Published November 2016 | Version v1
Journal article

Application of X-ray micro-computed tomography on high-speed cavitating diesel fuel flows

  • 1. City University London, School of Mathematics Computer Science and Engineering, London (United Kingdom)
  • 2. University of Bergamo, Department of Engineering, Bergamo (Italy)

Description

The flow inside a purpose built enlarged single-orifice nozzle replica is quantified using time-averaged X-ray micro-computed tomography (micro-CT) and high-speed shadowgraphy. Results have been obtained at Reynolds and cavitation numbers similar to those of real-size injectors. Good agreement for the cavitation extent inside the orifice is found between the micro-CT and the corresponding temporal mean 2D cavitation image, as captured by the high-speed camera. However, the internal 3D structure of the developing cavitation cloud reveals a hollow vapour cloud ring formed at the hole entrance and extending only at the lower part of the hole due to the asymmetric flow entry. Moreover, the cavitation volume fraction exhibits a significant gradient along the orifice volume. The cavitation number and the needle valve lift seem to be the most influential operating parameters, while the Reynolds number seems to have only small effect for the range of values tested. Overall, the study demonstrates that use of micro-CT can be a reliable tool for cavitation in nozzle orifices operating under nominal steady-state conditions. (orig.)

Availability note (English)

Available from: http://dx.doi.org/10.1007/s00348-016-2256-z

Additional details

Identifiers

Publishing Information

Journal Title
Experiments in Fluids
Journal Volume
57
Journal Issue
11
Journal Page Range
p. 1-14
ISSN
0723-4864
CODEN
EXFLDU