• Title/Summary/Keyword: 습지 발달

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A Study on Hydrogeomorphology og Mt. Chilbo Wetland (수원 칠보산 습지의 수문지형학적 연구)

  • 문현숙
    • Journal of the Speleological Society of Korea
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    • no.63
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    • pp.45-59
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    • 2004
  • Chilbo Mountain Area have the high water table. Chilbo wetland located near the sully or distributes, but had a little water source by surface water. The most of Chilbo wetland water sources are aquifer or confined aquifer. This hydro-geomorphologic charateristics made them into many rice fields. But today these rice fields changed the watland for this points.

A Study on the small Gobong Wetlands in Goyang City (고양시 고봉산에 발달한 소규모 습지에 관한 연구)

  • Moon, Hyun-Sook
    • Journal of the Speleological Society of Korea
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    • no.67
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    • pp.43-51
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    • 2005
  • This study on Gobongdond Wetlands have hydrogeomorpholosic charateristics in the southern-west of Gogongsan. This study area have been dissected and deep weathered. in geology, this area show banded gneiss consisting of alternated felsis and mafic layers. in geomorphology this area have 3 slope that surplyed the surface water and ground water, but have a little water source by surface water. The most of Gobongdong wetland's water sources are aquifer or confined aquifer, so this wetlands have many seepages or discharges. The characteristics of Soil have retained the wetland's water. Deep weathering made the parents soil into clay minerals.(siallitization) This clay minerals have a high water table.

The Identification and Comprehension of the Mountain Wetlands (산지습지의 정의와 이해)

  • Moon, Hyun-Sook
    • Journal of the Speleological Society of Korea
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    • no.74
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    • pp.67-71
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    • 2006
  • The groundwater is very important in the watersource of mountain wetlands. The groundwater is out through the change of slop from gentle to steep. The watersource of the wetlands is supplied from the net of groundwater drainage. So, the slops surrounded the mountain wetlands is very important conditions. There is many the terminology of the mountain wetlands. But, it become to one, the mountain wetlands. There are two types:the slope mountain wetlands and the basin mountain wetlands.

Study on Lacustrine Wetland around YangSu-Ri (양수리 호소형 습지에 관한 연구)

  • Sook, Moon-Hyun
    • Journal of the Speleological Society of Korea
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    • no.64
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    • pp.49-59
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    • 2004
  • This study area that is big Lake by Pauldang-Dam on 1973 that is together North Han-River, South Han-River, and GyaungAn-River. So, Lake flow slow, have many deposit-silt, sand, Pebble etc. Large Land is submerge. in result, Lacustrin wetland became. Water sources are precipitation, river, aquifer. But this wetland is made by dam's water control plan.

Assessment of the Wetland Soil Development in Constructed Wetlands using the Soil Properties of a Reference Wetland (기준습지 토양특성을 활용한 인공습지의 토양발달 평가)

  • Lee, Ja-Yeon;Kang, Dae-Seok;Sung, Ki-June
    • Journal of Wetlands Research
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    • v.12 no.1
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    • pp.1-14
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    • 2010
  • Changes in wetland soil properties of two constructed wetlands after their constructions were compared to those of a natural wetland to determine if they could be used for the evaluation of the success of constructed wetlands and the assessment of their functions. One natural wetland as a reference wetland and two constructed wetlands(treatment wetland and experimental wetland) with different contaminant inflow characteristics were selected for this study. Major physicochemical properties of wetland soil such as soil texture, water content, pH, CEC(cation exchange capacity), organic matter content, total nitrogen, and available phosphorus were monitored to investigate the effects of inundation and accumulation of organic matters and nutrients on the wetland soil development. There was a clear difference in soil texture between the natural wetland and the constructed ones, with the high sand content in the constructed wetlands as compared to the high clay content in the natural one. Gradual increases of silt and clay contents over time were observed in the constructed wetlands. The soil of the natural wetland was higher in water content and organic matter but lower in pH than those of the constructed wetlands. The pH of the constructed wetlands reached near neutral ranges after initial increase. CEC and nutrient concentrations of the constructed wetlands seemed to be affected mainly by outside inflows of organic matter and contaminants. Concentrations of organic matter and nutrients decreased over time in the experimental wetland where surface and deep soils with different characteristics were mixed during its construction, suggesting that changes in soil properties during wetland constructions may affect the development of wetland soils or wetland biogeochemistry. This study showed that changes in physicochemical properties of soils in constructed wetlands could be used to assess the success of constructed wetlands and their functions, and also the importance of reference wetlands for the appropriate assessment.

Floodbasins of the lower naktong river (洛東江 下流地方의 背後濕地性 湖沼)

  • ;Kown, Hyuck Jae
    • Journal of the Korean Geographical Society
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    • v.14
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    • pp.1-8
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    • 1976
  • 본 고에서는 낙동강 하류지방의 배후습지성 호조에 대해서 살펴보았다. 후빙기 해면상승과 관련시켜 고찰할 때, 이들 호조는 삼림남발로 인한 가속된 토양침식 및 주요 하도의 하상 상승때문에 근래에 발달된 것이 아니라, 낙동강 범람원이 현해면을 기준으로 형성되어 가는 중에 발달된 지형임이 확실하다. 대실아언은 정양지와 박실지가 30년 또는 40년 이래에 생긴 호조라고 지적했다. 그러나, 대정6년(1917) 측도 1:50,000 지형도에 이 두 호조가 나타나 있는 것을 보면, 그가 채택한 주민의 증언은 사실과 다름이 분명하다. 주민의 증언은 이들 호조의 하단부에 공수시 황강의 역수를 막기 위해 쌓은 제방의 축조 년대를 가리키는 것이 아닌가 생각된다. 그리고 박실지는 흡지의 간척으로 과거에 비해 많이 축소되었다. 배후습지 및 배후습지성 호조는 확대되는것이 아니다. 토사축적과 간척으로 계속 축소되고 있는 것이 일반적인 경향이다. 배후습지성 지형은 한강 및 금강 하류에서도 발견되지만, 낙동강 하류지방에 가장 널리 분포한다.

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Vegetation Structure of the Kungae Reclaimed Wetland in a Coastal Lagoon of East Sea, Korea (동해안 석호에서 군개 간척습지의 식생 구조)

  • Kim, Ja-Ae;Jo, Gang-Hyeon;Lee, Hyo-Hye-Mi
    • The Korean Journal of Ecology
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    • v.24 no.1
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    • pp.27-34
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    • 2001
  • We described the vegetation of a disturbed lagoon wetland in relation to water and soil environments in Kungae lagoon reclaimed 30 years ago. Water depth and soil organic matter showed a great spatial heterogeneity in Kungae wetland which was changed into a freshwater marsh by the dike construction. Detrended canonical correspondence analysis suggested that differences in vegetation structure were primarily the result of variation in water depth or microtopography and soil organic matter Various emergent vegetations were developed in the wetland: species such as Phragmites australis, Calamagrostis epigeios, Carex dispalata and Lythrum anceps in a wide area, hydrophyes such as Typha angustifolia and Scirpus tabernaemontani at the low elevation with deep water, ruderals such as Bidens frondosa and Persicaria perfoliata near upland with much soil organic matter and sand-dune vegetation such as Carex kobomugi, Diodia tens, Pinus thunbergii and Potentilla egedei var. groenlandica at the high elevation. These results suggest that development of a prototype for wetland restoration from vegetation analysis of other natural lagoons and restoration of natural water tables and hydrologic connections between the diked wetland and the sea are important in the disturbed Kungae wetland.

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The Conprehesion of the River Wetlands Through JangJyoua Wetlands in ImJin Gang (임진강 장좌못을 통하여 본 하천습지의 이해)

  • Moon, Hyun-Sook
    • Journal of the Speleological Society of Korea
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    • no.72
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    • pp.47-52
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    • 2006
  • JangJyoua wetland is the bow lake that was become through the change of river change. It is the river wetlands and the swamps-type III. The water in wetlands is in and out through the Imjin old river channel. The river wetlands has been classified by many scholar. But there are two conditions that JangJyoua is developed on the floodplains and is same the ground water table between JangJyoua and ImjinGang. So, JangJyoua is the swamps-type III.

Wetlands Simulation using CLM-FATES (CLM-FATES 모델을 이용한 습지 모의 )

  • Hyunyoung Oh;Yeonjoo Kim
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.191-191
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    • 2023
  • 기후변화 대응을 위한 탄소 중립의 중요성이 대두되는 요즘, 생태계의 가장 큰 메탄 저장소로서 지구의 탄소 순환에 주요한 영향을 미치는 습지에 대한 이해는 필수적이다. 전지구 지면 모델인 Community Land Model(CLM)에 Functionally Assembled Terrestial Ecosystem Simulator(FATES) 외부 모듈을 함께 구동한 지면 생태계 모델 CLM-FATES는 지면 heterogeneity와 다양한 식생 종류를 고려하여 에너지 플럭스, 토양 수문, 생화학적 과정 등을 모의함으로써 탄소 동태 변화를 포함한 장기적 생태계 동태 변화 모의를 가능하게 한다. 본 연구는 CLM-FATES 모델을 미국 캘리포니아주 Mayberry Wetland (US-Myb)와 Twitchell East End Wetland (US-Tw4)에 적용하였다. 모델의 대기 입력 자료로는 FLUXNET-CH4에서 제공하는 에디 공분산 기반 플럭스 관측 자료를 사용하였다. 기존 CLM-FATES 모델은 토양이 장기간 포화 혹은 침수되어 지표 위 혹은 지표면 가까이 발달한 지하수면을 가지고 있는 습지의 수문학적 특성을 잘 반영하지 못해 정밀한 습지 생태계 동태 변화 모의에 한계를 가지고 있다. 본 연구에서는 CLM-FATES를 통한 보다 정확한 습지 생태계 모의를 위해 모델 내 토양 수문 관련 모듈을 수정하여 모델이 습지의 수문학적 특성을 반영할 수 있도록 하였다. 모델 구동 결과 도출한 잠열, 총일차생산량(Gross Primary Production: GPP)과 순생태계생산량(Net Ecosystem Production, NEP) 플럭스, 메탄 플럭스, 엽면적지수(Leaf Area Index; LAI)와 지표수 높이에 대해 관측값 대비 RMSE 및 R2 값을 계산하여 모의 결과의 적절성을 분석하였다. 이러한 모델 개선 경험을 바탕으로 추후 우리나라 습지 사이트에 모델을 적용하여 습지 탄소 동태 예측에 활용할 계획이다.

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