• 제목/요약/키워드: So-Oak stream watershed

검색결과 3건 처리시간 0.018초

소옥천 유역의 오염제어 대책에 따른 대청호 조류저감 효과 분석 (Effect of Pollutants Control Measures in So-oak Watershed on the Control of Algae Growth in Daecheong Reservoir)

  • 박형석;윤성완;정세웅;황현식
    • 환경영향평가
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    • 제25권4호
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    • pp.248-260
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    • 2016
  • 본 연구의 목적은 대청호의 녹조발생 저감을 위해 우심지역인 추소수역과 그 상류 소옥천 유역에서의 다양한 수질개선 대책들을 제시하고, 대책 시행 시 저수지 수질개선 효과를 평가하는데 있다. 대책별 모의 시나리오는 유역대책과 저수지 내 대책으로 분류하였으며, 시나리오별 녹조저감 효과는 2차원 수리 수질모델을 적용하여 모의하였다. 유역 대책은 점오염원, 비점오염원, 복합 대책으로 시나리오를 구성하였으며, 호내 대책은 추소수역의 퇴적물 처리 및 소옥천 유입수의 인 처리시설 설치를 고려하였다. 연구결과, 개별 대책의 녹조저감 효과는 수문상황에 따라 다르게 나타났으며, 강우가 많은 해에는 비점오염 부하량이 증가하여 비점오염원 저감대책(NPS1~NPS4)이 효과적인 것으로 평가되었으며, 강우가 적은 해에는 평상시 호 내로 유입하는 인의 유입부하를 저감하는 화학적 인처리시설 설치(LS2)가 효과적인 것으로 평가되었다. 특히, 유역에서 발생되는 축산 분뇨를 전량 수거 처리하고 농경지에는 표준시비량만을 적용한 방안(NPS1)이 수질개선에 가장 효과적인 것으로 나타났다.

소옥천 유역 비점오염 관리를 위한 취약성 지수분석 및 평가에 관한 연구 (A Study on the Analysis and Evaluation of Vulnerability Index for the Management of Nonpoint source in SoOak River Watershed)

  • 갈병석;문현생;홍선화;박천동;길한뉘;박재범
    • 한국지리정보학회지
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    • 제22권2호
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    • pp.107-120
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    • 2019
  • 본 연구에서는 대청호 상류에 위치한 소옥천을 대상으로 유역 및 오염원 특성을 조사하여 각 특성별 지수를 분석하고 취약지역을 분석하였다. 다양한 유역 및 오염원 자료를 지수화하기 위하여 표준화법인 Dimension Index법을 적용하였으며 선정된 지수와 수질모니터링 자료와의 상관성 분석을 통해 각 오염원별 영향인자를 도출하였다. 오염원별 영향인자에 미치는 특성들은 각각의 유의성에 차이가 있었으며 BOD와 COD는 인구밀도와 대지면적 비율, T-N은 CN과 논면적 비율, T-P는 인구밀도와 대지면적 비율에서 유의한 영향이 있는 것으로 검토되었다. 오염원별 영향인자로 판단된 지수를 이용하여 취약지역 우선순위를 산정하였고 배출부하량을 고려하여 산정된 취약지역과 순위를 비교 검토하였다. 배출부하량은 비점오염 대책 수립시 많이 사용되고 있으나 호소나 하천에 유입되는 유달부하량과 차이가 있어 수질 모니터링 자료와의 상관성 분석시 수질과 유의미한 값이 낮게 나타났다. 따라서 효율적인 비점오염 관리를 위해서는 취약지역 선정과 함께 수질과 상관성 높은 영향인자를 분석하고 해당 인자에 대한 관리가 우선으로 필요할 것으로 판단된다.

황폐임야(荒廢林野)가 수해참상(水害慘狀)에 미치는 영향(影響) (천보산(天寶山)과 인접(隣接) 죽엽산(竹葉山)을 중심(中心)으로) (Influences of the devastated forest lands on flood damages (Observed at Chonbo and the neighbouring Mt. Jook-yop area))

  • 정인구
    • 한국산림과학회지
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    • 제5권1호
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    • pp.4-9
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    • 1966
  • 1. On 13 September 1964 a storm raged for 3 hours and 20 minutes with pounding heavy rainfalls, and precipitation of 287.5 mm was recorded on that day. The numerous landslides were occured in the eroded forest land neighbouring Mt. Chunbo, while no landslides recorde at all on Mt. Jookyup within the premise of Kwangnung Experiment Station, the Forest Experiment Station. 2. Small-scalled Landslides were occured in 43 different places of watershed area (21.97 ha.) in which the survey had already been done, in and around Mt. Chunbo (378 m a.s.l.). The accumulated soil amount totaled $2,146,56m^3$ due to the above mentioned landslides, while soil accumulated from riverside erosion has reached to $24,168.79m^3$, consisting of soils, stones, and pebbles. However, no landslides were reported in the Mt. Jook yup area because of dense forest covers. The ratio of the eroded soil amount accumulated from the riversides to that of watershed area was 1 to 25. On the other hand, the loss and damage in the research area of Mt. Chonbo are as follows: 28 houses completly destroyed or missing 7 houses partially destroyed 51 men were dead 5 missing, and 57 wounded. It was a terrible human disaster However, no human casualties were recorded at all, 1 house-completly destroyed and missing, 2 houses-partially destroyed. Total:3 houses were destroyed or damaged, in The area of Mt. Jookyup 3. In the calculation of the quanty of accumulated soil, the or mula of "V=1/3h ($a+{\sqrt{ab}}+b$)" was used and it showed that 24, 168.79m of soil, sands, stones and pebbles carried away. 4. Average slope of the stream stood 15 at the time of accident and well found that there was a correlation between the 87% of cross-area sufferd valley erosion and the length of eroded valley, after a study on regression and correlation of the length and cross-area. In other works, the soil erosion was and severe as we approached to the down-stream, counting at a place of average ($15^{\circ}1^{\prime}$) and below. We might draw a correlation such as "Y=ax-b" in terms of the length and cross-area of the eroded valley. 5. Sites of char-coal pits were found in the upper part of the desert-like Mt. Chunbo and a professional opinion shows that the mountain was once covered by the oak three species. Furthermore, we found that the soil of both mountains have been kept the same soil system according to a research of the soil cross-area. In other words, we can draw out the fact that, originally, the forest type and soil type of both Mt. Chunbo (378m) and Mt. Jookyup (610m) have been and are the same. However, Mt. Chunbo has been much more devastated than Mt. Jookyup, and carried away its soil nutrition to the extent that the ratios of N. $P_2O_5K_2O$ and Humus C.E.C between these two mountains are 1:10;1:5 respectively. 6. Mt. Chunbo has been mostly eroded for the past 30 years, and it consists of gravels of 2mm or larger size in the upper part of the mountain, while in the lower foot part, the sandy loam was formulated due to the fact that the gluey soil has been carried and accumulated. On the hand, Mt. Jookyup has consitantly kept the all the same forest type and sandy loam of brown colour both in the upper and lower parts. 7. As for the capability of absorbing and saturating maximum humidity by the surface soil, the ratios of wet soil to dry soil are 42.8% in the hill side and lower part of the eroded Mt. Chunbo and 28.5% in the upper part. On the contrary, Mt. Jookyup on which the forest type has not been changed, shows that the ratio in 77.4% in the hill-side and 68.2% in the upper part, approximately twice as much humidity as Mt. Chunbo. This proves the fact that the forest lands with dense forest covers are much more capable of maintaining water by wood, vegitation, and an organic material. The strength of dreventing from carring away surface soil is great due to the vigorous network of the root systems. 8. As mentioned above, the devastated forest land cause not only much greater devastation, but also human loss and property damage. We must bear in mind that the eroded forest land has taken the valuable soil, which is the very existance of origin of both human being and all creatures. As for the prescription for preventing erosion of forest land, the trees for furtilization has to be planted in the hill,side with at least reasonable amount of aertilizer, in order to restore the strength of earth soil, while in the lower part, thorough erosion control and reforestation, and establishments along the riversides have to be made, so as to restore the forest type.

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