• 제목/요약/키워드: Debris Flow

검색결과 439건 처리시간 0.025초

부산 광안리 해수욕장에서 표착된 플라스틱 폐기물의 오염 특성 (Pollution Characteristics of Plastic Debris on the Gwanganri Beach, Busan)

  • 김종화
    • 수산해양교육연구
    • /
    • 제27권6호
    • /
    • pp.1854-1864
    • /
    • 2015
  • In order to analyze the pollution characteristics of small plastic debris(SPD) ashore on the shoreline of coastal flow, 12 times of survey were conducted on the Gwanganri beach of Busan for nearly 3 years. The sampled stations on the beach were divided into 11 squared survey sites from St. G1 to G11(see [Fig. 1]) and all of SPD was sorted into 11 items like P1 to P11 according to the kind of plastic materials and products(see

    ). 1. Total weights of them were widely ranged from 3.23g to 30.58g and also total amounts, from 39 ea to 398 ea on each site. 2. The ratio of items, P2 and P3, were accounted for 63% among all of them. 3. The seasonal variabilities of them were not founded with remarkable. 4. The correlation of total weights and amounts have reliable coefficients to some extent on the survey sites, but nearly didn't have reliances on items. 5. The average densities of total weights and amounts were computed with $4.506g/m^2$, $51.936ea/m^2$, respectively.

  • Low-k 웨이퍼 레이저 인그레이빙 특성에 관한 연구 (Study on low-k wafer engraving processes by using UV pico-second laser)

    • 남기중;문성욱;홍윤석;배한성;곽노흥
      • 한국레이저가공학회:학술대회논문집
      • /
      • 한국레이저가공학회 2006년도 추계학술발표대회 논문집
      • /
      • pp.128-132
      • /
      • 2006
    • Low-k wafer engraving process has been investigated by using UV pico-second laser with high repetition rate. Wavelength and repetition rate of laser used in this study are 355nm and 80MHz, respectively. Main parameters of low-k wafer engraving processes are laser power, work speed, assist gas flow rate, and protective coating to eliminate debris. Results show that engraving qualities of low-k layer by using UV pico-second pulse width and high repetition rate had better kerf edge and higher work speed, compared to one by conventional laser with nano-second pulse width and low repetition rate in the range of kHz. Assist gas and protective coating to eliminate debris gave effects on the quality of engraving edge. Total engraving width and depth are obtained less than $20{\mu}m$ and $10{\mu}m$ at more than 500mm/sec work speed, respectively. We believe that engraving method by using UV pico-second laser with high repetition rate is useful one to give high work speed of laser material process.

    • PDF

    ENHANCEMENT OF DRYOUT HEAT FLUX IN A DEBRIS BED BY FORCED COOLANT FLOW FROM BELOW

    • Bang, Kwang-Hyun;Kim, Jong-Myung
      • Nuclear Engineering and Technology
      • /
      • 제42권3호
      • /
      • pp.297-304
      • /
      • 2010
    • In the design of advanced light water reactors (ALWRs) and in the safety assessment of currently operating nuclear power plants, it is necessary to evaluate the possibility of experiencing a degraded core accident and to develop innovative safety technologies in order to assure long-term debris cooling. The objective of this experimental study is to investigate the enhancement factors of dryout heat flux in debris beds by coolant injection from below. The experimental facility consists mainly of an induction heater, a double-wall quartz-tube test section containing a steel-particle bed and coolant injection and recovery condensing loop. A fairly uniform heating of the particle bed was achieved in the radial direction and the axial variation was within 20%. This paper reports the experimental data for 3.2 mm and 4.8 mm particle beds with a 300 mm bed height. The dryout heat density data were obtained for both the top-flooding and the forced coolant injection from below with an injection mass flux of up to $1.5\;kg/m^2s$. The dryout heat density increased as the rate of coolant injection increased. At a coolant injection mass flux of $1.0\;kg/m^2s$, the dryout heat density was ${\sim}6.5\;MW/m^3$ for the 4.8 mm particle bed and ${\sim}5.6\;MW/m^3$ for the 3.2 mm particle bed. The enhancement factors of the dryout heat density were 1.6-1.8.

    자외선 피코초 레이저를 이용한 Low-k 웨이퍼 인그레이빙 특성에 관한 연구 (A Study of Low-k Wafer Engraving Processes by Using Laser with Pico-second Pulse Width)

    • 문성욱;배한성;홍윤석;남기중;곽노흥
      • 반도체디스플레이기술학회지
      • /
      • 제6권1호
      • /
      • pp.11-15
      • /
      • 2007
    • Low-k wafer engraving process has been investigated by using UV pico-second laser with high repetition rate. Wavelength and repetition rate of laser used in this study are 355 nm and 80 MHz, respectively. Main parameters of low-k wafer engraving processes are laser power, work speed, assist gas flow, and protective coating to eliminate debris. Results show that engraving qualities of low-k layer by using a laser with UV pico-second pulse width and high repetition rate had better kerf edge and higher work speed, compared to one by conventional laser with nano-second pulse width and low repletion rate in the range of kHz. Assist gas and protective coating to eliminate debris gave effects on the quality of engraving edge. Total engraving width and depth are obtained less than $20\;{\mu}m$ and $10\;{\mu}m$ at more than 500 mm/sec work speed, respectively. We believe that engraving method by using UV pico-second laser with high repetition rate is useful one to give high work speed in laser material process.

    • PDF

    FLUID-GRANULE MIXED FLOIW DOWNSTREAM OF SCOUR HOLE AT OUTLET OF HYDRAULIC STRUCTURE

    • Kim, Jin-Hong;Shim, Myung-Pil;Kim, Kyung-Sub
      • Water Engineering Research
      • /
      • 제3권3호
      • /
      • pp.155-162
      • /
      • 2002
    • This study presents the theoretical approach for volume concentration, velocity profile, and granular discharge on the fluid-granule mixed flow downstream of the scour hole at the outlet of the hydraulic structure. Concept of dilatant model was applied for the stress-strain relationships of fluid-granule mixed flow since the flow downstream of the scour hole corresponds to debris flow, where momentum transfers through particle collisions. Mathematical formulations were derived using momentum equation and stress-strain relation of the fluid-granule mixture. Velocity profile under the assumption of uniform concentration over flowing layer showed the downward convex type. Deposition angle of downstream hump was found to be a function of an upstream slope angle, a dynamic friction angle and a volume concentration irrespective of flow itself, Granular discharge and the overflow depth were obtained with given values of inflow rates. Experimental results showed relatively good agreements with theoretical ones.

    • PDF

    수치해석을 통한 토석류사방댐 설치위치개선에 관한 연구 (Debris Flow Dam Positioning Improving by Numerical Analysis)

    • 장창덕;전계원;전병희;연규방
      • 한국방재학회:학술대회논문집
      • /
      • 한국방재학회 2011년도 정기 학술발표대회
      • /
      • pp.49-49
      • /
      • 2011
    • 토석류(Debris flow)는 산지사면이나 계곡 등에서 진흙과 돌덩어리 등을 포함하는 토석 그 자체 또는 토석과 물의 일체가 유체의 상으로 흘러내리는 흐름을 말하는 것으로 발생을 예측하기가 곤란하며, 하류에 도로가 존재하거나 인근에 민가가 있을 시 막대한 피해를 가져오는 자연현상이다. 또한 산지계곡에서 발생하는 토석류는 발생장소와 시기가 서로 떨어져 있어 연구를 진행하는데 어려움이 있다. 국내에서는 토석류피해의 저감을 위한 방법으로 주로 토석류 대책 사방댐의 설치를 선택하고 있다. 하지만 사방댐의 설치위치는 현재까지 모호한 결정기준에 의지하고 있어 이에 대한 개선이 필요한 실정이다. 본 연구에서는 3차원 정밀좌표를 손쉽게 취득할 수 있는 삼차원 광대역 레이저 스캐너를 이용하여 토석류 발생 가능성이 높은 지역의 지형자료를 취득하고 토석류를 해석할 수 있는 1차원 수치모형을 이용하여 토석류 유출량을 예측하였다. 또한 사방댐의 설치위치결정에 대한 참고자료로 활용하기 위해 사방댐의 토석류피해 저감효과를 설치위치에 따라 분석하였다. 모형의 적용결과 토석류 발생 저감을 위해 설치한 사방시설의 위치에 따른 토석류 저감효과를 비교 확인할 수 있었다.

    • PDF