Sebastian Timme

Sebastian Timme

University of Liverpool

H-index: 20

Europe-United Kingdom

About Sebastian Timme

Sebastian Timme, With an exceptional h-index of 20 and a recent h-index of 17 (since 2020), a distinguished researcher at University of Liverpool, specializes in the field of Computational Fluid Dynamics, Aerodynamics, Aeroelasticity, Model Reduction.

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

Data Fusion of Wing Pressure Distributions Using Scalable Gaussian Processes

Bayesian Approaches for Efficient and Uncertainty-Aware Prediction of Pressure Distributions

Identifying Active Regions of Finite-Wing Transonic Buffet using Resolvent Method

Comparative Analysis of Multifidelity Models based on Gaussian Processes for Combat Aircraft Design

Global stability analysis of elastic aircraft in edge-of-the-envelope flow

Resolvent Analysis of a Finite Wing in Transonic Flow

Transonic buffet characteristics under conditions of free and forced transition

Resolvent Analysis using Subspace Algorithms for Aerodynamic Applications

Sebastian Timme Information

University

Position

___

Citations(all)

1147

Citations(since 2020)

763

Cited By

694

hIndex(all)

20

hIndex(since 2020)

17

i10Index(all)

37

i10Index(since 2020)

26

Email

University Profile Page

University of Liverpool

Google Scholar

View Google Scholar Profile

Sebastian Timme Skills & Research Interests

Computational Fluid Dynamics

Aerodynamics

Aeroelasticity

Model Reduction

Top articles of Sebastian Timme

Title

Journal

Author(s)

Publication Date

Data Fusion of Wing Pressure Distributions Using Scalable Gaussian Processes

AIAA Journal

Mehdi Anhichem

Sebastian Timme

Jony Castagna

Andrew J Peace

Moira Maina

2024/3

Bayesian Approaches for Efficient and Uncertainty-Aware Prediction of Pressure Distributions

Mehdi Anhichem

Sebastian Timme

Jony Castagna

Andrew Peace

Moira Maina

2024

Identifying Active Regions of Finite-Wing Transonic Buffet using Resolvent Method

Jelle Houtman

US Vevek

Sebastian Timme

2023

Comparative Analysis of Multifidelity Models based on Gaussian Processes for Combat Aircraft Design

Mehdi Mohamed Pierre Anhichem

Mario Stradtner

Sebastian Timme

Philipp Bekemeyer

2023/8/30

Global stability analysis of elastic aircraft in edge-of-the-envelope flow

Journal of Fluid Mechanics

Jelle Houtman

Sebastian Timme

2023/7

Resolvent Analysis of a Finite Wing in Transonic Flow

Flow

Jelle Houtman

Sebastian Timme

Ati Sharma

2023/5/18

Transonic buffet characteristics under conditions of free and forced transition

AIAA Journal

Pradeep Moise

Markus Zauner

Neil D Sandham

Sebastian Timme

Wei He

2023/3

Resolvent Analysis using Subspace Algorithms for Aerodynamic Applications

US Vevek

Sebastian Timme

2023

Bespoke stability analysis tool in next-generation computational fluid dynamics solver

The Aeronautical Journal

US Vevek

Jelle Houtman

Sebastian Timme

2023/11/23

Resolvent analysis of large aircraft wings in edge-of-the-envelope transonic flow

Jelle Houtman

Sebastian Timme

Ati Sharma

2022

Aerodynamic Data Modelling and Fidelity Definition for Multifidelity Data Fusion

Mehdi Anhichem

Sebastian Timme

Jony Castagna

Andrew J Peace

Moira Maina

2022/9/14

Data supporting the article "Transonic buffet characteristics under conditions of free and forced transition" published in the AIAA Journal, 2022

Pradeep Moise

Markus Zauner

Neil Sandham

Sebastian Timme

Wei He

2022

Next-Generation Computational Fluid Dynamics Capability for Aircraft Aeroelasticity and Loads

US Vevek

Sebastian Timme

John Pattinson

Bernd Stickan

Adam Buechner

2022

Multifidelity Data Fusion Applied to Aircraft Wing Pressure Distribution

Mehdi Anhichem

Sebastian Timme

Jony Castagna

Andrew Peace

Moira Maina

2022

Triglobal infinite-wing shock-buffet study

Journal of Fluid Mechanics

Wei He

Sebastian Timme

2021/10

Towards global stability analysis of flexible aircraft in edge-of-the-envelope flow

Jelle Houtman

Sebastian Timme

2021

Aeroelastic coupling effects in globally unstable transonic wing flow

Panagiotis Belesiotis-Kataras

Sebastian Timme

2021

Global instability of wing shock-buffet onset

Journal of Fluid Mechanics

Sebastian Timme

2020/2

Analysis of a civil aircraft wing transonic shock buffet experiment

Journal of Fluid Mechanics

L Masini

S Timme

AJ Peace

2020/2

Resolvent analysis of shock buffet on infinite wings

Wei He

Sebastian Timme

2020

See List of Professors in Sebastian Timme University(University of Liverpool)