• 제목/요약/키워드: Irrigation times

검색결과 245건 처리시간 0.022초

Growth Characteristics of Woody Plants for Irrigation Management of Container Gardens

  • Jeong, Na Ra;Han, Seung Won;Kim, Jae Soon
    • 인간식물환경학회지
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    • 제23권5호
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    • pp.507-519
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    • 2020
  • Background and objective: This study analyzed the growth characteristics, in relation to the soil moisture content, of trees planted in an environment with limited soil depth to provide the baseline data for effective irrigation management. Methods: The experimental treatment was divided into soil moisture contents (SMC) of 20%, 15%, 10%, 5%, and 1%, and the respective watering times were set accordingly. As for plant materials, Nandina domestica, Euonymus alatus, Thuja occidentalis, Hibiscus syriacus, Pinus densiflora, and Pyracantha angustifolia, were chosen for this study, because they are highly likely to be used in urban street environments. Results: The minimum irrigation point suitable for each species was determined by considering various aspects of visual quality and water efficiency in terms of plant growth, including characteristics such as height, root diameter, rootlet development, and weight. Our results indicate that N. domestica should be watered so that the moisture content of the soil is of at least 5%, based on the balance between the stem and roots, as well as on visual quality. E. alatus and P. angustifolia are suitable for watering that results in at least 10% SMC, considering the height, root growth, weight, and visual quality of plants. As for T. occidentalis, it showcases moderate growth with a soil moisture content of at least 5%. Finally, the minimum irrigation time required to obtain 15% SMC is appropriate, in terms of plant growth, fresh weight, and visual quality, for H. syriacus and P. densiflora. Conclusion: This study suggested a basic irrigation guideline for container gardens where trees planted in environments with limited soil depth can be managed so that they are visually appropriate and in good condition of growth.

지하수 관개에 의한 수도의 멸준양상과 그 방지책에 관한 연구 (Studies on the Rice Yield Decreased by Ground Water Irrigation and Its Preventive Methods)

  • 한욱동
    • 한국농공학회지
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    • 제16권1호
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    • pp.3225-3262
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    • 1974
  • The purposes of this thesis are to clarify experimentally the variation of ground water temperature in tube wells during the irrigation period of paddy rice, and the effect of ground water irrigation on the growth, grain yield and yield components of the rice plant, and, furthermore, when and why the plant is most liable to be damaged by ground water, and also to find out the effective ground water irrigation methods. The results obtained in this experiment are as follows; 1. The temperature of ground water in tube wells varies according to the location, year, and the depth of the well. The average temperatures of ground water in a tubewells, 6.3m, 8.0m deep are $14.5^{\circ}C$ and $13.1^{\circ}C$, respercively, during the irrigation period of paddy rice (From the middle of June to the end of September). In the former the temperature rises continuously from $12.3^{\circ}C$ to 16.4$^{\circ}C$ and in the latter from $12.4^{\circ}C$ to $13.8^{\circ}C$ during the same period. These temperatures are approximately the same value as the estimated temperatures. The temperature difference between the ground water and the surface water is approximately $11^{\circ}C$. 2. The results obtained from the analysis of the water quality of the "Seoho" reservoir and that of water from the tube well show that the pH values of the ground water and the surface water are 6.35 and 6.00, respectively, and inorganic components such as N, PO4, Na, Cl, SiO2 and Ca are contained more in the ground water than in the surface water while K, SO4, Fe and Mg are contained less in the ground water. 3. The response of growth, yield and yield components of paddy rice to ground water irrigation are as follows; (l) Using ground water irrigation during the watered rice nursery period(seeding date: 30 April, 1970), the chracteristics of a young rice plant, such as plant height, number of leaves, and number of tillers are inferior to those of young rice plants irrigated with surface water during the same period. (2) In cases where ground water and surface water are supplied separately by the gravity flow method, it is found that ground water irrigation to the rice plant delays the stage at which there is a maximum increase in the number of tillers by 6 days. (3) At the tillering stage of rice plant just after transplanting, the effect of ground water irrigation on the increase in the number of tillers is better, compared with the method of supplying surface water throughout the whole irrigation period. Conversely, the number of tillers is decreased by ground water irrigation at the reproductive stage. Plant height is extremely restrained by ground water irrigation. (4) Heading date is clearly delayed by the ground water irrigation when it is practised during the growth stages or at the reproductive stage only. (5) The heading date of rice plants is slightly delayed by irrigation with the gravity flow method as compared with the standing water method. (6) The response of yield and of yield components of rice to ground water irrigation are as follows: \circled1 When ground water irrigation is practised during the growth stages and the reproductive stage, the culm length of the rice plant is reduced by 11 percent and 8 percent, respectively, when compared with the surface water irrigation used throughout all the growth stages. \circled2 Panicle length is found to be the longest on the test plot in which ground water irrigation is practised at the tillering stage. A similar tendency as that seen in the culm length is observed on other test plots. \circled3 The number of panicles is found to be the least on the plot in which ground water irrigation is practised by the gravity flow method throughout all the growth stages of the rice plant. No significant difference is found between the other plots. \circled4 The number of spikelets per panicle at the various stages of rice growth at which_ surface or ground water is supplied by gravity flow method are as follows; surface water at all growth stages‥‥‥‥‥ 98.5. Ground water at all growth stages‥‥‥‥‥‥62.2 Ground water at the tillering stage‥‥‥‥‥ 82.6. Ground water at the reproductive stage ‥‥‥‥‥ 74.1. \circled5 Ripening percentage is about 70 percent on the test plot in which ground water irrigation is practised during all the growth stages and at the tillering stage only. However, when ground water irrigation is practised, at the reproductive stage, the ripening percentage is reduced to 50 percent. This means that 20 percent reduction in the ripening percentage by using ground water irrigation at the reproductive stage. \circled6 The weight of 1,000 kernels is found to show a similar tendency as in the case of ripening percentage i. e. the ground water irrigation during all the growth stages and at the reproductive stage results in a decreased weight of the 1,000 kernels. \circled7 The yield of brown rice from the various treatments are as follows; Gravity flow; Surface water at all growth stages‥‥‥‥‥‥514kg/10a. Ground water at all growth stages‥‥‥‥‥‥428kg/10a. Ground water at the reproductive stage‥‥‥‥‥‥430kg/10a. Standing water; Surface water at all growh stages‥‥‥‥‥‥556kg/10a. Ground water at all growth stages‥‥‥‥‥‥441kg/10a. Ground water at the reproductive stage‥‥‥‥‥‥450kg/10a. The above figures show that ground water irrigation by the gravity flow and by the standing water method during all the growth stages resulted in an 18 percent and a 21 percent decrease in the yield of brown rice, respectively, when compared with surface water irrigation. Also ground water irrigation by gravity flow and by standing water resulted in respective decreases in yield of 16 percent and 19 percent, compared with the surface irrigation method. 4. Results obtained from the experiments on the improvement of ground water irrigation efficiency to paddy rice are as follows; (1) When the standing water irrigation with surface water is practised, the daily average water temperature in a paddy field is 25.2$^{\circ}C$, but, when the gravity flow method is practised with the same irrigation water, the daily average water temperature is 24.5$^{\circ}C$. This means that the former is 0.7$^{\circ}C$ higher than the latter. On the other hand, when ground water is used, the daily water temperatures in a paddy field are respectively 21.$0^{\circ}C$ and 19.3$^{\circ}C$ by practising standing water and the gravity flow method. It can be seen that the former is approximately 1.$0^{\circ}C$ higher than the latter. (2) When the non-water-logged cultivation is practised, the yield of brown rice is 516.3kg/10a, while the yield of brown rice from ground water irrigation plot throughout the whole irrigation period and surface water irrigation plot are 446.3kg/10a and 556.4kg/10a, respectivelely. This means that there is no significant difference in yields between surface water irrigation practice and non-water-logged cultivation, and also means that non-water-logged cultivation results in a 12.6 percent increase in yield compared with the yield from the ground water irrigation plot. (3) The black and white coloring on the inside surface of the water warming ponds has no substantial effect on the temperature of the water. The average daily water temperatures of the various water warming ponds, having different depths, are expressed as Y=aX+b, while the daily average water temperatures at various depths in a water warming pond are expressed as Y=a(b)x (where Y: the daily average water temperature, a,b: constants depending on the type of water warming pond, X; water depth). As the depth of water warning pond is increased, the diurnal difference of the highest and the lowest water temperature is decreased, and also, the time at which the highest water temperature occurs, is delayed. (4) The degree of warming by using a polyethylene tube, 100m in length and 10cm in diameter, is 4~9$^{\circ}C$. Heat exchange rate of a polyethylene tube is 1.5 times higher than that or a water warming channel. The following equation expresses the water warming mechanism of a polyethylene tube where distance from the tube inlet, time in day and several climatic factors are given: {{{{ theta omega (dwt)= { a}_{0 } (1-e- { x} over { PHI v })+ { 2} atop { SUM from { { n}=1} { { a}_{n } } over { SQRT { 1+ {( n omega PHI) }^{2 } } } } LEFT { sin(n omega t+ { b}_{n }+ { tan}^{-1 }n omega PHI )-e- { x} over { PHI v }sin(n omega LEFT ( t- { x} over {v } RIGHT ) + { b}_{n }+ { tan}^{-1 }n omega PHI ) RIGHT } +e- { x} over { PHI v } theta i}}}}{{{{ { theta }_{$\infty$ }(t)= { { alpha theta }_{a }+ { theta }_{ w'} +(S- { B}_{s } ) { U}_{w } } over { beta } , PHI = { { cpDU}_{ omega } } over {4 beta } }}}} where $\theta$$\omega$; discharged water temperature($^{\circ}C$) $\theta$a; air temperature ($^{\circ}C$) $\theta$$\omega$';ponded water temperature($^{\circ}C$) s ; net solar radiation(ly/min) t ; time(tadian) x; tube length(cm) D; diameter(cm) ao,an,bn;constants determined from $\theta$$\omega$(t) varitation. cp; heat capacity of water(cal/$^{\circ}C$ ㎥) U,Ua; overall heat transfer coefficient(cal/$^{\circ}C$ $\textrm{cm}^2$ min-1) $\omega$;1 velocity of water in a polyethylene tube(cm/min) Bs ; heat exchange rate between water and soil(ly/min)

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순환식 양액재배에 있어서 관주 주기, Perlite의 입자 크기 및 깊이가 국화 '수방력'의 생육과 개화에 미치는 영향 (Effects of Irrigation Frequency, Particle Size and Depth of Perlite Medium on Growth and Flowering of Dendranthema grandiflorum Grown on Recycling System)

  • 김선화;김기선
    • 원예과학기술지
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    • 제17권3호
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    • pp.355-360
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    • 1999
  • 본 연구는 절화용 국화의 생산에 있어서 관주 주기, 펄라이트 배지의 입자 크기 및 배지 깊이가 생육과 개화에 미치는 영향을 구명하고자 실시하였다. 실험 1에서 관주 주기는 하루에 3, 9, 18회로 처리하였으며 가는 입자와 굵은 입자 펄라이트를 각각 단용으로 처리하였다. 배지 깊이는 $34{\times}120{\times}15cm$의 스티로폴 성형 베드내에서 15, 10cm로 하였다. 실험 2에서 관주 주기는 하루에 3, 6, 9회로 하여 한 번에 동일한 양을 관주하였고 배지는 가는 입자와 굵은 입자 펄라이트를 각각 단용으로 처리하였다. 배지 깊이는 같은 베드 내에서 15, 7.5cm로 하였다. 관주 횟수에 따른 생육의 차이를 살펴보면 실험 1에서, 관주 주기간 생육의 차는 거의 없었지만 체내 무기성분의 함량은 18회 관주시 가장 많았다. 실험 2에서는 9회 관주시 가장 생육이 좋았고 체내무기성분의 함량도 많았다. 배지 굵기간 차이를 살펴볼 때, 가는 입자 배지에서 생육이 월등하게 좋았으나 관주가 잦아질수록 생육의 차는 줄어들었다. 같은 관주 주기 내에서 배지간 생육 차이는 배지내 수분보유능력과 공극률의 차이와 뿌리 뻗음의 형태적 차이에 의한 것으로 밝혀졌다. 배지 깊이간 생육의 차이는 거의 없어서 배지의 양을 줄임으로써 생산비를 감소시킬 수 있을 것으로 사료되었다.

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물절약형 담수심 관리방법에 따른 벼 생육 및 수량 (Growth and Yield of Rice by Field Water Management for Water-Saving Irrigation)

  • 최장수;원종건;안덕종;박상구;이승필
    • 한국작물학회지
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    • 제49권6호
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    • pp.441-446
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    • 2004
  • 효율적인 물 관리방식 개발의 기초 자료를 얻고자 논의 물 관리 차이가 벼의 생육과 수확량에 미치는 영향을 2002년부터 2003년까지 조사한 결과는 다음과 같다. 1. 물 관리 방법별 벼 생육 및 수량은 DWI는 VSII에 비해 출수기의 초장이 길었고, 경수가 적었으나 유효경 비율은 약간 높았고, VSII의 등숙비율은 다른 물 관리에 비해 $1\%$ 낮아 쌀 수량은 $2.1\%$ 적었으나 통계적 유의성은 없었다. 2. 관개량과 유효강우량 등 총 물 공급량은 DWI에서 777.2mm로 가장 많았고, VS팀에서 527mm로 가장 적어, SII에서는 DWI에 비해 약 $15.9\%$, VSII에서는 $32.2\%$정도의 물 절약효과가 있었다. 3. 절간장은 N3, N4절은 관수심이 깊을수록 길었으며, 간벽두께, 간기중, 줄기직경은 DWI에서 감소하였으나, 좌절중, Pushing resistance는 VSII가 DWI에 비해 매우 높고 도복지수가 낮았다. 4. VSII의 성숙기 근장은 27cm로 DWI보다 깊게 내려갔으며, 토양 표면으로부터 10cm이상 깊이에서는 VSII의 뿌리 발생량이 많았으나, 토양 표면으로부터 10cm까지는 DWI의 뿌리분포가 많았다. 5. 물 관리 차이에 따른 잡초 발생양상은 최고 분얼기에는 VSII가 DWI에 비해 일년생 잡초와 다년생 잡초 모두 본수가 2배 이상 많았으며, 출수기에는 일년생 잡초 본수는 물 관리 차이에 관계없이 비슷하였으나, 다년생 잡초 본수는 VSII에서 DWI에 비해 3배 이상 많았다. 이상의 결과에서 담수심을 얕게 하여 용수를 절약하여도 관행 심수 관개 방식에 비해 벼 생육 및 수량에는 차이가 없었고, 오히려 내도복성을 향상시킬 수 있었으므로 최적 용수 공급량 산출의 기초 자료로 활용할 수 있었다.

봄 감자 재배 시 관수 및 관비 처리가 생육 및 수량에 미치는 영향 (Effect of Irrigation and Fertigation Treatments on Growth and Yield in Spring Potato Cultivation)

  • 김종혁;노일래
    • 한국작물학회지
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    • 제67권2호
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    • pp.121-130
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    • 2022
  • 본 연구는 봄 감자 재배 시 괴경 형성기와 괴경 비대기에 최적 수분함량을 구명하고 관비 재배 시 적합한 추비 기준을 마련하고자 수행 하였다. 1. 감자의 최적 수분함량을 구명하기 위한 괴경 형성기와 괴경 비대기에 관수처리 결과 관수처리 전후 지상부의 생육을 비교한 상대생장률과 대조구(무관수, 자연강우 의존) 대비 상대 생장률 모두에서 -10 kPa 및 -20 kPa 처리구에서 우수한 경향을 보였다. 2. 관수처리에 따른 지하부 생체중은 -10 kPa과 -20 kPa 처리구에서 다른 처리보다 뛰어났으며, 수확량 및 상서수량은 -10 kPa 처리구가 무관수구에 대비 약 47%가량 증수되었다. 3. 감자의 최적 관비량 설정을 위해 괴경 형성기와 괴경 비대기에 관비를 실시한 결과 관비 처리 전후 지상부의 생육을 비교한 상대생장률은 K 5 및 NPK 0.8배 관비구에서 생육이 가장 우수하였고, 대조구(무관비구, 기비만 시용) 대비 감자 지상부 상대 생장률은 K 5, K 7, NPK 1.2배 관비구에서 가장 우수하였다. 4. 관비 처리에 따른 감자 지하부 생체중 및 수량, 상서수량을 비롯한 다수의 조사항목에서 K 5 처리구가 가장 우수하였고, 수량도 K 5 처리구가 대조구 대비 약 27%가량 증수되었다.

논에서 시용 유기물의 메탄 전환율에 미치는 벼 식생 및 물관리의 영향 (Effect of Rice Vegetation and Water Management on Thrnover of Incorporated Organic Materials to Methane in a Korean Paddy Soil)

  • 신용광;김건엽;안종웅;고문환;엄기철
    • 한국토양비료학회지
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    • 제36권1호
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    • pp.50-56
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    • 2003
  • 논에 볏짚과 볏짚퇴비를 시용하고 상시담수와 간단관개로 관리하면서 벼가 심긴 chamber와 벼가 심겨지지 않은 chamber에서 메탄으로 전환되는 정도를 조사하였다. 벼가 심긴 chamber에서는 상시담수에서 메탄 전환율은 시용한 유기물의 신선도에 따라서 증가하였다. 볏짚을 5월에 시용한 처리 (RS5), 볏짚을 2월에 시용한 처리 (RS2), 볏짚퇴비를 5월에 시용한 처리 (RSC)에서 전환율이 각기 14.9%, 9.5%, 4.0%였었다. 범위는 4.0% ~ 14,9 %, 평균은 9.5%였었다. 간단관개에서 전환율도 유사한 경향이었다. 간단관개한 RS5 처리, RS2 처리, RSC 처리에서 메탄으로 전환율을 각기 9.8%, 5.5%, 2.1%였었다. 범위는 2.1% ~ 9.8%, 평균은 5.8%였었다. 벼를 심은 chamber에서 상시담수에서 메탄으로 전환율은 간단관개에서 보다 1.64배 높았다. 벼를 심지 않은 chamber에서 상시담수에서 메탄 전환율은 시용한 유기물의 신선도에 따라서 증가하였다. RS5 처리 RS2 처리 RSC 처리에서 전환율이 각기 8.7%, 3.3%, 3.0%였었다. 범위는 3.0% ~ 8.7%, 평균은 5.0%였었다. 간단관개에서 전환율도 유사한 경향이었다. 간단관개한 RS5 처리, RS2 처리. RSC 처리에서 메탄 전환율을 각기 5.4%, 3.0%, 1.4 %였었다. 범위는 1.4% ~ 5.4%, 평균은 3.3%였었다. 벼를 심은 chamber에서 상시담수에서 메탄 전환율은 간단관개에서 보다 1.52배 높았다.

시호(柴胡) 생육(生育)과 수량(收量)에 대한 파종기(播種期) 및 초기관수(初期灌水) 효과(效果) (Effects of Irrigation and Sowing Time on Growth and Yield of Bupleurum falcatum L.)

  • 김재철;김정혜;류정기;김기재;박준홍
    • 한국약용작물학회지
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    • 제5권4호
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    • pp.318-324
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    • 1997
  • 파종기(播種期)와 생육초기(生育初期) 관수(灌水)가 삼도시호(三島柴胡)의 수량(收量)에 미치는 영향(影響)을 구명(究明)코자 1995년부터 1996년까지 시험(試驗)을 수행(遂行)한 결과(結果)를 요약(要約)하면 다음과 같다. 1. 봄파종 시호(柴胡)의 출현일수(出現日數)는 파종후(播種後) 10일 간격으로 20mm씩 3회 관수한 시험구에서 38일로 무관수구(無灌水區)의 54일에 비하여 16일 단축(短縮)되었다. 2. 입모율(立毛率)은 10일간격 20mm씩 3회 관수한 시험구에서 64%인데 비하여 자연강우시 46%, 무관수에서는 25%로 아주 저조하였다. 3. 파종기(播種期)에 관수(灌水)한 경우 지상부(地上部) 및 지하부(地下部)의 생육(生育)이 무관수(無灌水) 및 자연강우(自然降雨)에서 보다 양호(良好) 하였으며 10a당 수량(收量)은 10일 간격 20mm 3회 관수한 경우 58kg으로 자연강우, 무관수에 비하여 각각 20%, 94%의 증수효과(增收效果)가 있었다. 4. 생육초기(生育初期)$(5{\sim}6$월) 10일 간격으로 30mm씩 6회에 걸쳐 관수한 것이 가장 효과적(效果的)이었다.

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담수심 처리가 논의 증발산량에 미치는 영향 (Effects of ponding depth treatment on evapotranspiration in paddy fields)

  • 손성호;박기중;정상옥
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2002년도 학술발표회 발표논문집
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    • pp.9-12
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    • 2002
  • The purpose of this study was to investigate the effects of ponding depth treatment on evapotranspiration in paddy fields. Three poding depth treatments, very sallow, shallow, and deep were used. The experimental plots were three $80m{\times}8m$ rectangular plots. Daily values of rainfall amount, ponding depth, irrigation water, drainage water, evapotranspiration, and infiltration were measured in the field. The ponding depth was continuously observed by observed nstaff during the growing season. The ET was measured by 1m diameter PVC lysimeters. Irrigation water volume was measured by 75 mm pipe flow-meters and the drainage water volume by 75 mm pipe flow-meters and a recording parshall flume. The results showed that irrigation water depths were 688.9 mm, 513.6 mm, and 624.4 mm in 2001, and 356.9 mm, 428.6 mm, and 513.2 mm in 2002 in very shallow, shallow, and deep ponding, respectively. The evapotranspiration were 465.0 mm, 484.1 mm, and 415.1 mm in 2001 and 461.3 mm, 476.3 mm, and 470.6 mm in 2002 in very shallow, shallow, and deep ponding, respectively.

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담수심처리가 논의 물수지에 미치는 영향 (The Effects of pending depth treatment on Water balance in paddy fields)

  • 손성호;정상옥
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2001년도 학술발표회 발표논문집
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    • pp.99-105
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    • 2001
  • The purpose of this study is to investigate the effects of pending depth treatment on water balance in paddy fields. The pending depth treatments were very shallow, shallow and deep. The experimental plots were three $80m{\times}25m$ rectangular plots. Daily values of rainfall amount, pending depth, irrigation water, drainage water, evapotranspiration, infiltration, and piezometeric head were measured in the field. The pending depth was continuously observered by water level logger during the growing season. The ET was measured in 1m diameter PVC lysimeters. Irrigation water volume was measured by 75m pipe flow meter and the drainage water volume was measured by 25mm and 75mm pipe flow meters and a recording Parshall fulume. PVC pipe piezometers with 12mm diameter were used. The results of the water balance showed that irrigation water of 881.1mm, 735.4mm, and 532.6mm in very shallow, shallow, and deep pending, respectively. The effective rainfall was 182.6mm(44.6%), 254.7mm(62.2%), and 188.6mm(46.0%) in very shallow, shallow, and deep pending, respectively. The results show that the shallow pending depth looks the best of the three treatments.

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저수지 내 유입부 침강지의 수질정화 효율 (Pollutant Removal Efficiency of Sedimentation Basin at Inlet of an Irrigation Reservoir)

  • 장정렬;최선화;권순국
    • 한국물환경학회지
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    • 제20권5호
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    • pp.473-479
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    • 2004
  • A sedimentation basin (SB) at the inlet of an irrigation reservoir which was constructed using an auxiliary dam was monitored to evaluate its pollutant removal efficiency. Water sampling at three points, i.e., inflow stream, upstream and downstream of the reservoir, were taken 5 times before and after the construction of the SB in 1999 and 2003, respectively. No significant water quality variations in inflow stream were observed during these periods. The COD, T-N, T-P and SS removal efficiencies were 38, 24, 35 and 49%, respectively. The results indicated that those removal efficiencies significantly increased during the rainy season and COD removal efficiency, especially, was higher than others studies. The scale of SB in this study was rational as aspects of pollutant removal efficiency and hydraulic detention time. And it is recommended that SB, at inlet of an reservoir, should be constructed as completely separated structure from reservoir water body and having SAR Index from 0.7% to 1.0%.