• 제목/요약/키워드: Radon reduction by ventilation

검색결과 14건 처리시간 0.024초

Fuzzy optimization of radon reduction by ventilation system in uranium mine

  • Meirong Zhang;Jianyong Dai
    • Nuclear Engineering and Technology
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    • 제55권6호
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    • pp.2222-2229
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    • 2023
  • Radon and radon progeny being natural radioactive pollutants, seriously affect the health of uranium miners. Radon reduction by ventilation is an essential means to improve the working environment. Firstly, the relational model is built between the radon exhalation rate of the loose body and the ventilation parameters in the stope with radon percolation-diffusion migration dynamics. Secondly, the model parameters of radon exhalation dynamics are uncertain and described by triangular membership functions. The objective functions of the left and right equations of the radon exhalation model are constructed according to different possibility levels, and their extreme value intervals are obtained by the immune particle swarm optimization algorithm (IPSO). The fuzzy target and fuzzy constraint models of radon exhalation are constructed, respectively. Lastly, the fuzzy aggregation function is reconstructed according to the importance of the fuzzy target and fuzzy constraint models. The optimal control decision with different possibility levels and importance can be obtained using the swarm intelligence algorithm. The case study indicates that the fuzzy aggregation function of radon exhalation has an upward trend with the increase of the cut set, and fuzzy optimization provides the optimal decision-making database of radon treatment and prevention under different decision-making criteria.

대학의 실내 라돈가스 농도의 변화 평가 (Assesment of Indoor Radon Gas Concentration Change of College)

  • 박훈희;정의환;김학재;이주영;유광열
    • 대한방사선기술학회지:방사선기술과학
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    • 제40권1호
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    • pp.127-134
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    • 2017
  • 본 연구는 실내 라돈 가스의 농도를 낮추기 위한 방법을 찾기 위해 건물의 준공연도, 건물의 용적, 환기 세 가지 변수에 따른 실내 라돈 농도를 비교, 측정하여 그 영향을 알아보고자 한다. 측정은 1973년에 건축이 되었고, 2011년에 증축이 된 건물의 6층을 대상으로 용적이 서로 다르고 준공연도가 1973년과 2011년인 6개의 강의실을 측정하였다. 준공연도에 따른 라돈농도를 비교하기 위해 4개의 강의실을 선정하였고, 용적에 따른 라돈농도를 비교하기 위해 준공연도가 같고 용적이 다른 강의실을 선정하였고, 환기에 따른 라돈농도를 비교하기 위해 6개의 강의실의 폐쇄와 환기를 시행하였다. 결과적으로 준공연도에 따른 라돈농도는 최근에 지어진 건물에서 라돈농도가 최대 4배 높게 나타났으며, 용적에 따른 라돈농도는 용적이 작을수록 높게 나타났다. 환기에 따른 라돈농도의 변화는 폐쇄 시보다 환기를 할 경우 약 80%의 감소율을 보였다. 특히, 준공연도가 최근이면서 용적이 작을수록 라돈농도가 높게 검출되었고, 세 가지 변수 중 환기가 라돈농도 감소에 가장 큰 영향을 끼쳐 라돈에 의한 피폭감소 효과를 기대할 수 있을 것으로 사료된다.

건축물 유형에 따른 라돈 저감 효과 평가 (Evaluation for Effectiveness of Radon Mitigation on Dwellings and Public Buildings in Korea)

  • 이동현;류승훈;조정흠;서성철
    • 한국산업보건학회지
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    • 제24권4호
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    • pp.518-527
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    • 2014
  • Objectives: The adverse health effects attributed to exposure to radon have been well known over the world. However, the efforts for prevention and mitigation of radon have not been taken in Korea so far. The purpose of this study was to evaluate the effectiveness of mitigation methods applied for various types of houses and public buildings with high level of radon. Methods: Based on the results of "National Radon Survey" performed by the National Institute of Environmental Research(NIER) in 2010-2012, we selected 30 candidate buildings consisting of 20 houses and 10 public buildings with greater than $148Bq/m^3$ of radon level. We measured the concentration of radon in 30 buildings, using E-PERMs and RAD-7 during January to March of 2013. More than five E-PERMs and one RAD-7 per house were installed for seven days. Ten houses and five public buildings were finally chosen to be mitigated after mainly considering the level of radon and the location of buildings nationwide. Three mitigation methods such as Sealing, two types of Active Ventilation(window-shaped and wall-typed ventilations), and Active Soil Depressurization(ASD) were applied, and the concentrations of radon were measured before and after mitigation, respectively. To evaluate the effectiveness of mitigation methods, reduction rates of radon were calculated and Wilcoxon's signed-rank test was performed. Results: The mean concentration of 15 buildings just before radon mitigation was $297.8Bq/m^3$, and most of the buildings were located in Gangwon, Chungbuk, Chungnam, and Daegu areas(73.3%), and built in 1959-1998. The level of radon decreased from 48% to 90% and kept the below recommendation limit of $148Bq/m^3$ after installation of radon mitigation. Among mitigation methods applied, the reduction rate(58.7-90.4%) of radon attributed to ASD was the greatest than that of other methods, followed by Active Ventilation(48.4-78.4%) and Sealing(<22%). The effectiveness of radon reduction by window-shaped Active Ventilation(63.2-75.2%) was relatively better than that of wall-typed Active Ventilation(48.4-54.3%). Conclusions: The results of this study indicate that ASD could be more effective for radon mitigation. Moreover, our findings would be background information in future for making the strategy for radon mitigation nationwide, as well as for developing Korean-version of mitigation techniques according to types of dwellings in Korea.

서울시 지하철역내의 라돈 농도분포 및 저감대책 (Concentration Distributions and A Reduction Strategy of Airborne Radon in Seoul Metropolitan Subway Stations)

  • 김동술;김윤신;김신도;신응배;김성천;유정석
    • 한국대기환경학회지
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    • 제9권4호
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    • pp.271-277
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    • 1993
  • Indoor radon has been known as one of the notorious carcinogens. However, a safe environmental criterion of radon has not yet been established in Korea, The main objectives of this study were to study concentration distributions of radon, to trace radon sources in subways, and to obtain a strategy for radon reduction in Seoul metropolitan area. Radon concentrations had been extensively determined by several steps. The first step was to survey radon levels in all of 83 subway stations from October to November in 1991. The second step was to select 40 out of 83 stations and then to study seasonal variations in 1991 and 1992. The third step was to monitor radon levels by hourly-basis plans. The fourth step was to seek a radon reduction strategy by altering ventilation at Ankuk station where had the highest radon concentration during the first measurement step. Each underground floor in the station was divided into 10 sites to measure hourly radon variations. The final step of the study was to measure radon concentrations in groundwater that is one of the possible main sources radon place. The result of the various measuring approaches showed short-and long-term radon variation and indicated radon reduction schemes.

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서울지역 건축물의 환경적 특성에 따른 실내 라돈농도 변화 (The Variation Characteristics of Indoor Radon Concentration from Buildings with Different Environment, Seoul)

  • 전재식;이지영;엄석원;채영주
    • 한국대기환경학회지
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    • 제27권6호
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    • pp.692-702
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    • 2011
  • For more effective indoor radon reduction policy and technique, we researched radon data analysis for some buildings in Seoul. Those buildings were categorized as dwelling, underground and office space and the variations of radon concentration and its sources were evaluated. The variations of radon concentrations of indoor space of buildings for a day were patterned specifically by dwelling habits and different environment. As for the new built apartments which were not yet moved in, their indoor radon concentrations were showed more than 3 times after applying interior assembly, and were 5 times higher than ones of rather old residences. As for the subway stations, the radon concentrations during off-run times were about 15% higher than run-times. 10% of radon seemed to be reduced by installation of platform screen doors. As for office space, radon concentrations during working hours were about 2.5 times higher than non-working hours. Plaster board are expected as a main source of radon for them. By radon measurement method for long-term, its data can be over estimated because it covers non-active time in office or public space. Therefore combination of short and long-term measurement method is required for effective and economic reduction. Furthermore importance of ventilation is requested as public information service for all dwelling space. And also standardization for radium content or radiation of radon is necessary.

환기를 이용한 지하 역 실내 공기질 개선 방안 (Reduction Methods of Indoor hiy Quality on the Subway Station using by Ventilation)

  • 박덕신;정병철;조준호;정우성
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2001년도 춘계학술대회 논문집
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    • pp.139-146
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    • 2001
  • Modern people stay at indoor places about 90% of a day. Radon-222 is a gas produced radioactive decay of the element radium. And, radon is one of the major indoor air pollutants moves into the underground space through various routes and is considered to cause lung c hurting the lung tissues, In this study, we measured the subway radon level at 9 stations o According to test results, we can figure out the concentration of radon by lines, times, and m points. So, it was found that ventilation conditions are the most important factors in the su quality. Finally, we suggested effective and economic management methods of air pollution subway.

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5678 서울도시철도 지하역사의 라돈 관리 현황 (Current Status of Radon Management in the 5678 Seoul Metropolitan Rapid Transit Subway)

  • 김준현;윤현식;서강진;우희영;김만화;박종헌
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 춘계학술대회 논문집
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    • pp.1306-1312
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    • 2011
  • Underground Subway station's air pollutants are introduced from the indoor or outdoor. And Radon is a major pollutant in the subway station. Radioactive substances Radon is occuring naturally in granite tunnel wall and underground water. Especially inert gas Radon that causes lung cancer in human is anywhere but 5678 S.M.R.T. tunnels deep and pass through the granite plaque have a lot of Radon. The Radon concentration is determined by the following reasons : radon content of soil and concrete, underground water, ventilation, pressure difference, building structure, temperature, etc. So Radon concentration is hard to predict. And we can't only ventilate owing to era of high oil prices. This study focuses on our efforts for the reduction of Radon concentration. And the purpose is to provide basically datas of specially managed 15 subway station's Radon concentration.

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대전광역시 주택 실내 라돈 농도 분포와 저감 공법 적용 연구 (A Study on the Distribution and Reduction Method of Indoor Radon Concentration in Daejeon Metropolitan City)

  • 장용철;양재환;김홍경;이가인;송하균;김병환;권영선
    • 환경영향평가
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    • 제31권5호
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    • pp.286-295
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    • 2022
  • 본 연구에서는 대전광역시 실내 라돈의 농도 분포를 조사하고 라돈 저감 공법을 적용하여 저감 효율을 평가하였다. 전국주택라돈조사 결과를 기초로 선별된 24개 주택을 대상으로 실내 라돈 측정을 실시한 결과, A자치구의 평균치가 261 Bq/m3로서 기준치를 크게 상회하는 수준임을 알 수 있었고, 동일한 주택에서도 실내 라돈 농도는 측정 지점과 시간에 따라 영향을 받고 있음을 확인하였다. 라돈 저감을 위해 토양 배기법을 적용한 8개 주택의 경우, 실내 라돈 수치는 기준치에 비해 크게 낮아졌으며 평균 저감 효율 역시 55% 정도로 나타나 양호한 라돈 저감 효과를 알 수 있었다. 또한 차폐법을 실시한 2개의 주택에서는 평균 저감 효율이 90% 정도로서 실내 라돈 저감 효과가 매우 우수하였다. 라돈 저감 시 동일한 저감공법을 적용하여도 건물의 구조, 환기의 빈도, 계절 등 여러 요인에 따라 저감 효율이 달라질 수 있으므로 향후 다양한 인자를 반영하여 저감공법의 효과를 정밀하게 평가할 필요가 있다. 이를 기초로 하여 라돈 노출에 의한 인체 위해 저감을 위한 대전광역시 실내 라돈 관리 대책 마련이 필요하다.

계절적 라돈농도 변화 및 토양기원 실내라돈과 토양내 라돈농도의 상관성 분석 -단독주택 사례연구- (Seasonal Radon Concentration and Correlation Analysis of Indoor Radon Originated from Soil and Soil Radon at Detached House)

  • 조주현;김영희
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제22권5호
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    • pp.105-111
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    • 2017
  • In this study, the variation of indoor and soil radon concentrations were measured at a test bed (detached house), and correlation analysis was performed using linear regression. The results showed that the average concentration of indoor radon was increased by about 20% when the heater was operated in the house, but it was decreased by 15% when the ventilation system was on. In the changes of seasonal radon concentrations, soil and indoor radon concentrations in winter were higher than in summer. Statistical analysis showed a weak correlation between the soil radon and indoor radon, but the correlation (R=0.852, $R^2=0.726$) was relatively high at exhaust condition in the winter. It is difficult to extrapolate the results of the study to the general cases because radon distribution is highly site-specific, but the result of this study could be used as a reference for radon management and reduction of detached house in the future investigations.

소규모수도시설 지하수의 라돈저감 특성 (Characteristics of Radon Reduction of Small-scale Water Supply System)

  • 조병욱
    • 지질공학
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    • 제29권1호
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    • pp.37-50
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    • 2019
  • 지하수를 원수로 이용하는 소규모수도시설의 라돈 저감은 주로 저수조에서의 정치와 폭기에 의해 일어난다. 여름철 정치에 의한 32개 소규모수도시설 저수조와 꼭지수의 라돈 저감율은 -69.3~62.7%(평균 25.7%)와 -64.3%~83.1%(평균 30.3%), 가을철 정치에 의한 16개 소규모수도시설 저수조와 꼭지수의 라돈 저감율은 21.3%~78.0%(평균 42.8%)와 17.7%~66.9%(평균 44.8%)로 나타났다. 여름철보다 가을철의 라돈 저감률이 더 높은 것은 가을철의 지하수 사용량이 더 적어서 정치효과가 더 컸기 때문으로 판단된다. 폭기시설이 설치된 12개 저수조의 라돈 저감률은 47.4~94.0%(평균 78.9%)로 나타났는데 이 저감률에는 정치에 의한 라돈 저감률이 합쳐져 있다. 소규모수도시설 지하수의 라돈 저감을 위해서는 정치와 폭기를 이용할 수 있는데 보다 효율적인 활용을 위하여 지하수의 라돈 함량 변동성, 저수조의 크기와 형태, 지하수 사용량 변화, 폭기량, 환기시설 등을 고려한 라돈 저감 연구가 필요하다.