• 제목/요약/키워드: probable dry days

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Probable Evapotranspiration of Paddy Rice using Dry Day Index

  • 장하우;김성준
    • 한국농공학회지
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    • 제37권E호
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    • pp.72-78
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    • 1995
  • To support some knowledge in planning irrigation system, short or long-term irrigation scheduling or determining irrigation reservoir capacity, it is necessary to estimate peak irrigation requirements and seasonal distribution of water demands for various return periods. In this paper Dry Day Index and Probable Evapotranspiration were evaluated to decide seasonal consumptive use of paddy rice for a design year using several decades' daily rainfall data and 5 years'('82~'86) actual evapotranspiration data, respectively. To obtain Dry Day Index that is defined as the number of probable dry days for a given period, Slade unsymmetrical distribution function was adopted. Dry Day Index was analysed for 5 and 10-day intervals. Each of them was evaluated with return periods of 1, 3, 5, 10 and 20 year. Their singnificance was tested by X$^2$ method. Based on these values, the Probable Evaportanspiration, that is the average daily ET both in dry days and rainy days during a given period, was estimated. Crop coefficient was also determined by the modified Penman equation proposed by Doorenbos & Pruitt.

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수원지방의 확율과우일수를 이용한 기대증발산량의 산정 (Probable Evapotranspiration of Paddy Rice using Dry Day Index)

  • 정하우;박성우;김성준
    • 한국농공학회지
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    • 제31권4호
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    • pp.81-89
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    • 1989
  • This study is to determine seasonal consumptive use of water of a design year during growing period (June-September) for paddy rice in Suwon. To obtain Dry flay Index which is defined as the number of probable dry days occurring at a design year, Slade Partly Un- symmetrical Distribution Function was adopted. Dry Day Index was analysed with 5, 10 and 30 day-term. And each of them was evaluated with recurrence intervals of 1, 3, 5, 10 and 20 year using 49 years daily rainfall data('35-'83). Their singnificance were tested at 1% level by X$^2$ test. On the basis of these values, Probable Evapotranspiration (ET) which is the daily average ET for the sum of both ET on dry days and ET on rainy days were esti- mated using 5 years daily actual ET data(' 82-' 86). Their Crop Coefficients were also de- termined by the modified Penman equation(1977) proposed by Doorenbos & Pruitt.

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강우기록년한이 확률수문량 추정에 미치는 영향에 관한연구 (Effect of Period of Record on Probable Rainfall Prediction)

  • 이근후;한욱동
    • 한국농공학회지
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    • 제23권2호
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    • pp.45-53
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    • 1981
  • Long term precipitation gaging station record (58 years) was analyzed by progressive mean method to compare the estimated effective period of records for computing mean and probable values. Obtained results are as follows: 1. Fifty-eight years precipitation records at Jinju, Gyeong Sang Nam Do was analyzed by double mass analysis method. Result was appeared that the record was consistent with time. 2. The effective period of records for estimating mean values with the departure of 5% or less from the true mean are up to 33 years for annual precipitation, 20 years for annual maximum daily precipitation and 45 years for maximum successive dry days in summer season. 3. To estimate the probable values by Gumbel-Chow method within the departure of 5% level from true value, periods of 51 years, 38 years and 45 years were required for annual precipitation, annual maximum daily precipitation and maximum successive dry days in summer season, respectively.

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전작물의 필요수량 결정을 위한 연구 (A Study to Determine the Consumptive Use of Water for Upland Crops)

  • 김철회;유시창;이근후;서원명
    • 한국농공학회지
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    • 제22권3호
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    • pp.37-45
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    • 1980
  • This study was carried out to investigate the consumptive use of water for red peppers and soy beans. The correlation between the soil moisture contents and the selected meteorological factors during the growing season was analyzed. Characteristics of the drought at Jinju, Yeosu, Gwangju, and Mokpo area were figured out in view of frequency analysis. The results obtained from this study could be used as a reasonable criteria for the estimation of the duty of water in the design of upland irrigation systems. Obtained results are summarized as follows: 1. Red peppers were grown at the three levels of soil moisture contents; 75 percent, 50 percent, and 25 percent, respectively. The red pepper grown at the 75 percent of soil moisture content showed the highest yield. The total evapotranspiration during the growing season from red peppers was 471. lmm, which was 86.6mm less than the pan evaporation. 2. The soy bean grown at 75 percent soil moisture content showed the highest yield, although there was no signicant difference in yields among treatments. The total evapotranspiration during the growing season from the soy bean was 342.8 mm, which was 119.2mm less than the pan evaporation. 3. Coefficients of consumptive use(k) and meteorological data are shown on Table-9. 4. The significant correlations between the evapotranspiration and the humidity and daily temperature range were observed. Results are shown on Table-11.. Evaporanspiration can be easily estimated from the humidity and daily temperature range by using the equation...... (1) Ept=4.808-0.041H+0.207T.......(1) where, Ept; evapotranspiration(mm/day) H ; humidity(%) T ; daily temperature range ($^{\circ}C$) 5. The variations of soil moisture content during the growing season at the soil depth of 5cm, 15cm, and 45cm are shown on Fig. 4~9. The results of the correlation analysis between the evapotranspiration from the crops and the soil moisture content are shown on Table-12. The evapotranspiration can be estimated from soil moisture content at the different depth of the soil by using the equation....... (2). Ept = 3.433 - 0. 364M1 +0. 359M$_2$- 0. 055M$_3$....... (2) where, Ept; evapotranspiration (mm/day) M1 soil moisture meter reading at 5cm depth M$_2$; " 15cm " M$_2$; " 40cm " 6. The estimated probab]e successive dry days in selected areas are shown on Table 13. Gumbel-Chow method was used to calculate the probable successive dry days. Further investigation are required to obtain the more detailed and reliable results.

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Fermentation characteristics, chemical composition and microbial community of tropical forage silage under different temperatures

  • Li, Dongxia;Ni, Kuikui;Zhang, Yingchao;Lin, Yanli;Yang, Fuyu
    • Asian-Australasian Journal of Animal Sciences
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    • 제32권5호
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    • pp.665-674
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    • 2019
  • Objective: In tropical regions, as in temperate regions where seasonality of forage production occurs, well-preserved forage is necessary for animal production during periods of forage shortage. However, the unique climate conditions (hot and humid) and forage characteristics (high moisture content and low soluble carbohydrate) in the tropics make forage preservation more difficult. The current study used natural ensiling of tropical forage as a model to evaluate silage characteristics under different temperatures ($28^{\circ}C$ and $40^{\circ}C$). Methods: Four tropical forages (king grass, paspalum, white popinac, and stylo) were ensiled under different temperatures ($28^{\circ}C$ and $40^{\circ}C$). After ensiling for 30 and 60 days, samples were collected to examine the fermentation quality, chemical composition and microbial community. Results: High concentrations of acetic acid (ranging from 7.8 to 38.5 g/kg dry matter [DM]) were detected in silages of king grass, paspalum and stylo with relatively low DM (ranging from 23.9% to 30.8% fresh material [FM]) content, acetic acid production was promoted with increased temperature and prolonged ensiling. Small concentrations of organic acid (ranging from 0.3 to 3.1 g/kg DM) were detected in silage of white popinac with high DM content (50.8% FM). The microbial diversity analysis indicated that Cyanobacteria originally dominated the bacterial community for these four tropical forages and was replaced by Lactobacillus and Enterobacter after ensiling. Conclusion: The results suggested that forage silages under tropical climate conditions showed enhanced acetate fermentation, while high DM materials showed limited fermentation. Lactobacillus and Enterobacter were the most probable genera responsible for tropical silage fermentation.

수도(水稻)의 등숙생리(登熟生理)에 관(關)한 연구(硏究) -I 진흥(振興)과 IR667의 등숙구조비교(登熟構造比較) (Studies on Ripening Physiology of Rice plant. -I Difference in Ripening Structure between Jinheung and IR667)

  • 권항광;박훈
    • 한국토양비료학회지
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    • 제5권2호
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    • pp.65-74
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    • 1972
  • IR667의 낮은 등숙률요인(登熟率要因)을 밝히고자 재식밀도(栽植密度)와 질소수준(窒素水準)만을 달리하여 $5m^2$시멘트 pot IR667-수원(水原) 214와 진흥(振興)을 재배(栽培)하여 등숙구조(登熟構造)와 이의 생리적(生理的) 기능(機能)을 비교검토(比較檢討)하여 다음 결과(結果)를 얻었다. 1. IR667의 등숙률(登熟率)은 64로 진흥(振興)의 85보다 훨씬 낮으나 수량(收量)은 IR667이 790kg/10a로 진흥(振興)의 760kg보다 높았다. 2. 출수후(出穗後) 10일(日)의 NAR당(當) 등숙립수(登熟粒數)가 IR667은 6,490으로 진흥(振興)의 6,360보다 약간커서 IR667의 천립중(千粒重)은 29.9로 진흥(振興)의 31.2보다 적으며 NAR당(當) 총립수(總粒數)는 IR667이 10,530으로 진흥(振興)의 7,290보다 훨씬 높아 이것이 IR667의 등숙률(登熟率)이 낮은 요인(要因)이었다. 3. 투광상수(透光常數)는 IR667이 0.115로 진흥(振興)의 0.200보다 적어서 IR667이 보다 큰 등숙구조(登熟構造)를 갖게되는 장점(長點)을 보였다. 4. LAI 증가(增加)에 따른 LAI당(當) 입수(粒數)의 감소율(減少率)은 두 품종(品種)이 같았다. 5. 기초생산속도(基礎生産速度)(CGR)가 최고치(最高値)인 감계엽면적지수(監界葉面積指數)(critical leaf area index)는 IR667은 6.5이고 진흥(振興)은 5.2이며 5.2이하(以下)에서 진흥(振興)의 NAR이 IR667 보다 크다. 6. 최고수량(最高收量)을 얻을수 있는 출수기(出穗期) 최적엽면적지수(最適葉面積指數)(optimum leaf area index)는 IR667이 7.4로 진흥(振興)의 6.2보다 컸다. 출수기(出穗期) 평균엽면적지수(平均葉面積指數)는 IR667이 6.2 진흥(振興)이 4.7로 최적엽면적지수(最適葉面積指數)에 미달(未達)일 뿐 아니라 감계엽면적지수(監界葉面積指數)보다도 적었다. 7. 출당후(出糖後) 20일간(日間) LAI의 감소율(減少率)은 IR667이 크나 광합성량(光合成量)의 감소율(減少率)은 진흥(振興)이 컷다. 8. LAI가 클수록 NAR이 감소(減少)하는데 그 감소율(減少率)은 등숙(登熟)이 진행(進行)됨에 따라 진흥(振興)에서는 감소(減少)하나 IR677에서는 증가(增加) 함은 저온(低溫)에 의(依)한 광합성능(光合成能)의 저하(低下)와 호흡소모(呼吸消耗)에 기인(基因)하며 등숙적온(登熟適溫)이 IR667에서 높다는 것을 의미(意味)한다. 9. 수량(收量)-등숙률곡선(登熟率曲線)은 IR677이 진흥(振興)보다 등숙(登熟)이 수량(收量)에 미치는 영향이 적은 것으로 나타났고 이는 등숙환경(특히 기온)이 IR667에 부적(不適)한 때문으로 등숙환경(登熟環境)개선은 IR667의 최대 증수요인임을 보였다.

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