whiteknight wrote on May 20
th, 2024 at 5:44pm:
Nuclear option costs 'six times more' than renewables

Shepperton News
May 18, 2024
Mr Thornton said the analysis confirmed that building nuclear power stations instead of renewables would cause power prices to "explode".
The analysis was based on the CSIRO's GenCost 2023-24 consultation draft, the Mineral Council of Australia's Small Modular Reactors study and the industry benchmark Lazard Levelized Cost of Energy Report.
These reports did not include waste management and decommissioning of a nuclear plant in cost calculations, which meant the true cost could be even higher, Mr Thornton said.
Nonsense on biased stilts.
The cost of nuclear energy is twice the cost of renewables, so sayeth the Commonwealth Scientific and Industrial Research Organisation. But why is the CSIRO in the non-scientific game of providing assumption-driven estimates of the cost of generating electricity in different ways?
On the face of it, it looks like a bit of buck-passing by the Australian Energy Market Operator, which enlisted the assistance of the CSIRO some years ago. This is a task for engineers, economists and accountants – not scientists.
Modelling is not science, and estimating costs is also not science. By rights, the CSIRO should have declined the request. Its reputation has been markedly sullied.
Let’s consider the latest version of the CSIRO’s GenCost report. As with all modelling, it’s a case of garbage in, garbage out. The assumptions in it range from the plausible to the absolutely ridiculous.
The most glaring errors in the report are the assumptions about the upfront costs of nuclear plants, their rates of utilisation and their lifespans. The assumption on the capacity of wind power is also laughable and the assumed lifespans of both wind and solar are too long.
It looks suspiciously like a tail-wagging-the-dog exercise: how to ensure that nuclear power looks extraordinarily expensive compared with the preferred renewable energy option of the federal and state governments.
The fact that Australia is the only country of the largest 20 economies in the world not to have nuclear power didn’t seem to awaken the curiosity of the CSIRO team. Should we be assuming that all their governments are simply stupid by having such an expensive form of generation?
And how could it be the case that a very large number of countries are now aggressively investing in more zero-emissions nuclear plants? Indeed, our main ally, the US, has a target of tripling the amount of nuclear power by 2050.
The international figures are clear: countries with high wind and solar shares in their generation of electricity actually have relatively high electricity prices. They include Germany, Britain, Spain, Denmark and Italy, as well as the states of California and South Australia. By contrast, those countries with very low renewable shares have the cheapest electricity: Russia, United Arab Emirates, Korea and India.
It is worth pausing here to briefly outline the methodology of the GenCost report. It uses levelised cost of electricity, or LCOE, as the key metric – a measure that includes both the cost of installation as well as the expected lifetime of the asset. The cost of the fuel is added, which is zero for wind and solar but material for other means of generation.
The capacity factors of different means of generation are then taken into account. They should vary between 25 and 33 per cent for wind and solar but the GenCost report has onshore wind at 48 per cent and offshore wind at 52 per cent, which are both clearly errors. The capacity factor for nuclear should be in the 90s but in one scenario, the CSIRO puts the figure at 53 per cent, another clanger.
The methodology of the GenCost report - using levelised cost of electricity - is the wrong measure to use. Istock
The methodology of the GenCost report - using levelised cost of electricity - is the wrong measure to use. Istock
But the key is this: the LCOE is the wrong measure to use. What is required is a system-wide LCOE because of the inherent intermittency of wind and solar and the inviolable objective of 24/7 power. When the wind blows and the sun shines, the cost of generating electricity by these means is very low. But because the wind doesn’t blow all the time and the sun sets, expensive back-up (or firming) is required.
This back-up must be added to the cost of both wind and solar. And account must be taken of both extended wind droughts and cloudy periods – short-duration batteries will simply be inadequate. In practical terms, the option of long-duration, affordable batteries simply doesn’t exist and affordable pumped hydro is not possible in this country.