A Numerical Study On Various Energy and Environmental Systems

에너지${\cdot}$환경 제반 시스템에 관한 수치해석적 연구

  • 장동순 (충남대학교 환경공학과) ;
  • 송우영 (충남대학교 환경공학과 대학원) ;
  • 나혜령 (충남대학교 환경공학과 대학원) ;
  • 박병수 (충남대학교 환경공학과 대학원) ;
  • 이은주 (충남대학교 환경공학과 대학원) ;
  • 김복순 (충남대학교 환경공학과 대학원)
  • Published : 1995.10.01

Abstract

This paper describes computational efforts on the various energy and environmental problems using Patankar's SIMPLE method. The specific problems included in this study are : pollutant and flammable material dispersions in open and confined areas, aerator-induced flow in a lake for DO(dissolved oxygen) concentration, primary clarifier for water and waste water treatment, hood ventilation in workplace, cyclone and LNG combustors and Dow chlorination reactor. A control-volume based finite-difference method is employed together with the power-law scheme. The pressure-velocity coupling is resolved by the use of the revised version of SIMPLE, says SIMPLER and SIMPLEC. The Reynolds stresses are closed using the standard or the RNG $k-{\varepsilon}$ models. Turbulent reaction is modeled using two fast chemistry methods such as eddy breakup and conserved scalar models. Further, a nonequilibrium model is developed for the application of the chlorination process in the Dow reactor. Other important empirical models and physical insights appeared in this study are presented and discussed in a brief note. The computational method developed in this study is considered, in general, as a viable tool for the design and determination of the optimal condition of various engineering system of interest.

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