Maxim Olshanskii

Maxim Olshanskii

University of Houston

H-index: 42

North America-United States

About Maxim Olshanskii

Maxim Olshanskii, With an exceptional h-index of 42 and a recent h-index of 26 (since 2020), a distinguished researcher at University of Houston, specializes in the field of Computational mathematics, Numerical analysis, Scientific computing.

His recent articles reflect a diverse array of research interests and contributions to the field:

A conservative Eulerian finite element method for transport and diffusion in moving domains

Fusogenicity of cationic liposomes with phase-separating multicomponent lipid compositions

An Eulerian finite element method for the linearized Navier–Stokes problem in an evolving domain

Local conservation laws of continuous Galerkin method for the incompressible Navier–Stokes equations in EMAC form

A CutFEM divergence--free discretization for the Stokes problem

An adaptive stabilized trace finite element method for surface PDEs

An Eulerian finite element method for tangential Navier-Stokes equations on evolving surfaces

On fusogenicity of positively charged phased-separated lipid vesicles: experiments and computational simulations

Maxim Olshanskii Information

University

Position

Professor of Mathematics

Citations(all)

5369

Citations(since 2020)

2373

Cited By

4062

hIndex(all)

42

hIndex(since 2020)

26

i10Index(all)

99

i10Index(since 2020)

71

Email

University Profile Page

University of Houston

Google Scholar

View Google Scholar Profile

Maxim Olshanskii Skills & Research Interests

Computational mathematics

Numerical analysis

Scientific computing

Top articles of Maxim Olshanskii

Title

Journal

Author(s)

Publication Date

A conservative Eulerian finite element method for transport and diffusion in moving domains

arXiv preprint arXiv:2404.07130

Maxim Olshanskii

Henry von Wahl

2024/4/10

Fusogenicity of cationic liposomes with phase-separating multicomponent lipid compositions

Biophysical Journal

Yifei Wang

Yerbol Palzhanov

Dang Dang

Annalisa Quaini

Maxim Olshanskii

...

2024/2/8

An Eulerian finite element method for the linearized Navier–Stokes problem in an evolving domain

IMA Journal of Numerical Analysis

Michael Neilan

Maxim Olshanskii

2024/1/29

Local conservation laws of continuous Galerkin method for the incompressible Navier–Stokes equations in EMAC form

Computer Methods in Applied Mechanics and Engineering

Maxim A Olshanskii

Leo G Rebholz

2024/1/5

A CutFEM divergence--free discretization for the Stokes problem

ESAIM: Mathematical Modelling and Numerical Analysis

Haoran Liu

Michael Neilan

Maxim Olshanskii

2023/1/12

An adaptive stabilized trace finite element method for surface PDEs

arXiv preprint arXiv:2310.03089

Timo Heister

Maxim A Olshanskii

Vladimir Yushutin

2023/10/4

An Eulerian finite element method for tangential Navier-Stokes equations on evolving surfaces

Mathematics of Computation

Maxim Olshanskii

Arnold Reusken

Paul Schwering

2023

On fusogenicity of positively charged phased-separated lipid vesicles: experiments and computational simulations

Biomolecules

Yifei Wang

Yerbol Palzhanov

Dang T Dang

Annalisa Quaini

Maxim Olshanskii

...

2023/9/30

A scalar auxiliary variable unfitted FEM for the surface Cahn-Hilliard equation

Journal of Scientific Computing

Maxim Olshanskii

Yerbol Palzhanov

Annalisa Quaini

2023/8/20

On equilibrium states of fluid membranes

Physics of Fluids

Maxim A Olshanskii

2023/6

Tensorial parametric model order reduction of nonlinear dynamical systems

arXiv preprint arXiv:2302.08490

Alexander V Mamonov

Maxim A Olshanskii

2023/2/16

Analysis of a tensor POD-ROM for parameter dependent parabolic problems

arXiv preprint arXiv:2311.07883

Alexander V Mamonov

Maxim A Olshanskii

2023/11/14

A finite element scheme for the numerical solution of the Navier–Stokes/Biot coupled problem

Russian Journal of Numerical Analysis and Mathematical Modelling

A. Lozovskiy

M. A. Olshanskii

Yu. V. Vassilevski

2022/6

Interpolatory tensorial reduced order models for parametric dynamical systems

Computer Methods in Applied Mechanics and Engineering

Alexander V Mamonov

Maxim A Olshanskii

2022/5/28

A finite element method for two-phase flow with material viscous interface

Computational Methods in Applied Mathematics

Maxim Olshanskii

Annalisa Quaini

Qi Sun

2022/4/1

Tangential Navier-Stokes equations on evolving surfaces: Analysis and simulations

Mathematical Models and Methods in Applied Sciences

Maxim A Olshanskii

Arnold Reusken

Alexander Zhiliakov

2022/12/23

Recycling augmented Lagrangian preconditioner in an incompressible fluid solver

Numerical Linear Algebra with Applications

Maxim A Olshanskii

Alexander Zhiliakov

2022/3

A comparison of Cahn–Hilliard and Navier–Stokes–Cahn–Hilliard models on manifolds

Vietnam Journal of Mathematics

Maxim Olshanskii

Yerbol Palzhanov

Annalisa Quaini

2022/10

Lipid domain coarsening and fluidity in multicomponent lipid vesicles: A continuum based model and its experimental validation

Biochimica et Biophysica Acta (BBA)-Biomembranes

Y Wang

Y Palzhanov

A Quaini

M Olshanskii

S Majd

2022/7/1

An unfitted finite element method for two-phase Stokes problems with slip between phases

Journal of Scientific Computing

Maxim Olshanskii

Annalisa Quaini

Qi Sun

2021/10/9

See List of Professors in Maxim Olshanskii University(University of Houston)

Co-Authors

H-index: 53
Michele Benzi

Michele Benzi

Scuola Normale Superiore di Pisa

H-index: 34
Leo Rebholz

Leo Rebholz

Clemson University

H-index: 33
Gert Lube sr.

Gert Lube sr.

Georg-August-Universität Göttingen

H-index: 28
Timo Heister

Timo Heister

Clemson University

H-index: 24
Annalisa Quaini

Annalisa Quaini

University of Houston

H-index: 16
Sheereen Majd

Sheereen Majd

University of Houston

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