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Computational study on aerodynamics of long-span bridges
유일용,곽인근,이승수,김범수,박시형 대한기계학회 2009 JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY Vol.23 No.3
A numerical procedure for aerodynamic load analysis of long span bridges is presented. The preconditioned Reynolds averaged Navier-Stokes equations are adopted to compute flows over the bridges. To capture the turbulent characteristics of the flows, two equation turbulence models, Coakley’s s q −ω model and Menter’s k −ω SST model, are used to compute the turbulent viscosity. A dual time stepping method in conjunction with the AF-ADI method is used to advance the solution in time. A loosely coupled method of the preconditioned RANS equations with the turbulence model equations is employed for fast computation without losing numerical stability. The numerical method for the aerodynamic load analysis is verified against well-known benchmark problems. Aerodynamic loads of two real bridges are computed with the method to demonstrate the usefulness of the method.
활성탄 흡착기 내 방사성 요오드 물질의 붕괴열 계산 프로그램 개발연구
유일용 한국기계기술학회 2016 한국기계기술학회 학술대회논문집 Vol.2016 No.05
An air cleaning unit(ACU) in a nuclear power plant plays a role on cooling the safety-related components whose function is involved in the reactor shutdown, and maintains the suitable temperature and humidity for work in the rooms where an operator is working on. To guarantee the performance of the unit the design of ACU should be subject to credible codes and standards, such as ASME, ANSI and ASHRAE, etc. On top of them, the desorption of the carbon adsorber is addressed in ASME N509 which causes the adsorber no longer to capture the iodine isotopes produced by the severe accident. In this study, the equations of the heat source were derived from the radioactive decay heat of each iodine isotopes. From the resultant equation, the maximum temperature below 300oF for the desorption was calculated under a proposed condition and analysed with the reference results.
유일용 한국기계기술학회 2017 한국기계기술학회 학술대회논문집 Vol.2017 No.04
The Auxiliary Building Controlled Area Emergency Exhaust Air Cleaning Units (ACU) should be taken into account in the accident analysis that the entire gaseous radioactive material is exhausted to the environment through the auxiliary building without any filtration until the pressure reaches a negative pressure, approximately -0.25 inch, water gauge, when the ACU operation is credited in the analysis. Thus, this paper performed thermal-hydraulic analysis using GOTHIC program and showed the exhaust flow from each room in the auxiliary building controlled area to maintain room pressure not greater than (-) 0.25 inch water gauge.