• Title of article

    Development of a new integrated method for generation of IDF curves based on three scenarios of climatic changes

  • Author/Authors

    Adib, A Department of Civil Engineering - Faculty of Engineering - Shahid Chamran University of Ahvaz , Ghafari Rad, S Department of Civil Engineering - Faculty of Engineering - Shahid Chamran University of Ahvaz

  • Pages
    10
  • From page
    742
  • To page
    751
  • Abstract
    Climate change can change the Intensity-Duration-Frequency (IDF) curves. This research study evaluates IDF curves changes of the Baghmalek climatic station in the southwest of Iran. A developed integrated method extracted the IDF curves using the Gumbel and log-Pearson III probability distributions and observed maximum annual precipitations. Durations of these precipitations are 15, 30, 45 minutes and 1,2,3,6 and 12 hours. For this purpose, this method utilizes the recorded precipitation data of the Baghmalek climatic station in a 40-year period (1974-2013). Then, mean square error method determines the probability distribution that has the best tting with this data. The HadCM3 prepares precipitation data for a 30-year period (2021-2050) based on A1B, B1, and A2 scenarios. In addition, this method selects an optimum articial neural network to extract maximum annual rainfall intensity for different durations and scenarios. Then, selected network and the chosen probability distribution produce IDF curves for different return periods and scenarios. Produced IDF curves for different scenarios are compared to IDF curves of a base time period. Because of increasing carbon dioxide and its greenhouse effects in these scenarios, rainfall intensity will increase for return periods less than 2.33 years, while it will decrease for return periods more than 2.33 years.
  • Keywords
    Climatic change , The HadCM3 , IDF curves , RBF ANN , The Gumbel distribution
  • Journal title
    Scientia Iranica(Transactions A: Civil Engineering)
  • Serial Year
    2019
  • Record number

    2524780