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基于NIR-Red光谱特征空间的作物水分指数 被引量:9
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作者 程晓娟 徐新刚 +2 位作者 陈天恩 杨贵军 李振海 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2014年第6期1542-1547,共6页
水分含量是表征作物水分胁迫生理状况的重要指标,及时有效地监测作物水分含量对于评估作物水分亏缺平衡,指导农业生产灌溉具有重要意义。基于NIR-Red二维光谱特征空间,尝试构建一种新的作物水分监测指数PWI来估算作物水分含量。以冬小... 水分含量是表征作物水分胁迫生理状况的重要指标,及时有效地监测作物水分含量对于评估作物水分亏缺平衡,指导农业生产灌溉具有重要意义。基于NIR-Red二维光谱特征空间,尝试构建一种新的作物水分监测指数PWI来估算作物水分含量。以冬小麦作物植被水分含量估算为尝试对象。首先,利用地面实测小麦冠层高光谱数据,结合对应卫星光谱响应函数,模拟当前常用卫星HJ-CCD和ZY-3多光谱数据;然后,对基于NIR-Red二维光谱特征空间的现有植被指数PDI(垂直干旱指数)和PVI(垂直植被指数)进行改进,通过比值变换的方法构建新的指数PWI来估算冬小麦植株含水量(VWC)。结果显示:基于模拟的HJ-CCD和ZY-3卫星宽波段多光谱数据生成的PWI估算小麦VWC具有良好的效果,R2分别达到0.684和0.683,均达到了极显著水平。利用检验样本得到冬小麦VWC估算的R2和RMSE分别为0.764和0.764,3.837%和3.840%,这表明应用提出的新指数PWI估测作物含水量具有一定可行性。同时,也为当前利用主要国产卫星遥感数据HJ-CCD和ZY-3开展作物水分遥感监测应用提供了一种新方法。 展开更多
关键词 NIR-Red光谱特征空间 光谱响应函数 植株含水量 冬小麦 PWI
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Revealing Storage-area Relationship of Open Water in Ungauged Subalpine Wetland-Napahai in Northwest Yunnan, China 被引量:7
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作者 LI Jie HU Jin-ming +4 位作者 DENG Wei HUANG Sheng-li JIA Hai-feng ZHU Chun-ling LUO Huai-xiu 《Journal of Mountain Science》 SCIE CSCD 2013年第4期553-563,共11页
Mountains and plateaus in Southwest China contain many subalpine and alpine wetlands, with signifieant hydroecological functions. But ungauged or poorly gauged eonditions limit the study and understanding of hydrologi... Mountains and plateaus in Southwest China contain many subalpine and alpine wetlands, with signifieant hydroecological functions. But ungauged or poorly gauged eonditions limit the study and understanding of hydrological regimes of these wetland types. This study selects an ungauged subalpine wetland - Napahai in Northwest Yunnan, China - as a case for developing a practical approach to revealing its storage-area relationship of open water. A Trimble R8 GNSS (Global Navigation Satellites Systems) RTK (Real-time Kinematic system) and sonar fathometer were used to survey fine- resolution elevation data and generate a digital elevation model of the Napahai Wetland. Forty-four Landsat images from 1987 to 2Oll were collected, and the Normalized Difference Water Index was used to classify open water features in the area. The area of open water in Napahai was ealculated for each phase. With these data and a developed conceptual model, the storage of open water for each phase was estimated using ArcGIS tools. Both storage and area of open water showed significant intra-annual and inter-annual variations. In the rainy season, the monthly change of average storage of open water in Napahai showed about 1-2 months lag behind mean monthly rainfall. The storage-area relationship of open water was well fit by a power function equation (R2=0.91, n=44). This study indicates that if detailedelevations are available for similarly ungauged subalpine wetlands in Southwest China, researchers can use this practical approach to estimate multi- temporal areas and storages and reveal the storage- area relationship of open water in the wetlands. The study provided valuable information of this ease wetland for optimizing its hydro-ecological managements and a new method to wetland researchers and managers for the hydrological study of similarly ungauged wetland complex. 展开更多
关键词 Water storage Ungauged wetland Napahai Wetland Normalized Difference waterindex
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