken a storm in a realistic weather model. Our method found useful tweaks that act over small areas. The most effective change was to slightly reduce the amount of water vapor near the ocean surface about 250 km from the storm’s center. This reduces activities of the tall thunderstorms and the release of heat in the ring of tall clouds, which in turn lowered the storm’s intensity. Our results suggest that targeted and data-driven interventions could someday help limit cyclone damage. However, they also highlight practical challenges.

1702地球物理及び地球化学
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