The image processing described is very cool, but I have questions about the application. Google started doing these solar potential estimates about 10 years ago, so let's imagine that they have been developing the capability since about 2010 or so. In that time the cost of PV has fallen by an order of magnitude. Hasn't that settled the question of where PV should be installed? I thought the answer is now "yes" everyw…
Satellite powered estimation of global solar potential
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Re: Satellite powered estimation of global solar potential
#12Haven't we more or less concluded that a million piecemeal rooftop installations of solar are about the worst way to do it? More complicated and expensive to permit and install, less efficient operation, difficult to repair, difficult to insure, difficult to upgrade, inefficient to integrate into grid, etc.
Re: Satellite powered estimation of global solar potential
#13The image processing described is very cool, but I have questions about the application. Google started doing these solar potential estimates about 10 years ago, so let's imagine that they have been developing the capability since about 2010 or so. In that time the cost of PV has fallen by an order of magnitude. Hasn't that settled the question of where PV should be installed? I thought the answer is now "yes" everyw…
Even assuming 100% solar rooftop coverage is the goal, given limited capacity of raw materials, labor, infrastructure would still necessitate prioritization of when to allocate those things to which places.
Re: Satellite powered estimation of global solar potential
#14Builders: optimize energy capture, put roof planes directed south (in northern hemisphere).
When every roof and every solar panel is angled the same way, a sudden cloud (or a sudden lack of clouds) can cause huge fluctuations in power output. Diversity is protective.
Re: Satellite powered estimation of global solar potential
#15Re: Satellite powered estimation of global solar potential
#16Earlier quoted context omitted.
Even assuming 100% solar rooftop coverage is the goal, given limited capacity of raw materials, labor, infrastructure would still necessitate prioritization of when to allocate those things to which places.
But the audience isn't an omnipotent controller of PV panel allocation, it's emergent market participants. Presumably, the market emerges more plentifully in those sunnier places. It's hard to imagine the place where this data is useful to local construction firms who were previously not well-informed (potentially by just walking around with their eyes open).
Then, once the top places are addressed, you can move onto the second tier of locations, then the third, etc...
This could be helpful if you're in gov't and have some control over a pilot neighborhood project. Or a developer that wants to include solar on some homes/businesses and wants to know where it makes the most sense.
You're right that this probably isn't too much better than qualitative reasoning about how sunny certain places are, but this is quantitative, so you can have a little more confidence in your qualitative assessment.
Re: Satellite powered estimation of global solar potential
#17Builders: optimize energy capture, put roof planes directed south (in northern hemisphere).
That's terrible advice unless it's tied to local energy storage. When every roof and every solar panel is angled the same way, a sudden cloud (or a sudden lack of clouds) can cause huge fluctuations in power output. Diversity is protective.
Re: Satellite powered estimation of global solar potential
#18Nice to see, I hope it helps people get more cheap energy. All I have are nits to pick: > 10.7k TWh globally This brings back memories of the time I almost shortened "thousand kilometres" to "kkm". Also, and this is not a criticism of Google, the IEA link on that text looks suspiciously like the IEA is still forecasting linear deployment of PV between 2025 and 2035, despite at least a decade of people pointing at it…
> 10.7k TWh globally Agree I hate this, but at the same time I don't know if I would have groked it correctly on first read if it had listed "10.7Pwh globally". We simply aren't exposed to numbers at that scale on a regular basis. Not sure what the correct solution is here.
I guess that if you want to stick to TWh you can use
- 10700
- 10,700
- 10.7×10³
- 1.07×10⁴
- 10.7e3
- 1.07e4
- 29E8₁₆
Re: Satellite powered estimation of global solar potential
#19This is a very impressive refinement of their existing tool, but is this type of advanced calculation of roof-pitch (etc.) still relevant? Haven't we more or less concluded that a million piecemeal rooftop installations of solar are about the worst way to do it? More complicated and expensive to permit and install, less efficient operation, difficult to repair, difficult to insure, difficult to upgrade, inefficient t…
Re: Satellite powered estimation of global solar potential
#20Builders: optimize energy capture, put roof planes directed south (in northern hemisphere).
That's terrible advice unless it's tied to local energy storage. When every roof and every solar panel is angled the same way, a sudden cloud (or a sudden lack of clouds) can cause huge fluctuations in power output. Diversity is protective.