Ecuador vs Suriname: Standardised Precipitation-Evapotranspiration Index

Ecuador
-0.2877
in 2023
Suriname
-0.2863
in 2023
Ecuador rank
93rd
Suriname rank
92nd

Standardised Precipitation-Evapotranspiration Index over time

  • Ecuador
  • Suriname
-2-1012196019912023

How they compare

Suriname currently reports -0.2863 against -0.2877 in Ecuador, a difference of 0.0014.

The two have swapped places 26 times across 64 shared years of data; in 1960 it was Suriname ahead.

Ecuador ranks 93rd and Suriname ranks 92nd of 188 countries.

Across the 7 decades both report, Ecuador averaged higher in 4 and Suriname in 3.

Head to head by decade

Decade Ecuador Suriname Difference Ahead
1960s -0.6114 -0.6806 0.0692 Ecuador
1970s 0.2015 0.7919 0.5904 Suriname
1980s -0.2485 -0.3897 0.1412 Ecuador
1990s 0.2577 -0.1749 0.4326 Ecuador
2000s -0.3042 -0.18 0.1242 Suriname
2010s 0.6139 -0.2592 0.8731 Ecuador
2020s -0.0599 0.5396 0.5996 Suriname

Averages of every year both report within each decade.

Frequently asked questions

Which has higher standardised precipitation-evapotranspiration index, Ecuador or Suriname?
Suriname, at -0.2863 against -0.2877 in Ecuador as of 2023.
What is the difference in standardised precipitation-evapotranspiration index between Ecuador and Suriname?
0.0014, with Suriname ahead.
How many years of comparable data are there for Ecuador and Suriname?
64 years are reported by both, from 1960 to 2023.
How do Ecuador and Suriname rank globally for standardised precipitation-evapotranspiration index?
Ecuador ranks 93rd and Suriname ranks 92nd of 188 countries.
Where does this data come from?
Global SPEI database (SPEIbase). https://spei.csic.es/database.html, published as Standardised Precipitation-Evapotranspiration Index. Statizoid refreshes it automatically from the source and publishes the full history for both places.

Individual pages

About this data

Indicator
Standardised Precipitation-Evapotranspiration Index
Source
Global SPEI database (SPEIbase). https://spei.csic.es/database.html
Licence
CC BY 4.0 (World Bank Open Data)
Coverage
189 places, 12,095 data points, 1960–2023
Last refreshed

The SPEI fulfills the requirements of a drought index since its multi-scalar character enables it to be used by different scientific disciplines to detect, monitor, and analyze droughts. Like the sc-PDSI and the SPI, the SPEI can measure drought severity according to its intensity and duration, and can identify the onset and end of drought episodes. The SPEI allows comparison of drought severity through time and space, since it can be calculated over a wide range of climates, as can the SPI.