Unsurprisingly the use cases where energy consumption is going down lead on electrification (because it's a cost advantage), so it may seem like electrification reduces energy consumption.
But if you really want to leave fossil fuels behind, the electric consumption will go up, up and beyond.
* It's also debatable how much electricity use will actually go up. Logic says this must happen, but logic is not science. We have millions of EVs now in the EU and electricity production is less than it was 20 years ago. Efficiency is a source of energy. If you look at the US for example, it uses almost twice as much electricity per capita than Germany, and I would say they both get the same high level if living. If you look at it that way, Americans can cut their use almost in half and live the same standard of living. This can power a lot of EVs and heat pumps without adding a single GW of new capacity.
1 TWh on the scale of a country is very little - a 1 GW nuclear plant operating continuously would generate over 8 TWh a year.
Nevertheless the back of the napkin math of land requirements for solar check out, so it was probably just a typo and OP meant to say PWh.