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DENGXI 研究業績一覧 (35件)
論文
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L.Cheng,
X. Deng,
B. Xie,
Y. Jiang,
F. Xiao.
A new 3D OpenFoam solver with improved resolution for hyperbolic systems on hybrid unstructured grids,
Applied Mathematical Modelling,
Vol. 108,
pp. 142-166,
Aug. 2022.
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B. Xie,
X. Deng,
F. Xiao.
Compact multi-stage reconstruction method on polyhedral unstructured grids: Extension to higher-order finite volume scheme,
Computers & Fluids,
Vol. 240,
p. 105436,
May 2022.
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Z.H. Jiang,
X. Deng,
F. Xiao,
C. Yan,
J. Yu,
S. Lou.
Hybrid discontinuous galerkin/finite volume method with subcell resolution for shocked flows,
AIAA Journal,
Vol. 59,
pp. 2017-2044,
June 2021.
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L. Cheng,
X. Deng,
B. Xie,
Y. Jiang,
F. Xiao.
Low-dissipation BVD schemes for single and multi-phase compressible flows on unstructured grids,
Journal of Computational Physics,
Vol. 428,
p. 110088,
Mar. 2021.
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B. Xie,
X. Deng,
S. Liao,
F. Xiao.
Arbitrary high-order non-oscillatory scheme on hybrid unstructured grids based on multi-moment finite volume method,
Journal of Computational Physics,
Vol. 424,
p. 109841,
Jan. 2021.
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S. Tann,
X. Deng,
R. Loubère,
F. Xiao.
Solution property preserving reconstruction BVD+MOOD scheme for compressible euler equations with source terms and detonations,
Computers & Fluids,
Vol. 206,
p. 104594,
June 2020.
公式リンク
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Z.H. Jiang,
X. Deng,
F. Xiao,
C. Yan,
J. Yu.
A Higher Order Interpolation Scheme of Finite Volume Method for Compressible Flow on Curvilinear Grids,
Communications in Computational Physics,
Vol. 28,
pp. 1609-1638,
Apr. 2020.
公式リンク
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S. Tann,
X. Deng,
Y. Shimizu,
R. Loubère,
F. Xiao.
Solution property preserving reconstruction for finite volume scheme: a boundary variation diminishing+multidimensional optimal order detection framework,
International Journal for Numerical Methods in Fluids,
Vol. 92,
pp. 603-634,
Dec. 2019.
公式リンク
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J. Jin,
X. Deng,
Y. Abe,
F. Xiao.
Uncertainty quantification of shock–bubble interaction simulations,
Shock Waves,
29,
1191-1204,
Nov. 2019.
公式リンク
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B. Xie,
X. Deng,
S. Liao,
F. Xiao.
High-order multi-moment finite volume method with smoothness adaptive fitting reconstruction for compressible viscous flow,
Journal of Computational Physics,
394,
559-593,
Oct. 2019.
公式リンク
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X. Deng,
Y. Shimizu,
F. Xiao.
A fifth-order shock capturing scheme with two-stage boundary variation diminishing algorithm,
Journal of Computational Physics,
386,
323-349,
June 2019.
公式リンク
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X. Deng,
P. Boivin,
F. Xiao.
A new formulation for two-wave Riemann solver accurate at contact interfaces,
Physics of Fluids,
31,
046102,
Apr. 2019.
公式リンク
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清水友哉,
Xi Deng,
肖鋒.
BVD 原理に基づいた高精度衝撃波捕獲スキームの開発,
ながれ: 日本流体力学会誌,
38,
2,
101-104,
Apr. 2019.
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X. Deng,
B. Xie,
H. Teng,
F. Xiao.
High resolution multi-moment finite volume method for supersonic combustion on unstructured grids,
Applied Mathematical Modelling,
66,
404-423,
Feb. 2019.
公式リンク
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Peng Jin,
Xi Deng,
Feng Xiao.
An ALE formulation for compressible flows based on multi-moment finite volume method,
Engineering Applications of Computational Fluid Mechanics,
Vol. 12,
pp. 791-809,
Oct. 2018.
国際会議発表 (査読有り)
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B. Xie,
X. Deng,
P. Jin,
F. Xiao.
Some new advanced numerical methods on unstructured grids: basic formulations and verifications,
11th Asian Computational Fluid Dynamics conference (ACFD11), Sept. 16-20, 2016, Dalian, China,
Sept. 2016.
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X. Deng,
B. Xie,
F. Xiao.
Development of accurate and robust multi-moment based compressible solvers on hybrid unstructured grids,
11th Asian Computational Fluid Dynamics conference (ACFD11), Sept. 16-20, 2016, Dalian, China,
Sept. 2016.
国際会議発表 (査読なし・不明)
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F. Xiao,
X. Deng.
A New Paradigm to Design High-Fidelity Finite Volume Method for Resolving Both Smooth and Discontinuous Flow Structures,
14th World Congress on Computational Mechanics (WCCM XIV) and ECCOMAS Congress 2020-Online,
Jan. 2021.
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S. Tann,
X. Deng,
Y. Shimizu,
R. Loubere,
F. Xiao.
Solution property preserving method for Euler equations: a BVD/MOOD approach,
SHARK-FV 2019 conference (Sharing Higher-order Advanced Know-how on Finite Volume) conferences,
May 2019.
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X.L. Li,
C.G. Chen,
X. Deng,
X.S. Shen,
F. Xiao.
Development of oscillation-less nonhydrostatic atmospheric model by multimoment constrained finite volume method,
The workshop on partial differential equations on the sphere (PDEs on the sphere 2019),
Apr. 2019.
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F. Xiao,
X. Deng.
Boundary Variation Diminishing (BVD) Principle: A New Guideline to Design High-Fidelity Numerical Schemes for Complex Flow Simulations,
Taiwan-Japan Workshop on Mechanical and Aerospace Engineering,
Oct. 2018.
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S. Tann,
X. Deng,
R. Loubère,
F. Xiao.
High-Order Finite Volume Method for Hyperbolic Systems: MOOD and THINC Method,
The 2nd International Conference on Mechanics (2018) / The 12th Asian Computational Fluid Dynamics Conference (2018),
Oct. 2018.
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J. Jin,
X. Deng,
Abe Y.,
F. Xiao.
Effects of uncertainty in bubble density on flow structures in shock-bubble interaction,
The 9th International Conference on Computational Methods (ICCM2018),
Aug. 2018.
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X. Deng,
B. Xie,
R. Loubere,
F. Xiao.
Limiting-Free Discontinuity Capturing Schemes for Compressible Multi-components Flow,
SHARK-FV 2018 conference (Sharing Higher-order Advanced Know-how on Finite Volume) conferences,
May 2018.
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P. Jin,
B. Xie,
X. Deng,
F. Xiao.
Numerical model for moving interfacial flows using multimoment finite volume method,
2017 Engineering Mechanics Institute (EMI) Conference,
June 2017.
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X. Deng,
B. Xie,
P. Jin,
F. Xiao.
Novel numerical models for multicomponent phase compressible flows with moving interfaces and chemical reactions,
2017 Engineering Mechanics Institute (EMI) Conference,
June 2017.
国内会議発表 (査読なし・不明)
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脇村 尋,
Deng Xi,
阿部 圭晃,
肖 鋒.
BVD原理に基づくβ可変THINC法による衝撃波捕獲スキーム,
第34回数値流体力学シンポジウム(オンライン),
Dec. 2020.
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清水友哉,
Deng Xi,
肖 鋒.
BVD原理に基づいた高精度衝撃波捕獲スキームの開発,
第32回数値流体力学シンポジウム,
Dec. 2018.
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DENG XI,
肖 鋒.
BVDを用いた不連続捕獲法による圧縮性多相流シミュレーション,
第31回数値流体力学シンポジウム,
Dec. 2017.
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JIN PENG,
DENG XI,
肖 鋒.
マルチモメント有限体積法に基づくオイラー方程式のALE定式化,
第31回数値流体力学シンポジウム,
Dec. 2017.
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ジン ジョンフン,
Deng Xi,
阿部圭晃,
肖 鋒.
衝撃波・気泡干渉における気泡内部密度の不確かさに対する定量評価,
第31回数値流体力学シンポジウム,
Dec. 2017.
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DENG XI,
謝 彬,
肖 鋒.
マルチ・モーメント有限体積法を用いた圧縮性多成分流計算モデル,
第30回数値流体力学シンポジウム, 東京, 2016 年12月,
Dec. 2016.
学位論文
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High-fidelity Numerical Model for Compressible Multi-component Flow,
Thesis,
Doctor (Science),
Tokyo Institute of Technology,
2018/09/20,
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High-fidelity Numerical Model for Compressible Multi-component Flow,
Exam Summary,
Doctor (Science),
Tokyo Institute of Technology,
2018/09/20,
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High-fidelity Numerical Model for Compressible Multi-component Flow,
Summary,
Doctor (Science),
Tokyo Institute of Technology,
2018/09/20,
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