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정한식,정효민,김경근,노승탁,Chung, Han Shik,Jeong, Hyo Min,Kim, Kyung Kun,Ro, Sung Tack 대한기계학회 1999 大韓機械學會論文集B Vol.23 No.2
The turbulent natural convection in the membrane type LNG carrier cofferdam with heating points has been studied by numerical method. As the numerical methods, we introduced the three turbulence model, a standard $k-{\varepsilon}$ model and two case of a low Reynolds number models. The parameters considered for this study ore number and capacity of heating points i.e., $1{\leq}Ns{\leq}12$ and $1.0{\times}10^5{\leq}Qs(W/m^3){\leq}1.0{\times}10^8$. The results of the isotherms and velocity vectors have been represented for various parameters. The temperature and velocity at upper position in the space ore shown to be higher than those at lower position. For obtaining the optimal temperatures, $20{\sim}30^{\circ}C$ in the cofferdam space, the heating capacities show $2.0{\times}10^7W/m^3$ at g-heating points and $1.0{\times}10^7W/m^3$ at 12-points. The mean temperature in the cofferdam space can be expressed as a function of number and capacity of heating points.
이중섭(Chung-Seub Yi),신재호(Jae-Ho Shin),이해종(Hae-Jong Lee),서정세(Jeong-Se Suh),정한식(Han-Shik Chung),정효민(Hyo-Min Jeong) 대한기계학회 2003 대한기계학회 춘추학술대회 Vol.2003 No.11
This study is analysis on the heat transfer of exhaust gas into the muffler at passenger car. Numerical analysis with Computational fluid Dynamics(CFD)was carried out to investigate exhaust gas flow. The STAR-CD S/W used for the three dimensional steady state CFD ananlysis in a muffler. The Navier-Stokes Equation is solved with the SIMPLE method in a general cartesian coordinates system. Result of numerical simulation; Inlet and outlet temperature shown about ΔT=239K, 216K, 202K at in the muffler. Heat transfer was progressed quickly by atmospheric temperature of muffler external at in the near wall.