Development of Optimal Chlorination Model and Parameter Studies

  • 김준현
  • 안수영
  • 박민우

초록

A mathematical model comprised with eight simultaneous quasi-linear partial differential equations was suggested to provide optimal chlorination strategy. Upstream weighted finite element method was employed to construct multidimensional numerical code. The code was verified against measured concentrations in three type of reactors. Boundary conditions and reaction rate were calibrated for the sixteen cases of experimental results to regenerate the measured values. Eight reaction rate coefficients were estimated from the modeling result. The reaction rate coefficients were expressed in terms of pH and temperature. Automatic optimal algorithm was invented to estimate the reaction rate coefficients by minimizing the sum of squares of the numerical errors and combined with the model. In order to minimize the concentration of chlorine and pollutants at the final usage sites, a real time predictive control system is imperative which can predict the water quality variables from the chlorine disinfection process at the water purification plant to the customer by means of a model and operate the disinfection process according to the influent water quality. This model can be used to build such a system in water treatment plants.

키워드

Optimal chlorination modelexperimental and modeling verificationautomatic estimation of reaction ratemultidimensional finite element model. parameter studypredictive control system of chlorination mode최적의 염소화 모형 실험 및 모델링 검증 반응 속도의 자동 추정 다차원 유한 요소 모형 파라미터 연구염소소독 모형을 이용한 예측 제어
제목
Development of Optimal Chlorination Model and Parameter Studies
저자
김준현안수영박민우
발행일
2020-12
유형
Y
저널명
환경영향평가
29
6
페이지
403 ~ 413