Gulf Stream and ENSO Increase the Temperature Sensitivity of Atlantic Tropical Cyclones.

Research output: Contribution to journalJournal articleResearchpeer-review

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Gulf Stream and ENSO Increase the Temperature Sensitivity of Atlantic Tropical Cyclones. / Moore, John; Grinsted, Aslak; Jevrejeva, Svetlana.

In: Journal of Climate, Vol. 21, No. 7, 2008, p. 1523-1531.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Moore, J, Grinsted, A & Jevrejeva, S 2008, 'Gulf Stream and ENSO Increase the Temperature Sensitivity of Atlantic Tropical Cyclones.', Journal of Climate, vol. 21, no. 7, pp. 1523-1531.

APA

Moore, J., Grinsted, A., & Jevrejeva, S. (2008). Gulf Stream and ENSO Increase the Temperature Sensitivity of Atlantic Tropical Cyclones. Journal of Climate, 21(7), 1523-1531.

Vancouver

Moore J, Grinsted A, Jevrejeva S. Gulf Stream and ENSO Increase the Temperature Sensitivity of Atlantic Tropical Cyclones. Journal of Climate. 2008;21(7):1523-1531.

Author

Moore, John ; Grinsted, Aslak ; Jevrejeva, Svetlana. / Gulf Stream and ENSO Increase the Temperature Sensitivity of Atlantic Tropical Cyclones. In: Journal of Climate. 2008 ; Vol. 21, No. 7. pp. 1523-1531.

Bibtex

@article{8403e990e61a11ddbf70000ea68e967b,
title = "Gulf Stream and ENSO Increase the Temperature Sensitivity of Atlantic Tropical Cyclones.",
abstract = "Controversy exists over the role of the recent rise in sea surface temperatures (SST) and the frequency of tropical cyclones or hurricanes. Here, 135 yr of observational records are used to demonstrate how sea surface temperature, sea level pressure, and cyclone numbers are linked. A novel wavelet-lag coherence method is used to study cause and effect relations over a large space of time scales, phase lags, and periods. It is found that SST and cyclones are not merely correlated, but are in a negative feedback loop, where rising SST causes increased numbers of cyclones, which reduce SST. This is statistically most significant at decadal and not at longer periods, which is contrary to expectations if long-period natural cycles are important in driving cyclone numbers. Spatial relationships are examined using phase-aware teleconnections, which at the dominant decadal period show the in-phase behavior of the Atlantic SST in the Gulf Stream region, reflecting the role of the transportion of heat northward from the tropical Atlantic. At 5-yr periods there is significant coherence when SST leads cyclones by 2 yr, and this is associated with tropical ENSO activity such that, as predicted, increasing numbers of El Ni{\~n}os cause fewer Atlantic cyclones. The pattern of coherence existing since 1970 strongly favors the decadal coherence band, and despite growing coherence at higher frequencies, there is none at the 5-yr band, perhaps explaining why the observed sensitivity between SST and cyclones is larger than that from general circulation model (GCM) predictions and becoming greater.",
author = "John Moore and Aslak Grinsted and Svetlana Jevrejeva",
note = "Paper id:: 10.1175/2007JCLI1752.1",
year = "2008",
language = "English",
volume = "21",
pages = "1523--1531",
journal = "Journal of Climate",
issn = "0894-8755",
publisher = "American Meteorological Society",
number = "7",

}

RIS

TY - JOUR

T1 - Gulf Stream and ENSO Increase the Temperature Sensitivity of Atlantic Tropical Cyclones.

AU - Moore, John

AU - Grinsted, Aslak

AU - Jevrejeva, Svetlana

N1 - Paper id:: 10.1175/2007JCLI1752.1

PY - 2008

Y1 - 2008

N2 - Controversy exists over the role of the recent rise in sea surface temperatures (SST) and the frequency of tropical cyclones or hurricanes. Here, 135 yr of observational records are used to demonstrate how sea surface temperature, sea level pressure, and cyclone numbers are linked. A novel wavelet-lag coherence method is used to study cause and effect relations over a large space of time scales, phase lags, and periods. It is found that SST and cyclones are not merely correlated, but are in a negative feedback loop, where rising SST causes increased numbers of cyclones, which reduce SST. This is statistically most significant at decadal and not at longer periods, which is contrary to expectations if long-period natural cycles are important in driving cyclone numbers. Spatial relationships are examined using phase-aware teleconnections, which at the dominant decadal period show the in-phase behavior of the Atlantic SST in the Gulf Stream region, reflecting the role of the transportion of heat northward from the tropical Atlantic. At 5-yr periods there is significant coherence when SST leads cyclones by 2 yr, and this is associated with tropical ENSO activity such that, as predicted, increasing numbers of El Niños cause fewer Atlantic cyclones. The pattern of coherence existing since 1970 strongly favors the decadal coherence band, and despite growing coherence at higher frequencies, there is none at the 5-yr band, perhaps explaining why the observed sensitivity between SST and cyclones is larger than that from general circulation model (GCM) predictions and becoming greater.

AB - Controversy exists over the role of the recent rise in sea surface temperatures (SST) and the frequency of tropical cyclones or hurricanes. Here, 135 yr of observational records are used to demonstrate how sea surface temperature, sea level pressure, and cyclone numbers are linked. A novel wavelet-lag coherence method is used to study cause and effect relations over a large space of time scales, phase lags, and periods. It is found that SST and cyclones are not merely correlated, but are in a negative feedback loop, where rising SST causes increased numbers of cyclones, which reduce SST. This is statistically most significant at decadal and not at longer periods, which is contrary to expectations if long-period natural cycles are important in driving cyclone numbers. Spatial relationships are examined using phase-aware teleconnections, which at the dominant decadal period show the in-phase behavior of the Atlantic SST in the Gulf Stream region, reflecting the role of the transportion of heat northward from the tropical Atlantic. At 5-yr periods there is significant coherence when SST leads cyclones by 2 yr, and this is associated with tropical ENSO activity such that, as predicted, increasing numbers of El Niños cause fewer Atlantic cyclones. The pattern of coherence existing since 1970 strongly favors the decadal coherence band, and despite growing coherence at higher frequencies, there is none at the 5-yr band, perhaps explaining why the observed sensitivity between SST and cyclones is larger than that from general circulation model (GCM) predictions and becoming greater.

M3 - Journal article

VL - 21

SP - 1523

EP - 1531

JO - Journal of Climate

JF - Journal of Climate

SN - 0894-8755

IS - 7

ER -

ID: 9831143