• Title/Summary/Keyword: 고유황형 환경

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Size Determination Method of Bio-Retention Cells for Mimicking Natural Flow Duration Curves (자연상태 유황곡선 보전을 위한 생태저류지 용량결정방법)

  • Lee, Okjeong;Jang, Suhyung;Kim, Hongtae;Kim, Sangdan
    • Journal of Wetlands Research
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    • v.18 no.4
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    • pp.424-431
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    • 2016
  • LID facilities like bio-retention cells is applied to manage stormwater. LID concept becomes an important part in stormwater management, and the clear understanding of hydrologic performance and hydrologic impact on the corresponding catchment has been needed. In this study, the application of flow duration curves as design strategy is investigated. Bio-retention cells like many LID facilities are installed to reproduce natural hydrologic processes. In this study, the attempt to determine the size of a bio-retention cell is carried out to satisfy the flow duration criteria. From the results, it is shown that "5 mm * the area of a target catchment" which is the current facility design capacity is valid for the drainage area with 20-30% impervious rate. In the 100% impervious catchment where LID facilities are typically installed, the design capacity to intercept stormwater of approximately 47 mm depth is required to reproduce natural flow duration curves. This means that about 11% of the target catchment area should be allocated as a bio-retention cell. However, the criteria of the design capacity and facility surface area should be set at the possible implementation conditions in reality, and site-specific hydrologic characteristics of a target catchment should be considered.

Application of GSTARS and HEC6 for Long-term Prediction of Bed Change in Hyungsan River (형산강의 장기하상변동예측을 위한 GSTARS와 HEC6의 적용)

  • Ahn, Jung-Min;Lyu, Si-Wan;Lee, Nam-Joo;Yeo, Hong-Goo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.958-962
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    • 2008
  • 하천유황, 하상재료, 하도지형의 자연적 또는 인위적 변화에 의한 장 단기적 하상변동의 해석 및 예측은 하천계획 및 관리를 위해 필수적이다. 특히, 제방 축조 등의 인위적 정비로 충적층 발달이 미약한 우리나라 하천은 상대적으로 종단형의 변화가 중요한 문제로 등장하였다. 하천의 이수, 치수 및 환경기능에 복합적으로 영향을 미치는 장기적인 하상변동 예측을 국가하천 형산강에 대해여 HEC6 모형과 GSTARS 모형을 이용하여 수행하였다. 본 연구에서는 $2006{\sim}2007$년 동안 형산강에서 직접 실측한 유량-유사량, 하상토, 하천측량자료를 GSTARS와 HEC6 모형에 적용하여 장기 하상변동을 모의하고 그 결과 값을 비교 분석하였다. 수위표 지점인 형산교(모아), 강동대교(안강), 국당2교(부조), 신형산교(대송)를 내부경계조건으로, HEC-RAS를 통하여 조도계수 값을 보정하였으며 유량 값은 유황곡선을 통하여 연간유입량을 각 날짜별로 구성하였다. 모형의 검증은 Laursen (1963), Laursen (Modified by Maddden, 1985), Laursen (Modified by Copeland, 1990), Yang (1973) 공식을 이용하여 최심하상고 변화량 제곱근 오차가 가장 작은 공식을 선정하였다. 2006년 형산강에서 실측된 하천측량자료를 이용하여 14년간 장기하상을 모의해 본 결과 형산강 유역에서는 Laursen (Modified by Copeland, 1990, HEC6)와 Laursen (1958, GSTARS)공식이 가장 작은 오차를 나타내었으며 HEC6와 GSTARS는 하상변동의 경향을 잘 나타내었다. 형산강의 전반적인 하상변동 경향은 상류지역은 전반적으로 하상이 저하하였고 하류지역은 하상이 상승하였다. 또한 하류부는 하상이 안정화를 이루고 있어 변화가 적은 것으로 판단된다. 하지만 검증 기간 동안의 골재채취와 보의 설치 등의 외부 여건과 신뢰성 있는 유입유량을 반영하지 못하였기 때문에 보다 나은 결과를 얻기 위해서는 지속적인 유량-유사량의 관측과 자료의 보완 및 정밀 조사 분석이 필요하다.

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Mineralogical and Fluid Inclusion Study on Seafloor Hydrothermal Vents at TA25 Subsea Caldera in Tongan Waters (통가 TA25 해저산 칼데라 해저열수 분출구의 광석광물 산상 및 유체포유물 연구)

  • Choi, Sun Ki;Lee, Kyeong-Yong;Pak, Sang Joon;Choi, Sang-Hoon;Lee, In-Kyeong
    • Economic and Environmental Geology
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    • v.48 no.4
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    • pp.273-285
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    • 2015
  • The extensive hydrothermal deposits have been found, for the first time, on the western TA25 seamount caldera in the Tonga arc. The seafloor hydrothermal vents are active and immature, emitting the transparent fluids of which temperatures range from $150^{\circ}C$ to $242^{\circ}C$ (average=$203^{\circ}C$). The recovered hydrothermal sulfides are mainly composed of sphalerite, pyrite, marcasite, galena, chalcopyrite, covellite, tennantite, enargite and sulfates such as barite, gypsum/anhydrite. Predominant sphalerite categorize it into Zn-rich hydrothermal ore body. Zn-rich sulfide ores have minor enargite, indicating that mineralization occurred in high sulfidation environment. The proportion and FeS content of sphalerite increase from outside to inside of the hydrothermal ores, respectively. In particular, sphalerite has a great silver content (up to ~10 wt.%). Chalcopyrite is more frequently observed in mound than in the chimney, implying mineralization temperature in the mound is higher than in the chimney. Homogenization temperatures and salinities from fluid inclusions in barite at the mound range from $148^{\circ}C$ to $341^{\circ}C$ (average=$213^{\circ}C$) and 0.4 to 3.6 equiv. wt.% NaCl, respectively. Homogenization temperatures suggest that sulfides in the mound mineralized at a higher temperature (${\geq}200^{\circ}C$) than in the chimney.

Hydrothermal Alteration and Its Cenetic Implication in the Casado Volcanic-hosted Epithermal Cold-Silver Deposit: Use in Exploration (가사도 화산성 천열수 금은광상의 열수변질대 분포 및 성인: 탐사에의 적용)

  • 김창성;최선규;최상훈;이인우
    • Journal of the Mineralogical Society of Korea
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    • v.15 no.3
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    • pp.205-220
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    • 2002
  • The gold-silver deposits in the Casado district were formed in the sheeted and stockwork quartz veins which fill the fault fractures in volcanic rocks. K-Ar dating of alteration sericite (about 70 Ma) indicates a Late Cretaceous age for ore mineralization. These veins are composed of quartz, adularia, carbonate, and minor of pyrite, sphalerite, chalcopyrite, galena, Ag-sulfosalts (argentite, pearceite, Ag-As-Sb-S system), and electrum. These veins are characterized by chalcedonic, comb, crustiform and feathery textures. Based on the hydrothermally altered mineral assemblages, regional alteration zoning associated with mineralization in the Gasado district is defined as four zones; advanced argillic (kaolin mineral-alunite-quartz), argillic (kaolin mineral-quartz), phyllic (quartz-sericite-pyrite) and propylitic (chlorite-carbonate-quartz-feldspar-pyroxene) zone. Phyllic and propylitic zones is distributed over the study area. However, advanced argillic zone is restricted to the shallow surface of the Lighthouse vein. Compositions of electrum ranges from 14.6 to 53.7 atomic % Au, and the depositional condition for mineralization are estimated in terms of both temperature and sulfur fugacity: T=245。$~285^{\circ}C$, logf $s_2$=$10^{-10}$ ~ $10^{-12}$ Fluid inclusion and stable isotope data show that the auriferous fluids were mixed with cool and dilute (158。~253$^{\circ}C$ and 0.9~3.4 equiv. wt. % NaCl) meteoric water ($\delta^{18}$ $O_{water}$=-10.1~8.0$\textperthousand$, $\delta$D=-68~64$\textperthousand$). These results harmonize with the hot-spring type of the low-sulfidation epithermal deposit model, and strongly suggest that Au-Ag mineralization in the Gasado district was formed in low-sulfidation alteration type environment at near paleo-surface.