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#norelated
* FrontPage [#qb249ac2]
#author("2019-04-22T21:51:38+09:00","default:mss","mss")
//#analog
//#logparanoia()

このページは、ページを指定しない時に表示されます。
''This HP is obsolete. The latest KAPSEL is available  from [[here:http://www-tph.cheme.kyoto-u.ac.jp/kapsel/]]''
* Welcome to KAPSEL Homepage [#n741182e]

あなたのサイトに合わせ、自由に編集してください :) ((安易なSPAMやいたずらを防止するため、テーマや目的などの説明を加えた後、忘れずに凍結して下さい。パスワードの変更もお忘れなく!))
''= Open  Software for Direct Numerical Simulations of Particle Dispersions =''

[[&ref(single.jpg,,220x220);>Re01]]  [[&ref(shear_dc_s.jpg,,220x220);>Re04]]  [[&ref(127.jpg,,150x220);>Re02]]

** 練習ページ [#if72ced0]
- [[SandBox]] -- 編集をお試しください
- [[InterWikiSandBox]] -- [[InterWiki]]を試してみてください
&color(white){____};''Electro-Hydrodynamics''&color(white){________________};''Rheology''&color(white){________________________};''Micro-Fluidics''

** What is KAPSEL? [#bf9cb83a]
- ''KAPSEL'' means "''K''yoto ''A''dvanced ''P''article ''S''imulator for ''El''ectro-hydrodynamics" based on a direct numerical simulation method for colloidal dispersions called ''SPM'' (''S''moothed ''P''rofile ''M''ethod). KAPSEL is designed to simulate dynamics of solid particles dispersed in simple and complex fluids. KAPSEL enables us to simulate complex rheological properties of colloidal dispersions, electrophoresis of charged colloids, etc.

** PukiWikiについて [#c2af49f4]
- ''KAPSEL-2'' is the latest version of KAPSEL. It can introduce thermal fluctuations to the system and also perform rheology simulations under steady or oscillatory shear flow being fully compatible with usual periodic boundary condition. Computational  efficiency is also much improved from the original version so that one can simulate larger systems.&br;

- [[PukiWiki]] -- PukiWikiのご紹介
- ''KAPSEL'' is a software free to use. To download and use KAPSEL, one must agree with the "&ref(License.pdf,,License agreement of KAPSEL);".

*** ドキュメント [#o366701b]
- [[ヘルプ>Help]] -- PukiWikiで編集するには?
- [[テキスト整形のルール(詳細版)>FormattingRules]]
- [[プラグインマニュアル>PukiWiki/1.4/Manual/Plugin]]
** NEWS [#cbd4c217]

- ''KAPSEL-2''
-- [30 Mar 2011]
KAPSEL-2.10 release (newly implemented the Lees-Edwards sheared periodic boundary condition)

//-- [25 Aug 2009] [[''Click here''>Re01]] to see electrophoresis of binary (+/-) charged colloidals (&color(red){''5,000+5,000''}; particles with full many-body electrostatic and hydrodynamic interactions).

//-- [19 Aug 2009] [[''Click here''>Re02]] to see  of &color(red){''100,000 particles''}; with HI.

-- [19 Aug 2009]
KAPSEL-2.00 release

-- [04 Aug 2009]
KAPSEL-2.beta pre-release

-- [10 Aug 2009]
[[KAPSEL Homepage>FrontPage]] renewal open.

- ''KAPSEL''
-- [19 Jan 2007]
[[English manual (for KAPSEL version 1):http://www.kona.or.jp/search/24_167.pdf]] published on-line.

-- [31 May 2006]
KAPSEL released.

** Related Papers [#e8445791]

- ''Simulation method & algorithm''
-- Yasuya Nakayama, Kang Kim and Ryoichi Yamamoto, "Simulating (electro) hydrodynamic effects in colloidal dispersions: smoothed profile method",&br;
[[Eur. Phys. J. E, 26, 361-368 (2008):http://www.springerlink.com/content/p450786m816x6473/]]. 

-- T. Iwashita, Y. Nakayama, and R. Yamamoto, "A numerical model for Brownian particles fluctuating in incompressible fluids",&br;
[[J. Phys. Soc. Jpn., 77, 074007 (2008):http://jpsj.ipap.jp/link?JPSJ/77/074007/]]. 

-- H. Kobayashi and R. Yamamoto,
"Implementation of Lees-Edwards periodic boundary conditions for direct numerical simulations of particle dispersions under shear flow",&br;
J. Chem. Phys., 134, 064110 (2011)   
"[[doi>:http://dx.doi.org/doi:10.1063/1.3537974]]"

-- Saeed Jafari, Ryoichi Yamamoto, and Mohamad Rahnama
"Lattice-Boltzmann method combined with smoothed-profile method for particulate suspensions",&br;
Phys. Rev. E, 83, 026702 (2011)  
"[[doi>:http://dx.doi.org/10.1103/PhysRevE.83.026702]]"


- ''Diffusion in incompressible fluid''
-- T. Iwashita and R. Yamamoto, "Short-time motion of Brownian particles in a shear flow", &br;
[[Phys. Rev. E, 79, 031401 (2009):http://link.aps.org/doi/10.1103/PhysRevE.79.031401]].

- ''Electrophoresis''
-- K. Kim, Y. Nakayama, and R. Yamamoto, "Direct Numerical Simulations of Electrophoresis of Charged Colloids",&br;
[[Phys. Rev. Lett., 96, 208306 (2006):http://link.aps.org/abstract/PRL/v96/e208302]].

- ''Colloids in liquid crystal''
-- R. Yamamoto, "Simulating particle dispersions in nematic liquid-crystal solvents",&br;
[[Phys. Rev. Lett., 87, 075502 (2001):http://link.aps.org/doi/10.1103/PhysRevLett.87.075502]].

--