Satellite remote sensing of primary production

Дистанционное зондирование первичной продукции с помощью спутников
P. J. Sellers, Compton J. Tucker
1986-11-01

multitemporal measurementsphotosynthesisplant canopiesprimary productionsatellite remote sensing
Leaf structure and function are shown to result in distinctive variations in the absorption and reflection of solar radiation from plant canopies. The leaf properties that determine the radiation-interception characteristics of plant canopies are directly linked to photosynthesis, stomatal resistance and evapotran-spiration and can be inferred from measurements of reflected solar energy. The effects of off-nadir viewing and atmospheric constituents, coupled with the need to measure changing surface conditions, emphasize the need for multitemporal measurements of reflected radiation if primary production is to be estimated
1
Canopy radiation-interception properties are directly linked to photosynthesis, stomatal resistance, and evapotranspiration.
2
Leaf structure and function create distinctive canopy patterns in solar-radiation absorption and reflection that can be detected remotely.
3
Multitemporal observations are needed to account for changing surface conditions when estimating primary production from satellite remote sensing.
4
Off-nadir viewing and atmospheric constituents affect reflected-radiation measurements and complicate primary-production estimation.
5
Reflected solar-energy measurements can be used to infer canopy properties relevant to estimating primary production.

plant canopies

estimation of primary production from multitemporal satellite measurements of reflected solar radiation, based on leaf-property effects and accounting for viewing geometry, atmospheric constituents, and changing surface conditions

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1986-11-01
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P. J. Sellers
Compton J. Tucker
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