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基于水文气象多因子的夏玉米生育期土壤水分预测研究 被引量:5
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作者 王丽丽 王振龙 +3 位作者 杜富慧 王健 许莹莹 范月 《节水灌溉》 北大核心 2020年第7期54-58,62,共6页
准确掌握土壤水分动态变化,对制定灌溉计划至关重要。采用五道沟实验站1991-2018年大田土壤水、地下水埋深、降雨量、水面蒸发、风速、日照时数、气温和绝对湿度7个水文气象因子,经相关分析,筛选出4个关键水文气象影响因子,以影响程度... 准确掌握土壤水分动态变化,对制定灌溉计划至关重要。采用五道沟实验站1991-2018年大田土壤水、地下水埋深、降雨量、水面蒸发、风速、日照时数、气温和绝对湿度7个水文气象因子,经相关分析,筛选出4个关键水文气象影响因子,以影响程度最大的为初始变量,逐个添加到4个因子,分别建立了夏玉米各生育期不同土层(0~0.2、0.2~0.4、0.4~0.6、0.6~0.8、0.8~1.0、0~0.5 m)土壤含水率多元线性回归模型。结果表明:不同土层土壤水分与气象因子均表现出一致性的相关性,其中土壤水分与地下水埋深及绝对湿度的相关性最大;开花-成熟期土壤水分与气温和绝对湿度的相关性最大;其他生长阶段与地下水埋深和绝对湿度相关性最大。随着关键影响因子的增多,其预测精度提高,当影响因子为4个时,R2最大为0.99。不同土层的土壤水分模型均具有较好的预测能力,随着土层深度的增加,平均相对误差均可控制在0.1以内。该研究对及时掌握作物各生长阶段土壤水变化,指导作物科学灌溉具有重要意义。 展开更多
关键词 夏玉米 土壤水分预测模型 水文气象 多元线性回归
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Improved SAL method and its application to verifying regional soil moisture forecasting 被引量:1
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作者 SHI XiaoKang LIU JianWen +2 位作者 LI YaoDong TIAN Hui LIU XiangPei 《Science China Earth Sciences》 SCIE EI CAS 2014年第11期2657-2670,共14页
The regional verification of soil moisture is a vital step in evaluating and improving numerical model performance and utilizing forecast results. Currently, even with improved spatial and temporal resolutions of nume... The regional verification of soil moisture is a vital step in evaluating and improving numerical model performance and utilizing forecast results. Currently, even with improved spatial and temporal resolutions of numerical model, verification methods for soil moisture data still rely on the traditional intensity verification parameters, such as mean error(ME) and root-mean-squared error(RMSE). Those methods provide only incomplete and sometimes inaccurate messages and thus hinder a proper evaluation of a forecast model. The SAL method is an object-based regional verification method with respect to precipitation forecasts. Based on the SAL method, a novel object-based method(SAL-DN) is proposed here, which can be used to test regional soil moisture. Both the ideal experiment and real experiment show that the SAL-DN method can reveal the differences between the observed and forecast soil moisture in three aspects: structure, amplitude, and location, and the results can reflect the actual situation. Furthermore, compared with the SAL method, the SAL-DN method is also capable of verifying physical quantities with high-value and low-value centers like temperature. Therefore, the SAL-DN method enhances verification accuracy and can be applied widely. 展开更多
关键词 soil moisture numerical simulation regional verification SAL-DN
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