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Impact of Deep Soil Layer on Terrestrial Microwave Emission for a Bare Agricultural Field

机译:裸土农田深层土壤对微波辐射的影响

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摘要

In this study, we investigated the deep (semi-infinite) soil contribution to the brightness temperature at 1.4 GHz calculated through a modified incoherent radiative transfer model. We reproduced the measured brightness temperature collected by a dual L-band radiometer in a bare agricultural field. We found that exclusion of a semi-infinite soil layer in the incoherent model significantly decreased the brightness temperature when the measurement depth in the model was closer to the emitting depth, which is the first few centimeters from the top of soil. The maximum brightness temperature differences between the cases with and without the semi-infinite layer in the incoherent model were computed to be 6.8444 K, 2.8891 K, 0.2477 K and 0.0004 K for the measurement depths of 4 cm, 5 cm, 8 cm and 16 cm, respectively. Based on a comparison with another coherent radiative transfer model, we observed that inclusion of the deep soil layer significantly improved the precision of the incoherent model regardless of the measurement depth. Our results could be one example of improving the accuracy of radiative transfer models, which might be applied to other radiative transfer models and increase the precision of soil moisture retrieval calculations.
机译:在这项研究中,我们研究了通过改良的非相干辐射传递模型计算得出的深(半无限)土壤对1.4 GHz亮度温度的影响。我们复制了在裸露的农田中由双L波段辐射计收集到的测得的亮度温度。我们发现,当模型中的测量深度更接近发射深度(距离土壤顶部前几厘米)时,在非相干模型中排除半无限土壤层会显着降低亮度温度。对于4 cm,5 cm,8 cm和16的测量深度,在非相干模型中有和没有半无限层的情况之间的最大亮度温差经计算为6.8444 K,2.8891 K,0.2477 K和0.0004 K厘米。通过与另一个相干辐射传输模型的比较,我们观察到,无论测量深度如何,深土层的包含都可以显着提高非相干模型的精度。我们的结果可能是提高辐射传递模型精度的一个例子,可以将其应用于其他辐射传递模型并提高土壤水分反演计算的精度。

著录项

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    Dogusgen (Erbas), C.;

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  • 年度 2017
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  • 正文语种 en
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