Factcheck: 10 flaws in the Conservative report on âcheap powerâ
- The plan would increase UK emissions
- The plan would slow electrification
- Gas prices are unlikely to remain low and stable
- The plan assumes gas plants are cheap to build
- Nuclear faces high costs and delivery challenges
- The reportâs high network cost estimates do not âadd upâ
- The system integration costs are âfar out of line with mainstream thinkingâ
- The proposed changes could undermine investor confidence
- Carbon market âsavingsâ are âjust rearranging things on a spreadsheetâ
- The report âgrossly simplifiesâ long-duration energy storage
Factcheck: 10 flaws in the Conservative report on âcheap powerâ
In a new report, the opposition Conservatives argue that UK electricity prices are too high and that it would be better for the climate to have cheap electricity, even if that means using more gas.
The idea is that cheap power would encourage people to use more electric vehicles (EVs) and heat pumps, leading to higher electrification of the economy and lower emissions.
This is at the heart of a Conservative push to abandon the UKâs net-zero by 2050 target and various climate policies, which the party says are âbankruptingâ the country.
Now, the party is using a report by centre-right thinktank Onward to advance this argument, claiming that the UK could save âover ÂŁ320bnâ by scrapping net-zero policies.
In the report foreword, shadow energy secretary Claire Coutinho says this approach would make electrification âmore attractiveâ, ensuring both âprosperity and a better environmentâ.
However, the report fails on these terms, as its alternative scenario ends up with less electrification of heat and transport and an extra 524m tonnes of carbon dioxide (MtCO2) emissions by 2050.
Moreover, the report relies on a series of questionable assumptions to claim that gas and nuclear will be cheaper than renewables â including the idea that gas prices will be low and stable.
Experts tell Carbon Brief that with credible assumptions, the reportâs conclusions would be flipped on their head, such that renewables â not gas and nuclear â would bring the âlowest total costsâ.
Iain Staffell, an associate professor of sustainable energy at Imperial College London, tells Carbon Brief that while the report âtells a good storyâ, the modelling underpinning it âhas more holes than a Swiss cheeseâ.
In this factcheck, Carbon Brief speaks to experts and identifies flaws in the report, explaining why they undermine the anti-net-zero rhetoric of the Conservatives and their supporters.
- The plan would increase UK emissions
- The plan would slow electrification
- Gas prices are unlikely to remain low and stable
- The plan assumes gas plants are cheap to build
- Nuclear faces high costs and delivery challenges
- The reportâs high network cost estimates do not âadd upâ
- The system integration costs are âfar out of line with mainstream thinkingâ
- The proposed changes could undermine investor confidence
- Carbon market âsavingsâ are âjust rearranging things on a spreadsheetâ
- The report âgrossly simplifiesâ long-duration energy storage
The plan would increase UK emissions
The report by Onward is based on modelling by advisory firm Transira Energy, which compares two pathways out to 2050.
One is a âbusiness-as-usualâ scenario based on current ânet-zeroâ policies. (Nevertheless, this only achieves a clean power system by 2045 â far short of the 2030 Labour target.)
The other is an âalternative policy pathwayâ (APP), developed by Onward, which assumes the UKâs 2050 economy-wide net-zero target is abandoned after the next election in 2029.
The latter says it places âgreater emphasis on reducing the cost of electricityâ, which includes fewer renewables, no electrification goals and more gas and nuclear power capacity.
This mirrors the policy platform set out by the Conservatives, who argue that ânet-zeroâ drives up energy costs and that climate change can be tackled without such targets.
In fact, the Conservatives say their âcommon senseâ approach would make it easier to cut emissions, as shadow energy secretary Claire Coutinho states in the report foreword:
âIf we want those emissions to fall, then we need people to want to use electric cars and electric heating â then our priority should be to make electricity cheap.â
Yet, this argument is firmly contradicted by the report itself.
The APP results in an extra 524MtCO2 being emitted between 2030 and 2050 â equivalent to the annual emissions of South Africa.
The Transira Energy analysts say this is âexplained by an increased share of unabated gas-fired capacityâ.
Finally, it is worth noting that the UKâs net-zero target is based on the fact that the planet will continue warming until global emissions reach net-zero. Without such targets, climate change â and its impacts â will get worse.
The plan would slow electrification
Contrary to Conservative claims, uptake of heat pumps and electric vehicles is actually expected to be slower in the alternative scenario, âdespite lower electricity costsâ.
This is due to the removal of supportive government subsidies and mandates, such as the boiler upgrade scheme and the 2030 ban on the sale of new petrol and diesel cars.
Overall electricity consumption is 7% lower in the APP, compared to the current pathway.
Daniela Quiroga, a senior associate at Copenhagen Infrastructure Partners, questions this reliance on lower electricity demand in the APP, telling Carbon Brief:
âWhile this is an interesting scenario to explore, it overlooks potentially important feedback effects â mainly, as electricity prices and the capital costs of electrification technologies fall, uptake would be expected to increase.â
A related point was made in a LinkedIn post by Tara Singh, chief executive of trade body RenewableUK, who noted:
âAPP makes the electricity system cheaper partly by electrifying Britain less â while leaving the fuel costs that replace electricity outside the model.â
For example, Singh estimates that the extra petrol and diesel fuel expenditure to replace the missing electric vehicles (EVs) on the road could be around ÂŁ65-95bn over two decades. These costs are not included in the APP scenario.
The only sector that sees increased power demand is data centres, due to policy support to âprioritiseâ new grid connections for these facilities.
Quiroga notes that the costs of accelerating data centre connections âare not mentioned at allâ in the report.
In short, the proposed pathway involves removing grants that help households buy EVs and heat pumps, while providing more policy support for the AI industry.
Finally, Onward stresses the UKâs âhigh spark gapâ â referring to the electricity-to-gas price ratio. This makes switching from gas boilers to heat pumps less appealing for consumers, given the relatively high price of electricity, compared to gas.
However, Matt Elliott, lead economic analyst at the Energy and Climate Intelligence Unit (ECIU), says the analysis does not indicate this gap would substantially change in the proposed APP. He tells Carbon Brief:
âThe report claims that electrification would happen even without specific policies, simply due to lower retail electricity prices driving consumer choice. However, its own modelling indicates that the gas-electricity price ratio would actually rise in the early years and end up only marginally lower than today by 2050.â
In other words, in the APP the price of electricity compared to gas would not fall sufficiently to drive consumers towards heat pumps without subsidies or other incentives.
Rather than scrapping net-zero policies, analysts have suggested shifting tax and policy levies from electricity to gas, or breaking the link between wholesale gas prices and electricity, as more effective ways to reduce the spark gap.
Gas prices are unlikely to remain low and stable
The âalternativeâ scenario pushed by the Conservatives continues to rely heavily on gas for both electricity generation and heating.
This includes constructing new gas power plants in a bid to lower electricity prices, despite the fact that gas is the main driver of high electricity prices in the UK.
In recent years, the largest spikes in energy prices have been triggered by wars in Ukraine and the Middle East, which have disrupted fossil-fuel supplies and sent gas prices spiralling.
(Indeed, the report was published on the same day the Office for National Statistics announced that inflation had jumped to its highest rate in four months, due to energy costs surging because of the impact of the Iran war on global oil and gas supply chains.)
Despite this, the scenario set out by Onward assumes that gas prices drop to pre-conflict levels and remain that way for the next two decades.
Ashutosh Padelkar, research lead at Aurora Energy Research, tells Carbon Brief that the gas price assumptions are âhard to fathomâ and significantly at odds with future expectations, from both Aurora and other market analysts.
Analysis by E3G and ECIU in 2025 concluded that four years of energy spikes caused by the post-pandemic demand surge and Russia-Ukraine war had cost the UK ÂŁ183bn.
The Onward report acknowledges that the new scenario is âmore exposed to a future gas price shockâ than the current net-zero scenario. It suggests that a new spike could increase fuel costs in the gas-reliant scenario by another ÂŁ6bn in 2040.
However, Onward argues that the impact of gas price spikes on consumers would be âsignificantly smallerâ than the shock following Russiaâs invasion of Ukraine. This is owing to existing renewable energy contracts and future nuclear power construction in the APP.
In the press release accompanying the new report, Conservative leader Kemi Badenoch is clear that âour plan means using our own oil and gas in the North Seaâ.
This mirrors rhetoric that has been widespread on the right of UK politics, stressing the importance of expanding North Sea drilling as a way to cut energy bills.
However, given the relatively small volumes remaining in the North Sea, the UK will likely remain reliant on gas imported from the US and the Middle East.
Gas prices will still be set globally and remain subject to geopolitical turmoil, no matter where the UK sources its supplies.
Given this, Johnny Gowdy, director of the thinktank Regen, tells Carbon Brief that the scenario presented by the Conservatives is âa call to rely on imported gas, with global gas pricesâ.
The plan assumes gas plants are cheap to build
The Conservative plan involves building new gas power plants, in order to meet part of the nationâs growing electricity demand without relying on renewables.
Onward states that the UK âhas lost firm generation capacityâ â such as gas and nuclear plants â and replaced it with âintermittentâ, or variable, power in the form of wind and solar.
To remedy this, its alternative pathway involves building an extra 21 gigawatts (GW) of gas power plants by 2050 â equivalent to around 20 new facilities. This is roughly a 70% increase from the UKâs current capacity.
However, the small print in the accompanying Transira Energy report explains that it assumes capital expenditure â the cost of building the power plants â is ÂŁ650 per kilowatt (kW).
This is considerably lower than other recent analyses, which tend to cite capital expenditure figures that are more than double this estimate.
For example, a 2025 GridLab report notes that new US gas power plants set for completion in 2026 and 2027 had a cost range of $1,116/kW (ÂŁ819/kW) to $1,427/kW (ÂŁ1046kW).
However, it adds that more recent projects are âroutinely reportingâ costs of $2,000/kW (ÂŁ1467/kW) or more. Other sources have reported up to $2,800/kW (ÂŁ2054/kW).
Gas power plant costs have increased significantly in recent years â a trend that has been attributed to a tight supply of gas turbines worldwide.
This, in turn, is the result of increased demand for gas turbines to power data centres and countries transitioning from coal to gas.
The International Energy Agency (IEA) says data-centre demand in the US is âlimiting the availability of turbines for near-term deployment elsewhere in the worldâ.
Nuclear faces high costs and delivery challenges
The Onward report champions a substantial increase in nuclear power capacity.
However, it fails to explain how this could be facilitated or why its cost assumptions are lower than the most recent nuclear projects in the UK.
Within the reportâs net-zero scenario, there is 13.3GW of nuclear power by 2050, roughly double the current capacity. It notes that this will be financed under the regulated asset base (RAB) model â a government-backed funding approach announced in 2022.
Under the APP scenario, nuclear power capacity more than triples from current levels to 20GW by the middle of the century, all backed by the RAB model.
The report adds:
âReducing nuclear construction costs and timelines becomes the core energy priority of the UK government, with measures to improve the availability of sites and grid connections.â
The report acknowledges that the APP scenario âfaces significant cost headwinds from expensive nuclear capacityâ.
However, it suggests that large-scale nuclear power stations built in the 2040s could cost ÂŁ122-ÂŁ138 per megawatt hour (MWh) in 2025 terms.
Hinkley Point C â which in 2018 became the first new nuclear power plant to begin construction in the UK since the 1980s â has a âstrike priceâ of ÂŁ138/MWh for 2030. (This is the fixed price for the electricity it will generate, guaranteed by the power plantâs contracts for difference agreement.)
This price is at the top end of Onwardâs forecast range for âlevelised cost of electricityâ (LCOE) â the average total cost of building and operating an asset over its lifetime.
As such, the report suggests, on average, costs will fall over the course of the decade from 2030, but provides little detail as to how this would happen.
As Richard Howard, global research director at Aurora, wrote on LinkedIn, the cost assumptions for nuclear are âoptimisticâ. He adds:
âIt assumes that the LCOE of nuclear will fall 10-20% below the *original* cost of Hinkley Point C, when we know that nuclear costs escalated massively since the HPC deal was struck. The UK does not have a great track record of managing down the costs of nuclear.â
In fact, Sizewell C â a replica of Hinkley Point C in the early stages of construction in Suffolk, which received a final investment decision in 2025 â has a considerably higher strike price of ÂŁ150/MWh in 2039.
Hinkley Point C is the first new nuclear power plant to be built in 30 years in the UK. It has been beset by delays and nearly doubled in cost since it was originally approved.
A footnote in the Transira Energy report adds that its calculations for the cost of nuclear include expected capital expenditure for new large-scale plants ranging from ÂŁ10,000/kW to ÂŁ12,500/kW.
While the 3.26GW Hinkley Point C was originally supposed to have a price tag of ÂŁ18bn, which would equate to ÂŁ5,521/kWh, costs have repeatedly increased. More recent estimates from developer EDF suggest a figure of ÂŁ10,736/kW, closer to Onwardâs figure.
However, if this is adjusted for inflation for 2026, this jumps closer to ÂŁ14,724/kW.
As such, the upfront cost of new nuclear is already around ÂŁ2,500 more per kilowatt than the assumptions in the report for 10 years from now.
The report provides limited information about how these costs would fall so substantially.
It suggests that the recommendations from the 2025 Fingleton review should be implemented in full to cut the cost of the technology.
The Fingleton report â a full review of the UKâs nuclear sector by the Nuclear Regulatory Taskforce, led by John Fingleton â found an âoverly complexâ and âbureaucraticâ system was holding back the nuclear industry. It advocated for âsmarter regulationâ, as an overhaul of the planning regime.
In March 2026, the Labour government committed to full implementation of the Fingleton review by the end of 2027. Despite this, the Onward report includes the implementation of the Fingleton review in the APP scenario, but not the net-zero scenario.
The reportâs high network cost estimates do not âadd upâ
The biggest drop in costs outlined in the Onward APP scenario comes from a reduction in network costs, but experts have said that this âjust doesnât add upâ.
Network costs are broadly made up of the price of building, maintaining and operating the transmission and distribution systems.
A reduction in network spending accounts for ÂŁ137bn of the ÂŁ320bn in âsavingsâ, compared to the net-zero scenario that sees significant network expansion to help facilitate more renewables on the grid.
This drop is âthanks to a higher utilisation of firm power system with supply located closer to demandâ, the report says.
In particular, the report points to discrepancy between the âbest wind resourcesâ being located in the north of Scotland, while the major centres of demand are in the southeast of England. As such, currently grid expansion is needed to avoid constraints or the requirement to curtail generation in windy periods with low demand.
By avoiding the connection of geographically dispersed generation assets, such as 78GW of generation, storage and interconnectors, the APP scenario can reduce total network costs by 43%, according to the report.
Staffell tells Carbon Brief that the ÂŁ137bn saving has âa convincing story to it â if we build more fossil and nuclear capacity we can utilise the system betterâ.
However, he adds that Onward gives âso little detail about how this works that itâs hard to commentâ.
The Transira Energy report notes that the APP still includes ÂŁ19bn in investment for the electricity network, covering the cost to maintain the existing system and connect new gas and nuclear generation.
However, this 86% drop in new transmission investment compared to the BAU scenario leans on âflawed logicâ, according to Tara Singh from RenewableUK.
On LinkedIn, she explained that it ârests on an extraordinarily aggressive assumption about how little grid Britain will needâ, adding:
âOnward assumes ÂŁ137bn of new transmission assets under BAU between 2030 and 2050, but only ÂŁ19bn under their plan, even though by 2050 it still has 32m EVs/hybrids, more than 6m additional heat pumps, 45GW gas, 20GW nuclear and â particularly strikingly â 62 terawatt hour (TWh) a year of datacentre demand. Is this grid figure credibleâŚ?â
Beyond this, the report also attributes a significant portion of the proposed savings to cuts in âbalancing costsâ. These are the costs to the system operator of balancing electricity supply and demand.
It claims that having more firm generation located closer to demand and existing transmission infrastructure will âsave billions of expenditure on network expansion and balancing costsâ.
Onward suggests that under the APP scenario, the cost of keeping generation and demand balanced would fall by ÂŁ67bn.
However, claiming savings by both cutting network expansion and balancing costs amounts to âdouble countingâ and âjust doesnât add upâ, according to Auroraâs Padelkar.
He tells Carbon Brief that including both high capital expenditure for the electricity network and high balancing costs in the BAU scenario is âdifficult to reconcileâ.
Expanding the electricity network would reduce constraints, reducing the need for constraint management. Such a move would lower balancing costs.
As noted by the National Energy System Operator (Neso), retaining the current transmission network into 2030, with no expansion, would mean constraint costs could reach around ÂŁ12.7bn a year. But building new network capacity could cut costs by as much as 75%.
Padelkar says:
âTheyâre saying âwe continue to invest in the networkââŚBut somehow the network [balancing] costs just donât come downâŚThis is basically saying âweâre paying both to fix the problem and to have the problemâ. You can have one of the two, but you canât have both.â
Despite the claim that the APP approach will lead to the cheapest electricity, Padelkar says that the report does not present a âconsistent pictureâ as to how the system would operate, pointing to the approach to network and balancing costs. He adds:
âOverall, we would expect that once these figures are correctly accounted for, that renewable energy would remain the cheapest form of a form of decarbonisation. I would even further flip the argument around, to say that decarbonisation is not a prerogative [on] its own, but because it also achieves lowest total costs.â
The system integration costs are âfar out of line with mainstream thinkingâ
A central argument in the Onward report is that the costs of renewables are higher than often claimed by proponents, due to the wider system costs of having a large amount of âintermittentâ generation.
As such, it proposes pulling back support for wind and solar, and instead putting focus on âfirm generationâ sources, particularly gas and nuclear power.
This relies heavily on the claim that âsystem integration costsâ for wind and solar are much higher than is being âproperly revealedâ in either contracts for difference (CfD) auctions or levelised costs estimates.
(CfDâs are power contracts between generators and the government, which work as the UKâs main method for supporting the development of renewables by providing long-term price certainty to developers.)
Therefore, when assessing the overall cost of renewable energy, the cumulative network investment, balancing and ancillary services system costs necessary to manage such variable generation must be considered, it suggests.
The existence of integration costs is not widely understood, but the scale of their impact is disputed.
The report continues that if these costs are taken into account, the âmarginal system integration costsâ of renewables are âmuch higher than their individual levelised costsâ.
Onward suggests that the cost to integrate additional offshore wind, onshore wind and solar onto the electricity system is ÂŁ125/MWh. This is far higher than the cost of generating electricity from these sources in the first place.
The figure has been challenged by a number of commentators, with Staffell telling Carbon Brief that this is âvery far out of line with mainstream thinkingâ.
Analysis published in Nature suggests that if 80% of the electricity mix comes from renewables, the system integration cost is around âŹ30/MWh (ÂŁ26/MWh).
Elsewhere, engineering firm Afry put the total cost of electricity at around ÂŁ55-75/MWh in a high-renewable system. This is âless than [Onwardâs] integration cost aloneâ, Staffell adds.
The high price tag of the ÂŁ128/MWh marginal integration âis derived by apportioning additional balancing and transmission costs solely to 60GW of new wind and solar deployed from 2030 onwardsâ, explains Callum MacIver, research fellow at the University of Strathclyde and the UK Energy Research Centre.
He adds:
â[This figure] only looks at the cost side and there is not enough published detail on where the renewables are deployed and the transmission upgrades it triggers to critique the scale of the numbers presented.
âIt also excludes potential wider system benefits of further renewables deployment, including reduced wholesale prices, avoided fuel and carbon costs and reduced exposure to future external gas price shocks, which are properly examined by looking at overall system costs and testing various sensitivities including different gas price futures.â
Writing on LinkedIn, Adam Bell â a partner at consultancy Stonehaven â suggests that the ÂŁ125/MWh system costs are âreally egregiousâ. He explains:
âThe âsystem costsâ of renewablesâŚrests on assuming that all additional network upgrades and balancing costs for a net-zero system after 2029 are attributable to additional renewables deployed in that net-zero system.
âMany of those costs relate to existing renewables as well as nuclear, so this likely overstates system costs by an order of magnitude [roughly 10-fold].â
Furthermore, the system costs for the APP scenario are not fully accounted for in the report. Regardless of the technology mix, old network and generation assets will need replacing, adding additional costs to the system.
The proposed changes could undermine investor confidence
The APP scenario involves stripping back all support for renewables going forward.
It calls for the CfD scheme to end in 2030. Pre-existing CfD contracts would continue under APP, but after this decade, all further support would âexclusivelyâ be for nuclear power.
Additionally, the renewable obligation (RO) payments for existing wind and solar would end from 2033. These are legacy contracts signed ahead of the scheme closing to new applicants in 2017. Payments are expected to continue until 2037.
(Onward makes an exception for the large-scale biomass power plant owned by Drax, which already has a contract with the UK government to switch from an RO to a low-carbon âdispatchable CfDâ. This switch is included under both the net-zero and APP scenarios, in recognition of the âimportance of its contribution to generation and to system stabilityâ.)
Both the CfD and RO schemes have contributed significantly to the expansion of the renewable energy sector in the UK. For example, despite coming to an end in 2017, nearly 30% of current electricity supplies are still covered by RO contracts.
It is unclear from the report what the 10GW of capacity currently expected to receive the RO would do beyond 2033.
Writing on Bluesky, Tom Haddon, senior economist at Arup, says that if, as the APP scenario proposes, the UK âbin[s the] ROâ, this could force 10GW of renewable capacity still on the system to simply shut down after 2033.
Such a dramatic change to a longstanding support system could have an impact on investor confidence.
Padelkar tells Carbon Brief that energy investors are often involved in numerous technologies. He adds:
âYou wouldnât be able to say âyeah, not going to continue honouring this contract [for renewables], but I expect you to sign this new one for me [to build new nuclear]â. That just wouldnât work.â
As such, there is no guarantee that investors would agree to enter into government-backed RAB contracts to develop nuclear power plants, having just seen government-backed RO contracts being reneged on four years early.
Carbon market âsavingsâ are âjust rearranging things on a spreadsheetâ
One of the large chunks of âsavingsâ identified to bring down electricity prices in the Onward report is ÂŁ94bn from âlower wholesale prices, thanks to the removal of carbon taxesâ.
This refers to removing power plants from the UK emissions trading scheme (UK ETS) from 2031.
Onward argues that this reduces the cost of gas power plants, which frequently set wholesale power prices under the marginal pricing system.
Staffell tells Carbon Brief that this is a âconcernâ when considering the reportâs findings:
âThat is ÂŁ94bn no longer going into the government coffers, so itâs not saving the country any money; itâs just rearranging things on a spreadsheet. This lowers electricity bills, but does that get compensated for by higher taxes elsewhere, or do we have to take on a larger national deficit, or does it go hand-in-hand with cutting public services?â
Tom Edwards, a consultant at Cornwall Insight, wrote on Bluesky that it would be âmadnessâ to simply remove the UK ETS and âexpect things to remain stableâ.
The UK currently sources around a tenth of its electricity via interconnectors that link its grid up with Ireland and parts of mainland Europe. It also exports electricity to other European countries when it has surplus supply.
These relationships would be complicated if the UK abandoned its carbon price on electricity altogether.
The UK and EU have been negotiating over linking their carbon pricing systems, which would involve the UK navigating the EUâs carbon border adjustment mechanism (CBAM).
Alongside ending support for renewables, the new Onward scenario also removes subsidies for new interconnectors, although it says âexisting interconnectors will continueâ.
The Transira Energy analysis says there would be ânew cross-border trading arrangementsâ from 2031. Such âarrangementsâ would, presumably, need to be negotiated from scratch with the EU.
Specifically, the report proposes a âcarbon reference priceâ for electricity sold to the EU to âprevent carbon leakage and the distortion of cross-border electricity flowsâ.
Adam Berman, policy director at Energy UK, pointed out that the post-Brexit trade and cooperation agreement between the UK and the EU includes a legal commitment by the UK to maintain a carbon price on electricity. He wrote that the Onward proposal âwould run contrary to that agreementâ.
The report âgrossly simplifiesâ long-duration energy storage
The Onward report states that it would cancel support for long-duration energy storage (LDES), such as large batteries and pumped hydropower.
This follows the government recently launching a âcap-and-floor schemeâ to support the technology. In June 2026, the nationâs energy regulator Ofgem identified 16 LDES that it is âminded toâ support under the new scheme.
LDES can store power across days, weeks or even seasons, helping to boost electricity system security. Analysis by analytics company LCP Delta suggests that rolling out LDES technologies could cut energy system costs in the UK by more than ÂŁ24bn between 2030 and 2050.
Onward lists support for storage systems â including LDES, as well as smaller batteries, which are only briefly mentioned in the report â as one of the âcosts of an intermittent-first, low-carbon electricity systemâ.
As such, alongside cuts to support for renewable energy technology, the APP scenario includes ending the cap-and-floor scheme for LDES. (See: The proposed changes could undermine investor confidence)
The report suggests that even if all 16 of the projects shortlisted by Ofgem were built, the total would only provide around five and a half hours of generation.
It adds: âThis is not enough to make it through a winter spell of low wind and sunâ.
This assertion is based on the total storage capacity of all the projects being 136GWh.
However, the report âgrossly simplifies the operation of LDESâ, explains Padelkar. He adds:
âThis assumes a rate of discharge that the fleet doesnât have. Further, this LDES capacity would play a key role in reducing the balancing and ancillary costs, even in the early 2030s, by helping absorb cheap wind generation in Scotland in constrained periods and then discharging it when the transmission from Scotland to the south of Great Britain is not constrained.â
The role of LDES is more complex than simply all projects providing the entire electricity demand for the nation in one go. The projects are designed to act together with other assets to absorb excess supply, smooth out peaks in demand and step in to provide cheaper power when prices spike.
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