Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Hall D | |||||
(10:50–12:02) (Chair: No data , No data ) | |||||
D08 | Observation of bubble generation and evaluation of bubble growth rate in alkaline water electrolysis | Alkaline water Electrolysis bubble growth rate hydrogen | 2-a | 74 | |
D09 | Active approach to fault diagnosis of chemical process | fault diagnosis active approach auxiliary signal | 6-b | 79 | |
D10 | Model Study of the influence of phosphorus in the combustion ash on High Temperature Adhesion | Ash Sewage sludge Adhere | 2-f | 114 | |
D11 | Development of a numerical simulation code for curtain coating | Coating Numerical Simulation | 12-h | 110 | |
D12 | Flow analysis of high viscosity fluid in tank and verification by torque and PIV measurement | mixing PIV CFD | 2-b | 11 | |
D13 | Application of machine learning for the control of chemical process with dead time | dead time neural network | 6-d | 93 | |
(13:00–14:12) (Chair: No data , No data ) | |||||
D19 | Validations of Revolving Rupture Angle and Repose Angle by DEM | angle of repose rupture angle DEM | 2-f | 102 | |
D20 | Recurrent Neural Networks for fault detection and diagnosis of chemical processes | Chemical process Fault detection and diagnosis Neural Networks | 6-d | 91 | |
D21 | Capacitive deionization using a flow electrode system for lithium recovery | Capacitive deionization Flow electrode Lithium | 2-e | 109 | |
D22 | Suppression of re-entrainment of particles from HEPA filter media under a high loading condition | HEPA filter nuclear power plant Double layer | 2-g | 38 | |
D23 | Time domain synchronization of the monitoring for batch chemical process | batch process monitoring | 6-d | 92 | |
D24 | Influence of the Injection Point on Mixing Performance with FULLZONE using CFD | FULLZONE Mixing Performance CFD | 2-b | 42 |