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  • Climate-Leaf Analysis Multivariate Program (CLAMP) (Wolfe, 1993); Leaf apex attenuate; Leaf apex emarginate; Leaf apex round; Leaf base acute; Leaf base cordate; Leaf base round; Leaf length/width ratio 〈 1:1; Leaf length/width ratio 〉 4:1; Leaf length/width ratio 1-2:1; Leaf length/width ratio 2-3:1; Leaf length/width ratio 3-4:1; Leaf lobed; Leaf margin, entire; Leaf margin teeth acute; Leaf margin teeth close; Leaf margin teeth compound; Leaf margin teeth regular; Leaf margin teeth round; Leaf shape ellipitic; Leaf shape obovate; Leaf shape ovate; Leaf size leptophyll 1, 5-20 mm2; Leaf size leptophyll 2, 20-80 mm2; Leaf size mesophyll 1, 3600-6200 mm2; Leaf size mesophyll 2, 6200-10000 mm2; Leaf size mesophyll 3, 〉 10000 mm**2; Leaf size microphyll 1, 80-400 mm2; Leaf size microphyll 2, 400-1400 mm2; Leaf size microphyll 3, 1400-3600 mm2; Leaf size nanophyll, 〈 5 mm**2; Lincang; NECLIME; NECLIME_campaign; Neogene Climate Evolution in Eurasia; Paleontological sampling; PALSAMP; Yunnan, China  (1)
  • Yunnan_Province; Yunnan, China  (1)
  • PANGAEA  (2)
  • American Association for the Advancement of Science
  • Springer
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  • PANGAEA  (2)
  • American Association for the Advancement of Science
  • Springer
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  • 1
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    PANGAEA
    In:  Supplement to: Xing, Yao-Wu; Utescher, Torsten; Jacques, Frédéric M B; Su, Tao; Liu, Yu-Sheng Christopher; Huang, Yong-Jiang; Zhou, Zhekun (2012): Palaeoclimatic estimation reveals a weak winter monsoon in southwestern China during the late Miocene: Evidence from plant macrofossils. Palaeogeography, Palaeoclimatology, Palaeoecology, 358-360, 19-26, https://doi.org/10.1016/j.palaeo.2012.07.011
    Publication Date: 2024-02-17
    Description: The late Miocene Xianfeng flora of Yunnan Province, southwestern China, was chosen to reconstruct the paleoclimate and the intensity of the Asian monsoon. Three available quantitative climate reconstruction methods from fossil plants, i.e. Leaf Margin Analysis (LMA), the Climate Leaf Analysis Multivariate Program (CLAMP), and the Coexistence Approach (CA) were used in this study. MATs (mean annual temperatures) resulting from these three approaches (i.e., LMA: 17.2 ± 2.38 °C; CLAMP: 15.43 ± 1.25 °C; CA: 17.2-21.7 °C) appear to have been higher than the present (14.9 °C), suggesting a much warmer climate in the late Miocene. Both the growing season precipitation (GSP) from CLAMP (1908.7 ± 217.7 mm) and mean annual precipitation (MAP) from CA (1206.0-1613.0 mm) estimates are higher than modern values (1003.2 mm (GSP) and 1038 mm (MAP) respectively) indicating a more humid climate during the late Miocene. By comparing these with climates reconstructed from neighboring late Miocene floras, we conclude that the general late Miocene climate appears warmer and more humid than present conditions in southwestern China. Furthermore, the evident differences in estimated monthly temperatures between the summer and winter, and precipitations between the humid and dry seasons indicate the existence of seasonality, though not as strong as that of today. Difference in precipitation of dry season indicates a marked strengthening in the winter monsoon since the late Miocene. A new monsoon intensity index has also been defined based on precipitation seasonality to investigate the intensity of the Asian monsoon.
    Keywords: Yunnan_Province; Yunnan, China
    Type: Dataset
    Format: application/zip, 2 datasets
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2024-02-17
    Keywords: Climate-Leaf Analysis Multivariate Program (CLAMP) (Wolfe, 1993); Leaf apex attenuate; Leaf apex emarginate; Leaf apex round; Leaf base acute; Leaf base cordate; Leaf base round; Leaf length/width ratio 〈 1:1; Leaf length/width ratio 〉 4:1; Leaf length/width ratio 1-2:1; Leaf length/width ratio 2-3:1; Leaf length/width ratio 3-4:1; Leaf lobed; Leaf margin, entire; Leaf margin teeth acute; Leaf margin teeth close; Leaf margin teeth compound; Leaf margin teeth regular; Leaf margin teeth round; Leaf shape ellipitic; Leaf shape obovate; Leaf shape ovate; Leaf size leptophyll 1, 5-20 mm2; Leaf size leptophyll 2, 20-80 mm2; Leaf size mesophyll 1, 3600-6200 mm2; Leaf size mesophyll 2, 6200-10000 mm2; Leaf size mesophyll 3, 〉 10000 mm**2; Leaf size microphyll 1, 80-400 mm2; Leaf size microphyll 2, 400-1400 mm2; Leaf size microphyll 3, 1400-3600 mm2; Leaf size nanophyll, 〈 5 mm**2; Lincang; NECLIME; NECLIME_campaign; Neogene Climate Evolution in Eurasia; Paleontological sampling; PALSAMP; Yunnan, China
    Type: Dataset
    Format: text/tab-separated-values, 31 data points
    Location Call Number Expected Availability
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