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ISSN 1006-9895

CN 11-1768/O4

动态冠层模型ICM的改进及其对中高纬地区植被季节和年际变化的模拟试验
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国家自然科学基金资助项目40875057,公益性行业(气象)科研专项GYHY(QX)2007-25,江苏省研究生培养创新工程CX08B_018Z,江苏省“333高层次人才培养工程”资助项目


Seasonal and Interannual Variations of Boreal Vegetation Simulated by an Improved Interactive Canopy Model (ICM)
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    摘要:

    植被动态冠层模型Interactive Canopy Model (ICM) 考虑了生态系统中较完整的碳氮循环过程, 能够较为客观真实地描述较短时间尺度上植被的动态变化特征。本文在ICM原有碳氮分配方案基础上, 考虑了植物花、果实等新生组织对碳氮分配的影响, 假设新生组织碳库是花期以后植物的主要碳汇之一, 并利用物候模型ForcSar预测花期, 调控碳氮分配过程; 用卫星观测的LAI (Leaf Area Index) 产品对模拟的北半球中高纬度地区植被的季节和年际变化过程进行了对比分析。结果表明, 改进后的ICM能够更好地模拟北半球中高纬植被的季节变化过程。7月前后是模拟的植被生长最旺盛的时间, 与实际情况更为一致, 从而较好修正了原方案中模拟的植被生长落后于实际观测的问题; 模拟与观测值的季节变化相关系数有了显著提高, 各类型植被的模拟误差也都不同幅度减小。改进后模拟与观测的年际变化相关性也有了一定程度的提高, 但年际变化趋势的改进效果稍弱。模拟的LAI变化改变了地表能量平衡和水汽收支状况, 对于美国东部温带落叶阔叶林来说, 植被吸收太阳辐射、 叶面和地面的感热、 潜热通量在植被生长前期的变化量最大, 说明改进后的ICM将会引起模拟下垫面物理状况的改变。

    Abstract:

    The dynamic vegetation model, Interactive Canopy Model (ICM), which includes the ecosystem carbon and nitrogen cycling processes, is able to model the vegetation variations on short time scales. A reproductive organs carbon pool that constitutes flowers and fruits has been added into the original carbon and nitrogen reservoirs. It is assumed that the reproductive organs carbon pool will be a main carbon sink from the dates of vegetation flowering. A phenological model, ForcSar, is used to predict the flowering dates when the main partitioning positions of carbon and nitrogen change. The simulated LAI (Leaf Area Index) from the modified ICM is compared with the observations from satellite data in boreal middle and high latitudes where the vegetation varies the most severely all the year round. It shows that the seasonal variations of boreal vegetation can be better simulated than before. The modified ICM represents its maximal LAI in July, conforming to the reality, so that the problem of modeled vegetation growth lag in the original ICM has been rectified. The correlation coefficients of observed and simulated seasonal LAI are obviously higher than before. And the errors are decreased for all types of boreal vegetations. Besides, the correlation of observed and simulated interannual LAI is increased to some extent, even not very prominent. The changeable LAI from the ICM will alter the land surface conditions such as energy balance and water cycle. Solar radiation absorbed by vegetation, sensible heat fluxes and latent heat fluxes change significantly before the blossom of vegetation in the case of temperate deciduous broadleaf trees in eastern USA. And therefore the modeled physical properties of land surface will be influenced.

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俞淼,陈海山,孙照渤.动态冠层模型ICM的改进及其对中高纬地区植被季节和年际变化的模拟试验.大气科学,2011,35(3):571~588 Yu Miao, Chen Haishan, Sun Zhaobo. Seasonal and Interannual Variations of Boreal Vegetation Simulated by an Improved Interactive Canopy Model (ICM). Chinese Journal of Atmospheric Sciences (in Chinese),2011,35(3):571~588

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  • 在线发布日期: 2011-12-06
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