Numerical Analysis of Sintered Particle Trajectories in a Electrostatic Precipitator
Jiin-Yuh Jang, Shih-Chieh Chou, Jun-Bo Huang
Abstract
Jiin-Yuh Jang, Shih-Chieh Chou, Jun-Bo Huang
Abstract
Sintered particle trajectories in the electrostatic precipitator(EP) have been studied numerically in this study. There are live discharge electrodes in the geometry configuration. The discharge electrodes are placed inside the collecting electrodes channel which is 300mm in height, the wire-to-wire distance of each discharge electrode is 500mm. The particle trajectories in the electrostatic precipitator have been investigated considering different inlet flow velocity (1m/s, 1.5 m/s), particle diameter(5μm, 50μm) and applied voltage (56 kV, 63 kV). Results show that it would get better EP efficiency with increasing particle diameter and applied voltage. However, back corona phenomena may be induced if the charged particles are accumulated on the collecting electrode plate.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Sintered particle trajectories in the electrostatic precipitator(EP) have been studied numerically in this study. There are live discharge electrodes in the geometry configuration. The discharge electrodes are placed inside the collecting electrodes channel which is 300mm in height, the wire-to-wire distance of each discharge electrode is 500mm. The particle trajectories in the electrostatic precipitator have been investigated considering different inlet flow velocity (1m/s, 1.5 m/s), particle diameter(5μm, 50μm) and applied voltage (56 kV, 63 kV). Results show that it would get better EP efficiency with increasing particle diameter and applied voltage. However, back corona phenomena may be induced if the charged particles are accumulated on the collecting electrode plate.
Key concepts: Electrostatic precipitator, Electrode, Particle (ecology), Voltage, Corona discharge, Materials science, Mechanics, Particle flow