Forum for Science, Industry and Business
Sponsored by:     Siemens  n-tv 
Search our Site:

Topic (optional):

 

Home Reports Physics and Astronomy Content

A Little Chaos May Go a Long Way in Future Fusion Energy Reactors

next article
28.10.2003

 


Application of ergodic magnetic field suppresses ELMs.


45th Annual Meeting of the Division of Plasma Physics

In work that makes practical, large-scale fusion energy production increasingly feasible, plasma physicists working at DOE’s DIII-D National Fusion Facility in San Diego are using a little chaos to prevent precious energy from escaping fusion energy devices.

In a magnetic fusion device, or tokamak, one of the most crucial regions for reducing the loss of heat and particles is at the plasma region’s edge. Particle crossing this edge leave the plasma, and carry energy with them, degrading the fusion reactor’s walls, and making it harder for the desired fusion energy production to occur. This problem will only increase for next-generation fusion energy machines such as the proposed ITER facility.

As the energy content of the fusion fuel increases, plasma in the edges has a tendency to become unstable, exhibiting a kind of turbulence that physicists call "Edge Localized Modes", commonly referred to as ELMs. In experiments presented this week, an international team of researchers applied chaotic magnetic fields, in which the field lines point in unpredictable directions, to a small edge region of the plasma in the DIII-D experiment. With the chaotic magnetic field they applied, the researchers significantly reduced the ELM instabilities in the DIII-D plasma, enabling more heat to stay trapped in the fusion fuel and preserving the favorable conditions that allow fusion energy production to occur. Assuming that this approach can be extended to next-step fusion energy devices, it holds the promise of increasing the lives of materials that make up fusion-energy device walls without degrading the performance of the plasma fuel.

Contacts
T. E. Evans, General Atomics, 505-842-1234, evans@fusion.gat.com
T. S. Taylor, General Atomics, taylor@fusion.gat.com
Paul Thomas, CEA, France, paul.richard.thomas@gat.com

David Harris | Source: American Physical Society
Further information: www.aps.org/meet/DPP03/baps/abs/S1880037.html
www.aps.org/meet/DPP03/baps/abs/S1880038.html
gk.umd.edu/DPP/press2.html

next article

More articles from Physics and Astronomy:

nachricht Predicting the fate of underground carbon
24.11.2009 | American Institute of Physics

nachricht Water Droplets direct Self-assembly Process in Thin-film Materials
24.11.2009 | University of Illinois at Urbana-Champaign

All articles from Physics and Astronomy >>>

B2B Search

Product / Service
Company / Organisation

Latest News

Daycare may double TV time for young children

24.11.2009 | Studies and Analyses

Insomnia prevalent among cancer patients who receive chemotherapy

24.11.2009 | Studies and Analyses

How green is your house?

24.11.2009 | Social Sciences

VideoLinks

Event News

Multidisciplinary meeting on Urological Cancers aims to benefit cancer patients

20.11.2009 | Event News

'Golden Age' for clinical psychology in Northern Ireland

20.11.2009 | Event News

New Perspectives in Marine Anti-Fouling Research

11.11.2009 | Event News