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Elucidation of the Earth envimnmental cbange mechanism by satellite remote sensing and Earth system models

Elucidation of the Earth envimnmental cbange mechanism by satellite remote sensing and Earth system models
卫星遥感和地球系统模型阐明地球环境变化机制
批准号:
17360432
负责人:
YAMAGUCHI Yasushi
金额:
$6.68万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (B)
财政年份:
2005
资助国家:
日本
项目状态:
已结题
起止时间:
2005 至 2007

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中文摘要
翻译
为了阐明地球系统的环境变化机制,我们将卫星遥感与地球系统模式相结合,重点研究了生物圈与气候之间的相互作用。我们建立了一个耦合大气-海洋相互作用系统中能量循环和碳循环的简单地球系统模型,发现当深海二氧化碳分压小于大气分压时,会发生振荡。我们还建立了一个能量和碳循环耦合的地球系统一维模型,并研究了全球变暖对陆地生物圈碳吸收的影响:全球净生态系统生产力(NEP)不仅受生物圈CO2施肥和土壤分解的温度依赖性的影响,而且受净初级生产力(NPP)和土壤分解速率的温度依赖性的影响。利用卫星观测资料分析了20世纪80年代以来全球NPP的变化,并利用耦合海气环流模式(GCM)研究了喜马拉雅-青藏高原(HT)对亚洲季风爆发的影响。发现HT的存在是夏季北方半球副热带高压区形成的重要条件。利用卫星遥感技术研究了80年代以来陆地植被时空变化与气候的相互作用。结果表明,厄尔尼诺对陆地植被的影响主要表现为降水减少,且厄尔尼诺与陆地植被活动之间存在时滞。
英文摘要
In order to elucidate the enviromnental change mechanism in the Earth system, we carried out this research by combining satellite remote sensing and Earth system models with a focus on the interactions between the biosphere and climate. We developed a simple Earth system model which couples energy and carbon cycles in the atmosphere-ocean interactive system, and found that the oscillation occurs when the partial pressure of carbon dioxide in the deep ocean is smaller than that of the atmosphere. We also developed a meridional one-dimensional Earth system model of a coupled energy and carbon cycles, and investigated the effect of global warming to carbon uptake by the terrestrial biosphere : The global net ecosystem production(NEP)is greatly affected not only by the biosphere carbon dioxide fertilization and temperature dependency of soil decomposition but also by temperature dependency of net primary production(NPP)and soil decomposition rate. We developed a new terrestrial ecosystem model named BEAMS, and analyzed the global NPP variations since 1980's by using satellite observation data as input.We investigated the effect of the Himalaya-Tibetan Plateau(HT)on the onset of Asian monsoon with the coupled ocean-atmosphere General Circulation Model(GCM), and found that the existence of HT is an important condition to form the sub-tropical high atmospheric pressure zone of the northern hemisphere in summer. Interaction between the spatial and temporal variations of terrestrial vegetation and climate since 1980's was studied by using satellite remote sensing. We found that El Nino gives a negative impact to all types of the terrestrial vegetation mainly due to precipitation decrease, and there are time lag between El Nino and the terrestrial vegetation activities.
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DOI: 10.3390/s7123043
发表时间: 2007-12-04
期刊: Sensors (Basel, Switzerland)
影响因子: --
作者: [Liu Y, Yamaguchi Y, Ke C]
通讯作者: Ke C
DOI: 10.1175/jcli3714.1
发表时间: 2006-04-01
期刊: JOURNAL OF CLIMATE
影响因子: 4.9
作者: [Ichikawa, H, Yasunari, T]
通讯作者: Yasunari, T
DOI: 10.1016/j.rse.2006.06.012
发表时间: 2006-11-30
期刊: REMOTE SENSING OF ENVIRONMENT
影响因子: 13.5
作者: [Liu, Yuanbo, Hiyama, Tetsuya, Yamaguchi, Yasushi]
通讯作者: Yamaguchi, Yasushi
The behaviour of a surface temperature/vegetation index(TVX)matrixderived from 10-day composite AVHRR images over monsoon Asia
亚洲季风地区 10 天复合 AVHRR 图像得出的表面温度/植被指数 (TVX) 矩阵的行为
DOI: --
发表时间: 2007
期刊: Hydrological Processes 21
影响因子: --
作者: [Higuchi, A., Hiyama, T., Fukuta, Y., Suzuki, R. and Fukushima, Y.]
通讯作者: Y.
共 33 条
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    • 项目类别:
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    • 财政年份:
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