• Title/Summary/Keyword: 진양호

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수출현장 - 수곡덕천영농조합법인 - 동남아시아에 부는 딸기 한류 'Berry Licious' 브랜드 파워 입증

  • 한국작물보호협회
    • Life and Agrochemicals
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    • s.275
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    • pp.42-45
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    • 2012
  • 올겨울 60년만의 최대 한파를 몰고온 동장군의 기세는 입춘을 지나자 봄의 문턱 뒤편으로 슬그머니 사라졌다. 봄을 재촉하는 남녘의 2월 중순, 수출현장 그 두 번째로 경남 진주시 수곡면에 위치한 수곡덕천영농조합법인(대표 문수호)을 찾아 떠나는 길에는 경호강과 덕천강이 만나 형성된 서부경남의 유일한 인공 호수인 진양호가 위용을 뽐내고 있다. 진양호는 진주의 대표 관광지로 수려한 자연경관과 깨끗하고 아름다운 자연을 즐길수 있는 곳으로 올봄 벚꽃이 만개하면 우리들에게 어떤 설레임을 안겨줄지 궁금해지는 곳이다.

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Lake's Function on Control of Refractory Dissolved Organic Matter caused by Upstream Rivers to Andong Lake and JinYang Lake (안동호와 진양호의 상류하천발생 난분해성유기물질 제어에 대한 호소의 기능)

  • Choi, Byoung-Woo;Kang, Mee-A;Sohn, Ho-Yong
    • Journal of Wetlands Research
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    • v.13 no.2
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    • pp.343-353
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    • 2011
  • Variations of load in both DOM and RDOM of inflowing rivers to lakes were in the range of 5.01-7.29(${\times}10^2$ kg/day) for AD lake and 1.23-3.75(${\times}10^3$ kg/day) for JY lake during the research period excluding the period directly affected by the strong rainy season and the monsoon and typhoon season. We observed a good relationship($R^2$ > 0.8) between SS load and DOM load (including RDOM) in both inflowing rivers to JY lake. Therefore, it was determined that SS would be an alternative parameter with a rapid and energy-efficient method for the analysis of both DOC and RDOC, which require the analytical equipment and a long time period. Both AD lake and JY lake may act as a DOM(including RDOM) source through primary production in the fall season. Because AD lake and JY lake may not act as a DOM buffer zone, both lakes couldn't control the DOM and RDOM in spring before the rainy season. Therefore to improve water quality in downstream rivers is needed to remove pollutants such as DOM and RDOM before inflowing to these lakes in upstream rivers, or to have the unique landscape of wetlands as a buffer zone.

Analysis of quality improvement effects by construction of sewer systems in Nam River Basin (남강 상류유역의 하수도시설 확충으로 인한 하류 수계의 수질개선 효과 분석)

  • Joo, Jin-Gul;Lee, Jung-Ho;Kim, Joong-Hoon;Kim, Eung-Seok
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.9 no.3
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    • pp.771-778
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    • 2008
  • Effects of establishments of more sewer systems on water quality in Nam River, Deokchun River, and Jinyang Lake were analyzed for various scenarios using QUAL2E, WASP 7 water quality model. Three different scenarios were tested: 1) 20.8% of sewer diffusion rate which is same to the existing condition. 2) Expansion of sewer system to 65.2% which would emit less pollutants, BOD 2350.5 kg/d, TN 216.0 kg/d, TP 44.0kg/d. 3) Pollutants emission to maintain first grade water quality in Nam River, Jinyang Lake, BOD and TN in the case 2 were 7.69%, 2.10% lower than those in the case 1 in the Nam River. And in the Jinyang Lake, BOD, TN, and TP in the case 2 were 10.25%, 1.37%, 2.94% lower than those in the case 1. However the simulations showed that water quality could not hold down first grade water quality standard level with the establishments of more sewer systems. To satisfy the criteria in the Nam River and Jinyang Lake, BOD emission must be reduced 27.2%, 37.05% compared to those in the case 1.

Analysis of Fish Fauna by Sampling Gear as a Preliminary Survey for Ecosystem Health Assessments in Jinyang Reservoir (진양호에서 생태계 건강성평가를 위한 예비조사로서 어류채집도구별 종조성 분석)

  • Han, Jeong-Ho;An, Kwang-Guk
    • Korean Journal of Ecology and Environment
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    • v.43 no.1
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    • pp.103-116
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    • 2010
  • The key objective of this study was to analyze sampling efficiency of various fish sampling gears for a lentic ecosystem health assessment. This survey was conducted at twelve sampling locations of Jinyang Reservoir in November, 2008 and June, 2009. Sampling gears used in the field were fyke net (FN), gill net (GN), trammel net (TN), casting net (CN), minnow trap (MT), and kick net (KN). Fishes sampled in Jinyang Reservoir were 29 species, in which tolerant species, as a proportions of the total numbers, dominated the fish community compared to the sensitive species. Overall sampling indicated that 28 species (3,567 individuals) were sampled by the CN and 15 species (3,108 individuals) were sampled by the FN along with 14 species (577 individuals) by the TN, 7 species (107 individuals) by the GN, 6 species (59 individuals) by MT, and 5 species (95 individuals) by KN, respectively. Statistical analysis (MANOVA), based on CPUE of the fishing gears showed that fish species and numbers of the CN were significantly (p < 0.05) greater than those of any other sampling gears. In contrast, sampling gear of MT and KN showed the least efficiency in our survey. This survey is a preliminary results for the tests of sampling gear's efficiency in lentic ecosystems, thus further extensive studies are required for the verification.

3-Dimensional Hydrodynamic and Water Quality Change Simulation of Jingyang Reservoir Using EFDC-WASP (EFDC-WASP을 이용한 진양호의 3차원 수리.수질 변화 모의)

  • Jeong, Young-Won;Kim, Young-Do;Kim, Jeong-Kon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.1079-1083
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    • 2010
  • Due to summer rainfall is concentrated in the construction of the reservoir and the dam was inevitable. The character of these structures are different from the common rivers have been characterized. According to this problem, we need to adopt to this area with three dimensional model. Construction of dams for preservation of land, utilization of water resources, and exploitation of energy potential, which is a basic element of countries' development, is regarded as indispensable for peoples. In addtion, the development of the Nakdong River nutrient and pathogen Total Maximum Daily Loads (TMDL) required that the full range of pollutants, sources, and flow conditions, typical of heavily urbanized areas, be addressed for a single water body with 1-D simulation model (river) and 3-D simulation model (reservoir). The objective of this study is to simulate the applicability of reservoir with the coupling of 3-D hydrodynamic and water quality models to estimate water balance and pollutant loading in Namgang Dam(Jinyang reservoir).

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