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UO<sub>2</sub> 및 (U<sub>1-y</sub>Ce<sub>y</sub>)O<sub>2</sub> 소결체의 열팽창 측정 및 평가
김동주,김용수,이영우,Kim, Dong-Joo,Kim, Yong-Soo,Lee, Young-Woo 한국세라믹학회 2005 한국세라믹학회지 Vol.42 No.5
The linear thermal expansions of $UO_2$ and $(U_{1-y}Ce_y)O_2$ pellet were measured from room temperature to $1400^{\circ}C$ as a function of Ce contents (0, 7.63, 14.84, and $21.68 mol\%$) by using the TMA(Thermo-Mechanical Analysis) method. From the measured data, the linear thermal expansion rate, the coefficient of linear thermal expansion and density variation with temperature were calculated, and the best-fitted temperature-dependent equations were recommended. It was shown that the rate and coefficient of $(U_{1-y}Ce_y)O_2$ thermal expansion increased and the density decreased with increasing Ce contents.
논문 - 새만금호 농업용지 방수제 주요지점의 수위 및 유속 분포 수치모의
김동주,김지성,박영진,Kim, Dong-Joo,Kim, Ji-Sung,Park, Young-Jin 한국관개배수위원회 2011 한국관개배수논문집 Vol.18 No.2
In this study, the internal development of the Saemangeum basic concept of the changes being promoted as a lead construction and agricultural land works(54.2 km) has established a numerical model for the scenario. Inner dike to the construction site to reflect the following conditions to reproduce the numerical model by each areas during construction inner dike where scour expected to perform a numerical analysis for the hydraulic review by areas with possible future changes were to predict. Simulation results showed that numerical simulation results for scour expected frequency of 100 years in flood conditions is simulated with 0.02 m/s~l.27 m/s scour velocity for high-impact factor is considered to be stable. Each start point and end point work area of inner dike reviewed and flow rate of 100 years flood, the velocity distribution in the influx of a large flow rate of 0.02 m/s~1.68 m/s occur during construction inner dike are not being evaluated as a special issue does not occur will be considered according to the method and order of construction inner dike stability review suggests that the future need to be made.