0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R2,500 - R5,000 (2)
  • -
Status
Brand

Showing 1 - 2 of 2 matches in All Departments

Kinetic Simulations of Ion Transport in Fusion Devices (Hardcover, 2013 ed.): Andres de Bustos Molina Kinetic Simulations of Ion Transport in Fusion Devices (Hardcover, 2013 ed.)
Andres de Bustos Molina
R3,920 R3,343 Discovery Miles 33 430 Save R577 (15%) Ships in 12 - 17 working days

This thesis deals with the problem of ion confinement in thermonuclear fusion devices. It is a topic of general interest, as it helps to understand via numerical simulations the ion confinement properties in complex geometries, in order to predict their behavior and maximize the performance of future fusion reactors. The main work carried out in this thesis is the improvement and exploitation of an existing simulation code called ISDEP. This code solves the so-called ion collisional transport in arbitrary plasma geometry, improving in this sense other existing codes. Additionally, it presents outstanding portability and scalability in distributed computing architectures, such as Grid or Volunteer Computing. The main physical results can be divided into two blocks. First, the study of 3D ion transport in ITER is presented. ITER is the largest fusion reactor (under construction) and most of the simulations so far assume the axis-symmetry of the device. Unfortunately, this symmetry is only an approximation because of the discrete number of magnetic coils used. ISDEP has shown, using a simple model of the 3D magnetic field, how the ion confinement is affected by this symmetry breaking. Secondly, ISDEP has been applied successfully to the study of fast ion dynamics in fusion plasmas. The fast ions, with energies much larger than the thermal energy, are a product of the device's heating system. Thus, a numerical predictive tool can be used to improve the heating efficiency. ISDEP has been combined with the FAFNER2 code to study such ions in stellarator (TJ-II, LHD) and tokamak (ITER) geometries. It has also been validated by experimental results. In particular, comparisons with the CNPA diagnostic in the TJ-II stellarator are remarkable.

Kinetic Simulations of Ion Transport in Fusion Devices (Paperback, Softcover reprint of the original 1st ed. 2013): Andres de... Kinetic Simulations of Ion Transport in Fusion Devices (Paperback, Softcover reprint of the original 1st ed. 2013)
Andres de Bustos Molina
R3,286 Discovery Miles 32 860 Ships in 10 - 15 working days

This thesis deals with the problem of ion confinement in thermonuclear fusion devices. It is a topic of general interest, as it helps to understand via numerical simulations the ion confinement properties in complex geometries, in order to predict their behavior and maximize the performance of future fusion reactors. The main work carried out in this thesis is the improvement and exploitation of an existing simulation code called ISDEP. This code solves the so-called ion collisional transport in arbitrary plasma geometry, improving in this sense other existing codes. Additionally, it presents outstanding portability and scalability in distributed computing architectures, such as Grid or Volunteer Computing. The main physical results can be divided into two blocks. First, the study of 3D ion transport in ITER is presented. ITER is the largest fusion reactor (under construction) and most of the simulations so far assume the axis-symmetry of the device. Unfortunately, this symmetry is only an approximation because of the discrete number of magnetic coils used. ISDEP has shown, using a simple model of the 3D magnetic field, how the ion confinement is affected by this symmetry breaking. Secondly, ISDEP has been applied successfully to the study of fast ion dynamics in fusion plasmas. The fast ions, with energies much larger than the thermal energy, are a product of the device's heating system. Thus, a numerical predictive tool can be used to improve the heating efficiency. ISDEP has been combined with the FAFNER2 code to study such ions in stellarator (TJ-II, LHD) and tokamak (ITER) geometries. It has also been validated by experimental results. In particular, comparisons with the CNPA diagnostic in the TJ-II stellarator are remarkable.

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
SanDisk SDSQUNR-032G-GN3MN memory card…
R107 Discovery Miles 1 070
Widows
Viola Davis, Michelle Rodriguez, … Blu-ray disc R22 R19 Discovery Miles 190
Peptine Pro Canine/Feline Hydrolysed…
R369 R259 Discovery Miles 2 590
Hask Keratin Protein Smoothing Shine Oil…
R90 Discovery Miles 900
Mecer Xpress Executive 4G LTE 10.1…
R4,799 R4,099 Discovery Miles 40 990
Baby Dove Body Wash 400ml
R90 R85 Discovery Miles 850
Fine Living Kendall Office Chair (Light…
R2,499 R1,629 Discovery Miles 16 290
Defy Steam Iron (1750W)
R278 Discovery Miles 2 780
Acqua Di Parma Acqua Di Parma Magnolia…
R4,373 R3,530 Discovery Miles 35 300
ZA Cute Butterfly Earrings and Necklace…
R712 R499 Discovery Miles 4 990

 

Partners