Progress in Heavy Ion Driven Inertial Fusion Energy

Progress in Heavy Ion Driven Inertial Fusion Energy
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Release: 2001
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The promise of inertial fusion energy driven by heavy ion beams requires the development of accelerators that produce ion currents ((almost equal to)100s Amperesheam) and ion energies ((almost equal to)1-10 GeV) that have not been achieved simultaneously in any existing accelerator. The high currents imply high generalized perveances, large tune depressions. and high space charge potentials of the beam center relative to the beam pipe. Many of the scientific issues associated with ion beams of high perveance and large tune depression have been addressed over the last two decades on scaled experiments at Lawrence Berkeley and Lawrence Livermore National Laboratories, the University of Maryland, and elsewhere. The additional requirement of high space charge potential (or equivalently high line charge density) gives rise to effects (particularly the role of electrons in beam transport) which must be understood before proceeding to a large scale accelerator. The first phase of a new series of experiments in Heavy Ion Fusion Virtual National Laboratory (HIF VNL), the High Current Experiments (HCX), is now being constructed at LBNL. The mission of the HCX will be to transport beams with driver line charge density so as to investigate the physics of this regime, including constraints on the maximum radial filling factor of the beam through the pipe. This factor is important for determining both cost and reliability of a driver scale accelerator. The HCX will provide data for design of the next steps in the sequence of experiments leading to an inertial Fusion energy power plant. The focus of the program after the HCX will be on integration of all of the manipulations required for a driver. In the near term following HCX, an Integrated Beam Experiment (IBX) of the same general scale as the HCX is envisioned.


Progress in Heavy Ion Driven Inertial Fusion Energy
Language: en
Pages:
Authors:
Categories:
Type: BOOK - Published: 2001 - Publisher:

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The promise of inertial fusion energy driven by heavy ion beams requires the development of accelerators that produce ion currents ((almost equal to)100s Ampere
Progress in Heavy Ion Driven Inertial Fusion Energy
Language: en
Pages:
Authors:
Categories:
Type: BOOK - Published: 2001 - Publisher:

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The promise of inertial fusion energy driven by heavy ion beams requires the development of accelerators that produce ion currents (approx 100's Amperes/beam) a
Progress in Heavy Ion Drivers Inertial Fusion Energy
Language: en
Pages:
Authors:
Categories:
Type: BOOK - Published: 2001 - Publisher:

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The promise of inertial fusion energy driven by heavy ion beams requires the development of accelerators that produce ion currents ((almost equal to)100's Amper
An Assessment of the Prospects for Inertial Fusion Energy
Language: en
Pages: 247
Authors: Committee on the Prospects for Inertial Confinement Fusion Energy Systems
Categories: Business & Economics
Type: BOOK - Published: 2013-07-19 - Publisher: National Academies Press

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The potential for using fusion energy to produce commercial electric power was first explored in the 1950s. Harnessing fusion energy offers the prospect of a ne
Overview of US Heavy-ion Fusion Progress and Plans
Language: en
Pages:
Authors:
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Type: BOOK - Published: 2004 - Publisher:

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Significant experimental and theoretical progress has been made in the U.S. heavy ion fusion program on high-current sources, transport, final focusing, chamber