Primary energy production — all countries

Primary energy production — Australia and New Zealand

Primary energy production in Australia and New Zealand in 2024 — 18.178 quad Btu. Since 1980, the indicator has risen by 524.1%.

2024 18.178 quad Btu +3.6% vs 2023
World rank
Period maximum 19.064 quad Btu2019
Period minimum 2.913 quad Btu1980

Trend over time

1980–2024 · quadrillion Btu

Primary energy production — Australia and New Zealand, 1980–20240510152019801985199019952000200520102015202020241980: 2.913 quad Btu1981: 3.307 quad Btu1982: 3.409 quad Btu1983: 3.747 quad Btu1984: 5.153 quad Btu1985: 5.578 quad Btu1986: 5.881 quad Btu1987: 6.442 quad Btu1988: 6.108 quad Btu1989: 6.338 quad Btu1990: 6.912 quad Btu1991: 7.241 quad Btu1992: 7.478 quad Btu1993: 7.477 quad Btu1994: 7.582 quad Btu1995: 8.018 quad Btu1996: 8.238 quad Btu1997: 8.714 quad Btu1998: 9.09 quad Btu1999: 9.206 quad Btu2000: 10.027 quad Btu2001: 10.485 quad Btu2002: 10.735 quad Btu2003: 10.431 quad Btu2004: 10.486 quad Btu2005: 11.067 quad Btu2006: 11.156 quad Btu2007: 11.729 quad Btu2008: 11.858 quad Btu2009: 12.225 quad Btu2010: 13.635 quad Btu2011: 13.114 quad Btu2012: 13.476 quad Btu2013: 14.475 quad Btu2014: 15.38 quad Btu2015: 15.954 quad Btu2016: 16.354 quad Btu2017: 17.073 quad Btu2018: 17.558 quad Btu2019: 19.064 quad Btu2020: 18.787 quad Btu2021: 18.044 quad Btu2022: 18.17 quad Btu2023: 17.546 quad Btu2024: 18.178 quad Btu
Change over the period: +15.265 (+524.05%) Average annual rate: 4.25 %

Comparison, 2024

How the value compares with the world and the groups this territory belongs to: Australia and New Zealand

Australia and New Zealand 18.178 quad Btu
World computed 605.908 quad Btu
Primary energy production — Australia and New Zealand, by year Australia and New Zealand All countries CSV XLSX
Year quad Btu Change Change, %
2024 18.178 +0.632 +3.6%
2023 17.546 −0.623 −3.43%
2022 18.17 +0.126 +0.7%
2021 18.044 −0.744 −3.96%
2020 18.787 −0.277 −1.45%
2019 19.064 +1.506 +8.58%
2018 17.558 +0.486 +2.84%
2017 17.073 +0.719 +4.4%
2016 16.354 +0.4 +2.51%
2015 15.954 +0.574 +3.73%
2014 15.38 +0.906 +6.26%
2013 14.475 +0.999 +7.41%
2012 13.476 +0.362 +2.76%
2011 13.114 −0.521 −3.82%
2010 13.635 +1.41 +11.53%
2009 12.225 +0.367 +3.09%
2008 11.858 +0.129 +1.1%
2007 11.729 +0.573 +5.14%
2006 11.156 +0.089 +0.8%
2005 11.067 +0.58 +5.53%
2004 10.486 +0.056 +0.53%
2003 10.431 −0.304 −2.83%
2002 10.735 +0.25 +2.39%
2001 10.485 +0.457 +4.56%
2000 10.027 +0.822 +8.93%
1999 9.206 +0.115 +1.27%
1998 9.09 +0.376 +4.31%
1997 8.714 +0.476 +5.78%
1996 8.238 +0.22 +2.75%
1995 8.018 +0.436 +5.75%
1994 7.582 +0.104 +1.4%
1993 7.477 −0.001 −0.01%
1992 7.478 +0.237 +3.28%
1991 7.241 +0.328 +4.75%
1990 6.912 +0.575 +9.07%
1989 6.338 +0.23 +3.77%
1988 6.108 −0.334 −5.19%
1987 6.442 +0.561 +9.54%
1986 5.881 +0.303 +5.43%
1985 5.578 +0.424 +8.24%
1984 5.153 +1.407 +37.54%
1983 3.747 +0.338 +9.91%
1982 3.409 +0.102 +3.08%
1981 3.307 +0.394 +13.53%
1980 2.913

About the indicator

All the primary energy produced inside a country: the fuel extracted plus output from nuclear, hydro and other plants. Setting it against consumption gives what neither of the two series shows on its own — energy self-sufficiency: a country whose production exceeds its consumption is an energy exporter, and the other way round. The largest exporters and the largest importers nonetheless often sit next to each other at the top of the list on both indicators, because the size of an economy matters more than the sign of the balance.

Important: The comparison with consumption shows a country's self-sufficiency: production above consumption means energy exports, below it, dependence on imports.

Source: International Energy Statistics (EIA), license Public domain (work of a U.S. federal agency).