The average location of observed western North Pacific (WNP) tropical cyclones (TCs) has shifted north over the last several decades, but the cause remains not fully understood. Here we show that, for the annual average, the observed northward migration of WNP TCs is related to changes in TC seasonality, not to a northward migration in all seasons. Normally, peak-season (July–September) TCs form and travel further north than late-season (October–December) TCs. In recent decades, related to less frequent late-season TCs, seasonally higher-latitude TCs contribute relatively more to the annual-average location and seasonally lower-latitude TCs contribute less. We show that the change in TC seasonality is related to the different responses of l...
The North Pacific Ocean is the most active region on our planet in terms of tropical cyclone (TC) ac...
The life cycle of the Southeast Asian–western North Pacific monsoon circulation is established by th...
Recent research has strengthened the understanding of the links between climate and tropical cyclone...
Tropical cyclones in the western North Pacific have shifted north in recent decades, but the reasons...
The average latitude where tropical cyclones (TCs) reach their peak intensity has been observed to b...
A recent study showed that the global average latitude where tropical cyclones achieve their lifetim...
Temporally inconsistent and potentially unreliable global historical data hinder the detection of tr...
Forced interannual-to-decadal variability of annual tropical cyclone (TC) track density in the weste...
This study investigates long-term trends in tropical cyclones (TCs) over the extratropical western N...
The authors investigate the influence of western North Pacific (WNP) tropical cyclones (TCs) on thei...
Tropical-cyclone (TC) translation distance, proportional to its duration and translation speed, basi...
© 2019, Springer-Verlag GmbH Germany, part of Springer Nature. The tropical cyclone (TC) genesis num...
The climatology of tropical cyclones is an immediate research need, specifically to better understan...
An atmospheric regional climate model (CCLM) was employed to dynamically downscale atmospheric reana...
Tropical cyclone (TC) translation speed often affects the time of strong wind attacks and precipitat...
The North Pacific Ocean is the most active region on our planet in terms of tropical cyclone (TC) ac...
The life cycle of the Southeast Asian–western North Pacific monsoon circulation is established by th...
Recent research has strengthened the understanding of the links between climate and tropical cyclone...
Tropical cyclones in the western North Pacific have shifted north in recent decades, but the reasons...
The average latitude where tropical cyclones (TCs) reach their peak intensity has been observed to b...
A recent study showed that the global average latitude where tropical cyclones achieve their lifetim...
Temporally inconsistent and potentially unreliable global historical data hinder the detection of tr...
Forced interannual-to-decadal variability of annual tropical cyclone (TC) track density in the weste...
This study investigates long-term trends in tropical cyclones (TCs) over the extratropical western N...
The authors investigate the influence of western North Pacific (WNP) tropical cyclones (TCs) on thei...
Tropical-cyclone (TC) translation distance, proportional to its duration and translation speed, basi...
© 2019, Springer-Verlag GmbH Germany, part of Springer Nature. The tropical cyclone (TC) genesis num...
The climatology of tropical cyclones is an immediate research need, specifically to better understan...
An atmospheric regional climate model (CCLM) was employed to dynamically downscale atmospheric reana...
Tropical cyclone (TC) translation speed often affects the time of strong wind attacks and precipitat...
The North Pacific Ocean is the most active region on our planet in terms of tropical cyclone (TC) ac...
The life cycle of the Southeast Asian–western North Pacific monsoon circulation is established by th...
Recent research has strengthened the understanding of the links between climate and tropical cyclone...