Peter Schmid

Peter Schmid

Imperial College London

H-index: 50

Europe-United Kingdom

About Peter Schmid

Peter Schmid, With an exceptional h-index of 50 and a recent h-index of 36 (since 2020), a distinguished researcher at Imperial College London, specializes in the field of Computational Fluid Dynamics, Stability Theory, Flow Control, Quantitative Flow Analysis.

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

Life on the edge: subcritical pipe flow transition as a spectral submanifold

Dynamics-preserving compression for modal flow analysis

Input-Output turbulent flow models using Fourier Neural Operators

Transient growth in accelerating and decelerating laminar planar flows

Kinematic Decomposition of Multi-Pulse Shake-the-Box Particle Tracking Velocimetry Data

RONAALP: Reduced-Order Nonlinear Approximation with Active Learning Procedure

Mori-Zwanzig latent space Koopman closure for nonlinear autoencoder

Global stability analysis of an idealized compressor blade row. I. Single-blade passage analysis

Peter Schmid Information

University

Position

Chair of Applied Mathematics

Citations(all)

19833

Citations(since 2020)

10224

Cited By

13388

hIndex(all)

50

hIndex(since 2020)

36

i10Index(all)

125

i10Index(since 2020)

95

Email

University Profile Page

Google Scholar

Peter Schmid Skills & Research Interests

Computational Fluid Dynamics

Stability Theory

Flow Control

Quantitative Flow Analysis

Top articles of Peter Schmid

Life on the edge: subcritical pipe flow transition as a spectral submanifold

Journal of Fluid Mechanics

2024/3

Dynamics-preserving compression for modal flow analysis

Bulletin of the American Physical Society

2023/11/21

Peter Schmid
Peter Schmid

H-Index: 31

Input-Output turbulent flow models using Fourier Neural Operators

Bulletin of the American Physical Society

2023/11/20

Peter Schmid
Peter Schmid

H-Index: 31

Beverley Mckeon
Beverley Mckeon

H-Index: 30

Transient growth in accelerating and decelerating laminar planar flows

Bulletin of the American Physical Society

2023/11/20

Peter Schmid
Peter Schmid

H-Index: 31

Kunihiko Taira
Kunihiko Taira

H-Index: 24

Kinematic Decomposition of Multi-Pulse Shake-the-Box Particle Tracking Velocimetry Data

Bulletin of the American Physical Society

2023/11/20

RONAALP: Reduced-Order Nonlinear Approximation with Active Learning Procedure

arXiv preprint arXiv:2311.10550

2023/11/17

Mori-Zwanzig latent space Koopman closure for nonlinear autoencoder

arXiv preprint arXiv:2310.10745

2023/10/16

Global stability analysis of an idealized compressor blade row. I. Single-blade passage analysis

Physical Review Fluids

2023/10/11

Linear stability of Poiseuille flow over a steady spanwise Stokes layer

Physical Review Fluids

2023/10/9

Peter Schmid
Peter Schmid

H-Index: 31

Clustering of Dynamical Systems

arXiv preprint arXiv:2308.10864

2023/8/21

Data-driven framework for input/output lookup tables reduction: Application to hypersonic flows in chemical nonequilibrium

Physical Review Fluids

2023/2/9

Linear flow analysis inspired by mathematical methods from quantum mechanics

2023/1/19

On the laminar solutions and stability of accelerating and decelerating channel flows

arXiv preprint arXiv:2312.12701

2023/12/20

Parallel-in-time adjoint-based optimization–application to unsteady incompressible flows

Journal of Computational Physics

2022/12/15

Prediction of boundary-layer instability in supersonic flow with roughness and shock using machine learning

Bulletin of the American Physical Society

2022/11/22

Adaptive Resolvent Analysis: Application to High Enthalpy Boundary Layers

Bulletin of the American Physical Society

2022/11/22

Development of a high-fidelity computational tool for chemically reacting hypersonic flow simulations

arXiv preprint arXiv:2210.05547

2022/10/11

Sparsifying the resolvent forcing mode via gradient-based optimisation

Journal of Fluid Mechanics

2022/8

Mixing by stirring: Optimizing shapes and strategies

Physical Review Fluids

2022/7/27

Sensitivity and downstream influence of the impinging leading-edge vortex instability in a bileaflet mechanical heart valve

Journal of Fluid Mechanics

2022/4

See List of Professors in Peter Schmid University(Imperial College London)

Co-Authors

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