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范 兰,吕昌河,王学春,陈 朝.EPIC模型对华北平原冬小麦与夏玉米生长和产量模拟的适用性评价[J].麦类作物学报,2014,34(12):1677
EPIC模型对华北平原冬小麦与夏玉米生长和产量模拟的适用性评价
Applicability of EPIC Model on Simulation of Growth and Yield of Winter Wheat and Summer Maize in the North China Plain
  
DOI:10.7606/j.issn.1009-1041.2014.12.14
中文关键词:  EPIC模型  华北平原  冬小麦  夏玉米  叶面积指数  生物量  产量  模拟误差
英文关键词:EPIC Model  North China Plain  Winter wheat  Summer maize  LAI  Biomass  Grain yield  Simulation errors
基金项目:国家重大科学研究计划课题(2012CB955304);国家自然科学基金项目(41071063)
作者单位
范 兰,吕昌河,王学春,陈 朝 (1.中国科学院地理科学与资源研究所北京 100101 2.西南科技大学生命科学与工程学院四川绵阳621010 3.广东省生态环境与土壤研究所广东省农业环境综合治理重点实验室广东广州 510650) 
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中文摘要:
      为验证EPIC模型应用于华北地区农业生产的适用性,利用禹城生态试验站的试验观测数据对该模型参数进行了修订,构建了适合华北平原的模型参数数据库,并分别验证了2003-2005年冬小麦、2004年夏玉米的叶面积指数、生物量和产量模拟的精度与适用性。结果表明,EPIC模型对禹城站冬小麦和夏玉米叶面积指数和地上部生物量的模拟值和实测值随时间的变化趋势大体一致,决定系数均高于0.81;EPIC模型对禹城站2004、2005年冬小麦产量的模拟误差分别为1.61%和-2.56%,对2004夏玉米产量的模拟误差为-2.60%。因此,该模型模拟产量的绝对误差低于2.60%,适用于华北平原冬小麦和夏玉米的产量评估。
英文摘要:
      This paper build the main database of EPIC model using experimental data from Yucheng Comprehensive Experimental Station in the North China Plain and evaluated its applicability in simulating growth and yield of winter wheat and summer maize. Main crop parameters were calibrated for winter wheat and summer maize, and the performance of EPIC model was tested in simulating the leaf area index (LAI), standing live biomass (STL) and yield for winter wheat during 2003-2005 and summer maize in 2004. The results showed that the simulation results for both LAI and STL were consistent with the experiment results, with all the determination coefficients being above 0.81. The simulation errors for winter wheat yield in 2004 and 2005 were 1.61% and -2.56%, for summer maize in 2004 was -2.60%, respectively. Therefore, the simulation results were reasonably well matched with the observed data including the LAI and above ground biomass, and the simulated yield differed less than 2.60% from the observed yields, illustrating that EPIC model is a useful and applicable tool for winter wheat and summer maize yield modeling study in North China Plain.
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