Pressure gradient fields in unsteady flows can be estimated through flow measurements of the material acceleration in the fluid and the assumption of the governing momentum equation. In order to derive pressure from its gradient, almost exclusively two numerical methods have been used to spatially integrate the pressure gradient until now: first, direct path integration in the spatial domain, and second, the iterative solution of the Poisson equation. Instead, we propose an alternative third method that integrates the pressure gradient field in Fourier space. The method is fast (non-iterative) and does not need additional boundary conditions of the pressure field. We demonstrate the integration scheme on a synthetic pressure field and on a...
Great progress has been made in the field of optical and particle based measurement techniques for ...
A Lagrangian tracking method is introduced, which uses a prediction of the particle distribution for...
3D Lagrangian particle tracking (LPT) allows for position, velocity, and acceleration to be determin...
Pressure gradient fields in unsteady flows can be estimated through flow measurements of the materia...
We present the measurement of unsteady 3D pressure fields in turbulent flows. The pressure gradient ...
Pressure fields in turbulent flows are reconstructed based on acceleration measurements with Shake-T...
Dense 3D Particle Tracking allows characterizing unsteady and turbulent flows within the Lagrangian ...
As a follow-up to a previous proof-of-principle study, a novel Lagrangian pressure-extraction techni...
Dense 3D Particle Tracking allows characterizing unsteady and turbulent flows within the Lagrangian ...
We describe and characterize a method for estimating the pressure field corresponding to velocity f...
This works presents an evolution of the FlowFit method for reconstructing incompressible flow fields...
3D Lagrangian particle tracking (LPT) allows for position, velocity, and acceleration to be determin...
The novel 30 Lagrangian Particle Tracking method "Shake-The-Box" (STB) is able to extract particle ...
We describe and characterize a method for estimating the pressure field corresponding to velocity fi...
We present measurements of the full velocity gradient and dissipation rate tensor based on dense fie...
Great progress has been made in the field of optical and particle based measurement techniques for ...
A Lagrangian tracking method is introduced, which uses a prediction of the particle distribution for...
3D Lagrangian particle tracking (LPT) allows for position, velocity, and acceleration to be determin...
Pressure gradient fields in unsteady flows can be estimated through flow measurements of the materia...
We present the measurement of unsteady 3D pressure fields in turbulent flows. The pressure gradient ...
Pressure fields in turbulent flows are reconstructed based on acceleration measurements with Shake-T...
Dense 3D Particle Tracking allows characterizing unsteady and turbulent flows within the Lagrangian ...
As a follow-up to a previous proof-of-principle study, a novel Lagrangian pressure-extraction techni...
Dense 3D Particle Tracking allows characterizing unsteady and turbulent flows within the Lagrangian ...
We describe and characterize a method for estimating the pressure field corresponding to velocity f...
This works presents an evolution of the FlowFit method for reconstructing incompressible flow fields...
3D Lagrangian particle tracking (LPT) allows for position, velocity, and acceleration to be determin...
The novel 30 Lagrangian Particle Tracking method "Shake-The-Box" (STB) is able to extract particle ...
We describe and characterize a method for estimating the pressure field corresponding to velocity fi...
We present measurements of the full velocity gradient and dissipation rate tensor based on dense fie...
Great progress has been made in the field of optical and particle based measurement techniques for ...
A Lagrangian tracking method is introduced, which uses a prediction of the particle distribution for...
3D Lagrangian particle tracking (LPT) allows for position, velocity, and acceleration to be determin...