A Toroidal Fusion Reactor Design Based On The Reversed Field Pinch PDF Download

Are you looking for read ebook online? Search for your book and save it on your Kindle device, PC, phones or tablets. Download A Toroidal Fusion Reactor Design Based On The Reversed Field Pinch PDF full book. Access full book title A Toroidal Fusion Reactor Design Based On The Reversed Field Pinch.

Toroidal Fusion Reactor Design Based on the Reversed-field Pinch

Toroidal Fusion Reactor Design Based on the Reversed-field Pinch
Author:
Publisher:
Total Pages:
Release: 1978
Genre:
ISBN:

Download Toroidal Fusion Reactor Design Based on the Reversed-field Pinch Book in PDF, ePub and Kindle

The toroidal reversed-field pinch (RFP) achieves gross equilibrium and stability with a combination of high shear and wall stabilization, rather than the imposition of tokamak-like q-constraints. Consequently, confinement is provided primarily by poloidal magnetic fields, poloidal betas as large as approximately 0.58 are obtainable, the high ohmic-heating (toroidal) current densities promise a sole means of heating a D-T plasma to ignition, and the plasma aspect ratio is not limited by stability/equilibrium constraints. A reactor-like plasma model has been developed in order to quantify and to assess the general features of a power system based upon RFP confinement. An ''operating point'' has been generated on the basis of this plasma model and a relatively detailed engineering energy balance. These results are used to generate a conceptual engineering model of the reversed-field pinch reactor (RFPR) which includes a general description of a 750 MWe power plant and the preliminary consideration of vacuum/fueling, first wall, blanket, magnet coils, iron core, and the energy storage/transfer system.


Physics Considerations of the Reversed-Field Pinch Fusion Reactor

Physics Considerations of the Reversed-Field Pinch Fusion Reactor
Author:
Publisher:
Total Pages:
Release: 1980
Genre:
ISBN:

Download Physics Considerations of the Reversed-Field Pinch Fusion Reactor Book in PDF, ePub and Kindle

A conceptual engineering design of a fusion reactor based on plasma confinement in a toroidal Reversed-Field Pinch (RFP) configuration is described. The plasma is ohmically ignited by toroidal plasma currents which also inherently provide the confining magnetic fields in a toroidal chamber having major and minor radii of 12.7 and 1.5 m, respectively. The DT plasma ignites in 2 to 3 s and undergoes a transient, unrefueled burn at 10 to 20 keV for approx. 20 s to give a DT burnup of approx. 50%. Accounting for all major energy sinks yields a cost-optimized system with a recirculating power fraction of 0.17; the power output is 750 MWe(net).


Reversed-field Pinch Fusion Reactor

Reversed-field Pinch Fusion Reactor
Author:
Publisher:
Total Pages:
Release: 1980
Genre:
ISBN:

Download Reversed-field Pinch Fusion Reactor Book in PDF, ePub and Kindle

A conceptual engineering design of a fusion reactor based on plasma confinement in a toroidal Reversed-Field Pinch (RFP) configuration is described. The plasma is ohmically ignited by toroidal plasma currents which also inherently provide the confining magnetic fields in a toroidal chamber having major and minor radii of 12.7 and 1.5 m, respectively. The DT plasma ignites in 2 to 3 s and undergoes a transient, unrefueled burn at 10 to 20 keV for approx. 20 s to give a DT burnup of approx. 50%. The 5-s dwell period between burn pulses for plasma quench and refueling allows steady-state operation of all thermal systems outside the first wall; no auxiliary thermal capacity is required. Tritium breeding occurs in a granular Li2O blanket which is packed around an array of radially oriented water/steam coolant tubes. The slightly superheated steam emerging from this blanket directly drives a turbine that produces electrical power at an efficiency of 30%. A borated-water shield is located immediately outside the thermal blanket to protect the superconducting magnet coils. Both the superconducting poloidal and toroidal field coils are energized by homopolar motor/generators. Accounting for all major energy sinks yields a cost-optimized system with a recirculating power fraction of 0.17; the power output is 750 MWe(net).


Engineering Design of a Toroidal Reversed-field Pinch Reactor (RFPR).

Engineering Design of a Toroidal Reversed-field Pinch Reactor (RFPR).
Author:
Publisher:
Total Pages:
Release: 1978
Genre:
ISBN:

Download Engineering Design of a Toroidal Reversed-field Pinch Reactor (RFPR). Book in PDF, ePub and Kindle

A conceptual engineering design of a Reversed-Field Pinch Reactor (RFPR) is presented. A design point is described that is based upon a long-pulse operation of a superconducting, air-core system. Major engineering systems are described on the basis of this cost-optimized design. Ease of maintenance is a primary design objective.


Fusion Energy

Fusion Energy
Author: Robert A. Gross
Publisher: Wiley-Interscience
Total Pages: 352
Release: 1984
Genre: Science
ISBN:

Download Fusion Energy Book in PDF, ePub and Kindle


Fusion Energy Update

Fusion Energy Update
Author:
Publisher:
Total Pages: 310
Release: 1978
Genre: Controlled fusion
ISBN:

Download Fusion Energy Update Book in PDF, ePub and Kindle


The TITAN Reversed-Field Pinch Reactor

The TITAN Reversed-Field Pinch Reactor
Author:
Publisher:
Total Pages:
Release: 1987
Genre:
ISBN:

Download The TITAN Reversed-Field Pinch Reactor Book in PDF, ePub and Kindle

The multi-institutional TITAN study has examined the physics, technology, safety, and economics issues associated with the operation of a Reversed-Field Pinch (RFP) magnetic fusion reactor at high power density. A comprehensive system and trade study have been conducted as an integral and ongoing part of the reactor assessment. Attractive design points emerging from these parametric studies are subjected to more detailed analysis and design integration, the results of which are used to refine the parametric systems model. The design points and tradeoffs for two TITAN/RFP reactor embodiments are discussed. 14 refs.