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      • Quantitative Analysis for Risk Management in Flue Gas Desulfurization Engineering

        Liu Ruiyu,Chen Liankai,Xu Li,Yang Hongping 인하대학교 정석물류통상연구원 2009 인하대학교 정석물류통상연구원 학술대회 Vol.2009 No.10

        In China, the Flue Gas Desulfurization (FGD) system gradually becomes a necessary facility in coal-fired power plants for pollution reduction. The evaluation model of investment risk in FGD project was established in this paper. By researching on the probability distribution of uncertain risk variables impacting investment income, the distribution function as well as the eigenvalue of net present value was solved, and the investment risk in the Build-Operate-Transfer project of FGD engineering was analyzed quantificationally based on the method of Monte Carlo simulation. The result showed that there was relatively high risk in FGD project, and then some measures were proposed to reduce the investment risk.

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        Transient Safety Analysis of M2LFR-1000 Reactor using ATHLET

        Chong Shen,Xilin Zhang,Chi Wang,Liankai Cao,Hongli Chen 한국원자력학회 2019 Nuclear Engineering and Technology Vol.51 No.1

        M2LFR-1000 is a medium-power modular lead-cooled fast reactor, developed by University of Scienceand Technology of China (USTC), aiming at achieving a reactor design fulfilling the Gen IV nuclear systemrequirements and meanwhile emphasizing the optimum safety and economics. In order to evaluate thesafety performance of M2LFR-1000 reactor core, three typical transients are selected from initiatingevents, which are unprotected transient overpower (UTOP), unprotected loss of offsite power(ULOHSþULOF) and increase of feedwater flowrate with primary pumps trip (IFWþPLOF). These threetransients presented and discussed in this paper are performed with the code Analysis of THermalhydraulicsof LEaks and Transients (ATHLET), which is developed by Gesellschaft für Anlagen-undReaktorsicherheit gGmbH (GRS). The results indicate that the M2LFR is safe enough under these threetransients due to the good inherent safety features of the reactor, without human intervention, thereactor will reach a new steady state under UTOP condition

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