Sure, some days they'll be covered by snow. But in industrial systems that can easily be melted / brushed off. Obviously they don't generate as much in winter as in summer. But cool bright winter days are surprisingly plentiful.
Can you show me the arithmetic for that? I understand rooftop solar to cost $20,000 - $25,000. Is your non-solar electric bill over 7-9 years really more expensive than that? Seems impossible.
My annual hydro bill was $2400 in 2018 with baseboard heating, and $2050 for 16,500kWh in 2021 after we put in a heat pump. 3 bedroom detached.
A recent article suggested a typical 4 kW system around here would cost $10k for 3261 kWh a year, or about $405 in credit at a blended rate. Another suggests an 11 kW system at $27,500, which could maybe hit 9000 kWh - about $1100 in credit. We do have net metering with BC Hydro so it'll just wash through, but that's still a 25 year payback horizon.
It doesn't take more than a couple trees in the wrong place to make you a lousy candidate for solar.
What does seem to be true though is that it's getting better/closer. As the panels get both more efficient and cheaper, it becomes less of a waste of motion.
People often think that solar won't work well in Seattle because it's cloudy so often, but light still comes in through the overcast, and solar panels don't care which angle the photons hit them from. Meanwhile, lower ambient temperatures mean the panels work more efficiently.
$230/month is about 1700kWh/month at Seattle electricity price of .13/kWh.
That usage could easily be the amount of electricity used for an average efficiency 3000sqft house with 4 occupants and a couple EVs driving the median American commute. Add an electric hot tub, and $230/month isnt so crazy.
Yes, it's very high, but not crazy high considering the typical upper middle class American home and lifestyle.
In contrast, my home and lifestyle transplanted to Seattle would be 1/4 the usage and cost, but different preferences and all.
In the example above the PV array would provide about 50% of usage, so about $115/month in bill reduction. The 25k is 18,500 after the Federal tax credit, which puts the payback at 13 years.
Always shocked by the labor component of PV arrays. I did my own 6.6kW array (split into two physical arrays, thus increasing the parts costs a bit), and it came out to around $13k. I don't mean I don't want to pay people a living wage, just always hard to remember (when you're used to doing stuff yourself) what fraction of the total cost that will be when you do pay them.
Indeed, most of the world is rather sunny and "not" located in "northern latitudes"