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中国北方城市常见绿化植物夏季气孔导度影响因素及模型比较
引用本文:吴大千,徐飞,郭卫华,王仁卿,张治国.中国北方城市常见绿化植物夏季气孔导度影响因素及模型比较[J].生态学报,2007,27(10):4141-4148.
作者姓名:吴大千  徐飞  郭卫华  王仁卿  张治国
作者单位:山东大学生命科学学院,济南,250100
基金项目:高等学校博士学科点专项科研项目;山东省优秀中青年科学家科研奖励基金
摘    要:利用Jarvis和Ball两种常规气孔导度模拟模型和人工神经网络模型(ANN)对中国北方城市常见的6种绿化植物的夏季气孔导度变化动态进行了模拟。结果表明:贴梗海棠(Chaenomeles speciosa)和龙爪槐(Sophora japonica)的最优模拟模型为Ball模型,木兰(Magnolia liliflora)最优模拟模型为Jarvis模型,而日本樱花(Prunus yedoensis)、金钟花(Forsythia viridissima)、紫荆(Cercis chinensis)的最优模拟模型为ANN模型。这表明ANN模型可以有效的改善气孔导度环境响应行为的数值模拟。环境因子的多元逐步回归结果和人工神经网络模型敏感性分析表明PAR是夏季气孔导度环境因子中最敏感的要素,而Ta则是其中最不敏感的要素。

关 键 词:城市热岛效应  气孔导度  Ball模型  Jarvis模型  人工神经网络
文章编号:1000-0933(2007)10-4141-08
收稿时间:2006/9/16 0:00:00
修稿时间:2006-09-16

Impact factors and model comparison of summer stomatal conductance of six common greening species in cities of Northern China
WU Daqian,XU Fei,GUO Weihu,WANG Renqing and ZHANG Zhiguo.Impact factors and model comparison of summer stomatal conductance of six common greening species in cities of Northern China[J].Acta Ecologica Sinica,2007,27(10):4141-4148.
Authors:WU Daqian  XU Fei  GUO Weihu  WANG Renqing and ZHANG Zhiguo
Institution:College of Life Science, Shandong University, Jinan 250100, China
Abstract:Two common-used simulation modes of stomatal conductance, the Ball model and the Jarvis model, and the artificial neutral network (ANN) were employed to simulate the dynamics of summer stomatal conductance of six common greening species in cities of northern China. Results show that, the Ball model is the best one for the simulation of Chaenomeles speciosa and Sophora japonica, and the Jarvis model is the best for the simulation of Magnolia liliflora; while the ANN model is the best one for the simulation of Prunus yedoensis, Forsythia viridissima and Cercis chinensis. This indicated that the ANN model could improve the simulation of stomatal conductance. The multiple regression and sensitivity analysis show that PAR is the most important and sensitive factor of the stomatal conductance in summer; while Ta is the most not sensitive one.
Keywords:Urban heat island effect  Stomatal conductance  Ball model  Jarvis model  Artificial neutral network
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