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  1. 学位論文
  2. 博士論文
  3. 学位授与年月日:2015.09.24

移動格子有限体積法の展開と応用に関する研究

http://hdl.handle.net/10212/2283
http://hdl.handle.net/10212/2283
ad771e80-ec38-423e-a6a7-adc2ce1342a5
名前 / ファイル ライセンス アクション
D1-0760_h1.pdf 全文 (73.9 MB)
D1-0760.pdf 内容・審査結果の要旨 (319.2 KB)
Item type 学位論文 / Thesis or Dissertation(1)
公開日 2017-07-04
タイトル
タイトル 移動格子有限体積法の展開と応用に関する研究
言語 ja
その他のタイトル
その他のタイトル Study on Development and Applications of Moving-Grid Fininte-Volume Method
言語 en
作成者 井ノ本, 健

× 井ノ本, 健

ja 井ノ本, 健

ja-Kana イノモト, タケシ

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アクセス権
アクセス権 open access
アクセス権URI http://purl.org/coar/access_right/c_abf2
主題
言語 en
主題Scheme Other
主題 Computational Fluid Dynamics
主題
言語 en
主題Scheme Other
主題 Finite Volume Method
主題
言語 en
主題Scheme Other
主題 Incompressible Flows
主題
言語 en
主題Scheme Other
主題 Fluid-Body Interaction
主題
言語 en
主題Scheme Other
主題 Neural Network
内容記述
内容記述タイプ Abstract
内容記述 In this paper, the Moving-Grid Finite-Volume Method (MGFVM) has been developed and has been applied to various flow problems. The MGFVM is the numerical method suitable for simulations of an unsteady flow driven by moving boundary, such as a body moving in a fluid. The MGFVM is a finite-volume method constructed based on a four-dimensional control-volume in the space and time unified domain (x, y, z, t); therefore, the method satisfies automatically both geometric conservation laws (GCL) and physical conservation laws simultaneously. Three kinds of developments of the MGFVM have been performed in this paper. Firstly, the MGFVM has been extended to unstructured grid system. For compressible flows, it has been developed on both structured grid system and unstructured grid system. For incompressible flows, however, it has been developed on only structured grid system. Thus, in this paper, the detailed formulation of the MGFVM for incompressible flows on unstructured grid system has been described and it has been validated using test problems. Secondly, the MGFVM has been applied to the simulation of fluid-body interaction. As is well known, “Digital Flight” is a recent grand challenge in the research field of computational fluid dynamics. In this paper, as a one of the approaches to the Digital Flight, the simulation procedure of fluid-body interaction using the MGFVM is presented. The MGFVM for fluid-flow solver, the Forward-Euler finite-difference scheme for body-motion solver and the Quaternion for representation of body-rotation are combined in order to solve the system of the fluid-body interaction in the procedure. The approach has been applied to a floating motion of “Fukidama”, a flying motion of “Boomerang”, a fall motion of “Parachute” and a swimming motion of “Jelly-fish”. The results have shown excellent agreement with experimental data. Finally, in order to refine a resolution of flow solutions at discontinuity existing in flow field, a “Neural network” approach has been combined with the MGFVM. The neural network is a system of programs that simulates the operation of the human brain. In this paper, an adaptive mesh refinement has been implemented using the information of the flow discontinuities such as shock wave detected by the neural network of spatiotemporal visual processing. The results have shown good improvement of the resolution at the discontinuities.
言語 en
日付
日付 2015-09-24
日付タイプ Issued
言語
言語 jpn
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_db06
資源タイプ doctoral thesis
出版タイプ
出版タイプ VoR
出版タイプResource http://purl.org/coar/version/c_970fb48d4fbd8a85
学位授与番号
学位授与番号 甲第760号
学位名
言語 ja
学位名 博士(工学)
学位授与年月日
学位授与年月日 2015-09-24
学位授与機関
学位授与機関識別子Scheme kakenhi
学位授与機関識別子 14303
言語 ja
学位授与機関名 京都工芸繊維大学
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