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Universal multifractal theory and observations of land and ocean surfaces and of clouds

机译:通用多重分形理论以及陆地,海洋表面和云层的观测

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Abstract: The extreme variability of geophysical fields can be characterized by scale invariant (sensor resolution independent) 'codimension' functions, which are exponents characterizing the probability distribution. These codimension functions form a three parameter universality class. The parameter H measures the degree of nonstationarity of the process, C$-1$/ characterizes the sparseness/inhomogeneity of the mean of the process, $alpha characterizes the degree of multifractality; $alpha $EQ 0 is monofractal, $alpha $EQ 2 is the maximum. We review the properties of these multifractal processes and describe the 'double trace moment' technique that is the first data analysis technique specifically designed to estimate these parameters. The technique is then applied to digital elevation maps of Deadman's Butte, to the topography of France, to a pair of aircraft photos of the ocean surface, and to a visible satellite image of a cloud field.!68
机译:摘要:地球物理场的极端变异性可以通过尺度不变性(与传感器分辨率无关)的“维数”函数来表征,该函数是表征概率分布的指数。这些余维函数形成一个三参数通用性类。参数H衡量过程的非平稳程度,C $ -1 $ /代表过程均值的稀疏/不均匀性,$ alpha代表多重分形程度; $ alpha $ EQ 0是单形的,$ alpha $ EQ 2是最大值。我们回顾了这些多重分形过程的性质,并描述了“双轨迹矩”技术,这是专门设计用来估计这些参数的第一个数据分析技术。然后将该技术应用于Deadman's Butte的数字高程图,法国的地形,一对飞机的海面照片以及可见的云场卫星图像!68

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