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Infrared measurements of pristine and disturbed soils 2. Environmental effects and field data reduction

机译:原始土壤和扰动土壤的红外测量2.环境影响和现场数据缩减

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We have expanded on previous methods for co,-rEding thermal infrared field measurements for atmospheric downwelling radiance (Salisbury and D'Aria, 1992; Korb et al., 1996; Hook and Kahle, 1996) by comparing the sensitivity of various input parameters (sample temperature, diffuse gold plate emissivity, and temperature) on this correction. We find that the sample temperature has the greatest influence on the applied atmospheric correction (cf. Nerry et al., 1990a,b; Labed and Stoll, 1991), and we present a method in which the sample temperature is varied to minimize the residual atmospheric emission liner in the measured field emissivity spectra. Direct comparison of laboratory hemispherical reflectance measurements of wet-sieved and dry-sieved samples with these appropriately corrected field observations of undisturbed and disturbed soils, respectively, provides a means to predict the expected infrared spectral contrast differences between such soils (see preceding article). (C) Elsevier Science Inc., 1998. [References: 10]
机译:通过比较各种输入参数的灵敏度,我们扩展了以前的用于大气下沉辐射的热红外场测量的方法(Salisbury和D'Aria,1992; Korb等,1996; Hook和Kahle,1996)。样品温度,扩散金板发射率和温度)进行此校正。我们发现样品温度对应用的大气校正影响最大(参见Nerry等,1990a,b; Labed and Stoll,1991),并且我们提出了一种改变样品温度以最小化残留量的方法。测得的场发射率光谱中的大气排放衬里。将湿筛和干筛样品的实验室半球反射率测量值分别与未经扰动和扰动的土壤进行适当校正的现场观测值直接进行比较,可以预测这种土壤之间的预期红外光谱对比差异(请参见上一篇文章)。 (C)Elsevier Science Inc.,1998年。[参考:10]

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