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Saturday, January 11, 2025

Europe’s wind energy hits 20%, however 3 challenges stall progress


Wind power powered 20% of all electrical energy consumed in Europe (19% within the EU) in 2024, and the EU has set a objective to develop this share to 34% by 2030 and greater than 50% by 2050.

To remain on monitor, the EU wants to put in 30 GW of latest wind farms yearly, but it surely solely managed 13 GW in 2024 – 11.4 GW onshore and 1.4 GW offshore. That is what’s holding the EU again from attaining its wind development objectives.

Three huge issues holding Europe’s wind energy again

Europe’s wind energy development is stalling for 3 key causes:

Allowing delays. Many governments haven’t applied the EU’s new allowing guidelines, making it more durable for tasks to maneuver ahead.

Grid connection bottlenecks. Over 500 GW(!) of potential wind capability is caught in grid connection queues.

Sluggish electrification. Europe’s economic system isn’t electrifying quick sufficient to drive demand for extra renewable power.

Brussels-based commerce affiliation WindEurope CEO Giles Dickson summed it up: “The EU should urgently sort out all three issues. Extra wind means cheaper energy, which implies elevated competitiveness.”

Allowing: Germany units the usual

Allowing stays a large roadblock, regardless of new EU guidelines aimed toward streamlining the method. In reality, the state of affairs worsened in 2024 in lots of international locations. The intense spot? Germany. By embracing the EU’s allowing guidelines — with measures like binding deadlines and treating wind power as a public curiosity precedence — Germany accepted a file 15 GW of latest onshore wind in 2024. That’s seven occasions greater than 5 years in the past.

If different governments comply with Germany’s lead, Europe may unlock the total potential of wind power and bolster power safety.

Grid connections: a rising disaster

Entry to the electrical energy grid is now the largest impediment to deploying wind power. And it’s not nearly lengthy queues — Europe’s grid infrastructure isn’t increasing quick sufficient to maintain up with demand. A obvious instance is Germany’s 900-megawatt (MW) Borkum Riffgrund 3 offshore wind farm. The generators are able to go, however the grid connection gained’t be in place till 2026.

This challenge isn’t remoted. Governments must speed up grid enlargement in the event that they’re severe about assembly renewable power targets.

Electrification: falling behind

Wind power’s development can be tied to how rapidly Europe electrifies its economic system. Proper now, electrical energy accounts for simply 23% of the EU’s complete power consumption. That should leap to 61% by 2050 to align with local weather objectives. Nonetheless, electrification efforts in key sectors like transportation, heating, and trade are shifting too slowly.

European Fee president Ursula von der Leyen has tasked Power Commissioner Dan Jørgensen with crafting an Electrification Motion Plan. That may’t come quickly sufficient.

Extra wind farms awarded, however challenges persist

On a optimistic notice, governments throughout Europe awarded a file 37 GW of latest wind capability (29 GW within the EU) in 2024. However with out quicker allowing, higher grid connections, and elevated electrification, these awards gained’t translate into the clear energy-producing wind farms Europe desperately wants.

Investments and company curiosity

Investments in wind power totaled €31 billion in 2024, financing 19 GW of latest capability. Whereas onshore wind investments remained robust at €24 billion, offshore wind funding noticed a dip. Closing funding choices for offshore tasks stay difficult attributable to sluggish allowing and grid delays.

Company customers proceed to point out robust curiosity in wind power. Half of all electrical energy contracted below Energy Buy Agreements (PPAs) in 2024 was wind. Devoted wind PPAs had been 4 GW out of a complete of 12 GW of renewable PPAs. 

Learn extra: Renewables may meet virtually half of worldwide electrical energy demand by 2030 – IEA


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