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《Advances in Earth Science》 2012-05
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HiWATER:An Integrated Remote Sensing Experiment on Hydrological and Ecological Processes in the Heihe River Basin

Li Xin1,Liu Shaomin2,Ma Mingguo1,Xiao Qing3,Liu Qinhuo3,Jin Rui1, Che Tao1,Wang Weizhen1,Qi Yuan1,Li Hongyi1,Zhu Gaofeng1,Guo Jianwen1, Ran Youhua1,Wen Jianguang3,Wang Shuguo1(1.Cold and Arid Regions Environmental and Engineering Research Institute,Chinese Academy of Sciences, Lanzhou 730000,China;2.Beijing Normal University,Beijing 100875,China; 3.The State Key Laboratory of Remote Sensing Science,Institute of Remote Sensing Applications,Chinese Academy of Sciences,Beijing 100101,China)  
This paper introduces the background,scientific objectives,experiment components and implementation plan of the Heihe Watershed Allied Telemetry Experimental Research(HiWATER).The overall objective of HiWATER is to improve the observability of hydrological and ecological processes,to build a world-class river basin observing system,and to increase the applicability of remote sensing and other new generation observation techniques in eco-hydrological studies and water resource management at basin scale.HiWATER encompasses fundamental experiments,thematic experiments,application experiments,remote sensing methods development and products generation,and an integrated information system.(1) Fundamental experiments: ① Microwave radiometer,imaging spectrometer,thermal imaging camera,Light Detection and Ranging(LiDAR) and other sensors will be used in the airborne missions to observe key eco-hydrological parameters and at the meantime to develop and improve the remote sensing models and methods for the retrieval of those variables.② To establish a comprehensive hydrometeorological observation network that will cover the entire Heihe River Basin,in order to provide more representative model parameters and forcing data,and more accurate ground truths.③ An eco-hydrological Wireless Sensor Network(WSN) will be established to capture the spatial-temporal dynamics and variations of key forcing data,eco-hydrological parameters,and model state variables over heterogeneous land surfaces.④ Airborne sensors calibration and ground-based remote sensing experiments will be conducted.Remote sensing products will be validated rest upon the WSN,in association with simultaneous in situ measurements and other intensive observations.(2) Thematic experiments: A multi-scale observation experiment on evapotranspiration will be performed over heterogeneous land surfaces.Eddy Covariance(EC) systems,Large Aperture Scintillometer(LAS),and Automatic Weather Stations(AWSs) will be intensively deployed to constitute an observing matrix to reveal the spatial heterogeneities of ET,to identify the scale effects and achieve scale transformation of ET over heterogeneous landscapes,and to provide elementary data sets for the development and validation of ET estimation models.(3) Application experiments: Purposeful observation experiments will be performed in the upstream,middle stream,and downstream of the Hiehe River Basin,aiming at snow and frozen soil hydrology,water balance in irrigation management,and quantifying plant water consumption.Observed data sets and remote sensing products will be used in distributed hydrological model,coupled surface water-groundwater-crop growth model,and ecological water consumption model towards the areas of upstream,middle stream,and downstream.It is anticipated the applicability of remote sensing in integrated eco-hydrological studies and water resource management can be enhanced by means of these empirical researches. The intensive observations and field campaigns will be orderly undertaken in the middle stream,upstream,and downstream of the Heihe River Basin from May,2012 to 2015.Dependent on various experiments,remote sensing products at basin scale for the key eco-hydrological variables will be created,scale transformation approaches will be explored,and a multi-source remote sensing data assimilation system will be eventually built.
【Fund】: 国家自然科学基金重大研究计划“黑河流域生态—水文过程集成研究”重点项目群“黑河流域生态—水文过程综合遥感观测试验”(编号:91125001 91125002 91125003 91125004);; 中国科学院西部行动计划三期项目“黑河流域生态—水文遥感产品生产算法研究与应用试验”资助;; 无线传感器网络建设得到了“基于下一代互联网的科研信息基础设施建设和应用示范工程”课题“黑河流域生态水文遥感—地面观测试验与综合模拟应用示范”;; 国家高技术研究发展计划重大项目“星机地综合定量遥感系统与应用示范(一期)”课题“遥感产品真实性检验关键技术及其试验验证”(编号:2012AA12A305);; 国家高技术研究发展计划“全球陆表特征量产品生成与应用研究”课题“陆面模拟与同化系统示范研究”(编号:2009AA122104)的资助
【CateGory Index】: X832;P332
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