Search Results - "Vertkov, A.V"
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Status and prospect of the development of liquid lithium limiters for stellarotor TJ-II
Published in Fusion engineering and design (01-10-2012)“…► Liquid lithium limiter have been developed and manufactured for improvement of plasma performance of stellarator TJ-II. ► Capillary-pore system is used for…”
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2
Deuterium release from Li-D films exposed to atmospheric gases
Published in Fusion engineering and design (01-04-2017)“…•The major part of deuterium desorbs from Li-D films in a very sharp peak at 670–710K.•Exposure on air leads to intensive deuterium release from the Li-D film…”
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3
Impact of liquid metal surface on plasma-surface interaction in experiments with lithium and tin capillary porous systems
Published in Nuclear materials and energy (01-12-2020)“…•The lithium and tin capillary-porous systems (CPS) tested with plasma in PLM device.•Evaporated lithium and tin under plasma load were studied with…”
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Comparative assessment of application of low melting metals with capillary pore systems in a tokamak
Published in Fusion engineering and design (01-12-2014)“…•Capillary-pore systems (CPS) with liquid metals (Li, Ga, Sn) are considered as alternative to solid materials meeting the challenges under creation of plasma…”
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5
Recent lithium experiments in tokamak T-11M
Published in Journal of nuclear materials (01-07-2013)“…The T-11M lithium program is focused to find solutions for technological issues of a steady-state tokamak. A recent lithium activity in T-11M was focused on…”
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6
Modern Diagnostics for Investigation of Lithium Element Behavior in Tokamaks
Published in Physics of atomic nuclei (01-12-2019)“…The introduction of lithium as a material for production of in-vessel plasma-facing elements of the tokamak necessitates the development of the corresponding…”
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7
Distinctive Features of Heat Transfer During the Cooling of the Working Section by a Dispersed Flow
Published in Journal of engineering physics and thermophysics (01-11-2021)“…The authors have presented results of experimental investigation into the possibility of using dispersed two-component flows of the coolant to remove heat from…”
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8
Comparative analysis of the possibility of applying low-melting metals with the capillary-porous system in tokamak conditions
Published in Physics of atomic nuclei (01-12-2016)“…The use of capillary-porous systems (CPSs) with liquid Li, Ga, and Sn is considered as an alternative for solving the problem of creating plasma-facing…”
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Progress in development and application of lithium based components for Tokamak
Published in Fusion engineering and design (01-10-2014)“…•Porous materials from W fibers filled with lithium applied as structural material of PFC in tokamaks.•Tests of lithium PFC prototypes for steady-state…”
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10
Behavior of Capillary-Porous Systems with Liquid Lithium under Influence of Pulsed Deuterium Plasma
Published in Inorganic materials : applied research (2019)“…Capillary-porous systems (CPS) with liquid lithium are considered as a prospective alternative to traditional structural materials (W, Be, CFC) during the…”
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Li-CPS limiter in tokamak T-11M
Published in Fusion engineering and design (01-04-2003)“…This paper is a review of the experimental investigations of Li-behavior as limiter material in real tokamak. All experiments were performed in tokamak T-11M…”
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12
Experimental study of lithium MHD flow in slotted channel from V–4Ti–4Cr alloy
Published in Fusion engineering and design (01-11-2005)“…MHD pressure drop in flowing liquid metal for a tokamak with high magnetic fields is a key concern regarding the development of lithium self-cooled test module…”
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13
Preliminary analysis on a liquid lithium limiter in capillary porous system (CPS) configuration in view of a “litization” experiment on FTU tokamak
Published in Fusion engineering and design (01-11-2005)“…The possibility of using liquid lithium as plasma facing component for the divertor target plates will be investigated on FTU by employing an innovative…”
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Journal Article Conference Proceeding -
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Research of lithium capillary-pore systems for fusion reactor plasma facing components
Published in Journal of nuclear materials (01-12-2002)“…To date there is no adequate solution for high heat load plasma facing components of the next step fusion reactor among solid material options. A…”
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15
Technological aspects of lithium capillary-pore systems application in tokamak device
Published in Fusion engineering and design (01-10-2001)“…The paper concerns two problems. First, the usage of a lithium material basing on capillary-pore systems as a material of rail limiter working in conditions of…”
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Some features of beryllium corrosion behavior in Be–liquid Li–V–4Ti–4Cr alloy system
Published in Fusion engineering and design (01-11-2005)“…Recent experimental results on beryllium corrosion behavior in a V–4Ti–4Cr alloy, liquid lithium static system during testing for 200–500 h at temperatures…”
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Influence of alloying and impurity element contents on V–Ti–Cr alloy properties
Published in Journal of nuclear materials (01-12-2002)“…This work presents the results of a property study and analysis of V–Ti–Cr alloys with a total base component concentration of Ti + Cr in the range of 8–30%…”
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Calculation and experimental investigation of fusion reactor divertor plate and first wall protection by capillary-pore systems with lithium
Published in Journal of nuclear materials (01-05-1999)“…Estimations and experimental studies on the possibility of capillary-pore systems with lithium as the first wall and divertor target plate plasma-facing…”
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Energy removal and MHD performance of lithium capillary-pore systems for divertor target application
Published in Fusion engineering and design (01-11-2000)“…Experimental results of complex studies of lithium capillary-pore systems (CPS) for application as a plasma facing structure in divertor and on the first wall…”
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20
Self-healing electrical insulating coating processes for vanadium alloy–lithium systems
Published in Fusion engineering and design (01-11-2001)“…The existing technological approaches for the formation of nitride- and oxide-based self-healing electrical insulating coatings for vanadium alloy–lithium…”
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