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华北平原夏玉米生产潜力数值模拟及其自然正交分析 被引量:2
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作者 刘玲 刘建栋 +4 位作者 邬定荣 王治海 邱美娟 姜朝阳 Yu Qiang 《中国农学通报》 CSCD 2013年第33期85-93,共9页
为了明确华北平原夏玉米区域生产潜力的气象要素影响层次,在中国科学院禹城综合试验站进行了夏玉米田间试验,利用Licor-6400便携式光合仪等对夏玉米生长过程进行了较为全面的生理生态参数测定,在此基础上对WOFOST模型进行了相应改进和... 为了明确华北平原夏玉米区域生产潜力的气象要素影响层次,在中国科学院禹城综合试验站进行了夏玉米田间试验,利用Licor-6400便携式光合仪等对夏玉米生长过程进行了较为全面的生理生态参数测定,在此基础上对WOFOST模型进行了相应改进和系统验证,并利用验证后的WOFOST模型对华北平原42个站点1961—2006年夏玉米光温生产潜力和气候生产潜力进行了数值模拟,进行了生产力自然正交分解(EOF)分析。结果表明:模型可以较好地模拟夏玉米生长发育及干物质积累过程。华北平原光温生产潜力变化在7360~11370 kg/hm2之间,平均值为9384 kg/hm2,呈东北高西南低的趋势。光温生产潜力的EOF第一模态方差贡献超过总方差的1/3,前3个模态累计方差贡献达到总方差的62.5%。第一模态在区域上均为正值,具有较好的一致性。气候生产潜力变化在6160~10420 kg/hm2之间,平均值为7906 kg/hm2,与光温生产潜力的区域分布趋势类似,气候生产潜力的EOF前2个模态较为突出,其累计方差贡献可达总方差的1/3。该研究首次将作物数值模拟与EOF方法相结合,进一步揭示了气象要素对夏玉米生产潜力的影响层次关系,可为区域农业布局及决策提供一定的理论支持及实践指导。 展开更多
关键词 华北平原 夏玉米 光温生产潜力 气候生产潜力 EOF
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Seasonal and inter-annual variations in carbon fluxes and evapotranspiration over cotton field under drip irrigation with plastic mulch in an arid region of Northwest China 被引量:12
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作者 Jie BAI Jin WANG +4 位作者 Xi CHEN Ge Ping LUO Hao SHI Long Hui LI Jun Li LI 《Journal of Arid Land》 SCIE CSCD 2015年第2期272-284,共13页
Xinjiang is the largest semi-arid and arid region in China, and drip irrigation under plastic mulch is widely used in this water-limited area. Quantifying carbon and water fluxes as well as investigating their environ... Xinjiang is the largest semi-arid and arid region in China, and drip irrigation under plastic mulch is widely used in this water-limited area. Quantifying carbon and water fluxes as well as investigating their environ- mental drivers over cotton fields is critical for understanding regional carbon and water budgets in Xinjiang, the largest cotton production basin of China. In this study, an eddy covariance (EC) technique was used to measure the carbon and water fluxes of cotton field under drip irrigation with plastic mulch in the growing seasons of 2009, 2010, 2012 and 2013 at Wulanwusu Agrometeorological Experiment Station, a representative oasis cropland in northern Xinjiang. The diurnal patterns of gross primary production (GPP), net ecosystem exchange (NEE) and evapotran-spiration (ET) showed obviously sinusoidal variations from June to September, while the diurnal ecosystem respiration (Res) was stable between daytime and nighttime. The daytime hourly GPP and ET displayed asymptotic rela-tionships with net solar radiation (Rnet), while showed concave patterns with raising vapor pressure deficit (VPD) and air temperature (Ta). The increases in hourly GPP and ET towards the maximum occurred over half ranges of VPD and Ta. The seasonal variations of GPP, NEE and ET were close to the cotton phenology, which almost reached the peak value in July. The cumulative GPP averaged 816.2±55.0 g C/m^2 in the growing season (from April to October), and more than half of GPP was partitioned into NEE (mean value of -478.6±41.4 g C/m^2). The mean seasonal ET was 501.3±13.9 mm, and the mean water use efficiency (WUE) was 1.0+0.1 (mg C/g H2O)/d. The agro-ecosystem behaved as a carbon sink from squaring to harvest period, while it acted as a carbon source before the squaring time as well as after the harvest time. 展开更多
关键词 cotton eddy covariance net ecosystem exchange (NEE) carbon budget water use efficiency (WUE)
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