Thomas Voglhuber-Brunnmaier

Thomas Voglhuber-Brunnmaier

Johannes Kepler Universität Linz

H-index: 12

Europe-Austria

About Thomas Voglhuber-Brunnmaier

Thomas Voglhuber-Brunnmaier, With an exceptional h-index of 12 and a recent h-index of 10 (since 2020), a distinguished researcher at Johannes Kepler Universität Linz, specializes in the field of Sensor Modelling, Measurement Science, Resonant Sensor, Fluid Sensing.

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

Concept and Proof of Principle of an Acoustofluidic Single-Particle Sorting Device Using a Spatially Confined Acoustic Active Region

Acoustofluidic Trapping in Structured Microchannels Using Lateral Transducer Modes

Spectral Domain Approach for the Numerical Modeling of Elastodynamic Fields in Layered Structures

Understanding Relaxation Oscillator Circuits Using Fast-Slow System Representations

Generation and Observation of Long-Lasting and Self-Sustaining Marangoni Flow

Understanding the Shielding Efficiency of a Faraday Grid Cage: A spectral domain approach

Localized sensing of bulk properties of oils

Utilizing Lateral Plate Transducer Modes for High Quality Acoustofluidics in Silicon-Based Chips

Thomas Voglhuber-Brunnmaier Information

University

Position

Senior Scientist

Citations(all)

764

Citations(since 2020)

319

Cited By

564

hIndex(all)

12

hIndex(since 2020)

10

i10Index(all)

15

i10Index(since 2020)

10

Email

University Profile Page

Johannes Kepler Universität Linz

Google Scholar

View Google Scholar Profile

Thomas Voglhuber-Brunnmaier Skills & Research Interests

Sensor Modelling

Measurement Science

Resonant Sensor

Fluid Sensing

Top articles of Thomas Voglhuber-Brunnmaier

Title

Journal

Author(s)

Publication Date

Concept and Proof of Principle of an Acoustofluidic Single-Particle Sorting Device Using a Spatially Confined Acoustic Active Region

Proceedings

Andreas Fuchsluger

Annalisa De Pastina

Tina Mitteramskogler

Rafael Ecker

Thomas Voglhuber-Brunnmaier

...

2024/3/18

Acoustofluidic Trapping in Structured Microchannels Using Lateral Transducer Modes

Andreas Fuchsluger

Annalisa De Pastina

Tina Mitteramskogler

Rafael Ecker

Thomas Voglhuber-Brunnmaier

...

2023/10/29

Spectral Domain Approach for the Numerical Modeling of Elastodynamic Fields in Layered Structures

Thomas Voglhuber-Brunnmaier

Bernhard Jakoby

2023/10/5

Understanding Relaxation Oscillator Circuits Using Fast-Slow System Representations

IEEE Access

Thomas Voglhuber-Brunnmaier

Bernhard Jakoby

2023/9/13

Generation and Observation of Long-Lasting and Self-Sustaining Marangoni Flow

Langmuir

Nikolaus Doppelhammer

Stefan Puttinger

Nick Pellens

Thomas Voglhuber-Brunnmaier

Karel Asselman

...

2023/5/25

Understanding the Shielding Efficiency of a Faraday Grid Cage: A spectral domain approach

IEEE Antennas and Propagation Magazine

Bernhard Jakoby

Roman Beigelbeck

Thomas Voglhuber-Brunnmaier

2023/1/5

Localized sensing of bulk properties of oils

Materials Today: Proceedings

Thomas Voglhuber-Brunnmaier

Alexander O Niedermayer

Bernhard Jakoby

2022/1/1

Utilizing Lateral Plate Transducer Modes for High Quality Acoustofluidics in Silicon-Based Chips

Andreas Fuchsluger

Annalisa De Pastina

Norbert Cselyuszka

Nikolai Andrianov

Ali Roshanghias

...

2022/10/30

Efficient and accurate modeling of the surface deflection of thin layers on composite substrates with applications to piezoelectric parameter measurements

Micro

Thomas Voglhuber-Brunnmaier

Roman Beigelbeck

Ulrich Schmid

Thilo Sauter

Tiangui You

...

2022/6/29

Advanced fluid models for resonant online oil condition monitoring systems

tm-Technisches Messen

Thomas Voglhuber-Brunnmaier

Alexander O Niedermayer

Bernhard Jakoby

2022/1/31

Ultra-Fast Acoustofluidic Particle Focusing Using Lateral Modes of a Plate Transducer

Annalisa De Pastina

2023

Manipulation of Particles in Microfluidic Channels with Standing Acoustic Waves

Marcus Hintermüller

Thomas Voglhuber-Brunnmaier

Alexander Niedermayer

Norbert Cselyuszka

Sarah Risquez

...

2022

Temperature Model Calibration for a Resonant Pipe Viscosity and Density Sensor

Stefan Clara

Friedrich Feichtinger

Thomas Voglhuber-Brunnmaier

Andreas Tröls

Bernhard Jakoby

2021/10/31

Electromechanical resonators for sensing fluid density and viscosity—A review

Thomas Voglhuber-Brunnmaier

Bernhard Jakoby

2021/10/21

C6. 3 advanced fluid models for multi-parameter condition monitoring systems for lubricants and hydraulic fluids

SMSI 2021-Sensors and Instrumentation

Thomas Voglhuber-Brunnmaier

B Jakoby

A Niedermayer

F Feichtinger

2021/5/3

E6. 3 an advanced multi-parameter condition monitoring system for lubricants and hydraulic fluids

SMSI 2020-Measurement Science

Thomas Voglhuber-Brunnmaier

A Niedermayer

2020/6/9

A multi-parameter physical fluid sensor system for industrial and automotive applications

tm-Technisches Messen

Thomas Voglhuber-Brunnmaier

Alexander O Niedermayer

Friedrich Feichtinger

Erwin K Reichel

Bernhard Jakoby

2020/3/26

Screen printed sensor design for thermal flow velocity measurement with intrinsic compensation of thermal fluid conductivity

IEEE Sensors Journal

Christina Offenzeller

Marcel Knoll

Thomas Voglhuber-Brunnmaier

Wolfgang Hilber

Bernhard Jakoby

2020/2/7

Higher-order models for resonant viscosity and mass-density sensors

Sensors

Thomas Voglhuber-Brunnmaier

Bernhard Jakoby

2020/7/31

See List of Professors in Thomas Voglhuber-Brunnmaier University(Johannes Kepler Universität Linz)