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- W4317394878 abstract "본 연구에서는 wire-plate 형태의 전기집진기의 집진효율과 오존 발생량에 대하여 수치적 해석을 수행하였다. 전위, 코로나 전류, 공기유동, 입자궤적의 변화를 이해하기 위해서 작동조건의 영향이 분석되었다. 전위 분포와 코로나 전류는 인가전압의 영향을 받지만, 체적유량의 영향은 거의 받지 않는다. 공기유동의 ν 속도는 체적유량이 낮고 인가전압이 높을 때 더욱 영향을 받는다. 또한, 같은 조건에서 입자 궤적은 입자가 집진판 상류에 집진되는 것을 보여준다. Q =0.05 m³/s과 φω=12 kV에서, 입자는 5번째 방전극을 지나기 전에 집진되었다. 입자궤적과 집진효율을 비교하여 사용하지 않는 부분을 제거함으로써, 집진판 크기를 43% 줄일 수 있고 오존 발생량을 37.5%까지 감소시킬 수 있다. This study numerically investigated the collection efficiency and ozone generation rate of an electrostatic precipitator. The effects of the operating conditions were analyzed to understand the variation in the electric potential, corona current, airflow, and particle trajectory. The change in electrical potential and corona current were significantly affected by the applied voltage than by the volumetric flow rate. The velocity (ν) of airflow changed more significantly when the volumetric flow rate was low and the applied voltage was high. Moreover, the particle trajectory indicated that the particles were collected in the upstream of the collecting plate under the same conditions. At Q = 0.05 m³/s and φω= 12 kV, the particles were collected before they passed through the fifth wire. By removing the unnecessary part, it was determined that the collecting plate size can be decreased by 43% and the ozone generation rate can be decreased by 37.5%." @default.
- W4317394878 created "2023-01-19" @default.
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- W4317394878 date "2023-01-31" @default.
- W4317394878 modified "2023-10-18" @default.
- W4317394878 title "Numerical Study of the Collection Efficiency and Ozone Generation Rate of an Electrostatic Precipitator Under Different Applied Voltages and Volumetric Flow Rates" @default.
- W4317394878 doi "https://doi.org/10.3795/ksme-b.2023.47.1.015" @default.
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