Earlier quoted context omitted.
Solar thermal is more efficient than photovoltaics in terms of energy captured per unit of surface/land area. However, photovoltaics are significantly cheaper per unit of energy generated. So, solar thermal makes more sense in space-constrained environments rather than vast deserts. Solar thermal also makes more sense where you're directly utilising the heat generated, eg: for industrial processes. If you're just usi…
AIUI, photovoltaics also lose a lot of efficiency when they heat up, so the ideal place to use them is somewhere cool but with a lot of sun. In contrast, solar thermal runs at extremely high temperatures to begin with, so even in a hot climate, there's a huge temperature difference from which to extract power. It seems to me that mirrors would be cheaper than photovoltaics, and the power-plant itself is a fixed cost,…
There's also a nice scalability aspect to PV: if you want to expand your plant's output, it's really just a matter of adding more panels as you need them. Where as once you hit the limits of your collector/turbine/etc, you pretty much need to build a whole new plant to expand it further.
One of the world's largest solar farms is in Dubai, obviously an extremely hot region. It contains a mix of PV and thermal technologies, though it sounds like they are leaning towards more PV for future phases:
https://en.wikipedia.org/wiki/Mohammed_bin_Rashid_Al_Maktoum...