The extrapolation of the energy confinement time to the next generation of devices has been investigated both theoretically and experimentally for several decades in the tokamak community. Various scaling expressions have been proposed using dimensional and dimensionless quantities. They are all based on the assumption that the scalings are in power law form. In this paper, an innovative methodology is proposed to extract the scaling expressions for the energy confinement time in tokamaks directly from experimental databases, without any previous assumption about the mathematical form of the scalings. The approach to obtain the scaling expressions is based on genetic programming and symbolic regression. These techniques have been applied to...
Many measurements are required to control thermonuclear plasmas and to fully exploit them scientific...
Many measurements are required to control thermonuclear plasmas and to fully exploit them scientific...
Many measurements are required to control thermonuclear plasmas and to fully exploit them scientific...
The extrapolation of the energy confinement time to the next generation of devices has been investig...
The extrapolation of the energy confinement time to the next generation of devices has been investig...
The extrapolation of the energy confinement time to the next generation of devices has been investig...
In many scientific applications, it is important to investigate how certain properties scale with t...
In many scientific applications, it is important to investigate how certain properties scale with t...
In many scientific applications, it is important to investigate how certain properties scale with t...
In many scientific applications, it is important to investigate how certain properties scale with t...
The H mode of confinement in Tokamaks is characterized by a thin region of high gradients, located a...
The H mode of confinement in Tokamaks is characterized by a thin region of high gradients, located a...
The H mode of confinement in Tokamaks is characterized by a thin region of high gradients, located a...
The H mode of confinement in Tokamaks is characterized by a thin region of high gradients, located a...
AbstractThe H mode of confinement in Tokamaks is characterized by a thin region of high gradients, l...
Many measurements are required to control thermonuclear plasmas and to fully exploit them scientific...
Many measurements are required to control thermonuclear plasmas and to fully exploit them scientific...
Many measurements are required to control thermonuclear plasmas and to fully exploit them scientific...
The extrapolation of the energy confinement time to the next generation of devices has been investig...
The extrapolation of the energy confinement time to the next generation of devices has been investig...
The extrapolation of the energy confinement time to the next generation of devices has been investig...
In many scientific applications, it is important to investigate how certain properties scale with t...
In many scientific applications, it is important to investigate how certain properties scale with t...
In many scientific applications, it is important to investigate how certain properties scale with t...
In many scientific applications, it is important to investigate how certain properties scale with t...
The H mode of confinement in Tokamaks is characterized by a thin region of high gradients, located a...
The H mode of confinement in Tokamaks is characterized by a thin region of high gradients, located a...
The H mode of confinement in Tokamaks is characterized by a thin region of high gradients, located a...
The H mode of confinement in Tokamaks is characterized by a thin region of high gradients, located a...
AbstractThe H mode of confinement in Tokamaks is characterized by a thin region of high gradients, l...
Many measurements are required to control thermonuclear plasmas and to fully exploit them scientific...
Many measurements are required to control thermonuclear plasmas and to fully exploit them scientific...
Many measurements are required to control thermonuclear plasmas and to fully exploit them scientific...