初级生产
遥感
植被(病理学)
环境科学
内蒙古
归一化差异植被指数
领域(数学)
生产力
地理信息系统
气候变化
计算机科学
中国
生态系统
地理
生态学
医学
生物
宏观经济学
病理
经济
考古
纯数学
数学
标识
DOI:10.1109/igarss.2004.1369080
摘要
Some vegetation primary production models have been developed in recent years as research issues related to food security and biotic response to climate warming have become more compelling. An estimation model of net primary productivity (NPP), based on geographic information system (GIS) and remote sensing (RS) technology, is presented. The model, driven with ground meteorological data and remote sensing data, moves beyond simple correlative models to a more mechanistic basis and avoids the need for a full suite of eco-physiological process algorithms that require explicit parameterization. Therefore, it is relatively easier to acquire data. Application and validation of this model in Inner Mongolia, China, was conducted. After the validation with observed data and the comparison with other NPP models, the results showed that the predicted NPP was in good agreement with field measurement, and the remote sensing method can more actually reflect the forest NPP than Chikugo model. These results illustrated the utility of the model for terrestrial primary production over regional scales
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