• 제목/요약/키워드: Maximum continuous rainfall

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매년최대 연속강우량에 따른 강우사상 계열의 확률분포에 관한 연구 (Probability Distribution of Rainfall Events Series with Annual Maximum Continuous Rainfall Depths)

  • 박상덕
    • 물과 미래
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    • 제28권2호
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    • pp.145-154
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    • 1995
  • 강우량 자료들을 수공계획에 적절히 사용하기 위해서는 강우량에 대한 다양한 해석기법이 필요하다. 본 연구에서는 연속강우량에 따른 강우사상계열의 수문빈도해석을 위한 확률분포를 연구한 것이다. 2변량 정규분포, 2변량 대수정규분포, 2변량 gamma 분포가 강릉, 서울, 인천, 추풍령, 대구, 전주, 광주, 부산지점의 연속최대 강우량과 그 지속기간으로 이루어진 강우사상의 확률분포로서 적용되었다. 이들 지점의 강우사상 자료가 2변량 정규분포, 2변량 대수정규분포에는 적합되었으나 2변량 gamma 분포에는 적합되지 않았다. 적합도 검정을 통하여 선정된 최적 분포형으로부터 확률강우사상의 빈도곡선을 제시하였다.

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강원지역의 최대연속강우량에 의한 산사태 발생가능성 평가 (An Evaluation of Landslide Probability by Maximum Continuous Rainfall in Gangwon, Korea)

  • 양인태;박재국;전우현;천기선
    • 대한공간정보학회지
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    • 제15권4호
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    • pp.11-20
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    • 2007
  • 우리나라의 자연재해는 기상학적 자연현상에 의해 주로 발생되고 있다. 자연재해는 태풍, 호우, 재설, 우박, 해일, 지진 등의 발생 원인에 의한 것이며, 발생빈도가 가장 높은 것은 강우에 의한 재해로 전체 재해발생 원인 중 약 80%를 차지하고 있다. 특히 산사태와 관련된 자연재해(사면붕괴, 옹벽붕괴, 매몰 등)는 최근 국지성 집중호우를 포함하여 호우의 집중강도가 높아지는 등 기상학적 원인에 의해 매년 발생하고 있다. 따라서 우리나라에서 발생되는 산사태의 특성을 강우특성에 따라 분석할 필요가 있으며, 이에 적합한 대책들이 더욱 필요하다. 이 연구에서는 지리정보시스템을 이용하여 강원지역을 대상으로 산사태 유발인자와 각 지역의 최대연속강우량을 고려한 산사태 잠재가능성을 평가하였고, 산사태 취약지역을 분석하여 지역적인 강우특성을 고려한 산사태 가능성지의 분포를 확인하였다.

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유출변화(流出変化)에 의한 배수현상(背水現象) 해석(解析) (Backwater Computation in River Channel by the Runoff-Frequency)

  • 서승덕;석기홍
    • Current Research on Agriculture and Life Sciences
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    • 제2권
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    • pp.77-90
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    • 1984
  • Results investigated backwater phenomena at Geumho river basin to get a basic data for Daegu basin area development plan are as the follows. 1. It is a A=0.35 L 1.848 (r = 0.97), the relationship between basin area and river length at Geumho river. 2. Dividing the rainfall of Geumho river basin as two parts, a first half rainfall and a second half rainfall, the amount of a first half rainfall appeared 57.5% comparison with total rainfall. 3. The maximum flood discharge appeared 12 hrs. continuous rainfall rather than 24 hrs. continuous rainfall. 4. Results investigated backwater phenomena from Geumho II bridge to chungchun appeared the rising water level of 69 cm, 55 cm, 44 cm, at section III in the starting point water level of 1.8 m, 2.4 m, 4.0 m respectively. 5. Results investigated backwater phenomena by the flood water level appeared a similar form. There was a average rising water level of 30 cm at section III. At the results of this computation, it was confirmed that section III was affected the highest backwater phenomena among the observed river reaches in Geumho river. In addition, this paper should be given a assistance to decide a economic and safe section in construction of bank of river and estuary barrage.

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A mathematical spatial interpolation method for the estimation of convective rainfall distribution over small watersheds

  • Zhang, Shengtang;Zhang, Jingzhou;Liu, Yin;Liu, Yuanchen
    • Environmental Engineering Research
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    • 제21권3호
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    • pp.226-232
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    • 2016
  • Rainfall is one of crucial factors that impact on our environment. Rainfall data is important in water resources management, flood forecasting, and designing hydraulic structures. However, it is not available in some rural watersheds without rain gauges. Thus, effective ways of interpolating the available records are needed. Despite many widely used spatial interpolation methods, few studies have investigated rainfall center characteristics. Based on the theory that the spatial distribution of convective rainfall event has a definite center with maximum rainfall, we present a mathematical interpolation method to estimate convective rainfall distribution and indicate the rainfall center location and the center rainfall volume. We apply the method to estimate three convective rainfall events in Santa Catalina Island where reliable hydrological data is available. A cross-validation technique is used to evaluate the method. The result shows that the method will suffer from high relative error in two situations: 1) when estimating the minimum rainfall and 2) when estimating an external site. For all other situations, the method's performance is reasonable and acceptable. Since the method is based on a continuous function, it can provide distributed rainfall data for distributed hydrological model sand indicate statistical characteristics of given areas via mathematical calculation.

경북지방(慶北地方)의 강수(降水) 및 무강수(無降水) 현상(現象) 조사(調査) 분석(分析) (A Studay on the Rainfall and Drought Days in Kyupgpook Area)

  • 서승덕;전국진
    • Current Research on Agriculture and Life Sciences
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    • 제5권
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    • pp.143-157
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    • 1987
  • In order to determine the design precipitation, the most probable daily precipitation and annual precipitation at every spot are calculated and iso - precipitation line are drawn. Probability of precipitation and drought phenomena of each gage station are analyzied by the method of frequency analysis from the statistical conceptions. The results summarized in this study are as the follows. 1. Annual mean precipitation in kyungpook area are 1044 mm, about 115 mm less than annual mean precipitation of Korea amounts to l1S9mm, and found to regionally unequal. 2. Monthly mean rainfall of July is 242.2mm, 23.2%, August 174.2mm, 16.7%, June 115mm, 11% and September 114.2mm, 10.9% and Rainfall depth of July-August are more than 40% of annual precipition. This shows notable summer rainy weather by typoon and low pressure storm and seasonal unbalance of water supply. 3. The relation among the maximum precipi.tation per day, per two continuous days and per three contnous days are caculated and the latter is found 31.0% increased rate of the first and the last 48.2% increased rate of first. 4. Probability precipitation in Kyungpook area are shown as 9.0%(5 year), 13.3%(10 year), 17.7%(20 year), 23.1%(50 year), 27.0%(100 year) and 31.1%(200 year) increased rate of each recurrence year compared with observed average annual precipitation. 5. From annual precipitation and maximum daily rainfall data probability of precipitation and precipitation isohyetal line are derived which shown as Table 11 and Fig. 8. 6. Drought days are divided 6 class and analysed results are shown on table 12. Average occurrence time of 10-14 continuous drought days are 2.3 time per year, 15-19 days are 0.9 time per year, 20-24 days are one per six years, 30-34 days are once per nine years and over than 35days are once per 25 years.

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한국 확률강우량도 작성을 위한 수문해석방법 개발 (A Programming of Hydrologic Analysis Procedure for the Probable Isohyetal Chart in Korea)

  • 이원환
    • 물과 미래
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    • 제20권2호
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    • pp.139-150
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    • 1987
  • 본 연구는 우리나라의 확율강우량도 작성을 위한 수문해석기법을 개발제시하는 것을 내용으로 하고 있다. 강우량계열의 적정분포형검정과정에서는 변수변환정규분포(Y-k법)등 11개의 연속확율분포형을 적용하였으며, 각 지속기간별 연최대강우량자료에 대한 수문해석을 실시하였다. 최적분포형 선정을 위한 적합도검정은 $-test와 Kolmogorov-Smirnov test에 의거하였으며 계급구간은 등간격으로 취하였다. 서울, 인천, 부산 및 광주지점의 강우지속기간 10분, 60분, 6시간 및 24시간에 대한 연최대 강우량에 각종 확율분포를 적용하고, 분포형의 적용상 특성과 강우량 자료집단의 특성을 고려하여 최적확율분포형을 설정하였다. 이와같은 해석기법으로 설정된 최적확율분포형은 종전의 방법으로 얻어진 적정분포형 보다도 자료면에서 확장된 자료집단일 뿐 아니라 확대검정된 합리적인 결과라고 생각된다.

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도암호 유역 송천에서의 강우유출수 분석을 통한 EMC와 초기세척비율 (MFFn) 산정 (Determination of EMC and MFFn Rainfall Runoff in Songcheon, Doam Lake Watershed)

  • 권혁준;김종건;임경재;김동진;홍은미
    • 한국농공학회논문집
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    • 제62권4호
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    • pp.13-22
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    • 2020
  • The Doam Lake watershed has a significant impact on the downstream water system due to nutrients and sediment outflow during rainfall caused by steep slopes, soil losses, and fertilization. These non-point sources are unclear in the discharge area and are affected by land use patterns, soil characteristics, and topographical features of the watershed. Therefore, this study conducted rainfall monitoring from July to October 2019 in Songcheon upstream of the Doam Lake watershed, one of the non-point pollution source management areas. Then, after analyzing rainfall runoff, Event Mean Concentration (EMC) and Mass First Flush ratio (MFFn) were calculated to compare and analyze the characteristics of rainfall and the non-point pollutant discharge. As a result of the analysis, it showed various non-point pollutant emission characteristics for each rainfall event. In addition, the concentration of EMC and the MFFn were affected by the average rainfall intensity and the maximum rainfall intensity, and were not significantly affected by the number of antecedent drying days. In the future, it is expected that effective non-point source reduction measures and management measures according to rainfall intensity through continuous monitoring and analysis will be needed.

이앙시기 및 담수심 변화에 따른 논벼 수요량 변화 분석 (Analysis of Variance of Paddy Water Demand Depending on Rice Transplanting Period and Ponding Depth)

  • 조건호;최경숙
    • 한국농공학회논문집
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    • 제63권3호
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    • pp.75-85
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    • 2021
  • This study evaluated variations in the paddy rice water demand based on the continuous changing in rice transplanting period and ponding depth at the four study paddy fields, which represent typical rice producing regions in Korea. Total 7 scenarios on rice transplanting periods were applied while minimum ponding depth of 0 and 20 mm were applied in accordance with maximum ponding depth ranging from 40 mm to 100 mm with 20 mm interval. The weather data from 2013 to 2019 was also considered. The results indicated that the highest rice water demand occurred at high temperature and low rainfall region. Increased rice transplanting periods showed higher rice water demand. The rice water demand for 51 transplanting days closely matched with the actual irrigation water supply. In case of ponding depth, the results showed that the minimum ponding depth had a proportional relationship with rice water demand, while maximum ponding depth showed the contrary results. Minimum ponding depth had a greater impact on rice water demand than the maximum ponding depth. Therefore, these results suggest that increasing the rice transplanting period, which reflects the current practice is desirable for a reliable estimation of rice water demand.

금강유역(錦江流域) 주요지점(主要地点)의 제(諸) 수문량(水文量)에 관(關)한 연구(硏究)(I) (Studies on the Some Hydrological Quantities of Principal Locations in the Basin of Geum River(I))

  • 안병기;조성섭
    • 농업과학연구
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    • 제2권1호
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    • pp.281-300
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    • 1975
  • 1. 금강유역(錦江流域)의 평균년강수량(平均年降水量)은 1203.0mm이고, 면적강수량(面積降水量)을 산출(算出)할 때 많이 사용(使用)하는 Thiessen법(法)의 Areal weight는 표(表)-과 같다. 2. 최대연강수량(最大年降水量)은 1501~2000mm인 곳이 24개관측소중(個觀測所中)며 17개소(個所)나 되어 가장 많은 71%이고, 나머지는 1500mm이하(以下)인 곳이 3개소(個所)이며, 2001mm이상(以上)인 곳은 4개소(個所)이다. 3. 최대일강우량(最大日降雨量)은 201~300mm인 곳이 15개소(個所)로 가장 많은 63%의 분포(分布)이다. 4. 최대(最大)2일간연속강우량(日間連續降雨量)은 300mm를 중심(中心)으로 전후(前後) 각각 50%씩 분포(分布)된다. 5. 최대(最大)3일간연속강우량(日間連續降雨量)은 301~400mm인 곳이 15개소(個所)로 63%의 분포(分布)이며 이는 최대일강우량(最大日降雨量)보다 100mm가 더 많은 강우량(降雨量)이다. 6. 최대연속강우량(最大連續降雨量)은 401~600mm인 곳이 14개소(個所)로 가장 많은 58%의 분포(分布)이며 이는 최대일강우량(最大日降雨量)보다 200mm가 더 많은 강우량(降雨量)이다. 7. 확률일강우량(確率日降雨量)은 표(表)-5와 같고, 무주(茂朱)를 중심(中心)으로한 대청(大淸)댐유역(流域)의 확률일강우량(確率日降雨量)이 가장 많으며, 다음으로는 강경(江景) 공주(公州) 및 부여(扶餘)를 연결(連結)하는 지방(地方)이 다우(多雨)인 편(便)이다. 8. 6월(月)1일(日)부터 9월(月)10일(日)까지 100일간(日間)의 논벼 관개기간중(灌漑期間中)의 강우량(降雨量)은 601~800mm 인 곳이 16개소(開所)로 76%의 분포(分布)이며 이는 표(表)-6과 같다. 9. 유효우량(有效雨量)은 501~600mm인 곳이 15개소(個所) 71%의 분포(分布)이며, 유효율(有效率)은 66~75%인 곳이 13개소(個所)로 62%의 비율(比率)이고, 다음으로는 76~85%인 곳이 7개소(個所)로 33%의 비율(比率)이다. 10. 확률유효우량(確率有效雨量)은 각 지방(地方)의 연평균유효우량(年平均有效雨量)은 보다 100mm정도(程度)씩 적고, 301~500mm인 곳이 14개소(個所)로 67%의 분포(分布)이다. 11. 갈수년도(渴水年度)는 유역내(流域內)를 총괄적(總括的) 동일(同一)하게 지정(指定)할수 없다고 여겨진다. 12. 금강유역(錦江流域)의 s/S는 0.53~0.74로 되어 수자원면(水資源面)에서 비교적(比較的) 안정(安定) 편(便)이다.

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Impact of Environmental Factors and Altitude on Growth and Reproductive Characteristics of Teak (Tectona grandis Linn. f.) in Southern India

  • Krishnamoorthy, M.;Palanisamy, K.;Francis, A.P.;Gireesan, K.
    • Journal of Forest and Environmental Science
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    • 제32권4호
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    • pp.353-366
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    • 2016
  • The effect of different environmental conditions and altitudes on the growth and reproductive characteristics in 12 teak plantations at 4 different blocks (Cauvery canal bank, Topslip and Parambikulam (Tamil Nadu), Nilambur and Wayanad (Kerala) of Southern India was investigated. The annual rainfall and mean monthly temperature of the study areas varied significantly from 1390 to 3188 mm and 16 to $38^{\circ}C$ respectively. The teak plantations in Cauvery canal bank which grow in continuous moisture condition (8-10 months) retain the leaf for longer period due to moisture resulting continuous supply of photosynthates leads to fast and outstanding growth. The girth at breast height (GBH) of 34-years-old tree in canal area was similar to that of 40 to 49-years-old trees in other locations, indicating that teak plantations with regular watering and silvicultural practices may be harvested at the age of 30 years. The leaf fall, flowering and fruiting showed significant variations in different teak plantations due to environmental factors and altitudes. It was found that increase of rainfall enhances number of flowers in the inflorescence in teak. Tholpatty (block-IV) showed more flowering in a inflorescence (3,734-3,744) compared to other plantations (1,678-3,307). Flowering in Nilambur and Wayanad coincided with heavy rainfall resulting low fruitset (1.1-2.3%) probably heavy rainfall ensuing restriction of pollinators for effective pollination. On the other hand, flowering in Cauvery canal bank (Block-I) was not coincided with high rainfall exhibited high fruitset (2-3%). About 66 to 76% of the fruits in different plantations were empty, and it is one of the main reasons for poor germination in teak. The seeds of Topslip and Parambikulam (Block-II) showed higher seed weight, maximum seed filling and good germination indicating that the environmental factors and altitude play significant role in fruit setting and seed filling in teak. In addition, the teak plantations in Topslip and Parambikulam showed good growth suggesting that plantations in the altitude range of approximately 550-700 m may be suitable for converting into seed production areas for production of quality seeds.