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首页> 外文期刊>Agricultural Water Management >Modeling evapotranspiration and its components of maize for seed production in an arid region of northwest China using a dual crop coefficient and multisource models
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Modeling evapotranspiration and its components of maize for seed production in an arid region of northwest China using a dual crop coefficient and multisource models

机译:使用双重作物系数和多源模型在西北地区干旱地区造型蒸发及其玉米种子生产成分

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摘要

Accurately modeling evapotranspiration (ET) and its components of maize grown for seed production is essential for precision irrigation management. In this study, a dual crop coefficient method and a multisource model based on radiation interception by adjacent crop varieties were used to estimate ET and its components in the arid region of northwest China. The dual crop coefficient method and multisource model were validated using observed ET (ETEC), transpiration (T) of female (T-sf) and male (T-sm) parents and evaporation (E-s). Observations were made using the eddy covariance system, sap flow measurements, and micro-lysimeter in 2013 and 2014. Results showed that ET estimated by the dual crop coefficient method was close to ETEC at the midseason stage, and was higher than ETEC both at the initial and the development stage due to the constant value of initial basic crop coefficient and linear interpolation at the development stage. The estimated T of female and male parents was greater than T-sf and T(sm )in both years. Soil evaporation estimated by the dual crop coefficient method was greater than measured soil evaporation in the late growth stage. While the ET,T of female and male parents and E predicted by the multisource model were closer to the measurements. Estimated ET was 2% less (2013) and 4% greater (2014) than ETEC, T of male parents was 8% and 3% less than T-sm, T of female plants was 8% and 6% less than T-sm, and E was 6% and 3% less than E-s. Thus the multisource model based on radiation interception by neighboring species is suitable for estimating ET and its components of maize grown for seed production in the arid region of northwest China.
机译:准确建模蒸散(ET)及其玉米种子生产的组分对于精密灌溉管理至关重要。在该研究中,使用相邻作物品种的基于辐射拦截的双重作物系数方法和多源模型用于估算西北地区干旱地区的ET及其组分。使用观察到的等(ETEC),雌性(T-SF)和雄性(T-SM)父母和蒸发(E-S)进行验证双重作物系数方法和多源模型。 2013年和2014年使用涡流协方差系统,SAP流量测量和微尿素计进行了观察结果。结果表明,通过双重作物系数法估计的ET在中期阶段的eTEC接近ETEC,高于ETEC初始和开发阶段由于初始基本作物系数和开发阶段线性插值的恒定值。估计的女性和雄性父母在两年内大于T-SF和T(SM)。通过双重作物系数法估计的土壤蒸发大于晚期生长阶段的测量土壤蒸发。虽然MultiSource模型预测的女性和男性父母的ET,T彼此更接近测量。估计et少2%(2013年),比雄性父母的4%较大(2014),雄性父母的T率为8%,少于T-SM,雌性植物的T少于8%,少于T-SM而e比ES为6%和3%。因此,基于相邻物种的辐射拦截的多源模型适用于估计在西北地区干旱地区种子生产玉米种子生产的ET及其组件。

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