Space-time image velocimetry (STIV) is a promising technique for river surface flow field measurement with the development of unmanned aerial vehicles (UAVs). STIV can give the magnitude of the velocity along the search line set manually thus the application of the STIV needs to determine the flow direction in advance. However, it is impossible to judge the velocity direction at any points before measurement in most mountainous rivers due to their complex terrain. A two-dimensional STIV is proposed in this study to obtain the magnitude and direction of the velocity automatically. The direction of river flow is independently determined by rotating the search line to find the space-time image which has the most prominent oblique stripes. The ...
This study assesses the suitability to use RGB and thermal infrared imagery acquired from an UAV to ...
Image velocimetry has proven to be a promising technique for monitoring river flows using remotely o...
Water velocity and discharge are essential parameters for monitoring water resources sustainably. Da...
A novel image analysis technique for measuring river surface flow is proposed. When we assume that t...
Due to the remarkable development of unmanned aerial vehicle (UAV) in recent years, its application ...
As an important part of hydrometry, river discharge monitoring plays an irreplaceable role in the pl...
Traditional flow velocity measurements in natural environments require contact with the fluid and ar...
Videos acquired from Unmanned Aerial Systems (UAS) allow for monitoring river systems at high spatia...
Image-based river flow measurement methods have been attracting attention because of their ease of u...
The developing of new image-based techniques for environmental monitoring is opening new frontiers f...
Traditional flow velocity measurements in natural environments require contact with the fluid and ar...
Predicting the flow in rivers is an important concern regarding potential damages induced by floods....
The Space-Time Image Velocimetry (STIV) is a time-averaged velocity measurement method, which takes ...
The space time image velocimetry (STIV) technique is presented and shown to be a useful tool for ext...
Image velocimetry has proven to be a promising technique for monitoring river flows using remotely o...
This study assesses the suitability to use RGB and thermal infrared imagery acquired from an UAV to ...
Image velocimetry has proven to be a promising technique for monitoring river flows using remotely o...
Water velocity and discharge are essential parameters for monitoring water resources sustainably. Da...
A novel image analysis technique for measuring river surface flow is proposed. When we assume that t...
Due to the remarkable development of unmanned aerial vehicle (UAV) in recent years, its application ...
As an important part of hydrometry, river discharge monitoring plays an irreplaceable role in the pl...
Traditional flow velocity measurements in natural environments require contact with the fluid and ar...
Videos acquired from Unmanned Aerial Systems (UAS) allow for monitoring river systems at high spatia...
Image-based river flow measurement methods have been attracting attention because of their ease of u...
The developing of new image-based techniques for environmental monitoring is opening new frontiers f...
Traditional flow velocity measurements in natural environments require contact with the fluid and ar...
Predicting the flow in rivers is an important concern regarding potential damages induced by floods....
The Space-Time Image Velocimetry (STIV) is a time-averaged velocity measurement method, which takes ...
The space time image velocimetry (STIV) technique is presented and shown to be a useful tool for ext...
Image velocimetry has proven to be a promising technique for monitoring river flows using remotely o...
This study assesses the suitability to use RGB and thermal infrared imagery acquired from an UAV to ...
Image velocimetry has proven to be a promising technique for monitoring river flows using remotely o...
Water velocity and discharge are essential parameters for monitoring water resources sustainably. Da...