National Repository of Grey Literature 2 records found  Search took 0.01 seconds. 
Spherically symmetrical thermal counterflow of superfluid helium
Novotný, Filip ; Schmoranzer, David (advisor) ; Kohout, Jaroslav (referee)
The principal aim of this Thesis was the investigation of quantum tur- bulence in superfluid helium in a special type of flow, spherically symmetric thermal counterflow. To this end, a new cell was designed and 3D-printed. Measurements of quantum turbulence were realized using the traditional technique of second sound attenuation, focusing both on steady state of tur- bulence and its temporal decay. The measured dependence of the quantized vortex line density L versus the counterflow velocity vns, where the data clearly show that L ∝ v3/2 ns , does not agree with the Vinen equation, which predicts L ∝ v2 ns. On the other hand, the dependence of vortex line density on time t obtained during the decay measurements L ∝ t−1 is paradoxically in close agreement with the Vinen equation. For the future, spherically sym- metrical thermal counterflow thus promises many interesting challenges and will remain an important topic of research. 1
Spherically symmetrical thermal counterflow of superfluid helium
Novotný, Filip ; Schmoranzer, David (advisor) ; Kohout, Jaroslav (referee)
The principal aim of this Thesis was the investigation of quantum tur- bulence in superfluid helium in a special type of flow, spherically symmetric thermal counterflow. To this end, a new cell was designed and 3D-printed. Measurements of quantum turbulence were realized using the traditional technique of second sound attenuation, focusing both on steady state of tur- bulence and its temporal decay. The measured dependence of the quantized vortex line density L versus the counterflow velocity vns, where the data clearly show that L ∝ v3/2 ns , does not agree with the Vinen equation, which predicts L ∝ v2 ns. On the other hand, the dependence of vortex line density on time t obtained during the decay measurements L ∝ t−1 is paradoxically in close agreement with the Vinen equation. For the future, spherically sym- metrical thermal counterflow thus promises many interesting challenges and will remain an important topic of research. 1

Interested in being notified about new results for this query?
Subscribe to the RSS feed.