• 제목/요약/키워드: Soil condition

검색결과 3,298건 처리시간 0.036초

목초의 출아에 미치는 온도와 토양수분의 영향 (Effect of Soil Moisture and Temperature on Emergence of Forage Grasses)

  • 윤세형
    • 한국초지조사료학회지
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    • 제18권1호
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    • pp.27-34
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    • 1998
  • The present study elucidates of the effect of less water stress in different temperature condition on the emergence of forage grasses. Water condition was controlled to 30% and 60% by water content by wet soil. The mean temperature is conducted by $10^{\circ}C$ (out side) and $20^{\circ}C$ (glass house). The results are as follows: 1. Mean emergence time and emergence day after sowing of grasses were greatly influenced by water content of soil and temperature. It was suggested that temperature was very important for the light competition with weed in the early growth of grass. 2. Accumulatied emergence of grasses was nat afected by temperature, but it was sensitively affected by water content of soil.

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Undrained solution for cavity expansion in strength degradation and tresca soils

  • Li, Chao;Zou, Jin-feng;Sheng, Yu-ming
    • Geomechanics and Engineering
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    • 제21권6호
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    • pp.527-536
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    • 2020
  • An elastic-plastic solution for cavity expansion problem considering strength degradation, undrained condition and initial anisotropic in-situ stress is established based on the Tresca yield criterion and cavity expansion theory. Assumptions of large-strain for plastic region and small-strain for elastic region are adopted, respectively. The initial in-situ stress state of natural soil mass may be anisotropic caused by consolidation history, and the strength degradation of soil mass is caused by structural damage of soil mass in the process of loading analysis (cavity expansion process). Finally, the published solutions are conducted to verify the suitability of this elastic-plastic solution, and the parametric studies are investigated in order to the significance of this study for in-situ soil test.

A semi-analytical solution to spherical cavity expansion in unsaturated soils

  • Tang, Jianhua;Wang, Hui;Li, Jingpei
    • Geomechanics and Engineering
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    • 제25권4호
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    • pp.283-294
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    • 2021
  • This paper presents a rigorous solution for spherical cavity expansion in unsaturated soils under constant suction condition. The hydraulic behavior that describes the saturation-suction relationship is modeled by a void ratio-dependent soil-water characteristic curve, which allows the hydraulic behavior to fully couple with the mechanical behavior that is described by an extended critical state soil model for unsaturated soil through the specific volume. Considering the boundary condition and introducing an auxiliary coordinate, the problem is formulated to a system of first-order differential equations with three principal stress components and suction as basic unknowns, which is solved as an initial value problem. Parameter analyses are conducted to investigate the effects of suction and the overconsolidation ratio on the overall expansion responses, including the pressure-expansion response, the distribution of the stress components around the cavity, and the stress path of the soil during cavity expansion. The results reveal that the expansion pressures and the distribution of the stress components in unsaturated soils are generally higher than those in saturated soils due to the existence of suction.

혐기(嫌氣) 및 호기조건하(好氣條件下)에서 토양처리(土壤處理)된 돈분(豚糞) 중(中) 질소형태변화(窒素形態變化) (Transformation of Nitrogen Derived from Solid Piggery Manure in Soil under Aerobic or Anaerobic Incubation Condition)

  • 윤순강;정광용;유순호
    • 한국토양비료학회지
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    • 제26권2호
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    • pp.121-126
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    • 1993
  • 혐기(嫌氣) 및 호기(好氣)조건하에서 토양(土壤)에 처리(處理)된 돈분(豚糞) 중 질소행동(窒素行動)에 관한 기초자료(基礎資料)를 얻고자 사양토(砂壤土)에 생돈분(生豚糞) 및 발효돈분(醱酵豚糞)을 2:1로 혼합하고 혐기(嫌氣) 및 호기조건하(好氣條件下)에서 8주간(週間) 항온(恒溫)($30^+/-1^{\circ}C$) 하면서 토양(土壤)과 돈분(豚糞) 혼합물(混合物)의 pH 변화와 $CH_4$ 발생량(發生量) 그리고 무기태질소(無機態窒素) 농도(濃度)변화를 조사(調査)하였다. 토양(土壤)에 생돈분(生豚糞)처리시 혐기조건(嫌氣條件)에서의 pH가 호기조건(好氣條件)에서 보다 1.87 단위(單位) 낮아졌고 발효돈분(醱酵豚糞) 처리에서는 혐기(嫌氣), 호기조건(好氣條件) 간에 pH 차이가 적었다. 혐기(嫌氣)조건에서 항온기간(恒溫期間) 경과에 따른 pH 감소(減少) 회귀식(回歸式)(P<0.01)으로 부터 얻어진 회귀계수(回歸係數)는 생돈분(生豚糞)에서 -0.114, 발효(醱酵)돈분에서 -0.08로 발효돈분(醱酵豚糞)에 비하여 생돈분(生豚糞)에서 pH 감소율(減少率)이 컸다. 생돈분(生豚糞), 발효돈분(醱酵豚糞)을 토양에 처리시 혐기(嫌氣)조건에서 $CH_4$ 발생량은 항온(恒溫) 3주(週)까지는 두처리 간에 차이가 없었으나 3주(週) 이후에는 생돈분(生豚糞)에서의 $CH_4$ 발생량이 현저히 증가되었으며 8주(週) 까지의 누적(累積) $CH_4$ 발생량은 발효돈분(醱酵豚糞)에 비하여 3.2배(倍) 증가되었다. 항온(恒溫) 3주(週)부터 8주(週)까지 일당(日當) $CH_4$ 발생량은 생돈분(生豚糞)에서 0.211 mole/g, 발효돈분(醱酵豚糞)에서 0.046 mole/g였다. 호기조건(好氣條件)에서 생돈분(生豚糞)처리시 $NH_4-N$ 농도는 항온기간(恒溫期間)이 경과(經過)됨에 따라 점차 감소(減少)되었으며 $NO_3-N$ 농도는 초기(初期)에 11.2 ppm에서 8주(週) 후(後)에 67ppm으로 6배(倍) 증가되었는데 이러한 결과는 호기(好氣)조건의 발효돈분(醱酵豚糞)에서도 유사(類似)한 경향이었다. 그러나 혐기(嫌氣)조건에서는 항온기간별(恒溫期間別) $NH_4-N$ 농도가 급격(急激)히 증가되었으나 $NO_3-N$ 농도는 4~8ppm으로 호기조건(好氣條件)에 비하여 매우 낮았다.

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관수(灌水)에 의(依)한 시비양분(施肥養分)의 토양중(土壤中) 이동(移動)에 관(關)한 연구(硏究) -2. 토양수분(土壤水分) 조건(條件)과 Cl와 P의 이동(移動) (Movement Of Applied Nutrients Through Soils By Irrigation -2. Effect of soil water on the movement of Cl and P in the soil)

  • 류관식;유순호;송관철
    • 한국토양비료학회지
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    • 제24권3호
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    • pp.159-164
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    • 1991
  • 토양수분(土壤水分) 조건을 달리하였을 때 토양(土壤)에 시용한 양분(養分)이 작물(作物) 생육시기별(生育時期別)로 어떻게 이동(移動)하는가를 구명(究明)하기 위하여 본양(本良) 사양토(砂壤土) (Typic Udifluvents)에서 Ladino clover를 공시작물(供試作物)로 하여 microplot(D 20cm, L 85cm)시험(試驗)을 수행하였다. 토양수분장력(土壤水分張力)을 0.2, 1.0, 5.0 bar, 및 무관수의 4수준으로 하였을때 염소(鹽素) 이온의 하향(下向)이동은 토양수분(土壤水分) 조건이 좋을수록 빠르게 진행되어 관수점(灌水点) 0.2bar 처리구에서는 5.5개월후에는 모든 처리구에서 microplot 내 토층(土層)에서 Cl이온은 검출되지 않았다. 공시토양(供試土壤)은 유효인산(有效燐酸)함량이 매우높고 사질(砂質)임에도 인산비료(燐酸肥料)로 용과린을 사용하였기 때문에 인산(燐酸) 시용량이 많으며, 관수량이 많았으나 인산(燐酸)이 거의 이동(移動)되지 않아 시용 인산(燐酸)의 대부분이 시비지점(施肥地點)에 분포되어 있었다. 토양수분장력(土壤水分張力)이 낮게 유지된 구의 토양(土壤)일수록 유효태(有效態)로 침출되는 인산(燐酸)이 많고 식물체(植物體)에 의하여 흡수되는 양도 증가 하였다. 최종수확기(最終收穫期)에 무관계구에서는 시용(施用) 인산(燐酸)의 13%가 유효태(有效態)로 침출되고 14%가 작물(作物)에 흡수되었는데 비해 관수점(灌水点) 0.2bar 처리구에서는 24%가 침출되고 23%가 작물(作物)에 의해 흡수(吸收)되었다.

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모형실험장치를 이용한 불포화토의 강우 침투특성 분석 (Analysis of rainfall infiltration characteristics for unsaturated soils using a column test equipment)

  • 박규보;채병곤;김경수
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 추계 학술발표회
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    • pp.736-742
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    • 2010
  • This study was conducted to characterize on the relationships of rainfall intensity and infiltration rate of rainfall dependent on unit weight change in the gneissic weathered soil by a column test equipment. In this study, volumetric water content and pore water pressure were measured using TDR sensors and tensiometers at regular time intervals. Rainfall conditions including continuous rainfall and repeated rainfall were selected in order to know the effect of antecedent rainfall. In the condition of rainfall intensity 20mm/h and the unit weights of soil as $1.35g/cm^3$, $1.55g/cm^3$ and $1.61g/cm^3$, average rainfall infiltration rate was $2.814{\times}10^{-3}cm/sec$, $1.969{\times}10^{-3}cm/sec$ and $1.252{\times}10^{-3}cm/sec$ respectively. The higher rainfall intensity and lower unit weight of soil, the faster average infiltration rate. Overflow in the column was happened except rainfall condition of rainfall intensity 20mm and soil unit weight $1.35g/cm^3$. Increasing the soil unit weight, overflowed water was increased and occurrence time was faster.

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Removal of Cadmium from Clayey Soil by Electrokinetic Method

  • Niinae, Masakazu;Sugano, Tsuyoshi;Aoki, Kenji
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2001년도 The 6th International Symposium of East Asian Resources Recycling Technology
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    • pp.91-96
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    • 2001
  • Restoration of contaminated soils to an environmentally acceptable condition is important. One of the newer techniques in soil remediation is a method based on electrokinetic phenomena in soils. The technology uses electricity to affect chemical concentrations and water flow through the pores of soils. An important advantage of electrokinetic soil remediation over other in-situ processes such as soil flushing is the capability of control over the movement of the contaminants. Because the migration of the contaminants is confined by the electric field, there is little dispersion outside the treatment zone. Furthermore, the process is effective for soils with low and variable permeability. In the present study, the distributions of cadmium in the electrokinetic processing of kaolinite under the condition of constant applied voltage are investigated. Cadmium accumulates near the cathode without reducing the diffusion of hydroxide ion into the soil. In keeping the catholyte pH at neutrality, cadmium migrates toward the cathode without any accumulation of cadmium near the cathode and is successfully removed at the cathode reservoir. It was also found that the progress of electrokinetic processing of cadmium could be gasped to a certain extent by monitoring the local voltage and the current density.

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人工酸性雨 處理가 5年後 몇 가지 造景樹種의 樹高生長, 土壤 酸度와 可溶性 알루미늄의 濃度에 미치는 影響 [I] (Effects of Acid Rain Treatment on Height Growth of Several Landscape Tree Species, pH Value and $Al^{3+}$ Concentration in Soil: Comparison after 5 Years [I])

  • 정용문;우수영;김판기
    • 한국대기환경학회지
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    • 제13권4호
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    • pp.249-256
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    • 1997
  • To identify the long-term influence of acid rain treatment on tree growth, acid rain of various composition (pH 2.0, pH 4.0 and pH 5.6 as control) was applied to several landscape trees for five months (April through August, 1991). Tree height, pH values and $Al^{3+}$ concentration in soil were investigated. Acid rain treatments seemed to promote height growth in the first year (1991), but have become an inhibiting factor over five years. All of coniferous species and most broad-leaved species, except Acer ginnala, showed opposite trends in height responses to acid rain treatments between the first (1991) and last (1996) year. In contrast, Acer ginnala showed similar trends to acid rain treatments in the height growth between 1991 and 1996. This result suggested that Acer ginnala has a characteristic adapability to acid rain stress. pH values of surface soil were lower than those of 30 cm soil depth. This fact suggested that acid rain treatments made surface soil acidic condition. In addition, physiological characteristics (photosynthesis, stomatal condition and biomass) have to be investigated to identify the relationship between long-term effects of $AL^{3+}$ concentration and growth.

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Characteristics of Rice and Paddy Soil under No-Till Direct-Sown Rice-Wheat Cropping System

  • Cho, Young-Son;Choe, Zhin-Ryong;Lee, Byeong-Zhin
    • 한국유기농업학회지
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    • 제7권2호
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    • pp.153-161
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    • 1999
  • No-till direct-sown rice-wheat relaying cropping system has major advantages such as labor and cost saving by eliminating tillage and preparation of seed bed and transplanting. In this system, rice sowing was done simultaneously wheat harvesting. A paddy field experiment was conducted to evaluate effects of no-till years on soil microbial changes and soil physico-chemical characteristics with rice growth and development. Chemical fertilizers and agricultrual chemicals was not applied in no-till system. As the year in no-till direct-sown system the air permeability was increased and after water submerging soluble nitrogen was released Aerobic microbial-n was highest in May and then decreased after water irrigation. The population of aerobic soil microorganisms were steeply decreased after water submerging Soil microorganisms was decreased with the increased the soil depth. A month was needed for the seedling establishment in a no-tillage rice-wheat cropping system. Increased cropping years improved leaf greenness and leaf area index(LAI). But stomatal conductance(Gc) was higher in conventional cultivation system than no-till system. Stomatal conductance at panicle initiation stage was increased higher in conventional condition of leaves but the difference between conventional and no-till system was increased at heading stage. In no-till 4 years condition rice grain yield was spikelet numbers per panicle.

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Assessing pollutants' migration through saturated soil column

  • Smita Bhushan Patil;Hemant Sharad Chore;Vishwas Abhimanyu Sawant
    • Membrane and Water Treatment
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    • 제14권2호
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    • pp.95-106
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    • 2023
  • In the developing country like India, groundwater is the main sources for household, irrigation and industrial use. Its contamination poses hydro-geological and environmental concern. The hazardous waste sites such as landfills can lead to contamination of ground water. The contaminants existing at such sites can eventually find ingress down through the soil and into the groundwater in case of leakage. It is necessary to understand the process of migration of pollutants through sub-surface porous medium for avoiding health risks. On this backdrop, the present paper investigates the behavior of pollutants' migration through porous media. The laboratory experiments were carried out on a soil-column model that represents porous media. Two different types of soils (standard sand and red soil) were considered as the media. Further, two different solutes, i.e., non-reactive and reactive, were used. The experimental results are simulated through numerical modeling. The percentage variation in the experimental and numerical results is found to be in the range of 0.75- 11.23 % and 0.84 - 1.26% in case of standard sand and red soil, respectively. While a close agreement is observed in most of the breakthrough curves obtained experimentally and numerically, good agreement is seen in either result in one case.