• 제목/요약/키워드: spatial variation of soil properties

검색결과 38건 처리시간 0.033초

Analysis of Within-Field Spatial Variation of Rice Growth and Yield in Relation to Soil Properties

  • Ahn Nguyen Tuan;Shin Jin Chul;Lee Byun-Woo
    • 한국작물학회지
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    • 제50권4호
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    • pp.221-237
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    • 2005
  • For developing the site-specific fertilizer management strategies of crop, it is essential to know the spatial variability of soil factors and to assess their influence on the variability of crop growth and yield. In 2002 and 2003 cropping seasons within-field spatial variability of rice growth and yield was examined in relation to spatial variation of soil properties in the· two paddy fields having each area of ca. $6,600m^2$ in Suwon, Korea. The fields were managed without fertilizer or with uniform application of N, P, and K fertilizer under direct-seeded and transplanted rice. Stable soil properties such as content of clay (Clay), total nitrogen (TN), organic mater (OM), silica (Si), cation exchange capacity (CEC), and rice growth and yield were measured in each grid of $10\times10m$. The two fields showed quite similar spatial variation in soil properties, showing the smallest coefficient of variation (CV) in Clay $(7.6\%)$ and the largest in Si $(21.4\%)$. The CV of plant growth parameters measured at panicle initiation (PIS) and heading stage (HD) ranged from 6 to $38\%$, and that of rice yield ranged from 11 to $21\%$. CEC, OM, TN, and available Si showed significant correlations with rice growth and yield. Multiple linear regression model with stepwise procedure selected independent variables of N fertilizer level, climate condition and soil properties, explaining as much as $76\%$ of yield variability, of which $21.6\%$ is ascribed to soil properties. Among the soil properties, the most important soil factors causing yield spatial variability was OM, followed by Si, TN, and CEC. Boundary line response of rice yield to soil properties was represented well by Mitcherich equation (negative exponential equation) that was used to quantify the influence of soil properties on rice yield, and then the Law of the Minimum was used to identify the soil limiting factor for each grid. This boundary line approach using five stable soil properties as limiting factor explained an average of about $50\%$ of the spatial yield variability. Although the determination coefficient was not very high, an advantage of the method was that it identified clearly which soil parameter was yield limiting factor and where it was distributed in the field.

Temporal and Spatial Variation of Soil Moisture in Upland Soil using AMSR2 SMC

  • Na, Sang-Il;Lee, Kyoung-Do;Kim, Sook-Kyoung;Hong, Suk-Young
    • 한국토양비료학회지
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    • 제48권6호
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    • pp.658-665
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    • 2015
  • Temporal and spatial variation of soil moisture is important for understanding patterns of climate change, for developing and evaluating land surface models, for designing surface soil moisture observation networks, and for determining the appropriate resolution for satellite-based remote sensing instruments for soil moisture. In this study, we measured several soil moistures in upland soil using Advanced Microwave Scanning Radiometer 2 (AMSR2) Soil Moisture Content (SMC) during eight-month period in Chungbuk province. The upland soil moisture properties were expressed by simple statistical methods (average, standard deviation and coefficient of variation) from the monthly context. Supplementary studies were also performed about the effect of top soil texture on the soil moisture responses. If the results from this study were utilized well in specific cities and counties in Korea, it would be helpful to establish the countermeasures and action plans for preventing disasters because it was possible to compare with the relationship between soil moisture and top soil texture of each region. And it would be the fundamental data for estimating the effect of future agricultural plan.

배수조건에 따른 압밀 거동의 수치적 분석 (Numerical analysis of Consolidation Behavior under Various Drainage Conditions)

  • 오상호;조완제;윤찬영
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 춘계 학술발표회
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    • pp.1194-1199
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    • 2010
  • Systematic finite element analyses on consolidation were performed with various drainage conditions. Numerical analyses were performed using SAGE CRISP2D, a commercial numerical analysis program for the conventional geotechnical engineering practice. For the input properties of the numerical analyses, incremental loading oedometer tests were performed on reconstituted kaolinite samples. Numerical analyses were performed with various drainage conditions such as vertical, radially inward and outward drainage conditions. For the case of radially inward drainage conditions, a series of numerical analyses were performed with varying the diameter of vertical drains. As a result, the lateral deformation and void ratio variation occurred during consolidation for the radially inward or outward drainage conditions. And the variations of the lateral deformation and void ratio did not fully disappear even after the completion of the consolidation and induced the spatial variations of the soil properties. Keywords : finite element analysis of consolidation, various drainage conditions, lateral deformation, spatial variation of soil properties.

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SPATIAL AND TEMPORAL INFLUENCES ON SOIL MOISTURE ESTIMATION

  • Kim, Gwang-seob
    • Water Engineering Research
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    • 제3권1호
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    • pp.31-44
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    • 2002
  • The effect of diurnal cycle, intermittent visit of observation satellite, sensor installation, partial coverage of remote sensing, heterogeneity of soil properties and precipitation to the soil moisture estimation error were analyzed to present the global sampling strategy of soil moisture. Three models, the theoretical soil moisture model, WGR model proposed Waymire of at. (1984) to generate rainfall, and Turning Band Method to generate two dimensional soil porosity, active soil depth and loss coefficient field were used to construct sufficient two-dimensional soil moisture data based on different scenarios. The sampling error is dominated by sampling interval and design scheme. The effect of heterogeneity of soil properties and rainfall to sampling error is smaller than that of temporal gap and spatial gap. Selecting a small sampling interval can dramatically reduce the sampling error generated by other factors such as heterogeneity of rainfall, soil properties, topography, and climatic conditions. If the annual mean of coverage portion is about 90%, the effect of partial coverage to sampling error can be disregarded. The water retention capacity of fields is very important in the sampling error. The smaller the water retention capacity of the field (small soil porosity and thin active soil depth), the greater the sampling error. These results indicate that the sampling error is very sensitive to water retention capacity. Block random installation gets more accurate data than random installation of soil moisture gages. The Walnut Gulch soil moisture data show that the diurnal variation of soil moisture causes sampling error between 1 and 4 % in daily estimation.

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구획경계선(區劃境界線)의 횡단면(橫斷面)에 따른 토양특성(土壤特性)과 작물생육(作物生育)에 관한 공간변이성(空間變異性) 분석(分析) 연구(硏究) I. 토양물리성(土壤物理性)의 공간변이성(空間變異性) (Spatial Variation Analysis of Soil Characteristics and Crop Growth accross the Land-partitioned Boundary I. Spatial Variation of Soil Physical Properties)

  • 박무언;류순호
    • 한국토양비료학회지
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    • 제22권3호
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    • pp.163-172
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    • 1989
  • 본 연구는 구획경계선(區劃境界線)이 토양물리성(土壤物理性)의 공간변이(空間變異)에 미치는 영향을 알기 위하여 10년전 구획정리(區劃整理)로 논을 전전환(田轉換)한 맥류연구소(麥類硏究所)의 시험포지 화동(華東)미사질식양토(Fine clayey, mixed, mesic family of Aquic Hapludalfs)를 공시토양으로 하여 필지경계선(筆地境界線)을 횡단(橫斷)하여 토양물리성(土壤物理性)을 조사하고 조사성적을 고여(古與) 통계학적(統計學的) 방법(方法)과 지질(地質) 통계학적(統計學的) 방법(方法)으로 공간변이성을 해석하였다. 토양입경분포(土壤粒徑分布)는 10m 간격으로 $15{\times}15$ Grid의 교차 225 지점에서 채취한 토양시료를 이용하였고 포장용수량(圃場容水量), 전용적밀도(全容積密度), 포화수리전도도(飽和水理傳導度)등에 대한 물리성은 조사대상면적의 일부분에 대하여 2.5m 간격으로 $18{\times}33$ Grid의 교차지점중 594지점에서 포장조사법으로 직접 측정하였다. 시험 분석결과를 요약하면 다음과 같다. 1. 토양물리성(土壤物理性)의 변이계수(變異係數)는 4.8%에서 128.8%범위였다. 변이계수(變異係數)는 크기로 보아 포화수리전도도(飽和水理傳導度)는 고변이군(高變異群)으로 분류되었고, 전용적밀도(全容積密度)는 저변이군(低變異群) 그리고 기타 다른 물리성은 중변이군(中變異群)으로 분류할 수 있다. 2. 측정된 값의 평균치로부터 신뢰수준 95%에서 허용오차 10%이내의 정확성을 나타낼 수 있는 시료수는 포장용수량(圃場容水量)이 1개로 가장 적었고 포화수리전도도(飽和水理傳導度)는 687개로 가장 많은 시료수가 요구되었다. 기타 다른 물리성(物理性)은 6-69개의 범위를 나타내었다. 3. 도수분포곡선(度數分布曲線)과 Fractile diagram의 분석 결과 포화수리전도도(飽和水理傳導度)는 대수변환시(對數變換時) 정규분포성(正規分布性)을, 기타 다른 물리성은 실측치(實測値)가 정규분포성을 보였다. 도수분포곡선(度數分布曲線)상에서 평균치(平均値), 중앙치(中央値) 및 최빈치(最頻値)가 차이를 나타내는 특성의 산술평균(算術平均)은 곡선상의 평균에 비해 오차를 유발할 가능성이 컸다. 4. 계열상관(系列相關) 분석(分析)에 의하면 토양물리성(土壤物理性)은 모두 유의성 있는 종속성(從屬性)이 인정되었다. 자기상관(自己相關) 분석(分析) 결과(結果)는 남북방향으로 정상성(定常性)을 가지며 7.5~40m의 영향권(影響圈)을 보였고 토양 깊이간에도 차이가 있었다. 특히 토양의 깊이 50~60cm에서 대부분의 물리성이 비정상성(非定常性)을 보였다. 동서방향으로는 30㎝의 주기성(週期性)을 보이는 것이 특징적이며 구획폭(區劃幅)과 일치하여 구획에 따른 영농관리가 토양의 공간변이성(空間變異性)을 유발하는 원인들중 하나로 생각되었다.

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Classification and Spatial Variability Assessment of Selected Soil Properties along a Toposequence of an Agricultural Landscape in Nigeria

  • Fawole Olakunle Ayofe;Ojetade Julius Olayinka;Muda Sikiru Adekoya;Amusan Alani Adeagbo
    • Journal of Forest and Environmental Science
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    • 제39권3호
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    • pp.180-194
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    • 2023
  • This study characterize, classify and evaluates the function of topography on spatial variability of some selected soil properties to assist in designing land management that support uniform agricultural production. The study site, an agricultural land, was part of the derived savanna zone in southwest Nigeria. Four soil profile pits each were established along two delineated toposequence and described following the FAO/UNESCO guidelines. Samples were collected from the identified genetic horizons. Properties of four soil series developed on different positions of the two delineated Toposequence viz upper, middle, lower slopes and valley bottom positions respectively were studied. The soil samples were analysed for selected physical and chemical properties and data generated were subjected to descriptive and inferential statistics. The results showed that soil colour, depth and texture varied in response to changes in slope position and drainage condition. The sand content ranged from 61 to 90% while the bulk density ranged between 1.06 g cm-3 to 1.68 g cm-3. The soils were neutral to very strongly acid with low total exchangeable bases. Available phosphorus value were low while the extractable micronutrient concentration varied from low to medium. Soils of Asejire and Iwo series mapped in the study area were classified as Typic isohyperthermic paleustult, Apomu series as Plinthic isohyperthermic paleustult and Jago series as Aquic psamment (USDA Soil Taxonomy). These soils were correlated as Lixisol, Plinthic Lixisol and Fluvisol (World Reference Based), respectively. Major agronomic constraints of the soils associations mapped in the study area were nutrient availability, nutrient retention, slope, drainage, texture, high bulk density and shallow depth. The study concluded that the soils were not homogenous, shows moderate spatial variation across the slope, had varying potentials for sustainable agricultural practices, and thus, the agronomic constraints should be carefully addressed and managed for precision agriculture.

확률론적 사면안정 해석기법에 관한 연구 (A Study on the Probabilistic Stability Analysis of Slopes)

  • 김기영;조성은
    • 한국지반공학회논문집
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    • 제22권11호
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    • pp.101-111
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    • 2006
  • 사면안정해석은 많은 불확실한 요인을 내포하는 지반공학적 문제이다. 이러한 불확실성 중 일부는 해석 수행과정에 필요한 지반 물성의 변동성과관련이 있다 본 연구에서는 확률론적 사면안정 해석기법을 개발하기 위하여 절편법의 일종인 Spencer의 방법을 바탕으로 한 결정론적 해석방법을 지반정수의 불확실성과 공간적 변동성을 고려할 수 있도록 확장하였다. 제안된 방법은 Hasofer-Lind의 신뢰지수를 구하는 일차신뢰도법과 Monte-Carlo Simulation을 바탕으로 한다. 지반정수의 변화에 따른 파괴확률의 변화를 구하기 위해 단일지층과 2층 지반의 사면에 대한 확률론적 사면안정 해석을 수행하였다. 예제의 결과는 사면안정해석에 대한 지반의 불확실성을 고려할 수 있는 관점을 제시하며 확률론적 해석결과에 미치는 지반정수의 공간적 변동성의 영향을 보여준다.

구획경계선(區劃境界線)의 횡단면(橫斷面)에 따른 토양특성(土壤特性)과 작물생육(作物生育)에 관한 공간변이성(空間變異性) 분석연구 II. 토양(土壤) 화학성(化學性)의 공간변이성(空間變異性) (Spatial Variation Analysis of Soil Characteristics and Crop Growth across the Land-partitioned Boundary II. Spatial Variation of Soil Chemical Properties)

  • 박무언;류순호
    • 한국토양비료학회지
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    • 제22권4호
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    • pp.257-264
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    • 1989
  • 본(本) 연구는 구획경계선(區劃境界線)이 토괴(土壞)의 화학성(化學性)의 공간변이(空間變異)에 미치는 영향을 알기 위하여 10년전 구획정리로 논을 회전환(回轉換)한 맥류연구소 시험원지(試驗園地)중 화동(華東) 미사질 식양토(Fine clayey, mixed, mesic family of Aquic Hapludalfs)를 공시토양으로 하여 필지경계선(筆地境界線)을 횡단(橫斷)하여 토양화학성건(土壤化學性健)을 조사하고 각 측정자료를 고전통계적방법(古典統計的方法)과 지질통계적(地質統計的) 방법(方法)으로 각 측정치의 변이성과 공간변이성(空間變異性)을 해석하였다. 토양화학성은 $10m{\times}10m$ 등거리 정방형 gird의 225개 교차지점에서 토심 0-10cm, 25-35cm 및 50-60cm으로부터 토양시료를 채위하여 분석조사하였다. 결과를 요약하면 다음과 같다. 1. 토양(土壤)의 화학성(化學性)의 변이계수(變異係數)는 5.4%에서 72.7%의 범위이었다. 변이계수(變異係數)의 크기로 보아 pH는 C.V가 10% 이하인 저변이군(低變異群)에 속하였으나 기타 화학성(化學性)은 C.V.가 10-100%인 중변이군(中變異群)으로 분류(分類)되었다. 2. 측정된 평균치(平均値)로부터 신뢰수준(信賴水準) 5%의 유의수준에서 허용오차(許容誤差) 10% 이내의 정확성(正確性)을 나타낼 수 있는 시료수는 화학성중 pH는 2개로서 가장 적었으나 CEC는 10개, 치환성 Ca는 15개 전질진함량(全窒秦含量)은 32개, 치환성 Mg, K 및 Na는 각각 39, 40, 61개였으며 유가물함량은 82개로서 중간정도의 범위를 보였고 유효소산(有效燒酸)은 212개로 가장 많은 시료수가 요구되었다. 3. 도수분포곡선(度數分布曲線)과 fractile diagram의 분석결과(分析結果) 유효련산함량(有效憐酸含量)은 대수변환시(對數變換時) 정규분포성(定規分布性)으로 기타, 다른 화학성(化學性)은 정규분포성(定規分布性)으로 분류하는 것이 좋을 것으로 생각 되었다. 도수 분포곡선상에서 평균치(平均値), 중앙치(中央値) 및 최빈치(最頻値)가 차이를 나타내고 Fractile diagram상의 직선회귀식(直線回歸式)에서 실측치보다 대수변환치에서 적중률이 더 높은 화학성은 각 특성의 산술평균치가 오차를 유발할 가능성이 높았다. 4. 계렬상관(系列相關) 분석(分析)에 의하면 토양의 화학성위(化學性位)은 측정지점문(測定地點問)에 모두 유의성 있는 종응성(從膺性)이 인정되었다. 자기상관(自己相關) 분석(分析) 결과(結果) 화학성위(化學性位)은 모두 정상성(定常性)을 나타내 20-50m의 영향단(影響團)을 보여 동서방향(東西方向)보다 남북방향(南北方向)에서 비슷한 특성(特性)을 나타내는 거리 즉 영향권(影響圈)이 큰 것으로 나타나 필지(筆地)의 구획크기가 관련성성(關聯性性)이 있었다.

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Impact of spatial variability of geotechnical properties on uncertain settlement of frozen soil foundation around an oil pipeline

  • Wang, Tao;Zhou, Guoqing;Wang, Jianzhou;Wang, Di
    • Geomechanics and Engineering
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    • 제20권1호
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    • pp.19-28
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    • 2020
  • The spatial variability of geotechnical properties can lead to the uncertainty of settlement for frozen soil foundation around the oil pipeline, and it can affect the stability of permafrost foundation. In this paper, the elastic modulus, cohesion, angle of internal friction and poisson ratio are taken as four independent random fields. A stochastic analysis model for the uncertain settlement characteristic of frozen soil foundation around an oil pipeline is presented. The accuracy of the stochastic analysis model is verified by measured data. Considering the different combinations for the coefficient of variation and scale of fluctuation, the influences of spatial variability of geotechnical properties on uncertain settlement are estimated. The results show that the stochastic effects between elastic modulus, cohesion, angle of internal friction and poisson ratio are obviously different. The deformation parameters have a greater influence on stochastic settlement than the strength parameters. The overall variability of settlement reduces with the increase of horizontal scale of fluctuation and vertical scale of fluctuation. These results can improve our understanding of the influences of spatial variability of geotechnical properties on uncertain settlement and provide a theoretical basis for the reliability analysis of pipeline engineering in permafrost regions.

압축지수분포 특성이 압밀침하량 분포에 미치는 영향 (The Influence of Distribution Characteristics of Compression Index on the Spatial Distribution of Consolidation Settlements)

  • 김동휘;김민태;김규선;이우진
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 추계 학술발표회 2차
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    • pp.76-80
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    • 2010
  • This paper describes that estimation methods for the distribution of consolidation settlements to investigate the influence of distribution characteristics of compression index on the spatial distribution of consolidation settlements. When the variation of compression index is considerable, the spatial distribution of compression index is estimated using ordinary cokriging. The spatial distribution of consolidation settlements estimated by considering both the variation of compression index and void ratio (CASE-1) is different from the conventional mean value of all soil properties (CASE-2). The settlement of CASE-1 shows the larger variation at short distances rather than that of CASE-2. Whereas the spatial settlement distribution of CASE-1 is affected by the spatial distribution of compression index and the thickness of consolidation layer, the distribution of CASE-2 is significantly influenced by the distribution of the thickness of consolidation layer.

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