• Title/Summary/Keyword: 병성천

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수치해석모형을 이용한 지하수 유동해석

  • 최윤영;고병련
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2003.05a
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    • pp.391-396
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    • 2003
  • 정류상태하에서의 WINFLOW 모델에 의한 모의발생 결과치는 산정된 계산치와 관측치의 오차백분율(0.011~0.080의 범위)를 비교해 볼 때 지하수두 분포를 신뢰도 수준에 있어 잘 반영하고 있는 것으로 판단되며 동서방향으로는 일정 수두분포, 남북방향으로는 완만하고 안정된 수두경사를 이루는 것으로 분석되었다. 분석유역에서의 지하수 유동은 남측에서 하천지역으로 안정된 유동형태를 보이고 있으며, 각 지점에 대한 입자추적은 상류에서 양수지점까지 비교적 직선에 가까운 형태를 보이고 있으나 양수지점의 하류부에서는 양수량의 크기에 따라 영향반경도 많은 차이를 나타내었다. P 및 Pl관정의 동시 양수인 경우에는 P지점 또는 Pl지점의 단일정일 경우보다 영향반경의 크기가 증가한 것 보다는 다소 복잡해진 양상을 보였으며 입자경로는 직선에 가까운 형태를 가지는 것으로 분석되었다. 양수량에 따른 영향원을 살펴보면 지하수가 남측에서 북측(병성천)으로 유동할 경우에 상류부보다 관정 측면과 하류부에서 더욱 크게 지하수두가 감소하는 변화경향을 나타내어 지하수유동방향 및 유속이 관정의 영향원 분포에 많은 영향을 미치고 있음을 알 수 있었다.

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Aquatic and Riparian Flora of the Nakdonggang River Tributary (Sangju: Byeongseong-cheon, Buk-cheon, Oeseo-cheon) (낙동강 지류의 수생 및 수변 식물상(상주: 병성천, 북천, 외서천))

  • Hwang, Yong;Hong, Jeong-Ki
    • Korean Journal of Plant Resources
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    • v.33 no.5
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    • pp.516-535
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    • 2020
  • This study was conducted to provide information on local resource plants by identifying aquatic and Riparian flora. We investigated the aquatic and riparian floras in 3 streams(Byeongseong-cheon, Buk-cheon, Oeseo-cheon) from February to October 2019. 321 taxa (i.e. 300 species, 5 subspecies, 15 varieties 1 Cultivars from 203 genera of 78 families) of the vascular plants were found in the survey area. Byeongseong-cheon is 133 taxa, Buk-cheon is 233 taxa and Oeseo-cheon is 132 taxa. Among 321 taxa, we found 5 endemic species, 3 red list plants, and However, endangered plants were not found in 3 streams. Aquatic and Riparian plant 138 taxa(i.e. Aquatic plant 20 taxa, Riparian plant 118 taxa). Life forms is annual plant 43 taxa, biennial plant 24 taxa, perennial plant 71 taxa. Aquatic plant growth forms emergent hydrophyte 13 taxa, floating leaved hydrophyte 1 taxa, submerged hydrophyte 6 taxa. The number of floristic regional indicator plants was 15 (i.e. 1 species of IV degree, 3 taxa of III degree, 5 taxa of II degree, and 6 taxa of I degree). Approved foreign export plants 31 taxa. In addition, 52 naturalized plants were identified, and the percentage of Naturalized Index (NI) and Urbanization Index (UI) were 16.1%, and 16.2%, respectively. Vascular plant usability and reclassification result is Edible 213 species (66%), Medicinal 244 species (76%), Flavor 10 species (3%), Industrial 136 species (42%), Ornamental 137 species (36%), Restoration 117 species (36%), Compost 155 species (48%), Unknown 7 species (5%). We hope that our results provide reference data to set up strategy of resources plants, conservation of biodiversity in the 3 streams and Sangju-si areas.

An Analysis of the Effect of Climate Change on Byeongseong Stream's Hydrologic and Water Quality Responses Using CGCM's Future Climate Information (CGCM 미래기후정보를 이용한 기후변화가 병성천 유역 수문 및 수질반응에 미치는 영향분석)

  • Choi, Dae-Gyu;Kim, Mun-Sung;Kim, Nam-Won;Kim, Sang-Dan
    • Journal of Korea Water Resources Association
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    • v.42 no.11
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    • pp.921-931
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    • 2009
  • For the assessment of climate change impacts for the Byeongseong stream, CGCM 3.1 T63 is selected as future climate information. The projections come from CGCM used to simulate the GHG emission scenario known as A2. Air temperature and precipitation information from the GCM simulations are converted to regional scale data using the statistical downscaling method known as MSPG. Downscaled climate data from GCM are then used as the input data for the SWAT model to generate regional runoff and water quality estimates in the Byeongseong stream. As a result of simple sensitivity analysis, the increase of CO2 concentration leads to increase water yield through reduction of evapotranspiration and increase of soil water. Hydrologic responses to climate change are in phase with precipitation change. Climate change is expected to reduce water yields in the period of 2021-2030. In the period of 2051-2060, stream flow is expected to be reduced in spring season and increased in summer season. While soil losses are also in phase with water yields, nutrient discharges (i.e., total nitrogen) are not always in phase with precipitation change. However, it should be noted that there are a lot of uncertainties in such multiple-step analysis used to convert climate information from GCM-based future climate projections into hydrologic information.

The Flora in Tributary Region of Middle Stream of the Nakdong River (Young-gang, Naeseong-cheon, Wi-cheon, Gam-cheon and Byeongseong-cheon) (낙동강 중류 지천의 식물상(영강, 내성천, 위천, 감천, 병성천))

  • Jeong, Ji-Hyeon;Hong, Sun-Cheon;Park, Hee-Jun;Paik, Weon-Ki
    • Korean Journal of Plant Resources
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    • v.32 no.5
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    • pp.615-632
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    • 2019
  • Field surveys were conducted from May 2016 to October and from April to October 2017 in Tributary Region of Middle Stream of the Nakdong River. The survey was carried out at 66 sites including Young-gang 11, Naeseong-cheon 21, Wi-cheon 16, and Gam-cheon 9, Byeongseong-cheon 9. As a result of investigation, 474 taxa in total ; 99 familly, 288 genera, 421 species, 4 subspecies, 39 varieties and 10 forma. Among them, 5 Korean endemic plants, 7 rare plants, 31 taxa were listed as Floristic Target Species in Korea. Naturalized plants was confirmed 73 taxa, their Urbanization Ratio 22.7%, and naturalization ratio 15.4% in the investigated area. The Life form(Dormancy form) review results as follows ; Therophytes 159 taxa, Hemicryptophytes 91 taxa, Hydrophanerophytes 68 taxa, Geophyte 52 taxa, Nanophanerophytes 35 taxa, Megaphanerophytes 32 taxa, Microphanerophytes 25 taxa, Chamaephytes 12 taxa, and Epiphyten 1 taxa.

Efficiency of Riparian Buffer Zone on Removing Sediment Yield Using SWAT Model (SWAT 모형을 이용한 수변완충지대 설정에 따른 토사유출량 저감 효과분석)

  • Choi, Dae-Gyu;Park, Moo-Jong;Kim, Jae-Chul;Kim, Sang-Dan
    • Journal of the Korean Society of Hazard Mitigation
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    • v.8 no.4
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    • pp.111-118
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    • 2008
  • Riparian buffer zone prevents sediment entry into drainage channels or as a protection from runoff and wind erosion. However, Studies about its removing effect according to Riparian buffer zone are shorted now. In this study, using the SWAT model, Byongseong watershed is built on the Arcview GIS. Using the function of the filter strip in SWAT model, it is also examined about the variation of sediment yield. As a simulation result, the case of constructing riparian buffer zones at subbasins near the outlet shows generally high efficiency on removing sediment yield. In addition, according to the scenario analysis of changing riparian buffer zone width, it is thought that 5-10m riparian buffer zone width is the highest efficiency on removing sediment yields generated from Byeongseong watershed.

Flow Estimation Using Rainfalls Derived from Multiple Satellite Images in North Korea (위성 강우자료를 이용한 북한지역 홍수량 추정)

  • KIM, Joo-Hun;CHOI, Yun-Seok;KIM, Kyung-Tak
    • Journal of the Korean Association of Geographic Information Studies
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    • v.18 no.4
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    • pp.31-42
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    • 2015
  • The objective of this study is to estimate the flood flow of inaccessible regions using satellite-derived rainfall and global geographic data. This study focuses on Dongsingun, an area located upstream of the Cheongcheon River in North Korea. The IFAS model was used to estimate flood flow. The model was calibrated in the Gap Stream watershed in South Korea and verified for the Byeongsung Stream watershed in the Nakdong River basin. Satellite-derived rainfalls for North Korea was revised using ground gauge data. Analysis results using CMORPH and GSMaP_NRT showed $4,886m^3/s$ and $5,718m^3/s$ respectively. In future studies, hydrological analysis in unmeasured and inaccessible regions will be carried out by applying more rainfall events.

Physical Geography of Sangju, Korea (상주(尙州)의 자연지리)

  • Son, Myoung-Won
    • Journal of the Korean association of regional geographers
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    • v.8 no.3
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    • pp.281-294
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    • 2002
  • Inhabitants make a specific cultural landscape in various ways according to his culture. In this paper, I consider the characteristics of cultural landscapes distributed in Sangju. I divide Sangju-City Area owing to physical criteria(relief and drainage basin}, appreciate them according to human criteria(administrative district of Joseon Period, dialects, periodical market area} and classify into 6 small regions: (1) Nakyang Region is the traditionally central place based on alluvial plain marginal to Byeongseong stream and Dong stream, and on hills of Sabeol. (2) Nakdong Region is the traffic center which the water transport of Nakdong river and the land transport of Yeongnamdaero cross each other. (3) The upstream region of Byungseong stream is the agricultural region connected with Nakyang Region. (4) Jungmo Region is a intermontane basin where grape cultivation using its specific climate flourish. (5) Wharyeong Region is a mountainous sightseeing district based on the beautiful scenery and Gyeonwhueon's remains of Sogni mountains and Yongyu valley. (6) Hamnyeong Region is the district of Goryeonggaya realm where 3 whites(cocoon, dried persimmon, rice) are abundant.

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