• 제목/요약/키워드: Soil Water

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흙-수분 특성곡선 방정식을 이용한 포화도의 예측 (Prediction of the Degree of Saturation Using the Soil-Water Characteristic Curves on an Unsaturated Soil)

  • 송창섭
    • 한국농공학회논문집
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    • 제46권6호
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    • pp.61-69
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    • 2004
  • The aim of the work described in this paper was to confirm the application of the equation of the soil-water characteristic curves on an unsaturated soil. A series of suction test for unsaturated soils was conducted on the selected 4 kinds of soil using modified pressure extractor apparatus. And it was carried out to analyse The experimental parameters which can be describe the soil-water characteristics, were determined by using the data obtained from the experiment. From the results, it was found that The matric suction varied according to the grain size distribution, amount of fine grain particles and void ratio. Also it was found that the residual degree of saturation was decreased with in crease of the void ratio, but the pore size distribution index and air entry value were increased with in crease of the void ratio. And The application of the soil-water characteristic curve equation was confirmed for the various conditions and the various state by the comparison between the measured degree of saturation and the predicted degree of saturation.

Measurement of Phosphorus in Soil and Water

  • Kim, Hye-Jin;Hwang, Seong-Woo;Chung, Doug-Young
    • 한국토양비료학회지
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    • 제44권4호
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    • pp.539-544
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    • 2011
  • The relative focus about phosphorus (P) which causes eutrophication characterized by increased growth of undesirable algae has increased in recent years. Phosphorus forms in soil and water include both organic and inorganic forms. There are also a large number of soil P determination methods that have been designed to account for various types of P and mechanisms controlling the chemistry of P in soil, water, and residual materials for environmentally relevant forms of P. However, phosphorus forms in soil, water, and residual materials are also difficult to standardize with any reasonable consensus, due to the number of different disciplines involved. Hence, it is essential to accurately define how P can be measured in soil, water, or residual material samples to avoid potential misinterpretations or inappropriate recommendations in determining amount and types of P. Therefore, we reviewed the testing methods which have appeared in the scientific literature to provide an overview of the soil test P most commonly used.

에너지와 물수지 연계방법과 TDR로부터 얻어진 매일 토양 함수량의 비교 (Comparison of Daily Soil Water Contents between Energy BalanceWater Budget Approach and TDR)

  • 임창수
    • 물과 미래
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    • 제29권4호
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    • pp.119-129
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    • 1996
  • 여름기간 동안 두 다른 준건조 기지역에 위치한 소유역들(Lucky Hills 그리고 Kendall)로부터 eddy 상관을 기초로 한 에너지 수지와 물수지 방법 그리고 TDR 방법을 이용하여 매일의 토양 함수량이 측정되어졌으며, 그 두 다른 방법들로부터 측정되어지고 계산되어진 매일의 토양 함수량에 대한 비교가 있었다. 그 비교는 유역을 대상으로 하는 경우에 있어서 eddy상관을 이용한 에너지 수지와 물수지 방법 그리고 TDR 방법을 사용한 토양 함수량 특정 방법에 대한 정확돌알아보는데 유용하다. 토양 함수량을 측정하는 이 두 방법들로부터 구해진 회귀 사이의 유사도는 이 방법들 사이의 상관 정도를 알아보는 것에 의해서 설명되어졌다. 단순선형상관분석은 Lucky Hills 유역에서는 TDR 방법에 의해서 측정된 토양 함수량이 에너지와 물수지 방법에 의해서 측정된 토양 함수량의 58% 정도임을 나타냈고, 그리고 Kendall 유역에서는 63% 정도임을 나타내었다. 분포도와 상관분석 결과는, 소유역에서 토양 함수량 측정을 위한 두 방법들에 있어서 유의한 차이를 나타내지 않았다.

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Variability of Soil Water Content, Temperature, and Electrical Conductivity in Strawberry and Tomato Greenhouses in Winter

  • Ryu, Dong-Ki;Ryu, Myong-Jin;Chung, Sun-Ok;Hur, Seung-Oh;Hong, Soon-Jung;Sung, Je-Hoon;Kim, Hak-Hun
    • Journal of Biosystems Engineering
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    • 제39권1호
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    • pp.39-46
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    • 2014
  • Purpose: Monitoring and control of environmental condition is highly important for optimum control of the conditions, especially in greenhouses and plant factories, and the condition is not uniform within the facility. Objectives of the study were to investigate variability in soil water content and to provide information useful for better irrigation control. Methods: Experiments were conducted in a strawberry-growing greenhouse (greenhouse 1) and a cherry tomato-growing greenhouse (greenhouse 2) in winter. Soil water content, electrical conductivity (EC), and temperature were measured over the entire area, at different distances from an irrigation pump, and on ridge and furrow areas. Results: When measured over the entire greenhouse area, soil water content decreased and temperature and electrical conductivity increased over time from morning to afternoon after irrigation. Water content decreased by distance from the irrigation pump up to 70 m and increased after that, and temperature showed an inverse pattern. Soil water contents on the ridge were lower than those on the furrow, and the differences were 10.2~18.4%, indicating considerable variability. The lowest EC were observed on the furrow and highest values were observed on the ridge. Soil water contents were less and temperature levels were greater at the window side than in the center locations. Conclusions: Selection of number and location of soil water content sensor would be the first step for better water content monitoring and irrigation control. Results of the study would provide basic data useful for optimum sensor location and control for underground greenhouse environment.

한국의 간척지에서 토양 문제와 농업 용수 관리 (Soil Problems and Agricultural Water Management of the Reclaimed Land in Korea)

  • 정영상;류철현
    • 한국토양비료학회지
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    • 제40권4호
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    • pp.330-348
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    • 2007
  • 한국의 간척지에서 토양 문제와 농업 용수 관리에 대해 농촌진흥청과 농업기반공사 등에서 이루어진 연구를 통해 얻어진 결과를 토대로 하여 개관하였다. 한국토양분류와 조사에 의하면, 5개 토양목의 45개 토양통이 서남해안의 하해혼성 또는 해성 퇴적지에 분포하고 있었다. 염포, 문포, 하사, 광활, 포승통이 해안의 간석지에 연접한 하해혼성 퇴적지에 가장 많이 분포하고 있는 토양통들이었다. 염포 등 앞의 4개 토양통은 엔티솔이며, 포승통은 인셉티솔이었다. 포승통과 연접한 부용통 등은 알피솔이었다. 몰리솔인 명지통, 히스토솔인 용호통 등의 분포 면적은 적었다. 염류도 제어와 관리 문제는 높은 지하수위와 미사가 많은 간척지 토양에서 제염 과정에서 생성된 경운 반층에 의한 낮은 투수 속도와 밀접한 관련이 있다. 포장에서 염류의 평가에 있어서 GPS와 결합된 전자장 유도 EM38이 염류도와 포장 변이를 이해하는 데 유용하였다. 심경, 심토 파쇄, 암거에 의한 배수 개선 등은 경운 반층이 형성된 논에서 효과적이었다. 변량 시비와 같은 신기술은 비료를 절감하고 수질에 대한 농업 영향을 감축시킬 가능성이 있었다. 간척지에서 농업용수의 수질은 내륙 수자원의 수질보다 열악하였다. 작물 생육에 알맞은 수질과 함께 목표 수질 달성에 맞추어 갈 수 있는 작물 관리가 필요하였다.

불포화 인공 식재 지반의 배수 성능과 식생 가능 조건에 대한 수치해석적 분석 (Numerical Analysis on Drain Capacity and Vegetation Potential of Unsaturated Made-Planting Soil)

  • 김성민;김충언;정영훈
    • 한국지반환경공학회 논문집
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    • 제17권6호
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    • pp.33-41
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    • 2016
  • 본 연구에서는 인공 식재 지반의 공학적 배수 성능과 생물학적 식생 가능성을 평가하기 위해 유한요소해석을 실시하였다. 불포화토 해석을 통해 인공 식재 지반의 공학적 성능 평가가 가능하다. 하지만 식생 조경의 관점에서 조경 식물이 생존하기 위해서는 인공 식재 지반이 최소한의 수분을 제공하는지 확인해야 한다. 화강 풍화토로 이루어진 인공 식재 지반을 1m 높이의 사각형 토체 기둥으로 모사하여 해석하였다. 해석 결과 토체의 배수 성능이 포화 투수계수와 불포화토 함수특성의 조합에 따라 크게 달라질 수 있음을 보였다. 체적 함수비의 변화가 최소 한계 수분 범위(LLWR) 이내에서 발생하는지 확인하여 식물이 갈수기 동안 생존할 수 있는 최소한의 수분을 인공 식재 지반이 제공할 수 있음을 파악할 수 있다.

Water and soil properties in organic and conventional paddies throughout the rice cultivation cycle in South Korea

  • Lee, Tae-Gu;Lee, Chang-Gu;Hong, Seung-Gil;Kim, Jin-Ho;Park, Seong-Jik
    • Environmental Engineering Research
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    • 제24권1호
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    • pp.45-53
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    • 2019
  • Water and soil properties in paddy fields subjected to organic and conventional farming were characterized over the rice cycle in South Korea. To achieve the goals of this study, we sampled and analyzed soil and water from 24 organic paddy plots and 11 conventional paddy plots in March, May, August, and October 2016. The results were analyzed using statistical analyses, including analysis of variance (ANOVA), cluster analysis, and principal component analysis. The ANOVA results showed that water content (WC), electrical conductivity (EC), organic matter (OM), and available phosphorus ($P_2O_5$) in soil varied significantly (p < 0.01) depending on the farming method. Higher OM, EC, and $P_2O_5$ of soil were observed in the conventional paddies than in the organic paddies. All soil properties, except pH and ammonium, depended on seasonal variation. Cluster analysis revealed that soil properties in May were distinctly separated from those in other seasons mainly due to basal fertilization. The principal component analysis distinguished the soil properties in different seasons, but such a distinction was not observed between the soil properties in organic and conventional paddies. Low contents of WC, OM, and total N were observed in March. High concentrations of nitrate and total P were observed in May, but these were low in August and October. The soils from October were also characterized by high concentrations of EC and $P_2O_5$. These results indicate that the sampling time for soil and water can significantly influence the evaluation of soil properties with different farming methods.

일별 기상자료를 이용한 농경지 물 수지 및 토양수분 예측모형 (AFKAE0.5) 개발 (The Development of Estimation Model (AFKAE0.5) for Water Balance and Soil Water Content Using Daily Weather Data)

  • 서명철;허승오;손연규;조현숙;전원태;김민경;김민태
    • 한국토양비료학회지
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    • 제45권6호
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    • pp.1203-1210
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    • 2012
  • 밭 재배면적이 증가하면서 토양내 수분함량에 따른 적정관개가 작물생산성에 중요한 역할을 기 때문에 손쉽게 농가에서 포장의 토양수분함량을 파악하고 대처하는 것이 중요하다. 본 시험은 농경지에서 간단한 일 기상자료와 관개이력으로 물 수지 및 토양수분함량을 일단위로 추정하기 위하여 AFKAE0.5 토양수분추정모형을 개발하고 이를 검증을 하고자 하였다. 다양한 토양의 특성을 단순화 하기 위해 대상토양을 300mm의 균일한 토양으로 가정하였고 대상 토양지하에서 물 이동을 정의하기 위하여 토양수분장력에 따른 3개의 수분영역을 설정하여 투수량과 상승량을 산출하여 물 수지에 반영하였다. 토양 물수지에서 투입요인으로는 강우, 관개, 수분 상승량을 설정하였고 산출요인으로는 증발산, 유거, 투수량을 설정하여 모형을 개발하였다. 각 요인의 물량 산출을 위한 추정모형은 문헌 및 보고서를 이용하여 작성하였으며 모형을 검증하기 위해 공주지역 고추포장을 대상으로 작부기간 동안 AFKAE0.5 모형을 이용하여 모의하여 물 수지를 산출하였으며 모형의 검증을 위하여 실제 포장에서 층위별 센서를 이용하여 측정한 토양수분함량 변화 값을 비교하였다. 대상 포장에 대해 AFKAE0.5 모형의 모의 결과 투입부분으로 연간 강우, 관개, 수분상승량은 각각 1,043, 0, 207 mm이었으며 산출요인으로 증발산, 유거, 투수량은 각각 831, 309, 161 mm로 산출되어 투입된 물보다 산출된 물의 양이 88 mm 많았다. 또한 작부기간중 증발산량에 대해 지하에서 상승하는 수분량이 24.7%에 해당되어 건조기에 지하에서 모세관 등을 통해 상승하는 양도 상당한 것을 알 수 있었다. 작부기간 중 토양수분 측정값과 AFKAE0.5 모형의 모의 값과 토양수분함량의 변화를 일별로 비교한 결과 포화 되었을 때의 수분함량이 유사하였으며 건조에 따른 수분함량 일별 감소비율이 매우 유사하게 나타나고 있어 모형이 적합한 것으로 평가되었다. 개발된 AFKAE0.5 토양 물수지 및 수분추정 모형은 농가에서 손쉽게 자가 포장에 대한 기본적인 영농이력을 알고 있으며 포장의 수분상태를 알 수 있고 적정관개를 할 수 있는 유용한 도구로서 역할을 할 것으로 기대된다.

습지식물의 적정 서식 환경 : I. 줄과 애기부들 (The Optimal Environmental Ranges for Wetland Plants : I. Zizania latifolia and Typha angustifolia)

  • 권기진;이보아;변채호;남종민;김재근
    • 한국환경복원기술학회지
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    • 제9권1호
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    • pp.72-88
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    • 2006
  • The optimal environmental ranges of the establishment phase for the distribution of Zizania latifolia and Typha angustifolia was determined to develop a set of basic data and criteria of planting substrate for the restoration, conservation and management of wetlands. The study was carried at 17 wetlands in the Kyunggi-do and Gyeongsangnam-do region where inland wetlands place intensively in June, 2005. Total 127 quadrats were sets in growing areas of Zizania latifolia and Typha angustifolia. $NO_3-N$, K, Ca, Mg and Na in the water variables and soil texture, LOI (loss on ignition), soil pH and soil conductivity in the soil variables were analyzed. The optimal range of water depth for the distribution of Zizania latifolia was -5~39cm, $NO_3-N$ content of water was <0.01~0.19ppm, K content of water was 0.1~5.9ppm, Ca content of water 0.5~44.9ppm, Mg content of water was 1.2~11.9ppm, Na content of water 3.4~29.9ppm, water conductivity was 48~450${\mu}S$/cm, respectively. The optimal range of LOI for the distribution of Zizania latifolia was 1.7~11.9%, soil conductivity was 25.5~149.9${\mu}S$/cm, respectively. The optimal range of water depth for the distribution of Typha angustifolia was -20~24cm, $NO_3-N$ content of water was <0.01~0.19ppm, K content of water was 0.2~2.9ppm, Ca content of water 0.6~19.9ppm, Mg content of water was 0.2~5.9ppm, Na content of water 3.5~19.9ppm, water conductivity was 96~450${\mu}S$/cm, respectively. The optimal range of LOI for the distribution of Typha angustifolia was 2.4~15.9%, soil conductivity was 17.6~149.9${\mu}S$/cm, respectively. The optimal soil texture were loam, silt loam and sandy loam in both species. The lower water depth (-20~40cm) is appropriate to increase biodiversity in both species dominated community and it is better to maintain water depth of 40~100cm for water purification. Both species appear frequently in the soil with high silt content.

Changes of soil water content and soybean (Glycine max L.) response to groundwater levels using lysimeter

  • Lee, Sanghun;Jung, Ki-Yuol;Chun, Hyen-Chung;Choi, Young-Dae;Kang, Hang-Won
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.299-299
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    • 2017
  • Due to the climate changes in Korea, the numbers of both torrential rain events and drought periods have increased in frequency. Water management practice against water shortage and flooding is one of the key interesting for field crop cultivation, and groundwater often serves as an important and safe source of water to crops. Therefore, the objective of this study is to evaluate the effect of groundwater table levels on soil water content and soybean development under two different textured soils. The experiment was conducted using lysimeter located in Miryang, Korea. Two types of soils (sandy-loam and silty-loam) were used with three groundwater table levels (0.2, 0.4, 0.6m). Mean soil water content during the soybean growth period was significantly influenced by groundwater table levels. With the continuous groundwater level at 0.2m from the soil surface, soil water content was not statistically changed between vegetative and reproductive stage, but the 0.4 and 0.6m groundwater table level was significantly decreased. Lower chlorophyll content in soybean leaves was found in shallow water table treatment in earlier part of the growing season, but the chlorophyll contents were non-significant among water table treatments. Groundwater table level treatments were significantly influenced on plant available nitrogen content in surface soil. The highest N contents were observed in 0.6m groundwater table level. It is probably due to the nitrogen loss by denitrification as the result of high soil water content. The length and dry weight of primary root was influenced by groundwater level and thus the highest length and dry weight of root were observed in 0.6m water table level. This result showed that soybean root growth did not extend below the groundwater level and increased with the depth of groundwater table level. The results of this study show that the management of groundwater level can influence on soil characteristics, especially on soil water content, and it is an important practice of to reduce yield loss caused by the water stress during the crop growing season.

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