Search Results - "Vertkov, A.V"

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  1. 1

    Status and prospect of the development of liquid lithium limiters for stellarotor TJ-II by Vertkov, A.V., Lyublinski, I.E., Tabares, F., Ascasibar, E.

    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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    Journal Article
  2. 2

    Deuterium release from Li-D films exposed to atmospheric gases by Gasparyan, Yu. M., Popkov, A.S., Krat, S.A., Pisarev, A.A., Vasina, Ya. A., Lyublinski, I.E., Vertkov, A.V.

    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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    Journal Article
  3. 3
  4. 4

    Comparative assessment of application of low melting metals with capillary pore systems in a tokamak by Lyublinski, I.E., Vertkov, A.V.

    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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    Journal Article
  5. 5

    Recent lithium experiments in tokamak T-11M by Mirnov, S.V., Belov, A.M., Djigailo, N.T., Kostina, A.N., Lazarev, V.B., Lyublinski, I.E., Nesterenko, V.M., Vertkov, A.V.

    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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    Journal Article
  6. 6

    Modern Diagnostics for Investigation of Lithium Element Behavior in Tokamaks by Vertkov, A. V., Vershkov, V. A., Zharkov, M. Yu, Karpov, A. V., Lyublinski, I. E., Mirnov, S. V.

    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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    Journal Article
  7. 7

    Distinctive Features of Heat Transfer During the Cooling of the Working Section by a Dispersed Flow by Mirnov, S. V., Varava, A. N., Vertkov, A. V., Dedov, A. V., Zakharenkov, A. V., Lyublinskii, I. E., Komov, A. T., Smorchkova, Yu. V.

    “…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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    Journal Article
  8. 8

    Comparative analysis of the possibility of applying low-melting metals with the capillary-porous system in tokamak conditions by Lyublinski, I. E., Vertkov, A. V., Semenov, V. V.

    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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    Journal Article
  9. 9

    Progress in development and application of lithium based components for Tokamak by Vertkov, A.V., Lyublinski, I.E., Zharkov, M.Yu, Semenov, V.V., Azizov, E.A., Lazarev, V.B., Mirnov, S.V.

    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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    Journal Article
  10. 10

    Behavior of Capillary-Porous Systems with Liquid Lithium under Influence of Pulsed Deuterium Plasma by Vertkov, A. V., Voronin, A. V., Gusev, V. K., Demina, E. V., Lyublinskiy, I. E., Pimenov, V. N., Prusakova, M. D.

    “…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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    Journal Article
  11. 11

    Li-CPS limiter in tokamak T-11M by Mirnov, S.V., Lazarev, V.B., Sotnikov, S.M., Evtikhin, V.A., Lyublinski, I.E., Vertkov, A.V.

    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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    Journal Article
  12. 12

    Experimental study of lithium MHD flow in slotted channel from V–4Ti–4Cr alloy by Lyublinski, I.E., Evtikhin, V.A., Vertkov, A.V., Ezhov, N.I., Shcherbakov, V.M.

    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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    Journal Article
  13. 13

    Preliminary analysis on a liquid lithium limiter in capillary porous system (CPS) configuration in view of a “litization” experiment on FTU tokamak by Apicella, M.L., Mazzitelli, G., Lazarev, V.B., Azizov, E.A., Mirnov, S.V., Petrov, V.G., Evtikhin, V.A., Lyublinski, I.E., Vertkov, A.V., Lucca, F., Ferdinando, E. Di, Mazzone, G., Ramogida, G., Roccella, M.

    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
  14. 14

    Research of lithium capillary-pore systems for fusion reactor plasma facing components by Evtikhin, V.A., Vertkov, A.V., Lyublinski, I.E., Khripunov, B.I., Petrov, V.B., Mirnov, S.V.

    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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    Journal Article
  15. 15

    Technological aspects of lithium capillary-pore systems application in tokamak device by Evtikhin, V.A, Lyublinski, I.E, Vertkov, A.V, Mirnov, S.V, Lazarev, V.B

    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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    Journal Article
  16. 16

    Some features of beryllium corrosion behavior in Be–liquid Li–V–4Ti–4Cr alloy system by Kupriyanov, I.B., Bazaleev, E.N., Kurbatova, L.A., Lyublinski, I.E., Vertkov, A.V., Evtikhin, V.A.

    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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    Journal Article
  17. 17

    Influence of alloying and impurity element contents on V–Ti–Cr alloy properties by Evtikhin, V.A., Lyublinski, I.E., Vertkov, A.V., Votinov, S.N., Dedyurin, A.I.

    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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    Journal Article
  18. 18

    Calculation and experimental investigation of fusion reactor divertor plate and first wall protection by capillary-pore systems with lithium by Evtikhin, V.A., Lyublinski, I.E., Vertkov, A.V., Belan, V.G., Konkashbaev, I.K., Nikandrov, L.B.

    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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    Journal Article
  19. 19

    Energy removal and MHD performance of lithium capillary-pore systems for divertor target application by Evtikhin, V.A, Lyublinski, I.E, Vertkov, A.V, Yezhov, N.I, Khripunov, B.I, Sotnikov, S.M, Mirnov, S.V, Petrov, V.B

    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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    Journal Article
  20. 20

    Self-healing electrical insulating coating processes for vanadium alloy–lithium systems by Vertkov, A.V, Evtikhin, V.A, Lyublinski, I.E

    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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    Journal Article