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Imploturbocompressor -  Coming from Macro-Flow to Micro-Flow by Implossion - Excellence in Design 1 Moving Part System - 1 Compression Step
Imploturbocompressor All Parts View Isometric Draw Hand MadeImploturbocompressor Activation Dynamic Interactive System Flow -BImploturbocompressor Center CutImploturbocompressor; A-Receiving Flow, & B-Activation Dynamic Interactive System Flow - Front Side ViewImploturbocompressor Receiving Flow - AImploturbocompressor Front ViewImploturbocompressor Up CutImploturbocompressor Lateral ViewImploturbocompressor Up ViewImploturbocompressor Front CutImploturbocompressor Lateral CutImploturbocompressor; A-Receiving Flow, & B-Activation Dynamic Interactive System Flow - Back Side View

Imploturbocompressor - Coming from Macro-Flow to Micro-Flow by Implossion - Excellence in Design 1 Moving Part System - 1 Compression Step

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Coming from Macro-Flow to Micro-Flow by Implossion.

*-“Excellence in Design" because is only one moving part. Only one unique compression step. In flow and out flow at the same one system, This invention by its nature a logic and simple conception in the dynamics flow mechanics area. The invention is a wing made of one piece in a rotating motion, contained in a pair cavity system connected by implocavity, and interacting dynamically with a flow, that passes internally "Imploded" through its simple mechanism. This flow can be gas (air) or liquid (water). And have two diferents aplications, in two diferents form-function; this one can be received (using the dynamic flow passage, as a receiver). Or it can be generated (with a power plant, generating a propulsion).

Presenting one of the many diferents examples, could specifically be this same invention applied in pair in every bar end, similar to what would be a turbine reaction or turbocompressor, and making the best profit of a exhaust gas dynamic flow, compressing a new air entrance and therefore falling into the technical field of the reaction turbines. This of course, considerating materials that are resistant to the high temperatures such as the ceramics ones. And furthermore this invention approaches more the combustion point and therefore also more to the gases expansion point, in order to search a higher expanding dynamic strength. It could, for example, be presented into an inter dynamic rotor system ("Gear Turbine"aplication), supported internally and in a rotating system. And likewise being able to activate a new concept of dynamic turbine by pushing gearing, and likewise, creating a new technical field.
Or can be in a more simple way by means of the system of this same invention applied to the bar end, but without a movement of interaction with the rotor, only the rotary dynamics in a static point for any type of mechanical work such as a dynamo in order to generate electricity through the dynamic strength of a flow when it is rotating at the moment it receives it, just like a pelton well do.

And when the flow that is received and that is intended to be used at best, must no necessarily by a exhausting or rejection gas, but must be a dynamic passing gas or liquid flow with the only intention to count it or to measure it. This could be possible at the passing and interacting period when it passes inside its simple mechanism. This can be in any point of the flow trajectory.

In case the flow that is received is a water falling by gravity, and a dynamo is placed on the rotary bar, the Imploturbocompressor can profit an be obtained by generating? electricity such as obtained by the pelton well, like I say before.

Or only receive the liquid flow, in order to measure its passage with a counter placed on the bar, because when this flow passes through the simple mechanism of a rotating wing made of only one piece it interacts within the implocavities system. And this flow can be air wind, with the diference of can have an horizontal position, and have wind from all the sides and all the time. The aforementioned information about this invention refers to technical applications, such as a dynamic flow receiver. (whether being gas or liquid).

Connecting the free end of the bar of this invention to a power plant (manual, electrical, mechanical, or combusting, etc...), there will be available a capacity and a position in order to generate the flow dynamics (or even better, a propulsion). This applied? to gas flows (air) or to liquid flow (water). This of course, considering the due rotating directions as well as the inclination, wings, curvature and the due dimensioning for every application of every technical field.

?With the appropriate power plant and the appropriate dimensioning and number of RPM this invention is also feasible to generate an atmospheric air propulsion and the autoprolpusion of an aircraft. Being an effective and very simple s

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