The network is the value. To me, this is what bitcoin is. https://medium.com/the-capital/the-network-is-the-value-an-e...
239 karma · joined April 1, 2018
Based in Brooklyn, New York, we're a full service agency. We build websites and other digital products from brainstorm, to wireframe, to software development.
Our mission is to work with partners who inspire us. We seek out non-profits and cultural institutions in sectors like education, green energy, and emerging technologies.
https://www.syllablehq.com
The network is the value. To me, this is what bitcoin is. https://medium.com/the-capital/the-network-is-the-value-an-e...
https://docs.avax.network/build/tutorials/smart-digital-asse...
(Error 81 due to a false positive filament jam -- occurs because the encoder wheel gets stuck and isn't turned by the moving filament)
The problem was indeed the encoder wheel getting stuck which triggered a false error. Your instructions do discuss the encoder wheel here. They say to move the encoder wheel to the "back side." This was confusing to me for a few reasons: - I didn't know which side was the back side - I didn't know why this would help - The wheel didn't seem to move when I nudged it anyway.
If this is indeed the right fix for some people, can I suggest that the instructions give a little more detail? Like: - Check if the wheel groove is not aligned with the top plastic hole. If necessary to fix the alignment, use a flat head screwdriver or a similar tool to gently push the wheel closer to the back side of the Smart Extruder.
_The real problem_ For me, the real problem was that the wheel didn't turn because there was a combination of too much wheel axle friction (between the wheel and its axle) and/or not enough wheel groove friction (between the wheel groove and the plastic filament)
_Verifying this problem_ While the printing is in progress, shine a light through the top or right side of the 3D printer case. You can watch the encoder wheel. It should turn in sync with the filament passing through the wheel groove. If there is an error, you can verify that the error happens because the encoder wheel stopped turning while the filament was flowing. This was happening for me in one particular sticky part of the encoder wheel's rotation.
_The solution_ 1: I applied lubricant to the encoder wheel axle. - I didn't even need to take the cartridge apart, I just used a needle to carefully apply some to the axle and manually turned the wheel while letting it drip down into the bearing.
2: I roughed the plastic of the encoder wheel groove. - I used an exacto knife to make tiny scrapes all around both sides of the inside groove of the wheel.
3: Test that these steps are working by holding the (cooled down) extruder in your hand, and manually inserting a small length of plastic into the top hole. Move the filament in and out and ensure that the wheel is turning smoothly in sync with the filament passing through the wheel groove inside the cartridge.
I hope this helps others! I know it's a very old product now, but maybe there's still some people out there still having this problem. Good luck :thumbs-up:
https://www.storage-lab.com/gravity-based-storage https://www.osti.gov/biblio/6517343
https://www.quora.com/What-is-wrong-with-Dr-Mills-Hydrino-Th...
The key thing here is that adding 10x height gives you 10x more PE per weight without extra digging costs (or tower costs assuming the cost per unit of height is constant)
Here's how to think of it: by digging one deep hole instead of many shallow holes (with the same amount of digging) you get (n^2 / 2) instead of (n/2) Potential energy. The average height of all the modules is half the height of the shaft. With one deep shaft, the modules pass through the same excavated volume so they can all go deeper on average.
Furthermore, my most optimistic estimates show that underground solid mass gravity storage could compete with pumped hydro on cost anyways. One reason is that solid mass is about 2.5x heavier than water. If excavation is one of your biggest costs, this density is important.
- Keeping water out of a hole is a solved problem.
- as discussed in other comments here, adding more height gives you more PE for the same amount of weight so it's a very valuable investment that pays profits over 20-100 years for your one time investment.
https://docs.google.com/presentation/d/17FI-jrI9RWS3q7Ng44Yh...
https://docs.google.com/presentation/d/17FI-jrI9RWS3q7Ng44Yh...
Lots of these ideas are popping up right now because it's a very compelling idea which is demonstrated to work. And because climate change is driving massive growth in renewable energy (woot) we will desperately need massive amounts of energy storage in the very new future. The energy storage market is expected to grow massively year over year.
UPHS has never been fully built to my knowledge, but it's been well studied and quite a few projects have tried to get funding for it.
U.S. DOE research from 1984: https://www.osti.gov/biblio/6517343.pdf
Projects trying to work on this: https://utilitymagazine.com.au/pumped-hydro-storage-the-futu...
Other proposed projects: - https://www.waterpowermagazine.com/features/featureinvestiga...
- http://www.eaglecrestenergy.com/project-description.html https://www.osti.gov/biblio/6517343.pdf