In this thesis, Doppler Optical Coherence Tomography (DOCT) was applied to velocity profiling rheometry in combination with rotational rheometer and pipe rheometer. In addition to the velocity profiling, the imaging modality of the OCT was utilized in characterizing the structural behavior of the materials under study. Furthermore, a novel hybrid multi-scale velocity profiling method, based on measuring stationary velocity profiles of fluid flow in a straight tube simultaneously by DOCT and ultrasound velocity profiling (UVP), was developed. The data from the two instruments can be combined into a comprehensive velocity profile including information on the thin boundary layer near the tube wall as measured by DOCT, and in the interior parts...
Pulsed ultrasound Doppler velocimetry and nuclear magnetic resonance imaging are popular non-invasiv...
Particle and fibre suspensions are prone to wall depletion which leads to effects like apparent slip...
In this study a novel laboratory-scale pipe rheometer is utilized in Theological characterization of...
Rheological properties and boundary layer flow behavior of Micro Fibrillated Cellulose (MFC) suspend...
A rheometric method based on velocity profiling simultaneously by optical coherence tomography and t...
A rheometric method based on velocity profiling by optical coherence tomography (OCT) was used in th...
Flow properties of complex fluids such as colloidal suspensions, polymer solutions, fiber suspension...
A rheometric method based on velocity profiling simultaneously by optical coherence tomography (OCT)...
Fiber suspensions, such as MFC (Micro Fibrillated Cellulose), are a challenge for conventional rheom...
A hybrid multi-scale velocimetry method utilizing Doppler optical coherence tomography in combinatio...
Rheological properties and boundary layer flow behaviour of Micro Fibrillated Cellulose (MFC) suspen...
Rheological properties and boundary layer flow behaviour of Micro Fibrillated Cellulose (MFC) suspen...
In this study, cellulose microfibril (CMF) suspensions were imaged during pipe flow at consistencies...
Pulsed ultrasound Doppler velocimetry and nuclear magnetic resonance imaging are popular non-invasiv...
Particle and fibre suspensions are prone to wall depletion which leads to effects like apparent slip...
In this study a novel laboratory-scale pipe rheometer is utilized in Theological characterization of...
Rheological properties and boundary layer flow behavior of Micro Fibrillated Cellulose (MFC) suspend...
A rheometric method based on velocity profiling simultaneously by optical coherence tomography and t...
A rheometric method based on velocity profiling by optical coherence tomography (OCT) was used in th...
Flow properties of complex fluids such as colloidal suspensions, polymer solutions, fiber suspension...
A rheometric method based on velocity profiling simultaneously by optical coherence tomography (OCT)...
Fiber suspensions, such as MFC (Micro Fibrillated Cellulose), are a challenge for conventional rheom...
A hybrid multi-scale velocimetry method utilizing Doppler optical coherence tomography in combinatio...
Rheological properties and boundary layer flow behaviour of Micro Fibrillated Cellulose (MFC) suspen...
Rheological properties and boundary layer flow behaviour of Micro Fibrillated Cellulose (MFC) suspen...
In this study, cellulose microfibril (CMF) suspensions were imaged during pipe flow at consistencies...
Pulsed ultrasound Doppler velocimetry and nuclear magnetic resonance imaging are popular non-invasiv...
Particle and fibre suspensions are prone to wall depletion which leads to effects like apparent slip...
In this study a novel laboratory-scale pipe rheometer is utilized in Theological characterization of...