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Dive into the research topics where S. Yamoto is active.

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Featured researches published by S. Yamoto.


Nuclear Fusion | 2016

Kinetic modelling for neoclassical transport of high-Z impurity particles using a binary collision method

Yuki Homma; S. Yamoto; Y. Sawada; H. Inoue; A. Hatayama

A new kinetic model for neoclassical impurity particle transport simulation has been developed. Our model is able to simulate the following two effects, which have been theoretically predicted, but neglected in most of the existing kinetic impurity transport simulations in the SOL (scrape-off layer)/Divertor plasmas of tokamak; (1) the neoclassical inward pinch (NC IWP) due to the density gradient of background plasmas and (2) the neoclassical temperature screening effect (NC TSE, outward transport) caused by the plasma temperature gradient. The IWP and TSE, both proportional to the impurity charge number Z, become especially important for higher-Z impurities such as tungsten. In this paper we focus on the case where background plasmas are in the Pfirsch–Schluter regime. The velocity distribution of background plasma ions is modelled by a distorted Maxwellian distribution, which includes the Pfirsch–Schluter flow velocity and the Pfirsch–Schluter heat flux density, in order to reproduce the NC IWP and NC TSE. A series of test simulations have been performed for a toroidal magnetic field geometry. Characteristics of the neoclassical transport, such as dependencies on the safety factor and on the impurity charge number, have been confirmed.


Journal of Nuclear Materials | 2015

Effects of background plasma characteristics on tungsten impurity transport in the SOL/divertor region using IMPGYRO code

S. Yamoto; Yuki Homma; K. Hoshino; Y. Sawada; X. Bonnin; D. Coster; R. Schneider; A. Hatayama


Nuclear Fusion | 2017

Kinetic modeling of high-Z tungsten impurity transport in ITER plasmas using the IMPGYRO code in the trace impurity limit

S. Yamoto; X. Bonnin; Yuki Homma; H. Inoue; K. Hoshino; A. Hatayama; R.A. Pitts


Nuclear materials and energy | 2017

Numerical analysis of tungsten erosion and deposition processes under a DEMO divertor plasma

Yuki Homma; Kazuo Hoshino; S. Yamoto; N. Asakura; Shinsuke Tokunaga; A. Hatayama; Yoshiteru Sakamoto; Ryoji Hiwatari; Kenji Tobita; Joint Special Design Team for Fusion Demo


Contributions To Plasma Physics | 2014

Systematic Study of Tungsten Impurity Transport in Representative Regimes of Divertor Plasma

S. Yamoto; K. Hoshino; M. Toma; Yuki Homma; A. Hatayama; X. Bonnin; D. Coster; R. Schneider


Contributions To Plasma Physics | 2016

Extended Numerical Modeling of Impurity Neoclassical Transport in Tokamak Edge Plasmas

H. Inoue; Y. Homma; S. Yamoto; A. Hatayama


Plasma and Fusion Research | 2014

Test Simulations of Temperature Screening Effect by using Kinetic Monte Carlo Model

Yuki Homma; A. Hatayama; Yu sawada; S. Yamoto


Contributions To Plasma Physics | 2018

Analysis of the plasma blob formation/transport and its effects on impurity transport in the scrape-off layer regions

T. Maeda; K. Tominaga; S. Yamoto; A. Hatayama; H. Hasegawa; S. Ishiguro


Contributions To Plasma Physics | 2018

An extended kinetic model for the thermal force on impurity particles in weakly collisional plasmas

Yuki Homma; Kazuo Hoshino; Shinsuke Tokunaga; S. Yamoto; A. Hatayama; N. Asakura; Yoshiteru Sakamoto; Kenji Tobita


Contributions To Plasma Physics | 2016

Effects of Classical and Neo-classical Cross-field Transport of Tungsten Impurity in Realistic Tokamak Geometry

S. Yamoto; Y. Homma; H. Inoue; Y. Sawada; K. Hoshino; A. Hatayama; X. Bonnin; D. Coster; R. Schneider

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K. Hoshino

Japan Atomic Energy Agency

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Y. Homma

Japan Atomic Energy Agency

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Kazuo Hoshino

Japan Atomic Energy Agency

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