An experimental method of resolving flow regimes by utilizing the conductivity data measured by Electrical Resistance Tomography (ERT) is presented. The method applies Boolean logic and frequency analysis of the ERT signal in order to identify five typical flow regimes in horizontal pipe namely: bubble, plug, slug, stratified and annular. The relative conductivity signal obtained from the tomograms is converted to binary form in order to perform Boolean logical operation with the binary templates of typical flow patterns. The overall conductivity of the tomogram is used to extract frequency information of the flow. Flow pattern is identified by the statistical analysis of the combination of this information. The recognition method was evalu...
In order to better understand the mechanisms of two-phase flow and the prevailing flow regimes in ho...
Electrical resistance tomography (ERT) is used to investigate a variety of slurry flow applications ...
Settling slurry flow is very common and important in many industries, especially in transportation, ...
Flow regime recognition is not only useful for characterisation of the flow, but also for the purpos...
A variety of dual-modality tomographic systems have been proposed for the characterisation of multip...
AbstractFlow regime recognition is not only useful for characterisation of the flow, but also for th...
Employing dual-modality tomography inherently involves data from multiple dimensions, and thus a coh...
AbstractFlow regime recognition is not only useful for characterisation of the flow, but also for th...
Annular flow is one of the most important multiphase flow regimes primarily because of its presence ...
Collecting very large amount of data from experimental measurement is a common practice in almost ev...
Gas-oil-water three phase flow is of practical significance in oil and gas industries. An insight in...
This paper presents an impedance image based method, which is known as electrical resistance tomogra...
Flow regime maps are essential to gas-liquid flow applications in many industrial processes to accur...
Flow regime maps are essential to gas-liquid flow applications in many industrial processes to accur...
Electrical Capacitance Tomography provides the opportunity to visualize the contents of a process of...
In order to better understand the mechanisms of two-phase flow and the prevailing flow regimes in ho...
Electrical resistance tomography (ERT) is used to investigate a variety of slurry flow applications ...
Settling slurry flow is very common and important in many industries, especially in transportation, ...
Flow regime recognition is not only useful for characterisation of the flow, but also for the purpos...
A variety of dual-modality tomographic systems have been proposed for the characterisation of multip...
AbstractFlow regime recognition is not only useful for characterisation of the flow, but also for th...
Employing dual-modality tomography inherently involves data from multiple dimensions, and thus a coh...
AbstractFlow regime recognition is not only useful for characterisation of the flow, but also for th...
Annular flow is one of the most important multiphase flow regimes primarily because of its presence ...
Collecting very large amount of data from experimental measurement is a common practice in almost ev...
Gas-oil-water three phase flow is of practical significance in oil and gas industries. An insight in...
This paper presents an impedance image based method, which is known as electrical resistance tomogra...
Flow regime maps are essential to gas-liquid flow applications in many industrial processes to accur...
Flow regime maps are essential to gas-liquid flow applications in many industrial processes to accur...
Electrical Capacitance Tomography provides the opportunity to visualize the contents of a process of...
In order to better understand the mechanisms of two-phase flow and the prevailing flow regimes in ho...
Electrical resistance tomography (ERT) is used to investigate a variety of slurry flow applications ...
Settling slurry flow is very common and important in many industries, especially in transportation, ...