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      • KCI등재

        확장형 칼만필터를 이용한 현수교의 감쇠성능 평가

        박동욱(Park Dong-Uk),김남식(Kim Nam-Sik) 대한토목학회 2011 대한토목학회논문집 A Vol.31 No.2A

        감쇠비는 현수교에 있어서 교량진동을 평가하기 위한 중요한 동적 요소 중 하나이다. 하지만, 실재 현수교에서 계측된 상시 진동신호로부터 감쇠비를 직접적으로 추정하는 것은 현실적으로 매우 어려운 일이다. 뿐만 아니라, 한정된 계측자료를 이용하여 추정된 감쇠비로부터 공기역학적 감쇠와 마찰 감쇠를 구분하는 것은 더욱 어렵다. Macdonald는 2005년 발표한 자료에서 공기 역학적 감쇠성능은 풍속에 따라 선형적으로 증가한다고 하였으며, Park등은 감쇠성능은 진동의 크기에 따라 변화할 수 있다고 하였다. 따라서 본 논문에서는 이러한 감쇠비, 풍속, 진동의 크기 사이의 관계를 연구하여, 추정 감쇠비로부터 공기역학적 감쇠와 마찰 감쇠를 구분하고자 하였다. 본 논문에서 감쇠비 추정대상으로는 전라남도 고흥에 위치한 소록대교를 선택하였으며, 감쇠비 추정에는 Hilbert 변환법을 이용한 방법과 확장형 칼만필터를 이용하였다. 또한 두 방법으로 추정된 감쇠비들을 상호 비교를 실시하였다. 그 결과, 상시진동 자료와 차량재하실험으로부터 얻어진 자료를 이용하여 추정된 감쇠비와 풍속, 그리고 가속도의 크기를 이용하여 추정 감쇠비로부터 공기역학적 감쇠 성능과 마찰 감쇠 성능의 구분이 가능하다는 것을 알 수 있었다. The damping ratio as an index of bridge vibration could be considered as one of the important dynamic characteristics of a suspension bridge. But estimating of damping ratio on an existing suspension bridge under ambient vibration condition could be a laborious task. Moreover, it is not simple to directly distinguish aerodynamic damping and friction damping from apparent damping. According to previous studies, the aerodynamic damping properties can be linearly affected by wind speed level, and apparent damping ratio can be affected by amplitude of vibration. Therefore, in this article, the relationships among damping ratio, wind speed level and amplitude of acceleration were studied for separating extract aerodynamic damping and friction damping from apparent damping. Damping ratios on Sorok Bridge, a suspension bridge which is a located in Go-Heung, Korea, were estimated by two different methods as using Hilbert transform and extended Kalman filter which were well known as effective estimation methods for non-linear state. It was possible to distinguish aerodynamic damping and friction damping from apparent damping using averaged normal components of wind speed, RMQ values of acceleration, and estimated damping ratios from wind-induced vibration responses and vehicle loading responses.

      • KCI등재

        탈크노출과 건강상의 위험

        박동욱,Park, Dong-Uk 한국환경보건학회 2009 한국환경보건학회지 Vol.35 No.3

        In Korea, talc that has been widely used for a lot of consumer products as well as industrial usage until recently was found to be contaminated with asbestos. It becomes a major social issue. Critical health risk about both talc and talc contaminated with asbestos was summarized through literature review. It has been confirmed that talc can pose ovarian cancer when talc powder is used in the genital area. International Agency for Research on Cancer (IARC) already concluded that the perineal use of cosmetic talc can cause possibly carcinogenic to humane(Group 2B), although there was study reporting the lack of a consistent an established correlation between perineal dusting frequency and ovarian tissue talc concentrations and the lack of a consistent dose-response relationship with ovarian cancer risk. The association between talc exposure and ovarian cancer is as strong as in recent studies. The epidemiological studies to date provided inadequate evidence for the carcinogenicity of either inhaled or ingested talc that does not contain asbestos or asbestosiform fibers. Future studies should focus on seeking evidence in talc-exposed populations, collecting reliable information on age at initial used of body powder, exposure assessments related to talc use and dose response relationship in order to identify possible risk of talc ingested or inhaled.

      • KCI등재

        시간경과, 교반 및 분산제 첨가에 따른 물-Al<sub>2</sub>O<sub>3</sub> 나노유체 열전도도 변화에 관한 실험적 연구

        박동욱,박창용,Park, Dong-Uk,Park, Chang Yong 한국생산제조학회 2013 한국생산제조학회지 Vol.22 No.3

        A water-$Al_2O_3$ nanofluid was manufactured, and its thermal conductivity was measured in this study. The measurement was performed at volumetric concentrations of 0.5%, 1%, 2%, and 3%, and the nanoparticle sizes were 20 nm and 70 nm. Experimental test equipment, using the transient hot wire method, was installed to measure the thermal conductivity of the nanofluid, and the measured results were confirmed by measuring pure water with a measurement error of 0.92% at $20^{\circ}C$. The thermal conductivity enhancement ranged from 4.8% to 13.6% for the 20 nm particle size, and from 3.1% to 8.8% for the 70 nm particle size at a concentration range of 0.5% to 3%. The enhancement increased with a decrease in particle size and an increase in concentration. With the elapse of time after manufacturing the nanofluid, the thermal conductivity enhancement decreased significantly from 5 to 9 h, and this trend was measured under all of the measurement conditions. After 24 h, the enhancement ranged from 1.2% to 3.5% for the 20 nm particles, and from 0.6% to 2.3% for the 70 nm particles. The enhancement trends with the elapse of time were almost identical with and without stirring the nanofluid. SDBS (Sodium Dodecyl Benzene Sulfonate) was added as a dispersing agent, and the decrease in the thermal conductivity enhancement was delayed.

      • KCI등재SCISCIESCOPUS
      • KCI등재

        Loss of Metalworking Fluids Collected on PVC Filter Due to Contact with Clean Air and Desiccation

        박동욱,하권철,Park, Dong-Uk,Ha, Kwon-Chul 한국분석과학회 2001 분석과학 Vol.14 No.5

        Because liquids with high molecular weight such as mineral oil have low vapor pressure at room temperature, it is generally thought to be difficult to lose them to evaporation. However, when they are dispersed into air in small droplets during application in machining processes, their surface area becomes considerably higher. To determine the potential for metalworking fluids (MWF) filter losses, MWF mist was generated and collected on polyvinyl chloride (PVC) filters in test chamber. After collected MWF was exposed to clean air during designated period (range 10~240 minutes) and the filters were desiccated, losses were evaluated. As duration of clean air passing through PVC filter increased, loss of MWF gradually increased. MWF lost after 10 minutes ranged form 12.4 % to 21.8 % of the original loading mass, on average 53.3 % of the total loss. These results indicate that significant mass of MWF collected on PVC filters can be lost at the beginning of air sampling. Loss of MWF collected on PVC filter also occurred during desiccation without active airflow. In multiple regression to identify which factors influence the loss of MWF collected on PVC filter, both duration of air passing through PVC filter and MWF age (fresh vs. used) were significant predictor (p=0.0001). Therefore, workers' exposure to MWF measured method 0500, may underestimate true concentration. Further study is needed to develop a new method to quantify the workers' exposure to airborne MWF mist accurately. 절삭유(Metalworking Fludis, MWF) 노출로 인한 건강상의 장애는 암, 호흡기질환, 피부질환이다. MWF는 20여가지 이상의 화학물질이 혼합된 고분자의 화합물로서 상온에서 쉽게 증발되지 않는다. 이러한 특성으로 공기 중 MWF미스트의 측정과 분석은 PVC필터를 이용한 중량법이 국제적으로 공인되어 이용되고 있다. 그러나 사업장에서 MWF는 사용과정에서 분산되면 표면적이 커지고 증발하기 쉬운 상태로 된다. 본 연구는 실험실에서 MWF미스트 발생장치를 제작하여 MWF미스트가 필터에 채취되고 분석되는 과정에서 손실되는 양과 원인을 정량적으로 분석하였다. 즉 챔버에서 MWF가 채취된 PVC필터를 깨끗한 공기로 일정시간동안(10 ~ 240 분) 접촉하고 건조하여 각각의 과정(공기접촉, 건조기간)에서의 손실을 평가하였다. 공기와의 접촉 10분 후에 손실된 MWF양은 원래양의 12.4% - 21.8%였다. 전과정에서 손실된 양의 53.3%가 공기의 접촉초기에 일어나는 것을 확인하였다. PVC필터에 채취된 MWF의 손실은 건조과정에서 일어난 것을 확인하였다. PVC필터에 채취된 MWF의 손실에 영향을 미치는 요인을 분석하기 위한 다중회귀분석에서 MWF의 특성(사용중인 것과 사용하지 않는 것)이 유의한 예측변수였다. 이 연구 결과에 따르면, 국제적으로 공인된 증량법에 의한 공기중 MWF측정은 과소평가되는 것으로 판단된다.

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