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인간/시스템안전분야 : MACCS II 코드를 이용한 국내 경수로 및 중수로형 원전의 소외결말분석
전호준 ( Ho Jun Jeon ),지문구 ( Moon Goo Chi ),황석원 ( Seok Won Hwang ) 한국안전학회(구 한국산업안전학회) 2011 한국안전학회지 Vol.26 No.5
Since a severe accident, which happens in low frequency, can cause serious damages, the interests in off- site consequence analysis for a nuclear power plant have been increased after Chernobyl, TMI and Fukushima accidents. Consequences, which are the effects on health and environment caused by released radioisotopes, are evaluated using MACCS II code based on the method of Level 3 PSA. To perform a consequence analysis for the reference plants, the input data of the code were generated such as meteorological data, population distribution, release fractions, and so on. Using these input data, acute and lifetime dose as an organ, CCDF for early fatalities and latent cancer fatalities, and average individual risk were analyzed by using MACCS II code in this study. These results might contribute to establishing accident management plan and quantitative health object.
원자력발전소 비상전력계통 강화 방안에 따른 리스크 영향 평가
전호준 ( Ho Jun Jeon ) 한국안전학회(구 한국산업안전학회) 2012 한국안전학회지 Vol.27 No.5
Power Supply (EPS) system has been considered as one of the most important safety system. Especially, the interests in the reliability of the EPS system have been increased after the severe accidents of Fukushima Daiichi. Firstly, we performed the risk assessment and the importance analysis of the EPS system based on the PSA models of the reference plant, which is the Korean standard NPP type. Considering a portable Diesel Generator (DG) system as the reliability reinforcement of the EPS system, we modified the PSA models and performed the risk impact assessment and the importance analysis. Although the reliability of the potable DG could be about 20% of the reliability of the alternative AC DG, we identified that Core Damage Frequency (CDF) was decreased by at least 4.6%. In addition, the risk impacts due to the unavailability of the EPS system on CDF were decreased.
양길태(Giltae Yang),전호준(Hojun Jeon),전성표(Jun sung pyo),유원호(Yu Won Ho),심재륜(Shim Jae Ryun) 대한인간공학회 2021 대한인간공학회 학술대회논문집 Vol.2021 No.11
Objective: 보행분석에 사용되는 기술들은 다양한 기법들이 개발되어 있으나, 외부에서 장시간 사용 가능한 방법은 매우 제한된 방법들이 제안되고 있다. 본 연구에서는 압력센서와 가속도센서 자이로센서가 내장된 스마트 인솔을 개발 하였으며, 개발된 스마트 인솔은 실시간으로 스마트폰과 연동되어 데이터를 전송하고, 분석하도록 되어 있다. 일상생활에서의 비정상 보행, 비대칭 보행을 하고 있는 사람들은 자신이 인지 할 수 있을 만큼 그 문제의 정도가 심각하지 않은 상태라면, 그 사실을 모른 채 생활한다. 이는 향후 큰 질병이 발생하는 요인이 될 수 있다. 본 연구에서는 개발된 스마트 인솔을 통해 각 발의 압력 데이터를 수집하여 미리 정의한 정상 보행 시 나타나는 압력 분포를 기준으로 비 정상 보행 여부를 판단하고 TUG(Time Up Go) 실험을 통해 사용자의 신체 나이를 판단하는 근거로 사용하고자 하였다. 일상생활에서의 스마트 인솔 사용은 시간과 공간의 제약이 없는 사용자 친화적이면서 비정상 보행 판단 및 사용자의 신체 나이를 판단하는 근거로 활용되기를 기대한다.
젖소 결핵 검진시 유량 및 유질 변화에 영향을 주는 환경 요인들에 대한 조사
구경녀 ( Kyung-nyer Ku ),전호준 ( Ho-jun Jeon ),김효준 ( Hyo-jun Kim ),정준용 ( Jun-yong Jeong ) 한국동물위생학회 2018 한국동물위생학회지 (KOJVS) Vol.41 No.2
This study was conducted to evaluate the effect of tuberculin test and associated various environmental factors on the quantity and quality of milk production of daily cows. The change of milk quantity followed to tuberculin test was investigated on 109 daily farms in south Gyeonggi, and the change of milk quality was also studied on 48 daily farms. The result of this study showed that the quantity and quality of milk production was decreased after tuberculin test (P<0.05). The amount of loss of the milk production due to tuberculin test was, however, only 0.92 L per cow. In terms of milk quality, the level of total protein was statistically significantly decreased. This study also showed that the milk quality was further decreased when the cows were restraint after veterinarians arrived compared to the case that cows were stayed restraint before the veterinarians visited the farm. In addition, milk quality and quantity were lowered worse when relative humidity of the location of tuberculin test was lower than 50% or higher than 70%, or when the milk production of a farm is higher than its quarter. This study showed that stress on daily cows and the farmers induces the decrease of milk yield and milk quality, and these losses can be minimized by regulating various environmental factors to the direction to maximize productivity.