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首页> 外文期刊>Journal of the American Water Resources Association >CLASSIFYING STORM RUNOFF POTENTIAL WITH PASSIVE MICROWAVE MEASUREMENTS1
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CLASSIFYING STORM RUNOFF POTENTIAL WITH PASSIVE MICROWAVE MEASUREMENTS1

机译:使用被动微波MEASUREMENTS1对风暴径流潜力进行分类

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ABSTRACT:The average microwave temperature of the watershed surface as detected by an airborne Passive Microwave Imaging Scanner (PMIS) was compared with the measured Soil Conservation Service (SCS) watershed storm runoff coefficient (CN). Previous laboratory work suggested that microwave response to the watershed surface is influenced by some of the same surface characteristics that affect runoff, i.e., soil moisture, surface roughness, vegetative cover, and soil texture. In order to field test and develop relations between runoff potentfal and microwave response, several highly instrumented watersheds of approximately 1.5 to 17 km2 were scanned under wet‐ and dry‐soil conditions in April and June 1973. The polarized (horizontal and vertical) scans at 2.8 cm wavelength provided the data base from which other values were calculated. The best relationship between runoff coefficients (CN) and PMIS temperatures was observed when horizontally polarized temperatures from the near‐dormant, early‐growing season flight were used. Lower SCS runoff coefficients seem to be correlated with the cross‐polarized response under dry watershed conditions late in the growing season and the difference in horizontal polarized response between wet conditions early in the growing season and dry conditions late in the growing season. To apply the results, the relationships need to be verifie
机译:摘要: 将机载无源微波成像扫描仪(PMIS)探测到的流域表面平均微波温度与测得的土壤保持局(SCS)流域暴雨径流系数(CN)进行比较。先前的实验室研究表明,微波对流域表面的响应受到影响径流的一些相同表面特征的影响,即土壤湿度、表面粗糙度、植被覆盖和土壤质地。为了实地测试和发展径流效力与微波响应之间的关系,1973 年 4 月和 6 月,在湿壤和干壤条件下扫描了几个高度仪器化的流域,面积约为 1.5 至 17 km2。波长为2.8厘米的偏振(水平和垂直)扫描提供了计算其他值的数据库。当使用来自近乎休眠的早期生长季节飞行的水平极化温度时,观察到径流系数 (CN) 和 PMIS 温度之间的最佳关系。较低的SCS径流系数似乎与生长季后期干旱流域条件下的交叉极化响应以及生长季早期潮湿条件和生长季后期干旱条件下水平极化响应的差异相关。要应用结果,需要验证关系

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