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Chapter 3: MHD stability, operational limits and disruptions
Progress in the area of MHD stability and disruptions, since the publication of the 1999 ITER Physics Basis document (1999 Nucl. Fusion 39 2137-2664), is reviewed. Recent theoretical and experimentalExpand
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Status and physics basis of the ITER divertor
The ITER divertor design is the culmination of years of physics and engineering effort, building confidence that this critical component will satisfy the requirements and meet the challenge ofExpand
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Characteristics of type I ELM energy and particle losses in existing devices and their extrapolation to ITER
Analysis of Type I ELMs from ongoing experiments shows that ELM energy losses are correlated with the density and temperature of the pedestal plasma before the ELM crash. The Type I ELM plasma energyExpand
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Physics basis and design of the ITER plasma-facing components
Abstract In ITER, as in any tokamak, the first wall and divertor plasma-facing components (PFC) must provide adequate protection of in-vessel structures, sufficient heat exhaust capability and beExpand
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First measurement of neutron emission profile on JT-60U using Stilbene neutron detector with neutron-gamma discrimination
This article describes a diagnostic for measuring neutron emission profile in JT-60U. The Stilbene neutron detector, developed by TRINITI laboratory in Russia, has been installed on the JT-60UExpand
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Wall conditioning towards the utilization in ITER
Abstract Wall conditioning provides an effective means for reducing both impurities and recycling from the plasma surrounding surface. A wide variety of techniques have been developed during the lastExpand
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Wall conditioning on ITER
Abstract Like all tokamaks, ITER will require wall conditioning systems and strategies for successful operation from the point of view of plasma-facing surface preparation. Unlike today’s devicesExpand
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Principal Physics Developments Evaluated in the ITER Design Review
As part of the ITER Design Review and in response to the issues identified by the Science and Technology Advisory Committee, the ITER physics requirements were reviewed and as appropriate updated.Expand
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Disruption Scenarios, their Mitigation and Operation Window in ITER
The impacts of plasma disruptions on ITER have been investigated in detail to confirm the robustness of the design of the machine to the potential consequential loads. The loads include bothExpand
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Physics of energetic ions
This chapter reviews the progress accomplished since the redaction of the first ITER Physics Basis (1999 Nucl. Fusion 39 2137–664) in the field of energetic ion physics and its possible impact onExpand
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