Overview
The Eolica Pantelimon Wind Farm is an operational wind energy facility located in Romania. It contributes to the national grid with an installed capacity of 66 MW, harnessing wind as its primary energy source. This facility represents a significant component of Romania's broader renewable energy infrastructure, operating within a sector that has seen substantial growth in recent decades.
Context within Romanian Wind Energy
The development of the Eolica Pantelimon Wind Farm occurs against the backdrop of Romania's expanding wind power sector. As of 2013, Romania had an installed wind power capacity of 2,599 MW, marking a considerable increase from the 7 MW installed capacity recorded in 2007. This rapid expansion highlights the strategic importance of wind energy in the country's energy mix.
Until December 2010, Romania added approximately 440 MW to its installed wind capacity primarily through two major projects: the Fântânele-Cogealac Wind Farm and the EDP Peștera Wind Farm. The Fântânele-Cogealac Wind Farm, completed in 2012, was noted as the largest wind farm in Europe at that time. The Eolica Pantelimon Wind Farm, with its 66 MW capacity, fits into this landscape of large-scale wind energy developments that have defined Romania's renewable energy growth.
The operational status of the Eolica Pantelimon Wind Farm indicates its active role in electricity generation. While specific details about the operator are, the facility's continued operation underscores its reliability and contribution to the regional energy supply. The 66 MW capacity places it among the notable wind farms in the region, contributing to the diversification of Romania's energy sources.
Romania's wind energy sector has evolved significantly, moving from modest beginnings to becoming a key player in European wind power. The Eolica Pantelimon Wind Farm is part of this evolution, representing the country's commitment to leveraging its natural wind resources for sustainable energy production. The facility's location in Romania allows it to tap into the country's favorable wind conditions, which have been instrumental in the success of various wind farms across the nation.
The growth in installed capacity from 7 MW in 2007 to 2,599 MW in 2013 demonstrates the rapid pace of development in the Romanian wind energy sector. This expansion was driven by several large-scale projects, including the Fântânele-Cogealac and EDP Peștera wind farms, which added around 440 MW to the national capacity by December 2010. The Eolica Pantelimon Wind Farm, with its 66 MW capacity, is a testament to this growth and the continued investment in wind energy infrastructure in Romania.
Technical Specifications
The primary energy source for the installation is wind, converting kinetic energy from air masses into electrical power for the national grid. The total installed capacity of the wind farm is 66 MW. This capacity figure represents the aggregate power output potential of the individual wind turbines comprising the site, allowing for a significant contribution to the regional renewable energy mix.
Technical details regarding the specific turbine manufacturers, rotor diameters, or hub heights are not explicitly detailed in the primary cited sources for this specific entity. However, the 66 MW capacity places Eolica Pantelimon as a mid-sized installation within the broader Romanian wind energy landscape. For context, the Romanian wind sector has seen substantial growth, with national installed capacity reaching 2,599 MW by 2013, a significant increase from just 7 MW in 2007. The Eolica Pantelimon facility operates within this expanding infrastructure network.
The operational status of the wind farm is currently listed as operational, indicating that the turbines are actively generating electricity and feeding power into the transmission or distribution network. The operator of the facility is not specified in the available cited sources, leaving the specific corporate entity responsible for day-to-day management and maintenance unidentified in this dataset. The lack of specific operator information does not diminish the technical significance of the 66 MW capacity, which remains a key metric for evaluating the farm's output relative to other wind projects in the country.
The development of wind farms like Eolica Pantelimon contributes to the diversification of Romania's energy portfolio. While major projects such as the Fântânele-Cogealac and EDP Peștera wind farms accounted for a large portion of the capacity additions prior to December 2010, facilities like Eolica Pantelimon represent the continued expansion and consolidation of wind power infrastructure in the region. The technical parameters of such installations are critical for grid stability and energy forecasting, ensuring that the 66 MW of potential output can be effectively integrated into the national supply chain.
Romania's Wind Energy Context
The Eolica Pantelimon Wind Farm operates within a period of significant expansion for Romania's renewable energy sector. National wind power capacity experienced substantial growth in the years leading up to 2013. Installed capacity increased from 7 MW in 2007 to 2,599 MW by 2013. This rapid development positioned Romania as a notable player in European wind energy during that timeframe.
Historical Capacity Growth
| Year | Installed Capacity (MW) |
|---|---|
| 2007 | 7 |
| 2013 | 2,599 |
Major projects contributed significantly to this national total. At the time of its completion, it was the largest wind farm in Europe. These large-scale installations drove the increase in national capacity alongside smaller facilities like Eolica Pantelimon.
The growth from 7 MW to over 2,500 MW in just six years reflects accelerated investment in wind infrastructure. The completion of the Fântânele-Cogealac Wind Farm in 2012 marked a key milestone in this expansion phase. The addition of 440 MW from the Fântânele-Cogealac and EDP Peștera projects before the end of 2010 demonstrated the scalability of wind energy development in the region. This context is relevant for understanding the operational environment of the 66 MW Eolica Pantelimon Wind Farm.
Regional Potential and Grid Integration
Romania possesses significant wind energy resources, with the Dobrogea region standing out as the primary hub for wind power generation. According to available data, the installed capacity of wind power in Romania reached 2,599 MW by 2013. This figure represents a significant increase from the 7 MW of installed capacity recorded in 2007.
The expansion of wind energy infrastructure in Romania was driven by the development of major wind farms.
The integration of these large-scale wind farms into the national grid required careful analysis of regional potential and grid assimilation capacities. The grid infrastructure in the Dobrogea region was designed to handle substantial influxes of wind energy. Analyses of the grid's capacity indicated that the region could assimilate between 3,000 MW and 9,000 MW of wind power. This range reflects the technical capabilities of the transmission network to integrate variable renewable energy sources without compromising grid stability.
The Eolica Pantelimon Wind Farm, with a capacity of 66 MW, contributes to this regional mix. Located in Romania, the facility is operational and adds to the overall wind energy output of the country. The operator of the Eolica Pantelimon Wind Farm is, but its contribution is part of the broader trend of wind energy development in the Dobrogea region. The grid's ability to integrate such facilities is crucial for maximizing the potential of wind energy in Romania.
The growth of wind energy in Romania highlights the importance of strategic planning and infrastructure development. The completion of major projects like Fântânele-Cogealac and the ongoing operation of facilities like Eolica Pantelimon demonstrate the country's commitment to harnessing its wind resources. The grid's assimilation capacity of up to 9,000 MW provides a framework for future expansions, ensuring that Romania can continue to leverage its wind potential for energy production.
What are the major wind projects in Romania?
The Eolica Pantelimon Wind Farm contributes 66 MW to Romania’s broader wind energy landscape. The growth trajectory was heavily influenced by major developments prior to December 2010, when Romania added approximately 440 MW from two specific projects: Fântânele-Cogealac and EDP Peștera.
Comparison with Major Projects
While Eolica Pantelimon operates with a 66 MW capacity, it is part of a portfolio that includes larger installations. The Fântânele-Cogealac project stands out historically for its scale and completion timeline. The EDP Peștera project also played a critical role in the early expansion phase, contributing to the 440 MW surge before 2010.
| Project Name | Capacity (MW) | Key Details |
|---|---|---|
| Fântânele-Cogealac | Not specified in snippet | Completed in 2012; largest in Europe at the time |
| EDP Peștera | Not specified in snippet | Contributed to ~440 MW added by Dec 2010 |
| Eolica Pantelimon | 66 | Operational; operator |
Investment Context
The provided grounding mentions investment plans by companies such as Enel Green Power and Iberdrola in the context of Romania's wind sector. However, specific details linking these investors directly to Eolica Pantelimon or providing exact investment figures for them are not explicitly detailed in the provided snippets beyond their general mention as investors in the sector. The overall national capacity reached 2,599 MW by 2013, reflecting the cumulative effect of these various projects and investments.
Future Developments in Romanian Wind Power
The provided grounding materials contain no information regarding future developments in Romanian wind power, specifically concerning the Dunarea East and West wind farms or offshore wind plans for 2027–2028. The only data available pertains to historical capacity figures from 2007 and 2013, and the completion of the Fântânele-Cogealac Wind Farm in 2012.
There is no mention in the source text of the Eolica Pantelimon Wind Farm's role in future developments, nor are there any details about the Dunarea East and West wind farms scheduled for 2026. Furthermore, no offshore wind plans for the 2027–2028 period are cited. Without additional grounding snippets containing these specific future projections, any assertion regarding these upcoming projects would constitute a hallucination.
Consequently, the section on future developments cannot be populated with the requested details based strictly on the provided ground truth. The available evidence is limited to historical context up to 2013. To accurately describe the Dunarea East and West wind farms or offshore initiatives, new source material explicitly detailing these projects must be provided. Until then, the narrative remains anchored in the historical capacity growth and the significance of the Fântânele-Cogealac project.
Why it matters
Eolica Pantelimon represents a distinct component of Romania’s broader wind energy infrastructure, contributing to the national grid’s diversification away from traditional thermal and hydroelectric sources. With an installed capacity of 66 MW, the facility operates as a functional node within the country’s renewable energy portfolio. The significance of this wind farm must be understood within the context of Romania’s rapid expansion of wind power generation, a sector that has seen substantial growth over the last two decades.
The Romanian energy landscape has undergone significant transformation, particularly regarding wind power. This exponential growth underscores the strategic importance of individual projects like Eolica Pantelimon in aggregating national output. While the Fântânele-Cogealac Wind Farm, completed in 2012, held the title of the largest in Europe at the time, and the EDP Peștera Wind Farm contributed significantly to the capacity additions prior to December 2010, facilities such as Eolica Pantelimon provide essential distributed generation capabilities. These smaller to mid-sized farms help stabilize regional grids and reduce transmission losses compared to relying solely on mega-projects.
From an operational standpoint, Eolica Pantelimon’s status as an active wind farm highlights the maturity of Romania’s wind sector. The transition from a nascent industry with only 7 MW of capacity in 2007 to a multi-gigawatt sector demonstrates the effectiveness of policy frameworks and investment strategies aimed at renewable energy integration. The 66 MW capacity of Eolica Pantelimon contributes directly to this aggregate, providing a consistent source of clean energy that helps mitigate carbon emissions and enhances energy security. The operational continuity of such facilities is critical for meeting the country’s renewable energy targets and ensuring a steady supply of electricity from variable renewable sources.
Furthermore, the presence of multiple operational wind farms, including Eolica Pantelimon, facilitates a more resilient energy mix. By diversifying the geographic and technical base of wind generation, Romania reduces its vulnerability to localized weather patterns and technical failures. The facility’s operation supports the broader national goal of increasing the share of renewables in the energy mix, contributing to the decarbonization of the power sector. As Romania continues to refine its energy infrastructure, the cumulative effect of operational assets like Eolica Pantelimon remains a vital factor in achieving long-term sustainability and energy independence.