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Edge-plasmas and Wall Protection in RFPs (Reversed-Field Pinch).

Edge-plasmas and Wall Protection in RFPs (Reversed-Field Pinch). PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
The Reverse-Field Pinch (RFP) has the ability to operate as a compact, moderate-to-high beta, high-power-density system. A compact system requires careful control of the particle and heat fluxes impinging on plasma-facing components. A strongly recycling, toroidal-field open divertor combined with a highly radiating (>90% of plasma heating power) core plasma is required. An open divertor configuration locates the plate near the field null to take advantage of the flux expansion and minimum poloidal asymmetries to minimize peak heat fluxes. The physics and engineering requirements are quantitatively discussed for an evolutionary sequence of impurity/ash-control schemes for AT-40M (0.4 MA) .-->. ZT-P (0.08 MA) .-->. ZTH (2-4 MA) .-->. FTF/RFP (10 MA) .-->. TITAN (18 MA). 13 refs., 5 figs., 2 tabs.

Edge-plasmas and Wall Protection in RFPs (Reversed-Field Pinch).

Edge-plasmas and Wall Protection in RFPs (Reversed-Field Pinch). PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
The Reverse-Field Pinch (RFP) has the ability to operate as a compact, moderate-to-high beta, high-power-density system. A compact system requires careful control of the particle and heat fluxes impinging on plasma-facing components. A strongly recycling, toroidal-field open divertor combined with a highly radiating (>90% of plasma heating power) core plasma is required. An open divertor configuration locates the plate near the field null to take advantage of the flux expansion and minimum poloidal asymmetries to minimize peak heat fluxes. The physics and engineering requirements are quantitatively discussed for an evolutionary sequence of impurity/ash-control schemes for AT-40M (0.4 MA) .-->. ZT-P (0.08 MA) .-->. ZTH (2-4 MA) .-->. FTF/RFP (10 MA) .-->. TITAN (18 MA). 13 refs., 5 figs., 2 tabs.

Edge Plasmas and Plasma/wall Interactions in an Ignition-class Reversed Field Pinch

Edge Plasmas and Plasma/wall Interactions in an Ignition-class Reversed Field Pinch PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
A range of limiter, armor, and divertor options are examined as a means to minimize plasma/wall interactions for a high-power-density, ignition-class reversed field pinch. An open, toroidal-field divertor can operate at maximum powers, while isolating the core plasma from impurities and protecting the wall. 16 refs.

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Edge Plasmas and Plasma

Edge Plasmas and Plasma PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
A range of limiter, armor, and divertor options are examined as a means to minimize plasma/wall interactions for a high-power-density, ignition-class reversed field pinch. An open, toroidal-field divertor can operate at maximum powers, while isolating the core plasma from impurities and protecting the wall. 16 refs.

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