Climate change shifts the North Pacific storm track polewards

Rei Chemke
Janni Yuval
Nature (2026)

Abstract

Across the North Pacific Ocean, the mid-latitude storm track accounts for most of the heat and moisture transport into the Arctic and western North America, considerably influencing regional precipitation and temperature patterns¹, ². By the end of this century, the winter North Pacific storm track is projected to shift poleward³⁻⁶, with substantial implications for oceanic ecosystems and land-based water availability¹, ⁷. While atmospheric reanalyses suggest a poleward shift of the storm track⁷⁻¹³, the lack of an observed wind record has left it uncertain whether the storm track shift has occurred in recent decades, and what role climate change plays in determining the storm track position. Here, we derive an observational constraint for mid-latitude storm tracks and show that the winter North Pacific storm track has shifted substantially poleward, emerging from natural variability. A poleward shift of storm track-induced heat and moisture flux is also evident over western North America, implying regional impacts on precipitation and temperature patterns. Our analysis further reveals that climate models underestimate the poleward shift of the storm track in recent decades, suggesting that the future human-induced impacts on both the North Pacific ecosystem and western North America might be larger than in current predictions.
×