High-resolution numerical simulations of electrophoresis using the Fourier pseudo-spectral method

被引:8
|
作者
Gupta, Prateek [1 ]
Bahga, Supreet Singh [2 ]
机构
[1] Swiss Fed Inst Technol, Dept Mech & Proc Engn, CH-8092 Zurich, Switzerland
[2] Indian Inst Technol Delhi, Dept Mech Engn, New Delhi, India
关键词
High‐ resolution; Nonlinear electrophoresis; Pseudo‐ spectral method; Simulations; DYNAMIC COMPUTER-SIMULATIONS; CAPILLARY-ELECTROPHORESIS; IONIC-STRENGTH; STACKING; SEPARATIONS; IMPACT;
D O I
10.1002/elps.202000259
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
We present the formulation, implementation, and performance evaluation of the Fourier pseudo-spectral method for performing fast and accurate simulations of electrophoresis. We demonstrate the applicability of this method for simulating a wide variety of electrophoretic processes such as capillary zone electrophoresis, transient-isotachophoresis, field amplified sample stacking, and oscillating electrolytes. Through these simulations, we show that the Fourier pseudo-spectral method yields accurate and stable solutions on coarser computational grids compared with other nondissipative spatial discretization schemes. Moreover, due to the use of coarser grids, the Fourier pseudo-spectral method requires lower computational time to achieve the same degree of accuracy. We have demonstrated the application of the Fourier pseudo-spectral method for simulating realistic electrophoresis problems with current densities as high as 5000 A/m(2) with over tenfold speed-up compared to the commonly used second-order central difference scheme, to achieve a given degree of accuracy. The Fourier pseudo-spectral method is also suitable for simulating electrophoretic processes involving a large number of concentration gradients, which render the adaptive grid-refinement techniques ineffective. We have integrated the numerical scheme in a new electrophoresis simulator named SPYCE, which we offer to the community as open-source code.
引用
收藏
页码:890 / 898
页数:9
相关论文
共 50 条
  • [1] Electrophoresis simulations using Chebyshev pseudo-spectral method on a moving mesh
    Bahga, Supreet Singh
    Gupta, Prateek
    ELECTROPHORESIS, 2022, 43 (5-6) : 688 - 695
  • [2] Numerical simulations of falling leaves using a pseudo-spectral method with volume penalization
    Dmitry Kolomenskiy
    Kai Schneider
    Theoretical and Computational Fluid Dynamics, 2010, 24 : 169 - 173
  • [3] Numerical simulations of falling leaves using a pseudo-spectral method with volume penalization
    Kolomenskiy, Dmitry
    Schneider, Kai
    THEORETICAL AND COMPUTATIONAL FLUID DYNAMICS, 2010, 24 (1-4) : 169 - 173
  • [4] THE FOURIER PSEUDO-SPECTRAL METHOD FOR THE SRLW EQUATION
    郑家栋
    张汝芬
    郭本瑜
    Applied Mathematics and Mechanics(English Edition), 1989, (09) : 843 - 852
  • [5] Numerical Solution of Electrodynamic Flow by Using Pseudo-spectral Collocation Method
    Rostamy D.
    Karimi K.
    Zabihi F.
    Alipour M.
    Vietnam Journal of Mathematics, 2013, 41 (1) : 43 - 49
  • [6] Mitigation of numerical asymmetries induced by Cartesian meshes with pseudo-spectral method in hydrodynamics simulations
    Yu, Xin
    Hu, Ronghao
    Zhou, Hao
    Zhang, Zhihao
    Lv, Meng
    EUROPEAN PHYSICAL JOURNAL-SPECIAL TOPICS, 2025,
  • [7] Numerical validation of the volume penalization method in three-dimensional pseudo-spectral simulations
    Jause-Labert, C.
    Godeferd, F. S.
    Favier, B.
    COMPUTERS & FLUIDS, 2012, 67 : 41 - 56
  • [8] A conservative Fourier pseudo-spectral method for the nonlinear Schrodinger equation
    Gong, Yuezheng
    Wang, Qi
    Wang, Yushun
    Cai, Jiaxiang
    JOURNAL OF COMPUTATIONAL PHYSICS, 2017, 328 : 354 - 370
  • [9] Muntz pseudo-spectral method: Theory and numerical experiments
    Khosravian-Arab, Hassan
    Eslahchi, M. R.
    COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION, 2021, 93
  • [10] The numerical analysis of the fKdV based on the pseudo-spectral method
    Wang, Songling
    Wu, Zhengren
    Cheng, Youliang
    CMESM 2006: PROCEEDINGS OF THE 1ST INTERNATIONAL CONFERENCE ON ENHANCEMENT AND PROMOTION OF COMPUTATIONAL METHODS IN ENGINEERING SCIENCE AND MECHANICS, 2006, : 506 - 510