Amanote Research
Register
Sign In
The Use of Neural Techniques in PIV and PTV
Measurement Science and Technology
- United Kingdom
doi 10.1088/0957-0233/8/12/004
Full Text
Open PDF
Abstract
Available in
full text
Categories
Instrumentation
Engineering
Applied Mathematics
Date
December 1, 1997
Authors
I Grant
X Pan
Publisher
IOP Publishing
Related search
Accurate Turbulence Level Estimations Using PIV/PTV
Experiments in Fluids
Mechanics of Materials
Fluid Flow
Transfer Processes
Computational Mechanics
Astronomy
Physics
Confocal Micro-Piv/PTV Measurements of the Blood Flow in Micro-Channels
Dune Formation in Dilute Phase Pneumatic Transport System: PIV & PTV Based Analysis
EPJ Web of Conferences
Astronomy
Physics
Universal Outlier Detection for Particle Image Velocimetry (PIV) and Particle Tracking Velocimetry (PTV) Data
Measurement Science and Technology
Instrumentation
Engineering
Applied Mathematics
PIV⋅PTV Measurements of Coherent Vortex and Sediment Concentration in Sediment-Laden Open-Channel Flows Over Sand Dunes
Journal of the Visualization Society of Japan
Difference in LET-based Biological Doses Between IMPT Optimization Techniques: Robust and PTV-based Optimizations
Journal of Applied Clinical Medical Physics
Instrumentation
Nuclear Medicine
Radiology
Radiation
Imaging
Medicine
A Neural Network Based Algorithm for Particle Pairing Problem of PIV Measurements
IEICE Transactions on Information and Systems
Electronic Engineering
Pattern Recognition
Hardware
Computer Vision
Electrical
Architecture
Artificial Intelligence
Software
Neural Network Approaches to Tracer Identification as Related to PIV Research
Two Techniques for PIV-based Aeroacoustic Prediction and Their Application to a Rod-Airfoil Experiment
Experiments in Fluids
Mechanics of Materials
Fluid Flow
Transfer Processes
Computational Mechanics
Astronomy
Physics