首页> 外文期刊>Irrigation Science >The dual crop coefficient approach using a density factor to simulate the evapotranspiration of a peach orchard: SIMDualKc model versus eddy covariance measurements
【24h】

The dual crop coefficient approach using a density factor to simulate the evapotranspiration of a peach orchard: SIMDualKc model versus eddy covariance measurements

机译:使用密度因子模拟桃园蒸发蒸腾的双作物系数方法:SIMDualKc模型与涡流协方差测量

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The dual crop coefficient approach accounts separately for plant transpiration and soil evaporation by using the basal crop coefficient and the evaporation coefficient, respectively. The SIMDualKc model, which performs the soil water balance simulation with estimation of the actual crop evapotranspiration (ET) with the dual crop coefficient approach, was applied to a drip-irrigated peach orchard under Mediterranean conditions. Orchard ET was obtained with the eddy covariance technique, which was subsequently correlated with tree transpiration estimated from sap flow measurements and soil evaporation determined with microlysimeters, thus providing ET for the whole irrigation season. Two years of field observations were used for model calibration and validation using those ET measurements and taking into account the fraction of ground covered by trees through a density factor which adjusts the basal crop coefficient. Model fitting relative to ET observations during calibration and validation provided indices of agreement averaging 0.90, coefficients of regression close to 1.0, root mean square errors around 0.41 mm and average absolute errors of 0.32 mm. Model fitting relative to transpiration and to soil evaporation produced similar results, so showing the adequateness of modelling.
机译:双重作物系数法分别使用基础作物系数和蒸发系数来分别解释植物的蒸腾作用和土壤蒸发。将SIMDualKc模型应用于土壤条件下的水分平衡模拟,并使用双重作物系数方法估算实际的作物蒸散量(ET),并将该模型应用于地中海条件下的滴灌桃园。果园的ET是通过涡度协方差技术获得的,该技术随后与通过树液流量测量估算的树木蒸腾作用以及用微量测微计确定的土壤蒸发量相关联,从而为整个灌溉季节提供了ET。两年的野外观测被用于使用这些ET测量值进行模型校准和验证,并考虑到树木通过密度系数调整基础作物系数所覆盖的地面部分。校准和验证期间相对于ET观测值的模型拟合提供了平均为0.90的一致性指数,接近1.0的回归系数,0.41 mm左右的均方根误差和0.32 mm的平均绝对误差。相对于蒸腾作用和土壤蒸发的模型拟合产生了相似的结果,因此表明了建模的适当性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号