Matches in SemOpenAlex for { <https://semopenalex.org/work/W1755543340> ?p ?o ?g. }
- W1755543340 endingPage "477" @default.
- W1755543340 startingPage "443" @default.
- W1755543340 abstract "In this work we develop the Spectral Ewald Accelerated Stokesian Dynamics (SEASD), a novel computational method for dynamic simulations of polydisperse colloidal suspensions with full hydrodynamic interactions. SEASD is based on the framework of Stokesian Dynamics (SD) with extension to compressible solvents, and uses the Spectral Ewald (SE) method [Lindbo and Tornberg (2010) [29]] for the wave-space mobility computation. To meet the performance requirement of dynamic simulations, we use Graphic Processing Units (GPU) to evaluate the suspension mobility, and achieve an order of magnitude speedup compared to a CPU implementation. For further speedup, we develop a novel far-field block-diagonal preconditioner to reduce the far-field evaluations in the iterative solver, and SEASD-nf, a polydisperse extension of the mean-field Brownian approximation of Banchio and Brady (2003) [39]. We extensively discuss implementation and parameter selection strategies in SEASD, and demonstrate the spectral accuracy in the mobility evaluation and the overall O(NlogN) computation scaling. We present three computational examples to further validate SEASD and SEASD-nf in monodisperse and bidisperse suspensions: the short-time transport properties, the equilibrium osmotic pressure and viscoelastic moduli, and the steady shear Brownian rheology. Our validation results show that the agreement between SEASD and SEASD-nf is satisfactory over a wide range of parameters, and also provide significant insight into the dynamics of polydisperse colloidal suspensions." @default.
- W1755543340 created "2016-06-24" @default.
- W1755543340 creator A5027454138 @default.
- W1755543340 creator A5077153793 @default.
- W1755543340 date "2016-02-01" @default.
- W1755543340 modified "2023-10-17" @default.
- W1755543340 title "Spectral Ewald Acceleration of Stokesian Dynamics for polydisperse suspensions" @default.
- W1755543340 cites W1964310563 @default.
- W1755543340 cites W1965536543 @default.
- W1755543340 cites W1982590825 @default.
- W1755543340 cites W1985699376 @default.
- W1755543340 cites W1987550818 @default.
- W1755543340 cites W1989925383 @default.
- W1755543340 cites W1990703786 @default.
- W1755543340 cites W1991541122 @default.
- W1755543340 cites W1992470331 @default.
- W1755543340 cites W1994778680 @default.
- W1755543340 cites W2000523053 @default.
- W1755543340 cites W2005786611 @default.
- W1755543340 cites W2010552302 @default.
- W1755543340 cites W2011538418 @default.
- W1755543340 cites W2011601475 @default.
- W1755543340 cites W2012300893 @default.
- W1755543340 cites W2014030356 @default.
- W1755543340 cites W2015145365 @default.
- W1755543340 cites W2015300342 @default.
- W1755543340 cites W2017239110 @default.
- W1755543340 cites W2018939093 @default.
- W1755543340 cites W2019449048 @default.
- W1755543340 cites W2019602084 @default.
- W1755543340 cites W2019828255 @default.
- W1755543340 cites W2020869169 @default.
- W1755543340 cites W2022319790 @default.
- W1755543340 cites W2027297152 @default.
- W1755543340 cites W2031007157 @default.
- W1755543340 cites W2031824380 @default.
- W1755543340 cites W2034030365 @default.
- W1755543340 cites W2035189766 @default.
- W1755543340 cites W2035315547 @default.
- W1755543340 cites W2035687084 @default.
- W1755543340 cites W2037125356 @default.
- W1755543340 cites W2039421507 @default.
- W1755543340 cites W2040106743 @default.
- W1755543340 cites W2046663303 @default.
- W1755543340 cites W2046899254 @default.
- W1755543340 cites W2048287745 @default.
- W1755543340 cites W2054717212 @default.
- W1755543340 cites W2057250195 @default.
- W1755543340 cites W2057439276 @default.
- W1755543340 cites W2057934631 @default.
- W1755543340 cites W2058394563 @default.
- W1755543340 cites W2066405794 @default.
- W1755543340 cites W2067174909 @default.
- W1755543340 cites W2068693163 @default.
- W1755543340 cites W2069988675 @default.
- W1755543340 cites W2072671781 @default.
- W1755543340 cites W2074507470 @default.
- W1755543340 cites W2075204111 @default.
- W1755543340 cites W2077217208 @default.
- W1755543340 cites W2077754885 @default.
- W1755543340 cites W2078472083 @default.
- W1755543340 cites W2078998239 @default.
- W1755543340 cites W2080301500 @default.
- W1755543340 cites W2080977367 @default.
- W1755543340 cites W2082177420 @default.
- W1755543340 cites W2083206954 @default.
- W1755543340 cites W2084886165 @default.
- W1755543340 cites W2085012246 @default.
- W1755543340 cites W2087404487 @default.
- W1755543340 cites W2088277041 @default.
- W1755543340 cites W2091980176 @default.
- W1755543340 cites W2093310284 @default.
- W1755543340 cites W2094883211 @default.
- W1755543340 cites W2103940991 @default.
- W1755543340 cites W2104242257 @default.
- W1755543340 cites W2104547497 @default.
- W1755543340 cites W2107212848 @default.
- W1755543340 cites W2107450174 @default.
- W1755543340 cites W2111432411 @default.
- W1755543340 cites W2125454707 @default.
- W1755543340 cites W2127296964 @default.
- W1755543340 cites W2132691787 @default.
- W1755543340 cites W2158160784 @default.
- W1755543340 cites W2159044575 @default.
- W1755543340 cites W2161534633 @default.
- W1755543340 cites W2322610416 @default.
- W1755543340 cites W3098444613 @default.
- W1755543340 cites W3203318334 @default.
- W1755543340 doi "https://doi.org/10.1016/j.jcp.2015.11.042" @default.
- W1755543340 hasPublicationYear "2016" @default.
- W1755543340 type Work @default.
- W1755543340 sameAs 1755543340 @default.
- W1755543340 citedByCount "47" @default.
- W1755543340 countsByYear W17555433402015 @default.
- W1755543340 countsByYear W17555433402016 @default.
- W1755543340 countsByYear W17555433402017 @default.
- W1755543340 countsByYear W17555433402018 @default.
- W1755543340 countsByYear W17555433402019 @default.