• Title/Summary/Keyword: Rainfall criteria

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Analysis of Intensity-Duration-Quantity (IDQ) Curve for Designing Flood Retention Basin (홍수저류지 설계를 위한 강우강도-지속시간-홍수량(IDQ) 곡선 해석)

  • Kim, Jin Gyeom;Kang, Boosik;Yoon, Byungman
    • Journal of Korea Water Resources Association
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    • v.47 no.1
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    • pp.83-93
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    • 2014
  • This research was carried out for suggesting design criteria and procedure for maximizing flood control capacity by building flood control facilities like flood retention basin built in connection with existing facilities in order to cope with increased uncertainty due to factors such as urbanization and climate change. We suggested the procedure for the analysis under the various scenarios applicable for the cases of determining retention basin capacity as provision for the flood water level increase in main river channel or estimating flood water level reduction effect when retention basin capacity is given. Procedure for estimating design flood hydrograph at any duration using Intensity-Duration-Quantity (IDQ) originated from the existing IDF, and its application example were provided. Based on rainfall estimated by the IDQ analysis, it is possible to calculate an equivalent peak hydrographs under various scenarios, e.g. lower frequency hydrograph under same rainfall duration with water level higher than existing hydrograph, hydrograph with same peak and higher volume due to increased rainfall duration, hydrograph with higher peak and volume than existing hydrograph, etc.

Shear Strength of Weathered Granite Soil Considering Change of Saturation (포화도 변화를 고려한 화강풍화토의 전단강도)

  • Kim, Minwook;Kim, Youngmuk
    • Journal of the Korean GEO-environmental Society
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    • v.11 no.9
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    • pp.5-14
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    • 2010
  • This study was aimed to suggest reliable information of shear strength characteristics due to change of saturation in the landfills or slopes during rainfall infiltration. According to the Mohr-Coulomb failure criteria, the characteristics of shear strength due to change of saturation were analyzed for the weathered residual soils which were sampled in the road construction site of Daejeon city. From the direct shear strength tests, the cohesions and the shear resistance angles were showed maximum values in the condition of optimum moisture content, and then decreased in the condition of wet side compaction. In this study, the cohesions were decreased more than 50% according to increasing saturation by infiltration for the compaction soils. But the reductions of the shear resistance angles were about $1{\sim}2^{\circ}$ which was small value, and thus the changes of the saturation were not nearly influenced the shear resistance angle. The influences of the saturation were seemed to very small for the residual strength parameters according to Mohr-Coulomb failure criteria.

Improvement and Evaluation of Multi-purpose Dam Operation Rule Considering Climate Change (기후변화를 고려한 다목적댐 운영기준 개선 및 평가)

  • Kim, Hyung-San;Park, Jin-Hyeog;Kang, Shin-Uk;Jang, Su-Hyung
    • Journal of Wetlands Research
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    • v.21 no.spc
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    • pp.9-15
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    • 2019
  • Rainfall patterns are changing due to climate change, the frequency of drought occurrence is shortening, and the operation of the multi-purpose dams is also changing. The importance of preventing water shortage of multi-purpose dams in advance and operation for stable water supply is increasing. In this study, we developed and evaluated the operational criteria reflecting climate change scenarios based on the operational criteria currently applied to multi-purpose dams. Standard water volume lines reflecting climate change were found to increase 34% on average, as a result of evaluation with the existing standard, it was analyzed that water supply would not be difficult if the multi-purpose dam operation standard reflecting climate change was applied. The results of this study are expected to be helpful for the establishment of multi-purpose dams reflecting climate change.

Weighting assessment on evaluation indicators of dam rehabilitation using the AHP analysis (AHP분석을 통한 댐 재개발 평가항목 중요도 평가)

  • Choi, Ji-Hyeok;Kim, Jong-Suk;Kwon, Ji-Hye;Moon, Young-Il
    • Journal of Korea Water Resources Association
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    • v.49 no.5
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    • pp.381-389
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    • 2016
  • In this study, we developed evaluation indicators of dam rehabilitation considering climate change in order to prepare for safety of aging dam facilities in accordance with changes in rainfall intensity. The validity and appropriateness of each indicator, and the evaluation criteria were selected for quantitative indicators for each detail through domestic and international case studies, literature review, and expert advice. The survey was carried out to estimate the importance of each indicator for dam rehabilitation. The subjective assessment of the respondents was rearranged using pairwise comparison from the Analytic Hierarchy Process (AHP). The reliability of the survey results was evaluated through consistent verification. In addition, a comparative assessment was carried out which evaluated the reliability importance estimation result to refine the criteria to distinguish rating scales between expert and non-expert groups on dam-related fields.

The Management of Nonpoint Source and Storm Water Reduction with LID Techniques in Inchon City, South Korea

  • Lim, Dohun;Lee, Yoonjin
    • Journal of Environmental Science International
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    • v.24 no.10
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    • pp.1239-1251
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    • 2015
  • Impervious areas have been expanded by urbanization and the natural structure of water circulation has been destroyed. The limits of centralized management for controlling storm water runoff in urban areas have been suggested. Low impact development (LID) technologies have been promoted as a crucial alternative, establishing a connection with city development plans to build green infrastructures in environmentally friendly cities. Thus, the improvement of water circulation and the control of nonpoint source were simulated through XP-SWMM (storm water and wastewater management model for experts) in this study. The application of multiple LID combination practices with permeable pavements, bioretention cells, and gutter filters were observed as reducing the highest runoff volume by up to 70%. The results from four different LID installation scenarios indicated that permeable paving is the most effective method for reducing storm water runoff. The rate of storm water runoff volume reduced as the rainfall duration extended. Based on the simulation results, each LID facility was designed and constructed in the target area. The LID practices in an urban area enable future studies of the analysis of the criteria, suitable capacity, and cost-efficiency, and proper management methods of various LID techniques.

Determination of Effective Rainfall by US SCS Method and Regression Analysis (SCS방법 및 회귀분석에 의한 유출 강우량 결정)

  • 선우중호;윤용남
    • Water for future
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    • v.10 no.2
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    • pp.101-111
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    • 1977
  • The analysis performed here is aimed to increase the familiarity of hydrologic process especially for the small basins which are densely gaged. Kyung An and Mu Shim river basins are selected as a represectative basin according to the criteria which UNESCO has establisheed back in 1964 and being operated under the auspice of Ministry of Construction. The data exerted from these basins is utilized for the determination of the characteristics of precipitation and runoff phenomena for the small basin, which is considerred as a typical Korean samll watershed. The methodology developed by Soil Conservation Service, USA for determination of runoff value from precipitation is applied to find the suitability of the method to Korean River Basin. The soil cover complex number or runoff curve number was determined by considering the type of soil, soil cover, land use and other factor such as antecent moisture content. The averag values of CN for Kyung An and Mushim river basins were found to be 63.9 and 63.1 under AMC II, however, the values obtained from soil cover complex was less than those from total precipitation and effective precicpitation by 10-30%. It may be worth to note that an attention has to be paid in the application of SCS method lo Korean river basin by adjusting 10-30% increase to the value obtained from soil cover complex. Finally, the design flood hydrograph was consturcted by employing unit hydrograph technique to the dimensionless mass curve. Also a stepwise multiple regression was performed to find the relationship between runoff and API, evapotranspiration rate, 5 days antecedent precipitation and daily temperature.

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Regionalization of CN values at Imha Watershed with SCE-UA (최적화 기법을 이용한 임하호유역 대표 CN값 추정)

  • Jeon, Ji-Hong;Kim, Tae-Dong;Choi, Dong-Hyuk
    • Journal of The Korean Society of Agricultural Engineers
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    • v.53 no.5
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    • pp.9-16
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    • 2011
  • Curve Numbers (CN) for the combination of land use and hydrologic soil group were regionalized at Imha Watershed using Long-term Hydrologic Impact Assessment (L-THIA) coupled with SCE-UA. The L-THIA was calibrated during 1991-2000 and validated during 2001-2007 using monthly observed direct runoff data. The Nash-Sutcliffe (NS) coefficients for calibration and validation were 0.91 and 0.93, respectively, and showed high model efficiency. Based on the criteria of model calibration, both calibration and validation represented 'very good' fit with observe data. The spatial distribution of direct surface runoff by L-THIA represented runoff from Thiessen pologen at Subi and Sukbo rain gage station much higher than other area due to the combination of poor hydrologic condition (hydrologic soil C and D group) and locality heavy rainfall. As a results of hydrologic condition and treatment for land use type based on calibrated CNs, forest is recommended to be hydrologically modelled dived into deciduous, coniferous, and mixed forest due to the hydrological difference. The CNs for forest and upland showed the poor hydrologic condition. The steep slope of forest and alpine agricultural field make high runoff rate which is the poor hydrologic condition because CN method can not consider field slope. L-THIA linded with SCE-UA could generated a regionalized CNs for land use type with minimized time and effort, and maximized model's accuracy.

DFG curve creation for Rainfall Criteria of Debris flow Occurrence Prediction (토석류 발생예측의 강우기준에 대한 DFG 곡선 작성)

  • Yu, Byung In;Kim, Byung Sik;Jeung, Se Jin;Lee, Suk Ho
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.278-278
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    • 2015
  • 우리나라의 산사태 및 토석류의 발생 시기는 주로 7,8,9월에 집중 되어 있고 유발인자 중 강우는 산사태 및 토석류를 발생시키는 가장 큰 인자이다. 특히 강원도 지역은 산지지형이 많고 여름철 장마나 국지적인 집중호우에 의해 토석류의 발생빈도가 다른지역에 비해 많다. 7,8,9월의 누적 강우량이 1,100mm 이상이 되는 지역에서 극심한 피해가 발생하고 누적강우량이 많을수록 규모도 커지게 된다. 이러한 결과는 취약지역에서 강우에 의해 토석류가 발생한 가능성이 증가한다는 것을 의미하며, 일정이상의 강우가 발생할 시 취약성이 낮은 지역에서도 토석류 및 산사태가 발생할 가능성이 충분이 있다는 것을 의미한다. (양인태 등, 2009) 따라서 강우발생에 따른 토석류 발생기준에 대해서 정립할 필요가 있다. 본 연구에서는 강원도 지역의 산사태 및 토석류 발생이력에 대해서 강우데이터를 분석하여 강우기준을 설정 하였다. 강우관측소는 국토교통부, 한국수자원공사, 기상청의 강우자료를 활용하였다. 관측소의 선택은 Thiessen Polygon에 의해 선택하였고, 유효시간에 따라 강우강도, 유효평균 강우강도, 누적강우량을 산정하여 DFG (Debris-Flow Guidance) 곡선을 작성하여 강우기준을 설정하였다. 또한 토질과 유효토심에 따라 강우기준을 제시하였다.

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A Case Study of Extensive Green Roof System for Tropical Climate in Malaysia

  • Kok, Kah Hoong;Jung, Kwansue;Sidek, Lariyah Mohd;Abidin, Mohd Roseli Zainal;Felix, Micah Lourdes
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.329-329
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    • 2016
  • Rapid urbanization has taken environmental toll on the surrounding which can be witnessed by the advent of global warming and climate change. Driven by environmental needs, Green Building Index (GBI) was established in Malaysia to drive initiative to lead the property industry towards becoming more environmental friendly. Green roofs (roof with vegetated cover) as one of the assessment criteria of GBI, are gaining attention in the Malaysian society as a versatile new environmental friendly mitigation technology. This paper evaluates the qualitative and quantitative performances of an extensive green roof at Humid Tropics Centre under local tropical climate. Simulations showed that the extensive green roof system could reduce the peak discharge up to 26% in relation to impervious brown roof. Its reduction ability decreased for storms with intense rainfall. Increment of pH was observed for the green roof runoff and the runoff water quality ranged between class I and II under Water Quality Index (WQI). High concentrations of phosphate were noticed in the runoff samples and substrates (fertilized planting soil) might be the potential contributor. Findings indicate that there was a reduction of around $1.5^{\circ}C$ for indoor temperature of the building after installation of the extensive green roof.

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Characteristics and Risk Assessment of Heavy Metals in the Stormwater Runoffs from Industrial Region Discharged into Shihwa Lake (시화호 산업지역 강우유출수 내 중금속 유출특성 및 위해성 평가)

  • Ra, Kongtae;Kim, Joung-Keun;Lee, Jung-Moo;Lee, Seung-Yong;Kim, Eun-Soo;Kim, Kyung-Tae
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.17 no.4
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    • pp.283-296
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    • 2014
  • The distribution of heavy metals in the stormwater runoffs from industrial sites around Shihwa Lake that implements the total pollutant load management system (TPLMS) was studied to characterize the temporal changes of metal concentrations and to assess the ecological risk in dissolved and particulate phases of the selected metals. The dissolved Co and Ni concentration demonstrated first flush and tended to decrease with increasing of the duration of rainfall. The intensity of precipitation was found to be the main controlling factor of particulate metals in the stromwater runoffs. The particulate concentration of Pb accounted for 97.2% so the particulate phase was its main form. Other metals followed the sequence: Pb>Cu>Cd>Co>Zn>Ni. The particulate-dissolved partitioning coefficient ($K_d$) indicated that the $K_d$ of Pb were bigger than that of other metals because the metal Pb in the stormwater runoffs is quickly removed into the particulate phase. In a single day rainfall event, total runoff fluxes for total metals as the sum of dissolved and particulate forms through only two sewer outlets were 2.21 kg for Co, 30.5 kg for Ni, 278.3 kg for Cu, 398.3 kg for Zn, 0.39 kg for Cd and 40.0 kg for Pb, respectively. Given the annual rainfall, the number of rain days and the basin area for total pollutant load management system (TPLMS) of Shihwa area, enormous amount of non-point metal pollutants were entered into Lake with any treatment. The dissolved metals (e.g., Ni, Cu and Zn) in the stormwater runoffs exceeded the acute water quality criteria. Additionally, all metals were significantly enriched in the particulate phase and exceeded the PEL criteria of sediment quality guidelines (SQGs). These results indicated that the heavy metals in the stormwater runoffs may pose a very high ecological risk to the coastal environments and ecosystem.