Multiscaling Analysis of Monthly Runoff Series Using Improved MF-DFA Approach
Author:
Publisher
Springer Science and Business Media LLC
Subject
Water Science and Technology,Civil and Structural Engineering
Link
http://link.springer.com/content/pdf/10.1007/s11269-014-0715-y.pdf
Reference30 articles.
1. Agoramoorthy G (2014) David Groenfeldt: water ethics: a values approach to solving the water crisis. Water Resour Manag 28:1481–1483
2. Bhuyan A, Borah M, Kumar R (2010) Regional flood frequency analysis of north-bank of the river brahmaputra by using LH-moments. Water Resour Manag 24(9):1779–1790
3. Blender R, Fraedrich K (2006) Long-term memory of the hydrological cycle and river runoffs in China in a high-resolution climate model. Int J Climatol 26:1547–1565
4. Bunde EK, Kantelhardt JW, Braun P, Bunde A, Havlin S (2006) Long-term persistence and multifractality of river runoff records: detrended fluctuation studies. J Hydrol 322:120–137
5. Chianca CV, Ticona A, Penna TJ (2005) Fourier-detrended fluctuation analysis. Phys A 357:447–454
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