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Industrial applications

The bladeless disks stack Tesla turbine, described and optimized in previous chapters, driven by mixture of steam and environmental air, could be used in wide range of industrial applications, developed in respect of universal harmony and basic principals, such as self-sustain running mode, resonant energy conversion, regulated feedback. 

These aims are achieved simple by taking care about the sizes and frequencies of oscillations, thus radial speed of contributing parts, as well as by supplementing additional energy from environmental surrounding into our energy converting system, since every process, device, and application in general is nothing else but energy converting system. 

The thermal energy conversion power plants are generating approximately 90% of electrical power globally, Therefore, optimizing the conversion system would bring a lot, regardless on scale of optimization. Implementing optimized Tesla turbine instead of recently wide used blade turbines, along with appropriate power transmission system, could solve all global industrial needs for energy, on extremely low investment, as well as all global needs for revealing and preserving the environmental balance, allowing simultaneously for accumulating huge funds, along the time. 

Furthermore, the steam turbine application described above could be used for generating mechanical rotational power, thus with appropriate power transmission system could be used as motor of wide scale power range, which could drive wide range of loads. For illustration, one disks stack rotor of 5 kg weight, quarter of meter in diameter, driven by pressure pot of volume of only 10 liters, along with appropriate power transmission system, could drive the load of over 100 MW of mechanical power. This means that we could simple use this kind of steam engine to drive the trains, among the other industrial vehicles in fuel. 

Using the same principal, we could easily develop extremely powerful vacuum devices, as well as pump devices in general. Even though it would be to possible to use it in propulsion systems in general, significantly improving for marine and aviation. 

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