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Regional Rainfall Depth–Duration–Frequency Equations for an Alpine Region

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Abstract.

In this paper the scaling hypotheses are applied to annual maximum series of rainfall depth for different rainfall duration to derive the depth–duration–frequency (DDF) curve. It is shown that, based on the empirically observed scaling properties of rainfall and some general assumptions about the cumulative distribution function for the annual maximum of the rainfall depth, it is possible to derive a simple DDF relationship. This general framework provides a basis for the generation of maps that can be used to infer DDF curves at any point of a particular area. Data from a dense raingauge network in a mountainous region in north-eastern Italy (the Trentino Province) are used to clarify the methodology for the construction and regionalization of the DDF relationship. The geographical variation of short-duration (i.e., less than 60 xmin) rainfall extremes is also evaluated by using the same framework. It is found that depth–duration ratios, defined as the ratios of the t-min to the 60-min rainfall depths of the same return period, may be considered independent of return period and geographical location for any storm duration less than 60 min.

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Reference

  • Y. Alila (2000) ArticleTitleRegional rainfall depth–duration–frequency equations for Canada Water Resour.Res 36 IssueID7 1767–1778 Occurrence Handle10.1029/2000WR900046

    Article  Google Scholar 

  • F. C. Bell (1969) ArticleTitleGeneralised rainfall depth–duration–frequency relationships J. Hydraul. Div. Am. Soc. Civ. Eng 95 IssueID1 331–327

    Google Scholar 

  • H. Benjoudi P. Hubert D. Schertzer S. Lovejoy (1997) ArticleTitleInterpretation multifractale des courbes intensité-duree-frequance des precipitations Geosci. Surface Hydrol. Surf. Geosci. Hydrol 325 323–336

    Google Scholar 

  • M. Borga A. Vizzaccaro (1997) ArticleTitleOn the interpolation of hydrologic variables: formal equivalence of multiquadratic surface fitting and riging J. Hydrol 195 160–171 Occurrence Handle10.1016/S0022-1694(96)03250-7

    Article  Google Scholar 

  • T. A.. Buishand (1991) ArticleTitleExtreme rainfall estimation by combining data from several sites Hydrol. Sci. J 36 345–365

    Google Scholar 

  • Buishand, T. A.: 1993, Rainfall depth–duration–frequency curves; a problem of dependent extremes, In: V. Barnett and Turkman, K. F. (eds), Statistics for the Environment , Wiley, pp. 183–197.

  • P. Burlando R. Rosso (1991) Statistical models for design storm prediction U.M. Maione (Eds) Modelli idrologici superficiali nella pianificazione di bacino. Città Studi Milano 367–421

    Google Scholar 

  • P. Burlando R. Rosso (1996) ArticleTitleScaling and multiscaling models of depth–duration–frequency curves for storm precipitation J. Hydrol 187 45–64 Occurrence Handle10.1016/S0022-1694(96)03086-7

    Article  Google Scholar 

  • V. T. Chow D. R. Maidment L. W. Mays (1988) Applied Hydrology McGraw-Hill New York

    Google Scholar 

  • Della Lucia, D., Fattorelli, S., and Provasi, S.: 1976, Determinazione delle zone omogenee per le piogge intense nel Trentino, Memorie del Museo Trentino di Scienze Naturali , 21(2).

  • G. B. Ferreri V. Ferro (1990) ArticleTitleShort duration rainfalls in Sicily J. Hydraul. Eng 116 IssueID3 430–435

    Google Scholar 

  • F. Fliri (1975) Das Klima der Alpen im Raume Tirol Universitäts-Verlag Wagner Innsbruck

    Google Scholar 

  • V. K. Gupta E. Waymire (1990) ArticleTitleMultiscaling properties of spatial rainfall and river flow distributions J. Geophys. Res. 95 IssueIDD3 1999–2009

    Google Scholar 

  • D. M.. Hershfield (1962) ArticleTitleExtreme rainfall relationships J. Hydraul. Div. Am. Soc. Civ. Eng 88 IssueID6 73–92

    Google Scholar 

  • J. R. M. Hosking J. M. Wallis E. F. Wood (1985) ArticleTitleEstimation of the generalized extreme value distribution by the method of probability weighted moments Technometrics 27 IssueID3 251–261 Occurrence HandleMR797563

    MathSciNet  Google Scholar 

  • IH (Institute of Hydrology): 1999, Flood Estimation Handbook , Institute of Hydrology.

  • A. F. Jenkinson (1955) ArticleTitleThe frequency distribution of the annual maximum (or minimum) value of meteorological elements Q. J. Royal Meteorol. Soc 81 158–171

    Google Scholar 

  • U. C. Kothyari R. J. Garde (1992) ArticleTitleRainfall intensity–duration–frequency formula for India J. Hydraul. Eng 118 IssueID2 323–336

    Google Scholar 

  • Kottegoda, N. T., and Rosso, R.: 1997, Statistics, Probability and Reliability for Civil and Environmental Engineers , McGraw-Hill, 735 pp.

  • D. Koutsoyiannis G. Baloutsos (2000) ArticleTitleAnalysis of long record of annual maximum rainfall in Athens, Greece, and design rainfall inferences Natural Hazards 29 29–48 Occurrence Handle10.1023/A:1008001312219

    Article  Google Scholar 

  • D. Koutsoyiannis D. Kozonis A. Manetas (1998) ArticleTitleA mathematical framework for studying intensity–duration–frequency relationships J. Hydrol 206 118–135 Occurrence Handle10.1016/S0022-1694(98)00097-3

    Article  Google Scholar 

  • S. Lovejoy D. Schertzer (1985) ArticleTitleGeneralized scale invariance and fractal models of rain Water Resour. Res 21 1233–1250

    Google Scholar 

  • M. Menabde A. Seed G. Pegram (1999) ArticleTitleA simple scaling model for extreme rainfall Water Resour. Res 33 IssueID12 2823–2830 Occurrence Handle10.1029/97WR02006

    Article  Google Scholar 

  • U. Moisello (1976) ArticleTitleIl regime delle piogge intense di Milano Ingegneria Ambientale 5 545–561

    Google Scholar 

  • V.-T.-V. Nguyen T.-D. Nguyen F. Ashkar (2002) ArticleTitleRegional frequency analysis of extreme rainfalls Water Sci. Technol 45 IssueID2 75–81

    Google Scholar 

  • Ranzi, R., Mariani, M., Rossini, E., Armanelli, B., and Bacchi, B.: 1999, Analisi e sintesi delle piogge intense del territorio bresciano , Technical Report N. 12, University of Brescia, 94 pp.

  • D. W Reed E.J. Stewart (1994) Inter-site and inter-duration dependence in rainfall extremes V. Barnett K.F. Turkman (Eds) Statistics for the Environment 2 Water-Related Issues Wiley 125–143

    Google Scholar 

  • G. Salvadori C. De Michele (2001) ArticleTitleFrom generalized Pareto to extreme values law: Scaling properties and derived features J. Geophys. Res 106 IssueIDD20 24063–24070 Occurrence Handle10.1029/2001JD900091

    Article  Google Scholar 

  • J.R. Stedinger R.M. Vogel E. Foufoula-Georgiu (1993) Frequency analysis of extreme events D.R. Maidment (Eds) Handbook of Hydrology. McGraw-Hill New York 18.1–18.66

    Google Scholar 

  • D. Veneziano P. Furcolo (2002) ArticleTitleMultifractality of rainfall and scaling of intensity–duration–frequency curves Water Resour. Res 38 IssueID12 1306 Occurrence Handle10.1029/2001WR000372

    Article  Google Scholar 

  • P. Willems (2000) ArticleTitleCompound intensity/duration/frequency-relationships of extreme precipitation for two seasons and two storm types J. Hydrol 233 189–205 Occurrence Handle10.1016/S0022-1694(00)00233-X

    Article  Google Scholar 

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Correspondence to Marco Borga.

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Borga, M., Vezzani, C. & Fontana, G.D. Regional Rainfall Depth–Duration–Frequency Equations for an Alpine Region. Nat Hazards 36, 221–235 (2005). https://doi.org/10.1007/s11069-004-4550-y

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