Research
Dynamic Interaction: A New Concept of Confinement
We propose new dynamic hypotheses to enhance our understanding of the behavior of the plasma in the reactor. In doing so, we put forward a profound revision of classical dynamics. After over thirty years studying rotational dynamics, we propose a new theory of dynamic interactions to better interpret nature in rotation. This new theory has been tested experimentally returning positive results, including by third parties. Plasma rotation is an essential factor in the analysis of the turbulent transport of momentum in axisymmetric systems. In magnetic confinement fusion systems, the plasma circulates in the container at a constant movement, which we could define as rotation with respect to its walls. Notwithstanding, it has been shown that the plasma in the reactor can initiate spontaneous circular movement or rotation, without the need for any external dynamic momentum input. The theoretical development of this behavior is still under study, and the origin of this spontaneous intrinsic rotation is still unclear.
Technological Applications of the New Theory of Dynamic Interactions
The aim of this paper is to present given technological applications of the Theory of Dynamic Interactions, a theory that has been the object of my investigation and embodies a new scientific approach to Rotational Dynamics. The method utilized in the development of this theory, and its applications, consists of a scientific analysis of the dynamic fields that are generated in bodies subjected to simultaneous non-coaxial rotations. The results obtained in the development of this dynamic theory allow an innovative approach to significant scientific and technological applications, for example, in orbital dynamics, orbit determination, and orbit control. As a conclusion, under the Theory of Dynamic Interactions various new assumptions have been elaborated based on the analysis of inertial fields generated. A new criteria has been found applicable in the understanding of the coupling of velocity fields. The innovative dynamic theory that has been developed, based on new concepts such as rotational inertia or field’s coupling, has numerous technological applications in accelerated rotation systems.
