Jacob R West

Jacob R West

Stanford University

H-index: 5

North America-United States

About Jacob R West

Jacob R West, With an exceptional h-index of 5 and a recent h-index of 5 (since 2020), a distinguished researcher at Stanford University, specializes in the field of multi-phase flow, particle-laden flow, high order numerical methods, high-performance computing, wind energy.

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

Clustering, rotation, and swirl of inertial particles in turbulent channel flow

Synthesizing inertial particle distribution in isotropic turbulence using neural networks

Synthesis of preferential concentration of particles in isotropic turbulence using neural networks

Assessment of diffuse-interface methods for compressible multiphase fluid flows and elastic-plastic deformation in solids

Flow Physics of Radiatively Heated Particle-Laden Channel Flow and Simulation Methods for Shock-Driven Problems in Materials with Strength

A high-order, localized artificial diffusivity method for Eulerian simulation of multi-material elastic-plastic deformation with strain hardening

Neural network models for preferential concentration of particles in two-dimensional turbulence

Compact Finite Difference based Framework for Large Scale Simulations of Compressible Turbulent Flows

Jacob R West Information

University

Position

___

Citations(all)

58

Citations(since 2020)

58

Cited By

5

hIndex(all)

5

hIndex(since 2020)

5

i10Index(all)

2

i10Index(since 2020)

2

Email

University Profile Page

Google Scholar

Jacob R West Skills & Research Interests

multi-phase flow

particle-laden flow

high order numerical methods

high-performance computing

wind energy

Top articles of Jacob R West

Clustering, rotation, and swirl of inertial particles in turbulent channel flow

International Journal of Multiphase Flow

2024/2/13

Synthesizing inertial particle distribution in isotropic turbulence using neural networks

Bulletin of the American Physical Society

2023/11/20

Synthesis of preferential concentration of particles in isotropic turbulence using neural networks

2023/9/4

Assessment of diffuse-interface methods for compressible multiphase fluid flows and elastic-plastic deformation in solids

Journal of Computational Physics

2023/2/15

Flow Physics of Radiatively Heated Particle-Laden Channel Flow and Simulation Methods for Shock-Driven Problems in Materials with Strength

2023

A high-order, localized artificial diffusivity method for Eulerian simulation of multi-material elastic-plastic deformation with strain hardening

2023

Jacob R West
Jacob R West

H-Index: 1

Neural network models for preferential concentration of particles in two-dimensional turbulence

arXiv preprint arXiv:2312.14829

2023/12/22

Compact Finite Difference based Framework for Large Scale Simulations of Compressible Turbulent Flows

Bulletin of the American Physical Society

2022/11/21

Scale-dependent divergence of inertial particle velocity in isotropic turbulence

Bulletin of the American Physical Society

2022/11/21

Physics-informed neural networks for synthesizing preferential concentration of particles in turbulent flows

Bulletin of the American Physical Society

2022/11/20

On divergence, curl, and helicity of the inertial particle velocity in a 4-way coupled channel flow

Bulletin of the American Physical Society

2022/11/20

Scalable Parallel Linear Solver for Compact Banded Systems on Heterogeneous Architectures

Journal of Computational Physics

2022/11/1

Divergence and curl of the inertial particle velocity in a four-way coupled turbulent channel flow

Center for Turbulence Research, Proceedings of the Summer Program 2022

2022

Multiresolution analysis of inertial particle tessellations for clustering dynamics

Center for Turbulence Research, Proceedings of the Summer Program 2022

2022

Robust high-resolution simulations of compressible turbulent flows without filtering

2022

Differential operators for high-rank tensors in cylindrical and spherical coordinates

Center for Turbulence Research Annual Research Briefs

2021

Deep Learning for Physics Discovery Winter 2021

2021

Toward a Mean Velocity Scaling in Variable Property Particle-Laden Channel Flow

APS Division of Fluid Dynamics Meeting Abstracts

2020

High-order methods for plastic deformation in multi-material Richtmyer-Meshkov instabilities

APS Division of Fluid Dynamics Meeting Abstracts

2020

Wind Turbine Performance in Very Large Wind Farms: Betz Analysis Revisited

Energies

2020/3/1

Jacob R West
Jacob R West

H-Index: 1

See List of Professors in Jacob R West University(Stanford University)

Co-Authors

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