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长白山森林生态系统CO_2和水热通量的模拟研究 被引量:32
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作者 王秋凤 牛栋 +4 位作者 于贵瑞 任传友 温学发 chenjingming JuWeimin 《中国科学(D辑)》 CSCD 北大核心 2004年第A02期131-140,共10页
以基于过程的BEPS模型为基础,根据长白山温带阔叶红松林生态系统的生态过程机制,建立了能够描述半小时尺度生态系统通量日变化的模拟模型BEPS.应用该模型对2003年长白山温带阔叶红松林生长季内的CO2和水热通量的模拟结果表明:模型模拟... 以基于过程的BEPS模型为基础,根据长白山温带阔叶红松林生态系统的生态过程机制,建立了能够描述半小时尺度生态系统通量日变化的模拟模型BEPS.应用该模型对2003年长白山温带阔叶红松林生长季内的CO2和水热通量的模拟结果表明:模型模拟的净生态系统生产力(NEP),潜热通量(LE),显热通量(Hs)与涡度相关系统的实测数据相关性较好,R2值分别达到0.68,0.75,0.71.模拟的长白山温带阔叶红松林生态系统的年累积NEP为300.5gC·m?2,与实测值也非常接近,说明应用该模型可以较好地模拟长白山温带阔叶红松林生态系统的CO2,水和热量交换过程.根据模型对不同气候变化情景下的NEP和蒸散(ET)的分析得出:长白山温带阔叶红松林生态系统的NEP对气候变化比较敏感,在气候变暖条件下该生态系统的碳汇功能可能会减弱.此外,作为基于过程的模型,BEPS对最大羧化速率(Vcmax)和最大气孔导度(gmax)等植物生理生态特征参数的变化反应也比较敏感. 展开更多
关键词 阔叶红松林 温带 长白山 森林生态系统 碳汇 生长季 蒸散 潜热通量 涡度 气候变化
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The SIA method for spatial analysis of precipitation in the upper-middle reaches of the Yangtze River 被引量:14
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作者 ZHOUSuoquan XUEGenyuan +6 位作者 GONGPeng chenjingming ZHANGHongping ZHOUZhijiang FANXiong DENGXiaochun WUZhanping 《Journal of Geographical Sciences》 SCIE CSCD 2005年第2期223-238,共16页
Using geographic information system (GIS) techniques and the newest seasonal and annual average precipitation data of 679 meteorological stations from 1971 to 2000, the multiple regressions equations of the precipitat... Using geographic information system (GIS) techniques and the newest seasonal and annual average precipitation data of 679 meteorological stations from 1971 to 2000, the multiple regressions equations of the precipitation and topographical variables are established to extract the effect of topography on the annual and seasonal precipitation in the upper-middle reaches of the Yangtze River. Then, this paper uses a successive interpolation approach (SIA), which combines GIS techniques with the multiple regressions, to improve the accuracy of the spatial interpolation of annual and seasonal rainfall. The results are very satisfactory in the case of seasonal rainfall, with the relative error of 6.86%, the absolute error of 13.07 mm, the average coefficient of variation of 0.070, and the correlation coefficient of 0.9675; in the case of annual precipitation, with the relative error of 7.34%, the absolute error of 72.1 mm, the average coefficient of variation of 0.092, and the correlation coefficient of 0.9605. The analyses of annual mean precipitation show that the SIA calculation of 3-5 steps considerably improves the interpolation accuracy, decreasing the absolute error from 211.0 mm to 62.4 mm, the relative error from 20.74% to 5.97%, the coefficient of variation from 0.2312 to 0.0761, and increasing the correlation coefficient from 0.5467 to 0.9619. The SIA iterative results after 50 steps identically converge to the observed precipitation. 展开更多
关键词 the upper-middle reaches of the Yangtze River precipitation resource spatial analysis successive interpolation approach (SIA)
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