Published April 12, 2019 | Version v1
Journal article

A seasonal forecast scheme for the Inner Mongolia spring drought part-II: a logical reasoning evidence-based method for spring predictions

  • 1. Inner Mongolia Meteorological Institute (China)
  • 2. Computer Application Academy of Inner Mongolia (China)
  • 3. Dalateqi Meteorological Bureau (China)
  • 4. Inner Mongolia Climate Center (China)
  • 5. Student of Durham University (United Kingdom)
  • 6. Inner Mongolia Meteorological Data Center (China)
  • 7. Inner Mongolia Meteorological Service Center (China)

Description

Spring precipitation is the predominant factor that controls meteorological drought in Inner Mongolia (IM), China. This study used the anomaly percentage of spring precipitation (PAP) as a drought index to measure spring drought. A scheme for forecasting seasonal drought was designed based on evidence of spring drought occurrence and speculative reasoning methods introduced in computer artificial intelligence theory. Forecast signals with sufficient lead-time for predictions of spring drought were extracted from eight crucial areas of oceans and 500-hPa geopotential height. Using standardized values, these signals were synthesized into three examples of spring drought evidence (SDE) depending on their primary effects on three major atmospheric circulation components of spring precipitation in IM: the western Pacific subtropical high, North Polar vortex, and East Asian trough. Thresholds for the SDE were determined following numerical analyses of the influential factors. Furthermore, five logical reasoning rules for distinguishing the occurrence of SDE were designed after examining all possible combined cases. The degree of confidence in the rules was determined based on estimations of their prior probabilities. Then, an optimized logical reasoning scheme was identified for judging the possibility of spring drought. The scheme was successful in hindcast predictions of 11 of the 16 (accuracy: 68.8%) spring droughts that have occurred during 1960–2009. Moreover, the accuracy ratio for the same period was 82.0% for drought (PAP ≤ −20%) or not (PAP > −20%). Predictions for the recent 6-year period (2010–2015) demonstrated successful outcomes.

Additional details

Identifiers

Publishing Information

Journal Title
Theoretical and Applied Climatology
Journal Volume
136
Journal Issue
1-2
Journal Page Range
p. 703-715
ISSN
0177-798X
CODEN
TACLEK

INIS

Country of Publication
Austria
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
52011722
Subject category
S54: ENVIRONMENTAL SCIENCES;
Descriptors DEI
ACCURACY; ARTIFICIAL INTELLIGENCE; ATMOSPHERIC CIRCULATION; ATMOSPHERIC PRECIPITATIONS; DROUGHTS; FORECASTING; METEOROLOGY; SEAS
Descriptors DEC
SURFACE WATERS

Optional Information

Copyright
Copyright (c) 2019 Springer-Verlag GmbH Austria, part of Springer Nature