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The current value of the Electricity Production in Croatia is 1,457.161 Gigawatt-hour. The Electricity Production in Croatia increased to 1,457.161 Gigawatt-hour on 3/1/2024, after it was 1,271.728 Gigawatt-hour on 2/1/2024. From 1/1/2008 to 4/1/2024, the average GDP in Croatia was 1,100.57 Gigawatt-hour. The all-time high was reached on 1/1/2021 with 1,785.78 Gigawatt-hour, while the lowest value was recorded on 6/1/2012 with 513 Gigawatt-hour.
Electricity Production ·
3 years
5 years
10 years
25 Years
Max
Electricity Production | |
---|---|
1/1/2008 | 1,104 Gigawatt-hour |
2/1/2008 | 1,028 Gigawatt-hour |
3/1/2008 | 1,050 Gigawatt-hour |
4/1/2008 | 1,065 Gigawatt-hour |
5/1/2008 | 929 Gigawatt-hour |
6/1/2008 | 1,064 Gigawatt-hour |
7/1/2008 | 1,032 Gigawatt-hour |
8/1/2008 | 992 Gigawatt-hour |
9/1/2008 | 1,000 Gigawatt-hour |
10/1/2008 | 973 Gigawatt-hour |
11/1/2008 | 1,005 Gigawatt-hour |
12/1/2008 | 1,365 Gigawatt-hour |
1/1/2009 | 1,467 Gigawatt-hour |
2/1/2009 | 1,277 Gigawatt-hour |
3/1/2009 | 1,352 Gigawatt-hour |
4/1/2009 | 1,274 Gigawatt-hour |
5/1/2009 | 921 Gigawatt-hour |
6/1/2009 | 846 Gigawatt-hour |
7/1/2009 | 968 Gigawatt-hour |
8/1/2009 | 989 Gigawatt-hour |
9/1/2009 | 952 Gigawatt-hour |
10/1/2009 | 1,110 Gigawatt-hour |
11/1/2009 | 1,083 Gigawatt-hour |
12/1/2009 | 1,343 Gigawatt-hour |
1/1/2010 | 1,481 Gigawatt-hour |
2/1/2010 | 1,371 Gigawatt-hour |
3/1/2010 | 1,451 Gigawatt-hour |
4/1/2010 | 1,255 Gigawatt-hour |
5/1/2010 | 1,128 Gigawatt-hour |
6/1/2010 | 978 Gigawatt-hour |
7/1/2010 | 1,162 Gigawatt-hour |
8/1/2010 | 940 Gigawatt-hour |
9/1/2010 | 966 Gigawatt-hour |
10/1/2010 | 1,059 Gigawatt-hour |
11/1/2010 | 1,228 Gigawatt-hour |
12/1/2010 | 1,647 Gigawatt-hour |
1/1/2011 | 1,415 Gigawatt-hour |
2/1/2011 | 1,140 Gigawatt-hour |
3/1/2011 | 1,168 Gigawatt-hour |
4/1/2011 | 863 Gigawatt-hour |
5/1/2011 | 587 Gigawatt-hour |
6/1/2011 | 756 Gigawatt-hour |
7/1/2011 | 835 Gigawatt-hour |
8/1/2011 | 830 Gigawatt-hour |
9/1/2011 | 865 Gigawatt-hour |
10/1/2011 | 842 Gigawatt-hour |
11/1/2011 | 853 Gigawatt-hour |
12/1/2011 | 1,061 Gigawatt-hour |
1/1/2012 | 983 Gigawatt-hour |
2/1/2012 | 1,044 Gigawatt-hour |
3/1/2012 | 825 Gigawatt-hour |
4/1/2012 | 788 Gigawatt-hour |
5/1/2012 | 672 Gigawatt-hour |
6/1/2012 | 513 Gigawatt-hour |
7/1/2012 | 769 Gigawatt-hour |
8/1/2012 | 792 Gigawatt-hour |
9/1/2012 | 770 Gigawatt-hour |
10/1/2012 | 925 Gigawatt-hour |
11/1/2012 | 1,202 Gigawatt-hour |
12/1/2012 | 1,383 Gigawatt-hour |
1/1/2013 | 1,329 Gigawatt-hour |
2/1/2013 | 1,263 Gigawatt-hour |
3/1/2013 | 1,573 Gigawatt-hour |
4/1/2013 | 1,498 Gigawatt-hour |
5/1/2013 | 1,229 Gigawatt-hour |
6/1/2013 | 926 Gigawatt-hour |
7/1/2013 | 914 Gigawatt-hour |
8/1/2013 | 1,197 Gigawatt-hour |
9/1/2013 | 855 Gigawatt-hour |
10/1/2013 | 1,086 Gigawatt-hour |
11/1/2013 | 1,254 Gigawatt-hour |
12/1/2013 | 1,115 Gigawatt-hour |
1/1/2014 | 1,240 Gigawatt-hour |
2/1/2014 | 1,321 Gigawatt-hour |
3/1/2014 | 1,246 Gigawatt-hour |
4/1/2014 | 1,069 Gigawatt-hour |
5/1/2014 | 1,127 Gigawatt-hour |
6/1/2014 | 855 Gigawatt-hour |
7/1/2014 | 876 Gigawatt-hour |
8/1/2014 | 962 Gigawatt-hour |
9/1/2014 | 1,028 Gigawatt-hour |
10/1/2014 | 969 Gigawatt-hour |
11/1/2014 | 1,271 Gigawatt-hour |
12/1/2014 | 1,403 Gigawatt-hour |
1/1/2015 | 1,202 Gigawatt-hour |
2/1/2015 | 1,206 Gigawatt-hour |
3/1/2015 | 1,263 Gigawatt-hour |
4/1/2015 | 1,075 Gigawatt-hour |
5/1/2015 | 911 Gigawatt-hour |
6/1/2015 | 517 Gigawatt-hour |
7/1/2015 | 767 Gigawatt-hour |
8/1/2015 | 675 Gigawatt-hour |
9/1/2015 | 675 Gigawatt-hour |
10/1/2015 | 1,032 Gigawatt-hour |
11/1/2015 | 930 Gigawatt-hour |
12/1/2015 | 873 Gigawatt-hour |
1/1/2016 | 1,077 Gigawatt-hour |
2/1/2016 | 1,258 Gigawatt-hour |
3/1/2016 | 1,359 Gigawatt-hour |
4/1/2016 | 979 Gigawatt-hour |
5/1/2016 | 909 Gigawatt-hour |
6/1/2016 | 960 Gigawatt-hour |
7/1/2016 | 871 Gigawatt-hour |
8/1/2016 | 909 Gigawatt-hour |
9/1/2016 | 803 Gigawatt-hour |
10/1/2016 | 1,088 Gigawatt-hour |
11/1/2016 | 1,315 Gigawatt-hour |
12/1/2016 | 1,163 Gigawatt-hour |
1/1/2017 | 1,250 Gigawatt-hour |
2/1/2017 | 1,173 Gigawatt-hour |
3/1/2017 | 1,105 Gigawatt-hour |
4/1/2017 | 860 Gigawatt-hour |
5/1/2017 | 748 Gigawatt-hour |
6/1/2017 | 563 Gigawatt-hour |
7/1/2017 | 802 Gigawatt-hour |
8/1/2017 | 907 Gigawatt-hour |
9/1/2017 | 917 Gigawatt-hour |
10/1/2017 | 884 Gigawatt-hour |
11/1/2017 | 1,134 Gigawatt-hour |
12/1/2017 | 1,457 Gigawatt-hour |
1/1/2018 | 1,460 Gigawatt-hour |
2/1/2018 | 1,378 Gigawatt-hour |
3/1/2018 | 1,581 Gigawatt-hour |
4/1/2018 | 1,195 Gigawatt-hour |
5/1/2018 | 932 Gigawatt-hour |
6/1/2018 | 952 Gigawatt-hour |
7/1/2018 | 959 Gigawatt-hour |
8/1/2018 | 1,022 Gigawatt-hour |
9/1/2018 | 802 Gigawatt-hour |
10/1/2018 | 899 Gigawatt-hour |
11/1/2018 | 1,111 Gigawatt-hour |
12/1/2018 | 1,228 Gigawatt-hour |
1/1/2019 | 1,235 Gigawatt-hour |
2/1/2019 | 1,119 Gigawatt-hour |
3/1/2019 | 878 Gigawatt-hour |
4/1/2019 | 870 Gigawatt-hour |
5/1/2019 | 1,088 Gigawatt-hour |
6/1/2019 | 927 Gigawatt-hour |
7/1/2019 | 852 Gigawatt-hour |
8/1/2019 | 877 Gigawatt-hour |
9/1/2019 | 772 Gigawatt-hour |
10/1/2019 | 961 Gigawatt-hour |
11/1/2019 | 1,511 Gigawatt-hour |
12/1/2019 | 1,521 Gigawatt-hour |
1/1/2020 | 1,162.04 Gigawatt-hour |
2/1/2020 | 1,052.33 Gigawatt-hour |
3/1/2020 | 1,097.75 Gigawatt-hour |
4/1/2020 | 661.48 Gigawatt-hour |
5/1/2020 | 852.58 Gigawatt-hour |
6/1/2020 | 919.75 Gigawatt-hour |
7/1/2020 | 954.99 Gigawatt-hour |
8/1/2020 | 930.86 Gigawatt-hour |
9/1/2020 | 974.48 Gigawatt-hour |
10/1/2020 | 1,353.73 Gigawatt-hour |
11/1/2020 | 1,216.61 Gigawatt-hour |
12/1/2020 | 1,724.57 Gigawatt-hour |
1/1/2021 | 1,785.78 Gigawatt-hour |
2/1/2021 | 1,541.26 Gigawatt-hour |
3/1/2021 | 1,401.03 Gigawatt-hour |
4/1/2021 | 1,082.79 Gigawatt-hour |
5/1/2021 | 1,034.66 Gigawatt-hour |
6/1/2021 | 880.45 Gigawatt-hour |
7/1/2021 | 977.04 Gigawatt-hour |
8/1/2021 | 999.91 Gigawatt-hour |
9/1/2021 | 845.78 Gigawatt-hour |
10/1/2021 | 1,118.54 Gigawatt-hour |
11/1/2021 | 1,353.96 Gigawatt-hour |
12/1/2021 | 1,663.83 Gigawatt-hour |
1/1/2022 | 1,511.92 Gigawatt-hour |
2/1/2022 | 1,184.64 Gigawatt-hour |
3/1/2022 | 1,188.81 Gigawatt-hour |
4/1/2022 | 1,022.22 Gigawatt-hour |
5/1/2022 | 914.24 Gigawatt-hour |
6/1/2022 | 1,003.39 Gigawatt-hour |
7/1/2022 | 1,119.16 Gigawatt-hour |
8/1/2022 | 1,046.98 Gigawatt-hour |
9/1/2022 | 936.71 Gigawatt-hour |
10/1/2022 | 1,052.11 Gigawatt-hour |
11/1/2022 | 1,272.5 Gigawatt-hour |
12/1/2022 | 1,536.79 Gigawatt-hour |
1/1/2023 | 1,636.52 Gigawatt-hour |
2/1/2023 | 1,406.23 Gigawatt-hour |
3/1/2023 | 1,682.37 Gigawatt-hour |
4/1/2023 | 1,317.76 Gigawatt-hour |
5/1/2023 | 1,521.63 Gigawatt-hour |
6/1/2023 | 1,285.25 Gigawatt-hour |
7/1/2023 | 1,250.22 Gigawatt-hour |
8/1/2023 | 1,309.56 Gigawatt-hour |
9/1/2023 | 1,132.06 Gigawatt-hour |
10/1/2023 | 1,214.02 Gigawatt-hour |
11/1/2023 | 1,596.42 Gigawatt-hour |
12/1/2023 | 1,538.08 Gigawatt-hour |
1/1/2024 | 1,518.76 Gigawatt-hour |
2/1/2024 | 1,271.73 Gigawatt-hour |
3/1/2024 | 1,457.16 Gigawatt-hour |
Electricity Production History
Date | Value |
---|---|
3/1/2024 | 1,457.161 Gigawatt-hour |
2/1/2024 | 1,271.728 Gigawatt-hour |
1/1/2024 | 1,518.764 Gigawatt-hour |
12/1/2023 | 1,538.081 Gigawatt-hour |
11/1/2023 | 1,596.424 Gigawatt-hour |
10/1/2023 | 1,214.018 Gigawatt-hour |
9/1/2023 | 1,132.064 Gigawatt-hour |
8/1/2023 | 1,309.559 Gigawatt-hour |
7/1/2023 | 1,250.223 Gigawatt-hour |
6/1/2023 | 1,285.251 Gigawatt-hour |
Similar Macro Indicators to Electricity Production
Name | Current | Previous | Frequency |
---|---|---|---|
🇭🇷 Business Climate | 5.4 points | 1.2 points | Monthly |
🇭🇷 Changes in Inventory Levels | 1.344 B EUR | 1.72 B EUR | Quarter |
🇭🇷 Electric Vehicle Registrations | 265 Units | 35 Units | Monthly |
🇭🇷 Industrial production | -8.3 % | -3.3 % | Monthly |
🇭🇷 Industrial Production MoM | 5.8 % | -4.6 % | Monthly |
🇭🇷 Manufacturing Production | 1 % | -2.5 % | Monthly |
🇭🇷 Mining Production | 18.1 % | 2.4 % | Monthly |
🇭🇷 Vehicle Registrations | 4,197 Units | 3,341 Units | Monthly |
Macro pages for other countries in Europe
- 🇦🇱Albania
- 🇦🇹Austria
- 🇧🇾Belarus
- 🇧🇪Belgium
- 🇧🇦Bosnia and Herzegovina
- 🇧🇬Bulgaria
- 🇨🇾Cyprus
- 🇨🇿Czech Republic
- 🇩🇰Denmark
- 🇪🇪Estonia
- 🇫🇴Faroe Islands
- 🇫🇮Finland
- 🇫🇷France
- 🇩🇪Germany
- 🇬🇷Greece
- 🇭🇺Hungary
- 🇮🇸Island
- 🇮🇪Ireland
- 🇮🇹Italy
- 🇽🇰Kosovo
- 🇱🇻Latvia
- 🇱🇮Liechtenstein
- 🇱🇹Lithuania
- 🇱🇺Luxembourg
- 🇲🇰North Macedonia
- 🇲🇹Malta
- 🇲🇩Moldova
- 🇲🇨Monaco
- 🇲🇪Montenegro
- 🇳🇱Netherlands
- 🇳🇴Norway
- 🇵🇱Poland
- 🇵🇹Portugal
- 🇷🇴Romania
- 🇷🇺Russia
- 🇷🇸Serbia
- 🇸🇰Slovakia
- 🇸🇮Slovenia
- 🇪🇸Spain
- 🇸🇪Sweden
- 🇨🇭Switzerland
- 🇺🇦Ukraine
- 🇬🇧United Kingdom
- 🇦🇩Andorra
What is Electricity Production?
Electricity production is a cornerstone of modern macroeconomic analysis, underpinning virtually every aspect of economic activity and competitiveness. At Eulerpool, we provide in-depth insights and comprehensive data on the dynamics of electricity production, emphasizing its pivotal role in shaping economic landscapes and informing policy decisions. This article delves into the multifaceted nature of electricity production, elaborating on its impact on national economies, the factors influencing production levels, and the evolving energy mix in the context of global trends toward sustainability and technological advancement. The electricity production sector plays a critical role in a nation's economic vitality. It is integral not just for residential and industrial consumption but also for the infrastructure that supports healthcare, education, and various other essential services. The ability of a country to produce and manage a stable and sufficient supply of electricity often correlates with its economic development and stability. Consequently, monitoring and analyzing electricity production data enables policymakers, investors, and economists to gauge economic health and project future growth trajectories. Technological advancements and innovations in the energy sector are continuously reshaping the electricity production landscape. Traditionally reliant on fossil fuels such as coal, oil, and natural gas, the global energy mix is undergoing a significant transformation. Increasing concerns over environmental sustainability and the pressing need to mitigate climate change have accelerated the transition toward renewable energy sources. Solar, wind, hydropower, and geothermal energy are becoming increasingly prevalent, diminishing the reliance on conventional fuels. This shift not only addresses environmental imperatives but also introduces economic opportunities and challenges. The cost of electricity production is a major determinant of a country's economic competitiveness. Lower production costs can lead to lower electricity prices, benefiting consumers and producers alike by reducing the overall cost of living and production. Competitive electricity pricing can attract energy-intensive industries, enhance export capabilities, and improve the standard of living. Conversely, high production costs can stifle economic growth, lead to higher prices for goods and services, and strain household budgets. Efficient management of electricity production, therefore, is crucial for fostering a conducive economic environment. Energy policy is another critical factor influencing electricity production. Governments play a significant role in determining the regulatory framework within which electricity producers operate. Policies promoting the development of renewable energy sources, providing subsidies for clean energy technology, and implementing carbon pricing mechanisms are shaping the energy landscape. These policies can drive investment in new technologies, encourage energy efficiency, and foster a more sustainable production framework. Additionally, energy policy affects international trade dynamics, as countries with surplus production capacity may export electricity, while those with deficits might rely on imports. The infrastructure supporting electricity production, including power plants, transmission lines, and distribution networks, is fundamental to ensuring a reliable and efficient supply of electricity. Investment in modern infrastructure, such as smart grids and energy storage systems, can enhance the reliability and resilience of electricity supply. Modern infrastructure allows for better integration of renewable energy sources, improves energy security, and reduces the risk of outages. Countries that invest strategically in infrastructure tend to enjoy more stable and efficient energy systems, which in turn supports economic growth and development. The environmental impact of electricity production is a growing concern in macroeconomic discussions. Traditional methods of electricity production, especially those reliant on fossil fuels, contribute significantly to greenhouse gas emissions and other pollutants. These emissions have far-reaching effects on public health, biodiversity, and climate patterns. The transition to greener technologies is not just an environmental necessity but also an economic one. Economies that lead in adopting and innovating renewable energy technologies can position themselves at the forefront of the global green economy, potentially reaping significant financial and social benefits. Electricity production data serves as an invaluable resource for a myriad of stakeholders. Investors use this data to make informed decisions about where to allocate resources, considering factors such as production costs, regulatory environment, and technological advancements. Policymakers rely on electricity production metrics to develop strategies that align with national goals on energy security, economic growth, and environmental sustainability. Businesses and industries analyze electricity production trends to optimize their operations, manage risks associated with energy supply and pricing, and identify potential areas for cost savings and investment. At Eulerpool, our commitment to providing detailed and accurate macroeconomic data on electricity production enables our users to stay ahead in a rapidly evolving energy landscape. By offering a wealth of information, including production statistics, cost analysis, policy impacts, and environmental considerations, we empower our users to make informed decisions that drive growth, innovation, and sustainability. The interplay between electricity production and economic development is a dynamic and complex field of study. As the world grapples with climate change, technological evolution, and shifting economic priorities, understanding the nuances of electricity production becomes increasingly crucial. Through comprehensive data analysis and expert insights, Eulerpool remains dedicated to supporting the needs of our users and contributing to the broader discourse on macroeconomic development and environmental stewardship. In conclusion, electricity production stands as a vital element in the architecture of contemporary economies. Its influence extends beyond mere energy supply to encompass economic stability, competitiveness, environmental health, and technological progress. By closely monitoring and analyzing electricity production, stakeholders can navigate the challenges and opportunities of the modern energy landscape, fostering a more prosperous and sustainable future.