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Effects of vegetation canopy structure on remotely sensed canopy temperatures

机译:植被冠层结构对遥感冠层温度的影响

摘要

The effects of vegetation canopy structure on thermal infrared sensor response must be understood before vegetation surface temperatures of canopies with low percent ground cover can be accurately inferred. The response of a sensor is a function of vegetation geometric structure, the vertical surface temperature distribution of the canopy components, and sensor view angle. Large deviations between the nadir sensor effective radiant temperature (ERT) and vegetation ERT for a soybean canopy were observed throughout the growing season. The nadir sensor ERT of a soybean canopy with 35 percent ground cover deviated from the vegetation ERT by as much as 11 C during the mid-day. These deviations were quantitatively explained as a function of canopy structure and soil temperature. Remote sensing techniques which determine the vegetation canopy temperature(s) from the sensor response need to be studied.
机译:必须先了解植被冠层结构对热红外传感器响应的影响,才能准确推断出低地面覆盖率的冠层的植被表面温度。传感器的响应是植被几何结构,冠层组件的垂直表面温度分布以及传感器视角的函数。在整个生长季节中,大豆冠层的最低传感器有效辐射温度(ERT)和植被ERT之间存在较大偏差。在午间,具有35%地面覆盖率的大豆冠层的天底传感器ERT与植被ERT的偏差高达11C。这些偏差被定量解释为冠层结构和土壤温度的函数。需要研究根据传感器响应确定植被冠层温度的遥感技术。

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    Kimes D. S.;

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  • 年度 1979
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