• 제목/요약/키워드: Rainfall effect

검색결과 886건 처리시간 0.023초

Monitoring of Non-point Source Pollutants Generated by a Flower Farm

  • Choi, Byoungwoo;Kang, Meea
    • 지질공학
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    • 제24권4호
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    • pp.463-471
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    • 2014
  • This paper considers the effect of rainfall on non-point source (NPS) pollutant loads. The impact of runoff on the occurrence of NPS pollutants was found to be influenced by rainfall amount, rainfall intensity, and the number of antecedent dry days (ADD), both independently and in combination. The close correlation ($R^2$ = 0.9920) between rainfall and runoff amounts was demonstrated at the study site (a flower farm) over the period between January 2011 and December 2013. The relationships among pollutant levels, runoff, and rainfall was not satisfactory results except for the Biochemical Oxygen Demand ($BOD_5$). The correlation coefficients between $BOD_5$, and both runoff and rainfall, were greater than 0.92. However, the relationships of other pollutants, such as Suspended Solid (SS), Chemical Oxygen Demand ($COD_{Mn}$), Total Nitrogen (TN), and Total Phosphorus (TP), with runoff and rainfall had correlation coefficients of less than 0.70. The roles of rainfall was different from rainfall categories on the occurrence of runoff. Instantaneous rainfall intensity was a principle factor on the occurrence of runoff following light rainfall events (total ${\leq}30mm$). For rainfall of intermediate intensity (total precipitation 31-50 mm), the combined effect of both average rainfall intensity and ADD was found to influence runoff generation. We conclude that the control of NPS pollutants with the reflection of the climate change that makes the remarkable effect of amounts and forms on the rainfall and runoff.

반복강우에 의한 풍화토층 절토사면 침투특성에 관한 연구 (Infiltration Characteristics of a Weathered Cut-Slope during Repetition Rainfall)

  • 이정엽;김승현;최지용;구호본
    • 지질공학
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    • 제20권4호
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    • pp.409-414
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    • 2010
  • 강우는 사면 붕괴에 영향을 미치고 있는 요인 중의 하나이다. 최근 기후변화에 집중강우가 빈번하게 발생하고 있으며, 단시간에 많은 양의 강우강도와 반복적인 강우특성을 가지고 있다. 강우가 발생하게 되면 강우의 대부분은 사면 법면을 따라 유출되지만, 일부는 지반 내로 침투하게 되며, 침투수는 주로 얕은 파괴를 유발시키는 것으로 알려져 있다. 하지만, 본 연구에서는 우기 시 빈번하게 발생하는 반복적인 게릴라성 강우로 인한 침투가 사면 안정성에 어떠한 영향을 미치고 있는지 다양한 조건에서 유한요소해석법을 이용하여 침투특성을 분석하였다. 분석 결과, 강우 주기가 짧고 반복횟수가 많을수록 사면 내부에 침투의 영향이 크게 작용하며, 짧은 시간의 강우에도 침투 영향을 고려할 필요가 있는 등 사면 관리자의 침투에 대한 주의 깊은 관심이 필요하다.

Effect of Rainfall Patterns on the Response of Water Pressure and Slope Stability Within a Small Catchment: A Case Study in Jinbu-Myeon, South Korea

  • Viet, Tran The;Lee, Giha;Oh, Sewook;Kim, Minseok
    • 한국지반환경공학회 논문집
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    • 제17권12호
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    • pp.5-16
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    • 2016
  • This study aims to assess the influence of rainfall patterns on shallow landslides initiation. Doing so, five typical rainfall patterns with the same cumulative amount and intensity components comprising Advanced (A1 and A2), Centralized (C), and Delayed (D1 and D2) were designed based on a historical rainstorm event in Jinbu. Mt area. Those patterns were incorporated as the hydrological conditions into the Transient Rainfall Infiltration and Grid-based Regional Slope-stability Model (TRIGRS) to assess their influences on groundwater pressure and changes in the stability of the slope. The results revealed that not only the cumulative rainfall thresholds necessary to initiate landslides, but also the rate at which the factor of safety decreases and the time required to reach the critical state, are governed by rainfall patterns. The sooner the peak rainfall intensity, the smaller the cumulative rainfall threshold, and the shorter the time until landslide occurrence. Left-skewed patterns were found to have a greater effect on landslide initiation. Specifically, among five rainfalls, pattern (A1) produced the most critical state. The severity of response was followed by patterns A2, C, D1, and D2. Our conclusion is that rainfall patterns have a significant effect on the cumulative rainfall threshold, the build-up of groundwater pressure, and the occurrence of shallow landslides.

강우사상의 영향을 고려한 불포화 풍화사면의 안정성 (Effect of Rainfall-Patterns on Slope Stability in Unsaturated Weathered Soils)

  • 김병수;박성완
    • 대한토목학회논문집
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    • 제33권3호
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    • pp.1027-1035
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    • 2013
  • 사면안정 해석 시, 사면파괴의 주원인인 강우사상의 현실적 접목을 위하여 본 연구에서는 다음 두 가지 방법을 채택하였다. 하나는 시간에 따른 강우량 변화의 영향을 무시한 기존의 설계강우 방식인 I.D.F(Intensity-Duration-Frequency)곡선을 이용하는 방법이며, 다른 하나는 시간의 영향을 고려하여 강우사상을 표현한 Huff 방법이다. 먼저 I.D.F 방법의 강우사상을 적용하여 선행강우효과를 나타내는 초기흡수력의 변화에 따른 사면의 안전율의 변화를 알아보았다. 또한, 두 강우사상의 방식을 적용하여 강우사상이 사면의 안전율 변화에 미치는 영향을 규명하고자 하였다. 그 결과, Huff 방법의 강우사상이 I.D.F 방법보다 더 현실적으로 사면의 안전성 평가가 이루어 질 수 있음을 확인할 수 있었다.

서울지점 강우자료에 나타난 도시화의 간섭 분석 (Intervention Analysis of Urbanization Effect on Rainfall Data at the Seoul Rain Gauge Station)

  • 유철상;김대하;박상형;김병수;박창열
    • 한국수자원학회논문집
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    • 제40권8호
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    • pp.629-641
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    • 2007
  • 본 연구에서는 우리나라 최대 도시인 서울지점에서의 도시화의 영향을 강우자료의 분석을 통해 파악하였다. 서울지점 강우의 도시화 영향을 파악하기 위해 관측길이가 길고 도시화의 정도가 상대적으로 덜한 전주지점과 관측 기록의 길이는 짧으나 서울 인근지점으로 도시화의 영향이 매우 적을 것으로 판단되는 이천지점의 강우자료를 비교 대상으로 이용하였다. 또한 도시화의 영향에 해당하는 서울지점과 전주지점의 강우량 차이를 간섭모형을 이용하여 정량화 하였다. 그 결과, 연최대치 호우사상의 최대강우강도는 점점 증가하는 추세이며, 총지속시간의 경우는 전체기간에 대해 감소하는 경향이고, 특히 1960년 이후에는 그 평균이 과거보다 현저히 감소하는 추세임을 확인할 수 있었다. 아울러 간섭분석을 통해 1960년 이후의 도시화가 강우에 미친 영향을 정량화한 결과 도시화에 의한 강우강도 및 강우량의 증가 양상이 지속되고 있음을 확인하였다.

선행강우를 고려한 산사태 유발 강우기준(ID curve) 분석 (Rainfall Threshold (ID curve) for Landslide Initiation and Prediction Considering Antecedent Rainfall)

  • 홍문현;김정환;정경자;정상섬
    • 한국지반공학회논문집
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    • 제32권4호
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    • pp.15-27
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    • 2016
  • 본 연구에서는 국내 산사태 발생을 예측하기 위하여 선행강우의 영향을 고려한 산사태 유발 강우기준(Intensity-Duration, ID curve)을 제안하였다. 1999년부터 2013년까지 국내에서 유발된 202개의 산사태에 대하여, 기상청 강우자료를 바탕으로 산사태 발생 시점 이전의 시강우량 데이터를 수집하고 분석하였다. 선행강우의 영향을 고려하기 위해 강우사상간 시간(Inter event time definition, IETD)을 6, 12, 24, 48, 72, 96시간으로 구분하고, 회귀분석을 통해 강우기준을 제안하였다. 국외의 산사태 유발강우기준과 제안된 유발강우기준을 비교하였으며, 선행강우에 대한 산사태 유발 강우기준의 변화를 분석하였다. 그 결과, 국내의 경우 비교적 낮은 강우강도에서 산사태가 유발되는 것으로 나타났으며, IETD가 증가할수록 산사태 유발강우기준의 기울기가 증가하는 경향이 나타났다. 따라서 단기간의 강우에 대해서는 산사태 유발강우기준(강우강도)이 높아지고, 장기간의 강우에 대해서는 낮아지는 것을 알 수 있었다. 2014년도에 국내에서 발생한 산사태 재해이력을 이용하여 검토한 결과, 본 연구에서 제안된 ID curve가 산사태 유발을 비교적 잘 예측할 수 있는 것으로 나타났다.

Installation and operation of automatic nonpoint pollutant source measurement system for cost-effective monitoring

  • Jeon, Jechan;Choi, Hyeseon;Shin, Dongseok;Kim, Lee-hyung
    • Membrane and Water Treatment
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    • 제10권1호
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    • pp.99-104
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    • 2019
  • In Korea, nonpoint pollutants have a significant effect on rivers' water quality, and they are discharged in very different ways depending on rainfall events. Therefore, preparing an optimal countermeasure against nonpoint pollutants requires much monitoring. The present study was conducted to help prepare a method for installing an automatic nonpoint pollutant measurement system for the cost-effective monitoring of the effect of nonpoint pollutants on rivers. In the present study, monitoring was performed at six sites of a river passing through an urban area with a basin area of $454.3km^2$. The results showed that monitoring could be performed for a relatively long time interval in the upstream and downstream regions, which are mainly comprised of forests, regardless of the rainfall amount. On the contrary, in the urban region, the monitoring had to be performed at a relatively short time interval each time when the rainfall intensity changed. This was because the flow rate was significantly dependent on the rainfall's intensity. The appropriate sites for installing an automatic measurement system were found to be a site before entering the urban region, a site after passing through the urban region, and the end of a river where the effects of nonpoint pollutant sources can be well-decided. The analysis also showed that the monitoring time should be longer for the rainfall events of a higher rainfall class and for the sites closer to the river end. This is because the rainfall runoff has a longer effect on the river. However, the effect of nonpoint pollutant sources was not significantly different between the upstream and the downstream in the cases of rainfall events over 100 mm.

Assessment of causality between climate variables and production for whole crop maize using structural equation modeling

  • Kim, Moonju;Sung, Kyungil
    • Journal of Animal Science and Technology
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    • 제63권2호
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    • pp.339-353
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    • 2021
  • This study aimed to assess the causality of different climate variables on the production of whole crop maize (Zea mays L.; WCM) in the central inland region of the Korea. Furthermore, the effect of these climate variables was also determined by looking at direct and indirect pathways during the stages before and after silking. The WCM metadata (n = 640) were collected from the Rural Development Administration's reports of new variety adaptability from 1985-2011 (27 years). The climate data was collected based on year and location from the Korean Meteorology Administration's weather information system. Causality, in this study, was defined by various cause-and-effect relationships between climatic factors, such as temperature, rainfall amount, sunshine duration, wind speed and relative humidity in the seeding to silking stage and the silking to harvesting stage. All climate variables except wind speed were different before and after the silking stage, which indicates the silking occurred during the period when the Korean season changed from spring to summer. Therefore, the structure of causality was constructed by taking account of the climate variables that were divided by the silking stage. In particular, the indirect effect of rainfall through the appropriate temperature range was different before and after the silking stage. The damage caused by heat-humidity was having effect before the silking stage while the damage caused by night-heat was not affecting WCM production. There was a large variation in soil surface temperature and rainfall before and after the silking stage. Over 350 mm of rainfall affected dry matter yield (DMY) when soil surface temperatures were less than 22℃ before the silking stage. Over 900 mm of rainfall also affected DMY when soil surface temperatures were over 27℃ after the silking stage. For the longitudinal effects of soil surface temperature and rainfall amount, less than 22℃ soil surface temperature and over 300 mm of rainfall before the silking stage affected yield through over 26℃ soil surface temperature and less than 900 mm rainfall after the silking stage, respectively.

Effect of rainfall patterns on the response of water pressure and slope stability within a small catchment: A case study in Jinbu-Myeon, South Korea

  • Viet, Tran The;Lee, Giha
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2016년도 학술발표회
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    • pp.202-202
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    • 2016
  • Despite the potentially major influence of rainstorm patterns on the prediction of shallow landslides, this relationship has not yet received significant attention. In this study, five typical temporal rainstorm patterns with the same cumulative amount and intensity components comprising Advanced (A1 and A2), Centralized (C), and Delayed (D1 and D2) were designed based on a historical rainstorm event occurred in 2006 in Mt. Jinbu area. The patterns were incorporated as the hydrological conditions into the Transient Rainfall Infiltration and Grid-based Regional Slope-stability Model (TRIGRS), in order to assess their influences on pore pressure variation and changes in the stability of the covering soil layer in the study area. The results revealed that not only the cumulative rainfall thresholds necessary to initiate landslides, but also the rate at which the factor of safety (FS) decreases and the time required to reach the critical state, are governed by rainstorm pattern. The sooner the peak rainfall intensity occurs, the smaller the cumulative rainfall threshold, and the shorter the time until landslide occurrence. Left-skewed rainfall patterns were found to have a greater effect on landslide initiation. More specifically, among the five different patterns, the Advanced storm pattern (A1) produced the most critical state, as it resulted in the highest pore pressure across the entire area for the shortest duration; the severity of response was then followed by patterns A2, C, D1, and D2. Thus, it can be concluded that rainfall patterns have a significant effect on the cumulative rainfall threshold, the build-up of pore pressure, and the occurrence of shallow landslides, both in space and time.

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고도를 고려한 공간보간기법이 대유역 강우량 산정시 미치는 영향 연구 (A Study of Spatial Interpolation Impact on Large Watershed Rainfall Considering Elevation)

  • 정혁;신형진;박종윤;정인균;김성준
    • 한국농공학회논문집
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    • 제53권6호
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    • pp.23-29
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    • 2011
  • This study was conducted to identify the effect of lapse rate application according to elevation on the estimation of large scale watershed rainfall. For the Han river basin (26,018 $km^2$), the 11 years (2000-2010) daily rainfall data from 108 AWS (Automatic Weather Station) were collected. Especially, the 11 heavy rain and typhoon events from 2004 to 2009 were selected for trend analysis. The elevation effect by IDW (Inverse Distance Weights) interpolation showed the change up to +62.7 % for 1,200~1,600m elevation band. The effect based on 19 subbasins of WAMIS (Water Resources Management Information System) water resources unit map, the changes of IDW and Thiessen were -8.0 % (Downstream of Han river)~ +19.7 % (Upstream of Namhan river) and -5.7 %~+15.9 % respectively. It showed the increase trend as the elevation increases. For the 11 years rainfall data analysis, the lapse rate effect of IDW and Thiessen showed increase of 9.7 %~15.5 % and 6.6 %~9.6 % respectively.