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Theoretical Study on Establishing Hydro-eco Dynamic Monitoring System in Large-scale and Arid Irrigation District

机译:大规模干旱灌区建立水电 - 生态动态监测系统的理论研究

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摘要

As for some large-scale and arid irrigation district in China, such as Jinghuiqu irrigation district and Shihezi reclamation district, hydro-ecosystem was gradually degenerated and imbalanced due to water shortage and unreasonable exploitation. In order to study hydrological elements, water cycle process and ecological response caused by human activities and other factors, and improve the quality of hydro-ecosystem, scientific connotation of establishing hydro-eco dynamic monitoring system in large-scale and arid irrigation district was defined. Hydro-ecosystem dynamic monitoring indexes including meteorological elements, hydrological elements, ecological elements closely related to hydrological elements and cycle, and socio-economic elements were proposed. Comprehensive monitoring methods based on automatic monitoring net, remote sensing satellite monitoring, field test and investigation were determined, and overall framework of hydro-eco dynamic monitoring was designed, which provided a theoretical basis for establishing hydro-eco dynamic monitoring system in large-scale and arid irrigation district.
机译:至于中国的一些大规模和干旱的灌溉区,如景州灌溉区和石河子填海区,水电生态系统由于水资源短缺和不合理的开采而逐渐退化和不平衡。为了研究人类活动和其他因素引起的水文元素,水循环过程和生态反应,以及提高水力生态系统的质量,定义了在大型和干旱灌区建立水力发生动态监测系统的科学内涵。水力生态系统动态监测指标包括气象元素,水文元素,与水文元素和周期密切相关的生态元素以及社会经济因素。确定了基于自动监测网络,遥感卫星监测,现场测试和调查的综合监控方法,设计了水电动态监测的整体框架,为大规模建立了水电 - 生态动态监测系统提供了理论依据和干旱的灌溉区。

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