Atmospheric buoyancy - the future direction of energy development

Atmospheric buoyancy is also a kind of natural force, and it is the development direction of our future energy. One-sidedness will make us have everything. It is our absolute choice to replace conventional energy resources.

This natural force is more advantageous than we now know about the use of solar energy, wind energy, ocean energy, and tidal energy, because the atmosphere (air) itself is characterized by an instant, fast, automatic filling and restoration function that never disappears. Under the effect of the “high-efficiency buoyancy engine” system conversion device, a stable, long-lasting and continuous huge energy will be output to the outside, without any pollution to the environment. Therefore, it is an inexhaustible new energy source.

How do we understand the rising motion process and role of atmospheric buoyancy? It's very simple, for example, to illustrate. We design a floating body with a volume of 1,000 cubic meters. Under a standard pressure, the energy consumed by evacuating the air in the floating body is M kilowatt hours (which is a certain amount). Then we use this floating body (the weight of the floating body, etc. temporarily) and the buoyancy of the vertical body can be increased by 1290 kg. As long as the atmospheric pressure and density of the ascending space are constant (the same), when it rises to 10 meters, it can generate energy of N kWh; when it rises to 100 meters, it can generate energy of 10N kWh; when it rises to 200 meters When it can produce 20N kWh of energy...

This phenomenon shows that the consumption energy of the floating body exhaust is M kilowatt-hour, but the energy generated by the floating body buoyancy load increases with the rise of the floating body, and the floating body no longer consumes energy during the rising process. This reveals that there will be a great amount of energy growth for the rise of the buoyancy load of the floating body.

In order for us to better understand the above issues, we may wish to make a bold assumption.

When a buoyant floating body load rises in the space of atmospheric pressure and density with the same infinite height, infinite energy will be generated.

Although this assumption is absolutely impossible, it has a relative meaning.

Because we can't find "infinite space with the same atmospheric pressure and density", we can find "a space with the same atmospheric pressure and density at a certain height." Therefore, relativity is established, and this height of space is also something that we can artificially achieve. The height of about two or three hundred meters.

If we fully understand and understand the above problems, we can develop and use atmospheric buoyancy as an energy source. "Efficient buoyancy engine" is an example of successful technological development under the guidance of these theories (please refer to the relevant data of atmospheric buoyancy). It satisfactorily solved the problems of the weight of the floating body, the energy consumption of the air in the floating body, and other related problems. This has enabled us to create an engine whose output energy is greater than the input energy so as to obtain continuous output of residual energy.

The key to the success of the development of an "efficient buoyancy engine" is the design of the casing body type, which should be considered as the (length, width, height) ABA type. It is related to the application of pressure (upper and lower) balance and effective measures in the casing. In order to achieve (gas pressure) no energy exhaust. Which also facilitates the implementation of large-scale online combination. The core of the entire system device is the manufacture of a floating body ... a design of a piston cylinder. These two points will make the buoyancy of the atmosphere as a source of highly developed energy and play a decisive role.

The theory and technology of the "efficient buoyancy engine" is scientific, solid and reliable, and it will have its unique historical position in the history of human development.