4.6 Article

Analysis of Drought Characteristics in Northern Shaanxi Based on Copula Function

Journal

WATER
Volume 13, Issue 11, Pages -

Publisher

MDPI
DOI: 10.3390/w13111445

Keywords

SPI; run theory; drought; copula; Northern Shaanxi; joint return period

Funding

  1. National Key R&D Program of China [2018YFC1508804]
  2. Key Scientific and Technology Program of Jilin Province [20170204035SF]
  3. Key Scientific and Technology Research and Development Program of Jilin Province [20180201035SF, 20180201033SF]

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This study analyzed the characteristics, joint probability distribution, and recurrence period of drought events in Northern Shaanxi using meteorological station data. The results showed frequent drought occurrences with varying durations and intensities in the region. The study identified the optimal distribution and fitting function for drought intensity and duration, providing guidance for the prevention and management of agricultural dryland in Northern Shaanxi.
Precipitation is low and drought occurs frequently in Northern Shaanxi. To study the characteristics and occurrence and development of drought events in Northern Shaanxi is beneficial to the prevention and control of drought disasters. Based on the monthly rainfall data of 10 meteorological stations in Northern Shaanxi from 1960 to 2019, the characteristic variables of drought events at each meteorological station in Northern Shaanxi were extracted by using run theory and copula function. The joint probability distribution and recurrence period were obtained by combining the duration and intensity of drought, and the relationship between drought characteristics and crop drought affected area was studied. The results show that (1) from 1960 to 2019, drought events mainly occurred in Northern Shaanxi with long duration and low severity, short duration and high severity, or short duration and low severity, among which the frequency of drought events that occurred in Yuyang and Baota districts was higher. The frequency of light drought and extreme drought was more in the south and less in the north, while the frequency of moderate drought and severe drought was more in the north and less in the south. (2) The optimal edge distribution of drought intensity and drought duration in Northern Shaanxi is generalized Pareto distribution, and the optimal fitting function is Frank copula function. The greater the duration and intensity of drought, the greater the cumulative probability and return period. (3) The actual recurrence interval and the theoretical recurrence interval of drought events in Northern Shaanxi were close, and the error was only 0.1-0.3a. The results of the joint return period can accurately reflect the actual situation, and this study can provide effective guidance for the prevention and management of agricultural dryland in Northern Shaanxi.

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