Yes you are using the potential energy stored in the object. You have failed to answer very simple basic physics questions that highlight flaws at all stages in the process
1. How does the object acquire the potential energy in the first place? Even if people use the chairlift to go up the mountain, to then ski down the mountain, the potential energy is given to the person by virtue of the fact the chairlift elevated them. If I drove from here to where the glider starts from, (assuming it is higher) my car provides the energy. With energy, there is no free lunch. In the case of the railways that use water, the potential energy comes from the sun, that evaporates the water, and makes it rain down and form streams
2. If you recover energy back from the system, that comes at a energy cost. A, the object must physically slow down 2. the recovery system won't be 100% efficient. Before you answer this one, think what KERS actually does. It recovers energy when breaking. actually the pad is worn less, because THE KERS SYSTEM IS DOING THE SLOWING DOWN OF THE CAR. Whilst your system isnt KERS, the principle is the same. If you pull an elastic band, that takes more energy than not pulling it. If the road you drove a car on was elastic, and absorbed your energy in order to propel along lorries or something, that would take more energy to drive on than a regular road
3. You claim great strides in efficiency - but in reality, you are hoping the design works well, It is a bit arrogant to think that common sense means that you understand Aerodynamics more than say the designers of the bullet train, or planes or F1 teams. if it was easy, they wouldn't spend billions on it
4. You ignored comments about safety. What every you would like to think, if you build it and stick a human in it, you will need to make it fairly heavy just to provide the appropriate levels of safety. That weight will kill the project
5. You still are considering basics like aerodynamics in one plane. You neglect to consider crosswinds, headwinds, tailwinds and turbulence
6. You ignore basics like weather
7. you ignore practicalities - like the need for multiple stops along the way
The closest thing your project is to is a rollercoaster. I suggest you have a day out at a pleasure park and look at exactly how they work, and how much energy is expended in lifting up the punters to the top of the ride. Your biggest physics flaw is not understanding that any form of energy recovery slows the vehicle down
This is easily demonstrated with a child's toy - those cars that you wind the wheels up by pulling them backwards. Question - does it take more force to push the toy car backwards or forwards?
Question. if you have 2 of these toy cars, and you put them bumper to bumper (one facing forwards and one backwards, and you push them both back in the same direction) - one car will be filled with potential energy. If you release them (bumper to bumper i.e. one car is pushing and the other one is now absorbing) how far will the pair of cars get? and why? Your system of collecting energy is the same, but using rollers outside of the car. the energy principles however are the same. You are ignoring this very simple principle, and then diverting us to efficiency. The child's car is not efficient, but no amount of efficiency improvement will stop the car collecting energy, slowing the car doing the pushing
Way back about 8 pages ago I asked you
- where initial does the potential energy come from
- why doesn't the energy recovery system slow down the glider
If you cant make it work for a marble on a track, it wont work
Let me to answer you point by point.
1-
People and cargoes have to go up. In case of Nerissa Gliders Shuttle between Manchester and Liverpool, as an example, they have to go up 200.00metres in Manchester and 55.00 metres in Liverpool. Now we try to exploit geographical conditions between these to points as practical as possible to run the shuttle without, or as less as possible, of external power, fuel. We try to use recovered energy of gravity-generated motion and brake power of the gliders and what ever comes down at both points to run the shuttle.
Liverpool is 70.00 metres above sea level and Manchester is 125.00metres, which means Manchester is higher than Liverpool by 55.00metres. There is a distance of about 50,000.metres between both points. The station in Liverpool has to be high 55.00metres and in Manchester 200.00metres high. We use gravity to drive the shuttle from Manchester to Liverpool and use recovered energy to drive it back to Manchester. For this purpose the route from Liverpool to Manchester is going to be on a straight level to let passengers and cargoes to disembark to the ground in Manchester. But the route from Manchester to Liverpool is going to be on a slope starts 200.00metres high in Manchester and ends 55.00metres high in Liverpool.
In Manchester, the potential energy of all vehicles, take cargoes and passengers 200.00metres high to the shuttle, recovered when they come down. Gravity-generated energy of the shuttle recovered from Manchester to Liverpool as much as possible. Potential energy of the cargoes and passengers going down 55.00metres in Liverpool is recovered. Potential energies of vehicles bring cargoes and passengers 55.00metres high to the shuttle in Liverpool, is recovered. Brake energy of the shuttle recovered on both directions.
So what are the benefits of this Nerissa Gliders Shuttle between Manchester and Liverpool?
a- The recovered energy should be enough to drive the shuttle from Liverpool to Manchester and to lift it 200.00metres in Manchester. This saves the cost of fuel.
b- The shuttle glides on pillars It doesn't need rail line or roads. So it takes a fraction of the land, which usual roads and railways take.
c-Unlike railways and motorways, the shuttle doesn't create barriers.
d- The shuttle doesn't carry the engine, fuel tanks, wheels, gear boxes and thousands of other associated parts. This saves a lot on fuel and wear and tears.
e- The shuttle can be made the safest means of transportation. For example it can be made so that it will never derail.
f- The shuttle causes vehicle gas emission on a route of 255.00metres, 200.00metres in Manchester and 55.00metres in Liverpool. But it doesn't cause emission on a route of 100,000.00metres, 50,000 on each way. Trains and vehicle cause gas emission all the way between both points.
2-
The system should recover over 90% of its gravity generated motion energy. As long as the potential energy of the glider is higher than the potential energy of the counter weight, energy recovery system, the glider moves and accelerates.
KERS system may not be useful at all. It is very heavy and works only at high speeds. It may not be worth the cost. It may cause more fuel and wear and tear than what it gives back. I have already invented a new brake and brake power recovery system, which eliminates brake pad and shoes and works at every speed.
3-
Well, it is a simple common sense that there is nothing unique about aerodynamics designs of bullet trains or F1s. They are all designed to increase downward pressure to get good track. True they spent billions on aerodynamic tests. But that doesn't mean they discovered everything. Even they didn't know, well no one knew until mythbusters test, about the simple dimples, which don't cost the cost of a peanut. But they fitted KERS at a million cost without getting anything back except a few burst of speed.
4-
Nerissa Gliders can be made the safest means of transportation. For example it can be made so that it will never derail. Chinese German-made maglev derailed when collided with a service wagon.
5- Nerissa Gliders can have a best aerodynamic design because it doesn't need air. It can be made like a tube in the middle with long cones at the front and at the back without any extras. Aerodynamics of Nerissa Gliders don't add any extra weight. So it doesn't cost fuel or cause wears and tears. Aerodynamics of trains cause extra weight, which cause more fuel consumption and more wears and tears. The type of winds have not any bearing on Nerissa Gliders.
6- well, weather or the wind is the same.
7- It can be made just like trains for multiple stops. Nerissa Gliders is a wonder Machine. It can be made to cater any needs or conditions.