GC045-02
Developing a Customizable Composite Drought Index for Pakistan

Wednesday, 9 December 2020: 07:03
Virtual
Caily Schwartz1, Robert Griffin1, Walter Lee Ellenburg II2, Vikalp Mishra1, Timothy Mayer1, Faisal M. Qamer3, Mir Abdul Matin3 and Tsegaye Tadesse4, (1)University of Alabama in Huntsville, Huntsville, AL, United States, (2)University of Alabama in Huntsville, NASA-SERVIR, Huntsville, AL, United States, (3)International Centre for Integrated Mountain Development (ICIMOD), Kathmandu, Nepal, (4)National Drought Mitigation Center, University of Nebraska-Lincoln, Lincoln, NE, United States
Abstract:
Pakistan has experienced intense agricultural droughts in recent years, with the southern provinces experiencing the most severe drought conditions. These prolonged dry conditions often result in failed crop production, impacting families and communities. To reduce the impacts a drought may have on a community by identifying dry conditions, drought indices are used. A customizable composite drought index (CDI) is developed to improve the spatial and temporal understanding of historical agricultural droughts that have affected Pakistan. An in depth analysis using 9 input variables will provide information regarding the most important variables for differing locations. This framework can enhance drought monitoring and forecasting systems. The performance of the CDI will be evaluated by using production data from different crops that have significant economic value in Pakistan. These crops include wheat, rice, maize, cotton and barley. The expected relationship between the CDI and crop production would be to see production decrease when the CDI decreases, an indication that crops failed due to drought. The CDI is made more precise by evaluating only agricultural areas using the months of the growing season for each specific crop. This will allow for a custom drought index to be developed based on crop type and geographic location that only uses the most important variables, while still capturing the full extent of historical drought.