2003Journal of Tropical MeteorologyRequires access

DIFFERENCES OF INTERDACADAL OSCILLATION BETWEEN MEAN TEMPERATURE OF NORTHERN AND SOUTHERN HEMISPHERE AND THEIR INFLUENCES ON WARMING SIGNAL

Zhihong Jiang

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Abstract

On the basis of Multi-Taper spectral analysis, the work not only has examined and reformed monthly mean temperature time series of Northern and Southern Hemisphere from 1856 to 1998, but also has systematically contrasted the differences of interdacadal oscillation (IDO) between S-N hemisphere, ocean-land surface in different seasons, with especial analysis of IDO signals effects on global warming. The results shows that warming trend plays a dominant role in S-N hemisphere mean temperature variability during the last 150 years. However, there are the significant IDO with periods of about 40, 60~70 years super-imposed on a linear warming trend for Northern Hemisphere mean temperature which leads to the diminishing the linear warming rate in terms of its significance and stability, as opposed to that in Southern Hemisphere, especially in summer. Moreover, in comparison of land to sea surface temperature, IDO signals detected in the latter are found to be more remarkable than those in the former, as contrasted to the linear warming rate. It has been noticed that IDO shows its peak value in the middle 1990s, and begins to descend recently, a fact which probably affects on the coming warming rate of Northern Hemisphere mean temperature. Meanwhile, In terms of the GCM results from the HadCM2 model, preliminary analysis implies that the IDO may be the inherent oscillation of the ocean and atmosphere system, but warming trends are not related to natural variability.

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What this paper is about

On the basis of Multi-Taper spectral analysis, the work not only has examined and reformed monthly mean temperature time series of Northern and Southern Hemisphere from 1856 to 1998, but also has systematically contrasted the differences of interdacadal oscillation (IDO) between S-N hemisphere, ocean-land surface in different seasons, with especial analysis of IDO signals effects on global warming. The results shows that warming trend plays a dominant role in S-N hemisphere mean temperature variability during the last 150 years. However, there are the significant IDO with periods of about 40, 60~70 years super-imposed on a linear warming trend for Northern Hemisphere mean temperature which leads to the diminishing the linear warming rate in terms of its significance and stability, as opposed to that in Southern Hemisphere, especially in summer. Moreover, in comparison of land to sea surface temperature, IDO signals detected in the latter are found to be more remarkable than those in the former, as contrasted to the linear warming rate. It has been noticed that IDO shows its peak value in the middle 1990s, and begins to descend recently, a fact which probably affects on the coming warming rate of Northern Hemisphere mean temperature. Meanwhile, In terms of the GCM results from the HadCM2 model, preliminary analysis implies that the IDO may be the inherent oscillation of the ocean and atmosphere system, but warming trends are not related to natural variability.

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Available abstract

On the basis of Multi-Taper spectral analysis, the work not only has examined and reformed monthly mean temperature time series of Northern and Southern Hemisphere from 1856 to 1998, but also has systematically contrasted the differences of interdacadal oscillation (IDO) between S-N hemisphere, ocean-land surface in different seasons, with especial analysis of IDO signals effects on global warming. The results shows that warming trend plays a dominant role in S-N hemisphere mean temperature variability during the last 150 years. However, there are the significant IDO with periods of about 40, 60~70 years super-imposed on a linear warming trend for Northern Hemisphere mean temperature which leads to the diminishing the linear warming rate in terms of its significance and stability, as opposed to that in Southern Hemisphere, especially in summer. Moreover, in comparison of land to sea surface temperature, IDO signals detected in the latter are found to be more remarkable than those in the former, as contrasted to the linear warming rate. It has been noticed that IDO shows its peak value in the middle 1990s, and begins to descend recently, a fact which probably affects on the coming warming rate of Northern Hemisphere mean temperature. Meanwhile, In terms of the GCM results from the HadCM2 model, preliminary analysis implies that the IDO may be the inherent oscillation of the ocean and atmosphere system, but warming trends are not related to natural variability.

Key concepts: Northern Hemisphere, Southern Hemisphere, Climatology, Environmental science, Sea surface temperature, Global warming, Atmosphere (unit), Mean radiant temperature

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DIFFERENCES OF INTERDACADAL OSCILLATION BETWEEN MEAN TEMPERATURE OF NORTHERN AND SOUTHERN HEMISPHERE AND THEIR INFLUENCES ON WARMING SIGNAL — Research Paper | ScholarLens