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Simulations of the impacts of dynamic vegetation on interannual and interdecadal variability of Asian summer monsoon with modern and mid-Holocene orbital forcings

机译:利用现代和中全新世轨道强迫模拟动态植被对亚洲夏季风年际和年代际变化的影响

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摘要

The impacts of dynamic vegetation on interannual and interdecadal variability of Asian summer monsoon in modern (0 kyr) and mid-Holocene (6 kyr) climates are investigated by contrasting simulations with and without dynamic vegetation in a coupled ocean-atmosphere model.rnAccording to a dynamic index of South Asian summer monsoon, it has been found that the strengths of interannual and interdecadal westerly wind tend not to be affected by the dynamic vegetation over South Asia in the lower troposphere for 0 kyr and 6 kyr. However, based on a dynamic index of western North Pacific (WNP) monsoon, the strengths of tropical westerly wind and south-north cross-equatorial transport are weakened over the tropical western Pacific in the lower troposphere for 0 kyr and 6 kyr. It suggests the impact of dynamic vegetation is more obvious for the WNP monsoon than for the South Asian monsoon. Also, it implies the impact of dynamic vegetation on the interannual and interdecadal circulations is distinctly regional. Singular value decomposition (SVD) analysis shows that the impact of dynamic vegetation can remodel the leading correlation mode (SVD1) between precipitation and surface temperature. All of the interannual and interdecadal precipitation patterns with and without the impact of dynamic vegetation are associated with positive anomalies over India and southeastern China. However, the impact of dynamic vegetation tends to enhance (keep) the positive interannual temperature anomalies of SVD1 over the midlatitudinal Eurasia (WNP) for 0 kyr, but to reduce the anomalies over the midlatitudinal Eurasia and WNP for 6 kyr. Furthermore, the La Nina-like sea surface temperature (SST) anomalies always dominate the tropics for 0 kyr and 6 kyr. It suggests La Nina-like SST anomalies are the important mechanism to induce the above-mentioned precipitation pattern no matter whether for 0 kyr or for 6 kyr. For the interdecadal surface temperature pattern of SVD1, the impact of dynamic vegetation tends to enhance (reduce) positive anomalies over the midlatitudinal Eurasia (WNP) for 0 kyr, but to reduce (keep) positive anomalies over the midlatitudinal Eurasia (WNP) for 6 kyr. Also, all of the above implies the impact of dynamic vegetation is a mechanism to induce the long-term change of leading interannual and interdecadal surface temperature pattern over the midlatitudinal Eurasia and/or WNP.
机译:通过对比海洋-大气耦合模型中有或没有动态植被的模拟,研究了现代(0 kyr)和全新世(6 kyr)气候中动态植被对亚洲夏季风年际和年代际变化的影响。在南亚夏季风的动态指数中,已经发现年对流和年代际西风的强度往往不受南亚对流层低层0 kyr和6 kyr的动态植被的影响。然而,基于北太平洋西部季风的动态指数,热带西太平洋在对流层低层0 kyr和6 kyr的热带西风和南北越赤道运输的强度减弱。这表明动态植被的影响对WNP季风比对南亚季风更为明显。而且,这意味着动态植被对年际和年代际环流的影响明显是区域性的。奇异值分解(SVD)分析表明,动态植被的影响可以重塑降水与地表温度之间的主导相关模式(SVD1)。在有和没有动态植被影响下,所有的年际和年代际降水模式都与印度和中国东南部的正异常有关。但是,动态植被的影响倾向于增强(保持)SVD1在中纬度欧亚大陆(WNP)上持续0年的正年际温度异常,但会减少在中纬度欧亚大陆和WNP处6 Kyr的年际温度异常。此外,类似La Nina的海面温度(SST)异常总是占主导地位的热带地区为0年和6年。这说明无论是0 yr还是6 yr,类似La Nina的SST异常都是诱发上述降水方式的重要机制。对于SVD1的年代际表面温度模式,动态植被的影响趋向于增强(减少)0 kyr的中纬度欧亚大陆(WNP)上的正距平,但减少(保持)6纬度的中纬度欧亚大陆(WNP)上的正距平凯尔同样,以上所有这些都暗示着动态植被的影响是一种诱发中纬度欧亚大陆和/或WNP上主导的年际和年代际表面温度格局长期变化的机制。

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  • 来源
    《Global and planetary change》 |2009年第4期|235-252|共18页
  • 作者单位

    Max Planck Institute for Biogeochemistry, Postfach W 01 64, D-07701 Jena, Germany Laboratory for Climate Studies, National Climate Center, China Meteorological Administration, 46 Zhongguancun Nandajie, Haidian, Beijing 100081, China;

    Max Planck Institute for Biogeochemistry, Postfach W 01 64, D-07701 Jena, Germany School of Geographical Sciences, University of Bristol, University Road, Bristol B S8 1SS, UK;

    Chinese Academy of Meteorological Sciences, China Meteorological Administration, 46 Zhongguancun Nandajie, Haidian, Beijing 100081, China;

    Training Centre, China Meteorological Administration, 46 Zhongguancun Nandajie, Haidian, Beijing 100081, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    simulation; dynamic vegetation; interannual variability; interdecadal variability; Asian summer monsoon;

    机译:模拟;动态植被年际变化;年代际变化亚洲夏季风;

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