Philip Marcus

Philip Marcus

University of California, Berkeley

H-index: 38

North America-United States

About Philip Marcus

Philip Marcus, With an exceptional h-index of 38 and a recent h-index of 22 (since 2020), a distinguished researcher at University of California, Berkeley, specializes in the field of Fluid dynamics, Jupiter, Computational Fluids, Numerics, Physics.

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

Bayesian-Optimized Riblet Surface Design for Turbulent Drag Reduction via Design-by-Morphing with Large Eddy Simulation

Stable three-dimensional vortex families consistent with Jovian observations including the Great Red Spot

Transient growth of a wake vortex and its initiation via inertial particles

Triadic resonance in columnar vortices

Stable 3-dimensional Vortex Families Consistent with Jovian Observations Including the Great Red Spot

Numerical Study of Stable Planetary Three-dimensional Vortices with a Hollow Vorticity Core

Oscillations of Jupiter's Great Red Spot

Investigation of Triggering Vortex Instabilities with Inertial Particles

Philip Marcus Information

University

Position

Professor of Mechanical Engineering

Citations(all)

5222

Citations(since 2020)

1776

Cited By

4099

hIndex(all)

38

hIndex(since 2020)

22

i10Index(all)

73

i10Index(since 2020)

48

Email

University Profile Page

University of California, Berkeley

Google Scholar

View Google Scholar Profile

Philip Marcus Skills & Research Interests

Fluid dynamics

Jupiter

Computational Fluids

Numerics

Physics

Top articles of Philip Marcus

Title

Journal

Author(s)

Publication Date

Bayesian-Optimized Riblet Surface Design for Turbulent Drag Reduction via Design-by-Morphing with Large Eddy Simulation

Journal of Mechanical Design

Dahyun D Lim

Grace X Gu

Philip S Marcus

2024/8/1

Stable three-dimensional vortex families consistent with Jovian observations including the Great Red Spot

Journal of Fluid Mechanics

Aidi Zhang

Philip S Marcus

2024/4

Transient growth of a wake vortex and its initiation via inertial particles

arXiv preprint arXiv:2402.07469

Sangjoon Lee

Philip S Marcus

2024/2/12

Triadic resonance in columnar vortices

arXiv preprint arXiv:2402.05287

Jinge Wang

Sangjoon Lee

Philip S Marcus

2024/2/7

Stable 3-dimensional Vortex Families Consistent with Jovian Observations Including the Great Red Spot

arXiv preprint arXiv:2310.01435

Aidi Zhang

Philip S Marcus

2023/9/30

Numerical Study of Stable Planetary Three-dimensional Vortices with a Hollow Vorticity Core

Bulletin of the American Physical Society

Aidi Zhang

Philip Marcus

2023/11/21

Oscillations of Jupiter's Great Red Spot

HST Proposal

Amy Simon

Patrick Irwin

Philip S Marcus

Michael H Wong

2023/8

Investigation of Triggering Vortex Instabilities with Inertial Particles

Bulletin of the American Physical Society

Sangjoon Lee

Philip Marcus

2023/11/21

Airfoil optimization using design-by-morphing

Journal of Computational Design and Engineering

Haris Moazam Sheikh

Sangjoon Lee

Jinge Wang

Philip S Marcus

2023/8

Nonlinear Stability and Evolution of 3D Vortices in Rotating Stratified Flows

Bulletin of the American Physical Society

Haley Wohlever

Mani Mahdinia

Philip Marcus

2023/11/21

Linear stability analysis of wake vortices by a spectral method using mapped Legendre functions

Journal of Fluid Mechanics

Sangjoon Lee

Philip S Marcus

2023/7

Three-Wave Resonance in Neutrally Stable Wake Vortices

Bulletin of the American Physical Society

Jinge Wang

Sangjoon Lee

Philip Marcus

2023/11/21

The Big Effects of Small Vertical Velocities on the Structures of 3D Rapidly-Rotating, Stratified Planetary Vortices

Bulletin of the American Physical Society

Philip Marcus

Aidi Zhang

2023/11/20

Gravity Signatures of Stable, Equilibrial 3D Great Red Spot Solutions Consistent with Observed Cloud-Level Velocities

AGU Fall Meeting Abstracts

Aidi Zhang

Anton Ermakov

Philip S Marcus

2022/12

Optimization of the shape of a hydrokinetic turbine’s draft tube and hub assembly using Design-by-Morphing with Bayesian optimization

Computer Methods in Applied Mechanics and Engineering

Haris Moazam Sheikh

Tess A Callan

Kealan J Hennessy

Philip S Marcus

2022/11/1

Design-by-Morphing: A Shape Design Methodology for Fluid Machinery

Bulletin of the American Physical Society

Haris Moazam Sheikh

Philip Marcus

2022/11/22

Hydro-, magnetohydro-, and dust-gas dynamics of protoplanetary disks

arXiv preprint arXiv:2203.09821

G Lesur

B Ercolano

M Flock

M-K Lin

C-C Yang

...

2022/3/18

Hydrodynamic stability constraints on the three-dimensional structure of planetary vortices

Bulletin of the American Physical Society

Aidi Zhang

Philip Marcus

2022/11/21

Bayesian optimization for multi-objective mixed-variable problems

arXiv preprint arXiv:2201.12767

Haris Moazam Sheikh

Philip S Marcus

2022/1/30

A General Framework for Destabilizing Neutrally-Stable Flows Applied to Aircraft Wake Vortices

Bulletin of the American Physical Society

Philip Marcus

Jinge Wang

Sangjoon Lee

2022/11/21

See List of Professors in Philip Marcus University(University of California, Berkeley)