Cooling and heating degree days - Cities and FUAs — Change in cooling in Lafayette (IN)

Lafayette (IN): Cooling and heating degree days - Cities and FUAs — Change in cooling was 0.395 Degree days in 2025. ◆ Volatile

Latest (2025)
0.395 Degree days
Change on year
down 98.6%
Rank
460th
of 1314 regions
All-time high
185.58 Degree days
in 2012
All-time low
-115.81 Degree days
in 1992
Years of data
76
1950–2025

Cooling and heating degree days - Cities and FUAs — Change in cooling in Lafayette (IN), 1950–2025

-1000100200195019872025

Source: Organisation for Economic Co-operation and Development. Measured in Degree days.

Analysis

Lafayette (IN) recorded 0.395 Degree days for cooling and heating degree days - cities and fuas — change in cooling in 2025.

Compared with earlier readings it is down 98.6% on the previous year and up 101.8% over ten years.

Over the whole period, cooling and heating degree days - cities and fuas — change in cooling in Lafayette (IN) peaked at 185.58 Degree days in 2012 and was at its lowest, -115.81 Degree days, in 1992.

Lafayette (IN) ranks 460th of 1314 regions on this measure, in the middle of the range.

The series is highly variable year to year, so single readings are best treated with caution.

Cooling and heating degree days - Cities and FUAs — Change in cooling in Lafayette (IN), year by year

Annual values for Cooling and heating degree days - Cities and FUAs — Change in cooling degree days from 1981–2010 period to 2020–24 period in Lafayette (IN), 1950 to 2025.
Year Degree days Change
1950 -100.34 Degree days
1951 -41.21 Degree days -58.9%
1952 90.87 Degree days -320.5%
1953 157.95 Degree days +73.8%
1954 139.72 Degree days -11.5%
1955 79.22 Degree days -43.3%
1956 -11.11 Degree days -114.0%
1957 -36.06 Degree days +224.6%
1958 -83.78 Degree days +132.3%
1959 64.31 Degree days -176.8%
1960 -41.2 Degree days -164.1%
1961 -32.67 Degree days -20.7%
1962 -4.34 Degree days -86.7%
1963 -44.12 Degree days +916.3%
1964 22.85 Degree days -151.8%
1965 -49.13 Degree days -315.1%
1966 -15.47 Degree days -68.5%
1967 -83.89 Degree days +442.2%
1968 -29.33 Degree days -65.0%
1969 -29.56 Degree days +0.8%
1970 24.65 Degree days -183.4%
1971 40.87 Degree days +65.8%
1972 -27.48 Degree days -167.2%
1973 -37.78 Degree days +37.5%
1974 -95.62 Degree days +153.1%
1975 -14 Degree days -85.4%
1976 -28.54 Degree days +103.8%
1977 34.76 Degree days -221.8%
1978 -9.06 Degree days -126.1%
1979 -60.65 Degree days +569.3%
1980 38.03 Degree days -162.7%
1981 -90.06 Degree days -336.8%
1982 -71.55 Degree days -20.5%
1983 93.92 Degree days -231.3%
1984 -22.08 Degree days -123.5%
1985 -69.29 Degree days +213.8%
1986 -2.98 Degree days -95.7%
1987 79.86 Degree days -2777.8%
1988 172.18 Degree days +115.6%
1989 -56.15 Degree days -132.6%
1990 -39.76 Degree days -29.2%
1991 119.56 Degree days -400.7%
1992 -115.81 Degree days -196.9%
1993 -43.88 Degree days -62.1%
1994 -1.08 Degree days -97.5%
1995 59.43 Degree days -5580.4%
1996 -64.13 Degree days -207.9%
1997 -55.98 Degree days -12.7%
1998 4.93 Degree days -108.8%
1999 73.04 Degree days +1380.3%
2000 -60.33 Degree days -182.6%
2001 -0.038 Degree days -99.9%
2002 72.44 Degree days -190846.1%
2003 -90.5 Degree days -224.9%
2004 -67.29 Degree days -25.6%
2005 109.22 Degree days -262.3%
2006 -22.69 Degree days -120.8%
2007 116.92 Degree days -615.3%
2008 -25.47 Degree days -121.8%
2009 -91.63 Degree days +259.7%
2010 89.19 Degree days -197.3%
2011 104.03 Degree days +16.6%
2012 185.58 Degree days +78.4%
2013 1.65 Degree days -99.1%
2014 -44.85 Degree days -2817.0%
2015 -21.46 Degree days -52.2%
2016 77.39 Degree days -460.7%
2017 32.65 Degree days -57.8%
2018 121.23 Degree days +271.3%
2019 27.13 Degree days -77.6%
2020 56.96 Degree days +109.9%
2021 45.18 Degree days -20.7%
2022 69.61 Degree days +54.1%
2023 3.71 Degree days -94.7%
2024 27.44 Degree days +640.7%
2025 0.395 Degree days -98.6%

Averages by decade

DecadeAverage LowestHighest Years
1950s 25.96 Degree days -100.34 Degree days 157.95 Degree days 10
1960s -30.69 Degree days -83.89 Degree days 22.85 Degree days 10
1970s -17.28 Degree days -95.62 Degree days 40.87 Degree days 10
1980s 7.19 Degree days -90.06 Degree days 172.18 Degree days 10
1990s -6.37 Degree days -115.81 Degree days 119.56 Degree days 10
2000s -5.94 Degree days -91.63 Degree days 116.92 Degree days 10
2010s 57.26 Degree days -44.85 Degree days 185.58 Degree days 10
2020s 33.88 Degree days 0.395 Degree days 69.61 Degree days 6

More reference data data for Lafayette (IN)

All data for Lafayette (IN) →

Frequently asked questions

What is cooling and heating degree days - cities and fuas — change in cooling in Lafayette (IN)?
Cooling and heating degree days - cities and fuas — change in cooling in Lafayette (IN) was 0.395 Degree days in 2025, according to Organisation for Economic Co-operation and Development.
What is the highest cooling and heating degree days - cities and fuas — change in cooling recorded in Lafayette (IN)?
The highest recorded value was 185.58 Degree days in 2012.
What is the lowest cooling and heating degree days - cities and fuas — change in cooling recorded in Lafayette (IN)?
The lowest recorded value was -115.81 Degree days in 1992.
How does Lafayette (IN) rank for cooling and heating degree days - cities and fuas — change in cooling?
Lafayette (IN) ranks 460th out of 1314 regions with data for 2025.
Is cooling and heating degree days - cities and fuas — change in cooling rising or falling in Lafayette (IN)?
Over the last ten years it is up 101.8%. The long-run trend across the full record is volatile.
Where does this Lafayette (IN) data come from?
The figures come from Organisation for Economic Co-operation and Development, published as part of Cooling and heating degree days - Cities and FUAs — Change in cooling degree days from 1981–2010 period to 2020–24 period. Statizoid updates them automatically from the source API.

Download this data

CSV · JSON — 76 observations, free to reuse under OECD Terms and Conditions (attribution required).

Share, cite or embed this page

Cite this page

Cooling and heating degree days - Cities and FUAs — Change in cooling in Lafayette (IN). Statizoid, drawing on Organisation for Economic Co-operation and Development. Retrieved 25 August 2026, from https://reference.statizoid.com/stat/cooling-and-heating-degree-days-cities-and-fuas-change-in-cooling-degree-days-from-1981/lafayette-in/

Embed or link this data

Paste this into a page to link back to these figures. The data itself is free to reuse under OECD Terms and Conditions (attribution required); please keep the attribution.

<a href="https://reference.statizoid.com/stat/cooling-and-heating-degree-days-cities-and-fuas-change-in-cooling-degree-days-from-1981/lafayette-in/">Cooling and heating degree days - Cities and FUAs — Change in cooling in Lafayette (IN)</a> — Statizoid

About this data

Indicator
Cooling and heating degree days - Cities and FUAs — Change in cooling degree days from 1981–2010 period to 2020–24 period
Unit
Degree days
Source
Organisation for Economic Co-operation and Development
Licence
OECD Terms and Conditions (attribution required)
Coverage
1,325 places, 100,700 data points, 1950–2025
Last refreshed

This dataset provides indicators of Cooling and Heating Degree Days (CDDs and HDDs) for FUAs and cities. CDDs and HDDs are measurements used to estimate energy usage based on outdoor temperature. CDD measures the demand for cooling, while HDD measures the demand for heating, both calculated relative to a baseline temperature. Data sources and methodology The indicators use 0.1-degree resolution grids from the ERA5-Land dataset. ERA5-Land is used as it provides harmonised, globally consistent coverage at fine spatial resolution (0.1 degree), enabling the production of comparable subnational indicators also where national meteorological data are not available at the required scale. Annual CDDs are the sum over a year of the differences between the daily mean outdoor air temperature and the threshold temperature when the outdoor temperature is above the threshold temperature. HDDs are the sum over a year of the differences between the threshold temperature and the daily mean outdoor air temperature when the outdoor temperature is below the threshold temperature. Threshold temperatures are set to 22°C for CDDs and 15°C for HDDs. These estimates may differ from official subnational climate statistics due to differences in methodological approaches, such as the use of reanalysis based top down modelling versus in situ observations, along with variations in input data sources, spatial resolution, and the models and algorithms used to generate temperature estimates. Defining FUAs and cities The OECD, in cooperation with the EU, has developed a harmonised definition of functional urban areas (FUAs) to capture the economic and functional reach of cities based on daily commuting patterns (OECD, 2012). FUAs consist of: A city – defined by urban centres in the degree of urbanisation, adapted to the closest local administrative units to define a city. A commuting zone – including all local areas where at least 15% of employed residents work in the city. The delineation process includes: Assigning municipalities surrounded by a single FUA to that FUA. Excluding non-contiguous municipalities. The correspondence table between SAUs and FUAs/cities is available in parquet and csv format. The definition identifies 1 272 FUAs and 1 269 cities in all OECD member countries except Costa Rica and three accession countries. Cite this dataset OECD Regions, cities and local areas database (Cooling and heating degree days - Cities and FUAs), http://oe.cd/geostats Further information OECD Local Data Portal OECD Regions and Cities at a Glance For questions and/or comments, please email CitiesStat@oecd.org