The world is heating up, and so is Allegany County.
Over a century of historical data show temperatures rising, and researchers predict a future with higher rates of extreme heat and precipitation, more warm nights and fewer days that dip below freezing.
Annual average temperatures in the county have risen, according to 130 years of federal data. The annual average temperature for 2000-2024 is 52.8 degrees Fahrenheit. That’s 1.5 degrees warmer than the 20th century mean of 51.3 F.
The county’s warmest years were 1998 and 2024. Both had an average temperature of 54.5 F.
Scientists predict a range of future impacts in Allegany County if the planet continues to warm.
An interactive map published by the U.S. Global Change Research Program and its partners — but later removed from the web by the Trump administration — used climate models to predict county-level changes at different degrees of global warming.
The Local News Network at the University of Maryland’s Philip Merrill College of Journalism archived the data before it was deleted.
The data shows that with 2.7 F global warming, Allegany County is predicted to experience:
- 16 more days per year with extreme precipitation
- Four more days per year with temperatures of 95 F or above
- Three more nights per year with temperatures of 70 F or above
- 14 fewer days per year with temperatures of 32 F or below
With 3.6 F global warming, Allegany County is predicted to experience:
- 24 more days per year with extreme precipitation
- Nine more days per year with temperatures of 95 F or above
- Six more nights per year with temperatures of 70 F or above
- 22 fewer days per year with temperatures of 32 F or below
With 5.4 F global warming, Allegany County is predicted to experience:
- 38 more days per year with extreme precipitation
- 23 more days per year with temperatures of 95 F or above
- 19 more nights per year with temperatures of 70 F or above
- 38 fewer days per year with temperatures of 32 F or below
With 7.2 F global warming, Allegany County is predicted to experience:
- 52 more days per year with extreme precipitation
- 36 more days per year with temperatures of 95 F or above
- 36 more nights per year with temperatures of 70 F or above
- 49 fewer days per year with temperatures of 32 F or below
Note: Data rounded to the nearest whole number.
Changes are compared to data from 1991-2020: for example, 12 more days per year over 95 F means 12 more days compared to the 1991-2020 average.
The federal climate atlas measures global warming by comparing Earth’s average temperatures to those measured from 1851-1900, called the “pre-industrial average.” The Earth is 2 F warmer than the pre-industrial average, according to National Oceanic and Atmospheric Administration.
Climate models used by the National Climate Assessment predict increases in average temperature and precipitation. The U.S. Climate Resilience Toolkit (run by the U.S. Global Change Research Program and NOAA) also predicts more rain, though it notes that “global climate models are simply not as skillful at projecting outcomes for precipitation as they are for temperature.”