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灌溉水文学尺度转换问题研究综述 被引量:35
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作者 许迪 《水利学报》 EI CSCD 北大核心 2006年第2期141-149,共9页
灌溉水文学是研究灌溉农业生态系统的一门科学,该系统由地表水、地下水(饱和与非饱和水)、大气、土壤和植物等分系统构成,研究过程或特性的空间域从微观尺度变化到全球尺度,时间域则从几秒到数个世纪。如何将微观自然尺度下具有高度非... 灌溉水文学是研究灌溉农业生态系统的一门科学,该系统由地表水、地下水(饱和与非饱和水)、大气、土壤和植物等分系统构成,研究过程或特性的空间域从微观尺度变化到全球尺度,时间域则从几秒到数个世纪。如何将微观自然尺度下具有高度非线性的物理、化学和生物特性的过程尺度转换到灌溉农业生态系统这类宏观尺度上,如何监测、描述和包含尺度转换非线性过程中存在的自然异质性问题,如何获得不同时空尺度过程或特性变异性的可靠估值等问题,是当前灌溉水文学研究的热点与难点。本文对国内外有关灌溉水文学尺度转换问题研究的进展进行综述,探讨相关的主要研究方向与内容。 展开更多
关键词 灌溉水文学 时空尺度 尺度转换 异质(非均质)性 灌溉农业生态系统
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Soil Carbon Sequestration Potential as Affected by Management Practices in Northern China:A Simulation Study 被引量:2
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作者 WANG Guo-Cheng WANG En-Li +1 位作者 HUANG Yao XU Jing-Jing 《Pedosphere》 SCIE CAS CSCD 2014年第4期529-543,共15页
Soil has been identified as a possible carbon (C) sink for sequestering atmospheric carbon dioxide (CO2). However, soil organic carbon (SOC) dynamics in agro-ecosystems is affected by complex interactions of var... Soil has been identified as a possible carbon (C) sink for sequestering atmospheric carbon dioxide (CO2). However, soil organic carbon (SOC) dynamics in agro-ecosystems is affected by complex interactions of various factors including climate, soil and agricultural management practices, which hinders our understanding of the underlying mechanisms. The objectives of this study were to use the Agricultural Production Systems simulator (APSIM) model to simulate the long-term SOC dynamics under different management practices at four long-term experimental sites, Zhengzhou and Xuzhou with double cropping systems and Gongzhuling and Urtimqi with single cropping systems, located in northern China. Firstly, the model was calibrated using information from the sites and literature, and its performance to predict crop growth and SOC dynamics was examined. The calibrated model was then used to assess the impacts of different management practices, including fertilizer application, irrigation, and residue retention, on C dynamics in the top 30 cm of the soil by scenario modelling. Results indicate a significant SOC sequestration potential through improved management practices of nitrogen (N) fertilizer application, stubble retention, and irrigation. Optimal N fertilization (Nopt) and 100% stubble retention (R100) increased SOC by about 11.2%, 208.29%, and 283.67% under irrigation at Gongzhuling, Zhengzhou, and Xuzhou, respectively. Soil organic carbon decreased rapidly at lJriimqi under irrigation, which was due to the enhanced decomposition by increased soil moisture. Under rainfed condition, SOC remained at a higher level. The combination of Nopt and R100 increased SOC by about 0.46% under rainfed condition at /Jr/imqi. Generally, agricultural soils with double cropping systems (Zhengzhou and Xuzhou) showed a greater potential to sequester C than those with single cropping systems (Gongzhuling and Urumqi). 展开更多
关键词 AGRO-ECOSYSTEMS APSIM model fertilizer application irrigation residue retention scenario analysis soil organic carbon
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