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Measurement of bubble velocity components in a swirling gas-liquid pipe flow using a local four-sensor conductance probe
G. P. Lucas,
R. Mishra
Department of Engineering
School of Computing and Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
64
Citations (Scopus)
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Dive into the research topics of 'Measurement of bubble velocity components in a swirling gas-liquid pipe flow using a local four-sensor conductance probe'. Together they form a unique fingerprint.
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Mathematics
Accumulate
14%
Bubble
78%
Conductance
83%
Electronics
11%
Flow Rate
14%
Gas
62%
Gas Flow
42%
Generator
8%
Interval
6%
Liquid Flow
100%
Mathematical Model
8%
Mm
15%
Output
8%
Pipe Flow
97%
Probe
80%
Radial velocity
18%
Sensor
78%
Vertical
20%
Volume Fraction
14%
Water
11%
Physics & Astronomy
bubbles
51%
electronics
3%
flow velocity
5%
gases
34%
generators
6%
intervals
5%
liquid flow
24%
liquids
35%
mathematical models
6%
output
4%
pipe flow
81%
probes
40%
radial velocity
7%
sensors
40%
swirling
80%
water flow
9%
Engineering & Materials Science
Flow rate
5%
Gases
38%
Liquids
44%
Mathematical models
5%
Pipe
16%
Pipe flow
81%
Sensors
34%
Volume fraction
6%
Water
4%