Fast wire-mesh sensors for gas-liquid flows - visualisation with up to 10 000 frames per second


Fast wire-mesh sensors for gas-liquid flows - visualisation with up to 10 000 frames per second

Prasser, H.-M.; Zschau, J.; Peters, D.; Pietzsch, G.; Taubert, W.; Trepte, M.

A wire-mesh sensor developed by the Forschungszentrum Rossendorf produces sequences of instantaneous gas fraction distributions in a cross section at a rate of up to 10 000 frames per second and a spatial resolution of about 2-3 mm. This sensor was applied to an upwards air-liquid flow in a vertical pipe of 51.2 mm diameter. After a brief introduction of the functioning of the sensor, the paper presents results obtained in a at vertical pipe operated with an air-water mixture. Two wiremesh sensors with a measuring matrix of 24x24 points (resolution 2 mm) were placed in a small axial distance behind each other. They were used to study the flow structure in the transition region from bubble to slug flow at an imaging frequency of 2 500 Hz. The two available measuring planes allowed to obtain velocity profiles of the gaseous phase. A sensor with 16x16 points (resolution 3 mm) was applied to visualize the transition from bubbly via churn turbulent to annular flow with 10 000 frames per second. In the churn flow region, periodic plug-like structures were found. In the annular flow the sensor is able to resolve wispy structures.

Keywords: Gas-liquid flow; void fraction measurement; gas velocity measurement; wire-mesh sensor; bubble flow; slug flow; annular flow

  • Lecture (Conference)
    International Congress on Advanced Nuclear Power Plants (ICAPP), June 9-13, 2002 - Hollywood Florida, USA, Proc. CD-ROM, paper #1055.
  • Contribution to proceedings
    International Congress on Advanced Nuclear Power Plants (ICAPP), June 9-13, 2002 - Hollywood Florida, USA, Proc. CD-ROM, paper #1055.

Permalink: https://www.hzdr.de/publications/Publ-4373