The Long-Term Course of the Annual Total Sunshine Duration in Europe and Changes in the Phases of the Thermohaline Circulation in the North Atlantic (1901–2018)
27 jun 2023
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Publicado en línea: 27 jun 2023
Páginas: 49 - 65
Recibido: 30 oct 2022
DOI: https://doi.org/10.14746/quageo-2023-0023
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© 2023 Andrzej A. Marsz et al., published by Sciendo
This work is licensed under the Creative Commons Attribution 4.0 International License.
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![Course of the average annual SST (SSTST) from grids [40°N, 50°W] and [40°N, 60°W] and SD13S. Bold solid lines – fitting with a 5th-degree polynomial to empirical courses. SD, sunshine duration; SST, sea surface temperature.](https://sciendo-parsed.s3.eu-central-1.amazonaws.com/647351904e662f30ba539f38/j_quageo-2023-0023_fig_007.jpg?X-Amz-Algorithm=AWS4-HMAC-SHA256&X-Amz-Content-Sha256=UNSIGNED-PAYLOAD&X-Amz-Credential=AKIA6AP2G7AKOUXAVR44%2F20250913%2Feu-central-1%2Fs3%2Faws4_request&X-Amz-Date=20250913T083934Z&X-Amz-Expires=3600&X-Amz-Signature=80e2ac348df3b03eb7d799ac5118e1e2747c739fc61485785a9ea10e9616c09a&X-Amz-SignedHeaders=host&x-amz-checksum-mode=ENABLED&x-id=GetObject)
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![Linear correlation coefficients (r) between SD13S and the meridional SST gradient in the North Atlantic between 30 and 60°N to 40°W (average ϕ = 45°N; dSST[40W]) and the geopotential height at h500 at 45°, 50° and 55°N. Significance levels of correlation (p) are marked. Period of analysis 1949–2018. SD, sunshine duration; SST, sea surface temperature.](https://sciendo-parsed.s3.eu-central-1.amazonaws.com/647351904e662f30ba539f38/j_quageo-2023-0023_fig_008.jpg?X-Amz-Algorithm=AWS4-HMAC-SHA256&X-Amz-Content-Sha256=UNSIGNED-PAYLOAD&X-Amz-Credential=AKIA6AP2G7AKOUXAVR44%2F20250913%2Feu-central-1%2Fs3%2Faws4_request&X-Amz-Date=20250913T083934Z&X-Amz-Expires=3600&X-Amz-Signature=9165f6d531dfbbdd06e9ffc4d15f667c8952a139f926daca8e03e121534a1def&X-Amz-SignedHeaders=host&x-amz-checksum-mode=ENABLED&x-id=GetObject)
Fig. 9.

Average values of the annual area sunshine duration over Europe (SD13S) and the ranges of their variability in the subsequent North Atlantic Thermohaline Circulation phases_
North Atlantic Thermohaline Circulation phase | Years | Duration (years) | SD13S (h) | |||
---|---|---|---|---|---|---|
Average | Min | Max | Median | |||
1 | 1901–1926 | 26 | 1,681.7 | 1,497.0 | 2,050.2 | 1,661.2 |
2 | 1927–1963 | 37 | 1,730.1 | 1,514.2 | 1,921.7 | 1,718.1 |
3 | 1964–1988 | 25 | 1,575.7 | 1,415.9 | 1,735.2 | 1,582.9 |
4 | 1989–2018 | 31 | 1,770.0 | 1,597.1 | 2,032.3 | 1,759.0 |
Stations used in the study_
No. | Station | Country | Geographical coordinates | Altitude (m a.s.l.) | Number of supplementations of annual mean values | Data source |
---|---|---|---|---|---|---|
1 | Armagh | GB | 54.35°N, 6.65°W | 62 | 0 | Met Office |
2 | De Bilt | NL | 52.10°N, 5.18°E | 1 | 1 (1945) | ECAD |
3 | Geneva | CH | 46.20°N, 6.15°E | 405 | 0 | ECAD |
4 | Basel | CH | 47.53°N, 7.58°E | 316 | 0 | HISTALP |
5 | Zurich | CH | 47.38°N, 8.57°E | 555 | 0 | ECAD |
6 | Copenhagen | DK | 56.68°N, 12.53°E | 9 | 0 | DMI |
7 | Potsdam | DE | 52.38°N, 13.06°E | 81 | 1 (1945) | DWD |
8 | Kremsmunster | AT | 48.06°N, 14.13°E | 382 | 0 | HISTALP |
9 | Klagenfurt | AT | 46.65°N, 14.32°E | 459 | 0 | HISTALP |
10 | Zagreb | HR | 45.82°N, 15.97°E | 157 | 1 (1921) | HISTALP |
11 | Vienna | AT | 48.25°N, 16.36°E | 209 | 0 | HISTALP |
12 | Wroclaw | PL | 51.10°N, 16.90°E | 120 | 0 | |
13 | Krakow | PL | 50.07°N, 19.97°E | 206 | 0 | IGiGP UJ |
Characteristics of the DG3L index in the North Atlantic Thermohaline Circulation phases occurring in the years 1901–2018_
North Atlantic Thermohaline Circulation Phases | Years | Duration (years) | DG3L index | |||
---|---|---|---|---|---|---|
Average | Min | Max | STD | |||
1 | 1901–1926 | 26 | −0.846 | −1.921 | 0.682 | 0.605 |
2 | 1927–1963 | 37 | 0.844 | −0.116 | 1.879 | 0.563 |
3 | 1964–1988 | 25 | −0.782 | −1.836 | −0.073 | 0.472 |
4 | 1989–2018 | 31 | 1.851 | 0.299 | 4.836 | 1.226 |