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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >COMPARISONS OF RADIATIVE TRANSFER MODELS OF VEGETATION CANOPIES AND LABORATORY MEASUREMENTS
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COMPARISONS OF RADIATIVE TRANSFER MODELS OF VEGETATION CANOPIES AND LABORATORY MEASUREMENTS

机译:植被冠层辐射传递模型与实验室测量结果的比较

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Laboratory measurements of the directional reflectance of plant canopies fit radiative-transfer-based plane-parallel models well when the plants are low and leaves are small. Bidirectional reflectance measurements were collected at a unique facility in Changchun, China, using an apparatus that simulates solar radiation at zenith angles up to 45 degrees on a 1-m square target. A curved arm fitted with multiband radiometers revolves on a circular track around the target, allowing rapid measurement of multispectral bidirectional reflectance factors (BRFs) of the target at 10 degrees-zenith and azimuth angles. Because the measurements are made under controlled conditions, effects of such confounding factors as wind and diffuse (sky) irradiance can be avoided. Three one-dimensional radiative-transfer canopy models were compared to the BRF measurements in the near-infrared. The models generally fit the data for a young wheat canopy well. However, young corn and soybean canopies showed significant differences that are attributed to the escape of multiply scattered radiation from the sides of the canopy. (C) Elsevier Science Inc., 1997. [References: 24]
机译:当植物矮而叶片小时,实验室对植物冠层方向反射率的测量非常适合基于辐射转移的平面平行模型。双向反射率测量是在中国长春的一家独特设施中收集的,使用的设备可以模拟在1米见方的目标上以最高45度的天顶角辐射太阳。装有多波段辐射计的弯曲臂在目标周围的圆形轨道上旋转,从而可以在10度的天顶和方位角上快速测量目标的多光谱双向反射系数(BRF)。由于测量是在受控条件下进行的,因此可以避免诸如风和漫射(天空)辐照度等混杂因素的影响。将三个一维辐射转移冠层模型与近红外BRF测量结果进行了比较。这些模型通常适合年轻的小麦冠层井的数据。然而,年轻的玉米和大豆冠层显示出显着差异,这归因于来自冠层侧面的多重散射辐射的逃逸。 (C)Elsevier Science Inc.,1997年。[参考:24]

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