• 제목/요약/키워드: Multi-layer Soil

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스포츠용 잔디의 다단구조, USGA구조 및 단층구조 지반에서 토양 화학성 차이 (Differences in Soil Chemical Properties Under Multi-layer System, USGA System and Mono-layer System for a Sports Turf)

  • 김경남
    • 한국환경복원기술학회지
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    • 제9권5호
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    • pp.50-59
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    • 2006
  • This study was initiated to investigate soil chemical properties under different soil systems. Data such as soil acidity(pH), electrical conductivity(EC), organic matter content(OMC), and cation exchange capacity(CEC) were analyzed with samples from multi-layer, USGA, and mono-layer systems. N, P, K and micronutrients were also measured. Multi-layer system was built up to 60-cm depth with rootzone layer, intermediate layer and two drainage layers. USGA system 45 centimeters deep was constructed with rootzone layer, intermediate layer and drainage layer. Mono-layer system, however, was made only with a 30-cm rootzone layer. Differences were observed in soil pH, EC, OMC, CEC and micronutrients. Soil pH was acceptable for turfgrass growth a year after establishment, being 5.5 to 6.5 in the study. Differences were greatly observed for EC among soil systems. Values of EC for multi-layer, USGA, and mono-layer systems were 39.79, 31.26 and 103.54 uS/em, respectively. The increase rate was approximately 4 to 8 times greater with mono-layer system than those with other two systems. Therefore, it was necessary to avoid micronutrient deficiency such as Fe, Mn etc. through an effective management program in mono-layer system because of its faster potential feasibility of salt accumulation. The greatest OMC was associated with USGA system, being 0.97% which was 11% over that of the other systems. Slight differences were observed for CEC among them. Mono-layer system produced 1.45 me/100g, 10.3% and 8.9% lower in CEC than those of multi-layer and USGA system, respectively. Micronutrients such as Fe, Zn, and Mn etc. were below the level required for turf growth, regardless of soil systems. It was considered that one year after turf establishment was not enough to build up micronutrients in sand-based soil systems to the normal level for a turf growth. These results demonstrate that intensive management program including grow-in concept fertilization should be integrated into sand-based soil systems, even after a year in establishment. Regular nutrient monitoring by soil analyses is a strong necessity to decide the kinds and amount of fertilizer. Also, strategic management program must be selectively employed according to sports turf soil systems.

옥상녹화 식재기법에 따른 식생변화 - 이입식물을 중심으로 - (Rooftop Planting Methods and Invading Species)

  • 최희선;안동만
    • 한국환경복원기술학회지
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    • 제7권3호
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    • pp.35-47
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    • 2004
  • In order to study changes in vegetation pursuant to rooftop revegetation plantation methods, plantation methods for rooftop revegetation were divided into two types through an analysis of recent trends. Then, Planted plants and invasive plants on sites where the planting methods were introduced were monitored. Planting methods were divided into mono-layer meadow cover type and multi-layer planting cover type. They showed some differences in terms of the availability of wetland, the structure of vegetation layers, the planted species, and the material of mulching. According to the results of monitoring the two sample sites for different plantation methods, the number of invasive plants was higher in multi-layer planting cover type and the ratio of naturalized plants was higher by 30% in average in mono-layer meadow cover type. The main reason for such a result is that the natural soil used in the multi-layer planting cover type likely contained some seeds. Moreover, it's harder for invasive plant seeds to germinate in volcanic rocks than in natural soil. Also, it is attributable to wetlands available in multi-layer planting cover type and diverse living environments created by multi-layer planting. The reason of the ratio of naturalized plants being higher by at least 10% in mono-layer meadow cover type is the character of naturalized plants being stronger in unfavorable conditions than nature plants are. Accordingly, the germination rate in the volcanic rock mulching has likely contributed in raising the introduction and germination of naturalized plants. The results showed that multi-layer planting cover type using wetland creation and nature soil can increase the number of invasive plants and lower the ratio of naturalized plants. However, since seeds contained in the natural soil can affect the growth of planted plants, this needs to be clarified, It was judged that mono-layer meadow cover type may affect more greatly on the germination and growth of invasive plants than on those of planted plants, Its potential adoption in highly urbanized areas was examined. By complementing with the mutual benefits of each plantation method, it appeared possible to shift to a rooftop revegetation system suitable to the site.

Capillary Characteristics of Water and Cations in Multi-layered Reclaimed Soil with Macroporous Subsurface Layer Utilizing Coal Bottom Ash

  • Ryu, Jin-Hee;Chung, Doug-Young;Ha, Sang-Keon;Lee, Sang-Bok;Kim, Si-Ju;Kim, Min-Tae;Park, Ki-Do;Kang, Hang-Won
    • 한국토양비료학회지
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    • 제47권6호
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    • pp.406-411
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    • 2014
  • Serious problems in reclaimed land agriculture are high soil salinity and poor vertical drainage, so desalinization in these soils is very difficult. Also, although desalinization is accomplished in reclaimed top soils, before long, soils are resalinized according to capillary rise of salts from the subsurface soils. To resolve these problems, multi-layered soil columns with subsurface layer of macroporous medium utilizing coal bottom ash (CBA) were constructed and the effects of blocked resalinization of these soils were investigated. In this experiment soil samples were collected from Munpo series (coarse-loamy, nonacid, mixed, mesic, typic Fluvaquents). The soil texture was silt loam and the EC was $33.9dS\;m^{-1}$. As for groundwater seawater was used and groundwater level of 1 cm from the bottom was maintained. The overall rate of capillary rise was $2.38cm\;hr^{-1}$ in soil 60 cm column, $0.25cm\;hr^{-1}$ in topsoil (30 cm) + CBA (5 cm) + subsurface soil (10 cm) column and $0.08cm\;hr^{-1}$ in topsoil (30 cm) + CBA (10 cm) + subsurface soil (10 cm) column. In multi-layered soil columns with CBA 20, 30 cm layer, wetting front due to capillary rise could not be seen in top soil layer. After 70 days capillary rise experiment water soluble Na+ accumulated in top soil of soil columns with CBA 20, 30 cm was diminished by 92.8, 96.5% respectively in comparison with Na+ accumulated in top soil of soil 60 cm column because CBA layer cut off capillary rise of salts from the subsurface soil. From these results we could conclude that the macroporous layer utilizing CBA placed at subsurface layer cut off capillary rise of solutes from subsurface soil, resulting in lowered level of salinity in top soil and this method can be more effective in newly reclaimed saline soil.

A Study on the Growth Characteristics of Multi-layer Planted Trees through Growth Analysis - With a Focus on Seoul Forest Park -

  • Kim, Han Soo;Ban, Soo Hong
    • 한국환경생태학회지
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    • 제29권2호
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    • pp.279-291
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    • 2015
  • This study analyzed the growth characteristics of multi-layer planted trees through their growth analysis and attempted to present a management strategy. The subject of research is the Citizen's Forest Area of Seoul Forest Park located in Seoul City. Field surveys were conducted three times over eight years from 2005 when the Seoul Forest Park was created through 2013. Labels were attached to all trees in the target area, and their species, height and DBH were investigated. To identify the growth differences by trees in each area, a detailed tree location map was drawn up for use in the analysis. To check soil health, soil organic matter, soil pH and soil microbial activities were analyzed. It turned out that the growth of the multi-layer planted trees in the target area of research was higher than that of the trees in existing urban parks, and that it was similar to that of trees in natural forests. Through a field survey in the area with a remarkably low growth, high-density planting problem, soil was found to have excess-moisture and there was the problem of Pueraria lobata covering. As a result of the analysis of the soil, it was found that its organic content in the soil was lower; soil pH was higher; and microbial activities in the soil were lower when compared to that of natural forests.

Penetration Behavior of Jack-up Leg with Spudcan for Offshore Wind Turbine to Multi-layered Soils Using Centrifuge Tests

  • Min Jy Lee;Yun Wook Choo
    • 한국해양공학회지
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    • 제38권1호
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    • pp.30-42
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    • 2024
  • This study examined the jack-up spudcan penetration for a new type of offshore wind substructure newly proposed using the jack-up concept to reduce construction costs. The jack-up spudcan for offshore wind turbines should be designed to penetrate a stable soil layer capable of supporting operational loads. This study evaluated multi-layered soil conditions using centrifuge tests: loose sand over clay and loose sand-clay-dense sand. The penetration resistance profiles of spudcan recorded at the centrifuge tests were compared with the ISO and InSafeJIP methods. In the tests, a spudcan punch-through effect slightly emerged under the sand-over-clay condition, and a spudcan squeezing effect occurred in the clay-over-sand layer. On the other hand, these two effects were not critically predicted using the ISO method, and the InSafeJIP result predicted only punch-through failure. Nevertheless, ISO and InSafeJIP methods were well-matched under the conditions of the clay layer beneath the sand and the penetration resistance profiles at the clay layer of centrifuge tests. Therefore, the ISO and InSafeJIP methods well predict the punch-through effect at the clay layer but have limitations for penetration resistance predictions at shallow depths and strong stratum soil below a weak layer.

다층 지반의 2차원 압밀 수치해석 (2-D Consolidation Numerical Analysis of Multi_Layered Soils)

  • 김팔규;류권일;남상규;이재식
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 봄 학술발표회 논문집
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    • pp.467-474
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    • 2000
  • The application of Terzaghi's theory of consolidation for analysing the settlement of multi-layered soils is not strictly valid because the theory involves an assumption that the soil is homogeneous. The settlement of stratified soils with confined aquifer can be analysed using numerical techniques whereby the governing differential equation is replaced by 2-dimensional finite difference approximations. The problems of discontinuous layer interface are very important in the algorithm and programming for the analysis of multi-layered consolidation using a numerical analysis, finite difference method(F.D.M.). Better results can be obtained by the process for discontinuous layer interface, since it can help consolidation analysis to model the actual ground The purpose of this paper provides an efficient computer algorithm based on numerical analysis using finite difference method(F.D.M) which account for multi-layered soils with confined aquifer to determine the degree of consolidation and excess pore pressures relative to time and positions more realistically.

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Prediction models of the shear modulus of normal or frozen soil-rock mixtures

  • Zhou, Zhong;Yang, Hao;Xing, Kai;Gao, Wenyuan
    • Geomechanics and Engineering
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    • 제15권2호
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    • pp.783-791
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    • 2018
  • In consideration of the mesoscopic structure of soil-rock mixtures in which the rock aggregates are wrapped by soil at normal temperatures, a two-layer embedded model of single-inclusion composite material was built to calculate the shear modulus of soil-rock mixtures. At a freezing temperature, an interface ice interlayer was placed between the soil and rock interface in the mesoscopic structure of the soil-rock mixtures. Considering that, a three-layer embedded model of double-inclusion composite materials and a multi-step multiphase micromechanics model were then built to calculate the shear modulus of the frozen soil-rock mixtures. Given the effect of pore structure of soil-rock mixtures at normal temperatures, its shear modulus was also calculated by using of the three-layer embedded model. Experimental comparison showed that compared with the two-layer embedded model, the effect predicted by the three-layer embedded model of the soil-rock mixtures was better. The shear modulus of the soil-rock mixtures gradually increased with the increase in rock regardless of temperature, and the increment rate of the shear modulus increased rapidly particularly when the rock content ranged from 50% to 70%. The shear modulus of the frozen soil-rock mixtures was nearly 3.7 times higher than that of the soil-rock mixtures at a normal temperature.

유류오염토양 중 다환방향족탄화수소류(PAHs) 분석방법 연구 - US EPA 16종 PAHs를 중심으로 (Analytical Method of Polycyclic Aromatic Hydrocarbons (PAHs) in Petroleum Contaminated Soils - Focused on the 16 US EPA Priority PAHs)

  • 김지영;김동호;김태승;한진석;이재영;노회정
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제17권5호
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    • pp.20-30
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    • 2012
  • In case of analyzing PAHs (EPA 16 compounds) in oil-contaminated soils, the lump of peaks may occur because of the aliphatic and polar compounds in oil. This phenomenon is due to the lower accuracy of the analysis. To solve this problem, evaluation of application of silicagel-alumina multi-layer fraction was performed using standard substances and oil-contaminated soils. As a result of application of silicagel-alumina multi-layer fraction cleanup method using standard substances, recovery rates of surrogate standards (5 compounds including Naphthalene-d8) were 83~100% and those of target standards were 75~129%. These were to meet the target values (60~130%) in this study. When used 4% water-silicagel column analyze PAHs in oil-contaminated soils, Some problems were generated for quantitative analysis of PAHs; concentration of PAHs was underestimated due to an upward baseline of internal standard (recovery rate: less than 60%) and overestimated by the lump of peaks which were not purified (the biggest recovery rate: more than 400%). On the other hand, in case of silicagel-alumina multi-layer fraction cleanup method, recovery rate of surrogate standards were 61~101.6%. Therefore this cleanup method was considered a valid method to improve accuracy of analysis of PAHs in oil-contaminated soils.

세 종류 잔디지반 구조에서 주요 초종의 엽색품질, 동절기 색상 및 이른 봄 녹화 특성비교 (Comparison of Color Quality, Winter Color, and Spring Green-up among Major Turfgrasses Grown under Three Different Soil Systems)

  • 김경남
    • 원예과학기술지
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    • 제31권3호
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    • pp.259-268
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    • 2013
  • 다단 구조, USGA 구조 및 약식 구조에서 자란 난지형 및 한지형 잔디의 연중 잔디색상 품질, 동절기 색상 및 이른 봄 녹화 특성을 파악하고자 본 연구를 수행하였다. 다단 구조, USGA 구조 및 약식 구조의 전체 깊이는 각각 60cm, 45cm 및 30cm 이었다. 공시 초종은 들잔디 세 품종과 켄터키 블루그래스, 퍼레니얼 라이그래스 및 톨 페스큐 조합종 및 이들 한지형 혼합구가 각각 세 종류이었다. 연구결과 잔디지반 및 초종별로 잔디색상 품질, 동절기 색상 및 이른 봄 녹화에 대해 유의한 차이가 나타났다. 잔디색상은 지반 및 초종에 따라 계절적인 차이가 나타났는데 다단 구조와 USGA 구조에서 자란 잔디의 색상이 약식 구조에 비해 지속적으로 우수하였다. 지반에 관계없이 난지형 및 한지형 잔디 모두 겨울에 비해 봄부터 가을까지 색상이 양호하였으며 초종 간 차이는 특히 계절적으로 12월 초에서 겨울 휴면기를 벗어나 녹화되기 시작하는 이른 봄 사이 크게 나타났다. 공시 초종 간 잔디색상은 다단 구조, USGA 구조 및 약식 구조에서 한지형 잔디가 난지형 들잔디보다 훨씬 양호하였다. 한지형 잔디의 색상 품질은 켄터키 블루그래스 > 퍼레니얼 라이그래스 > 혼합구 > 톨 페스큐 순서로 나타났다. 그리고 난지형 들잔디의 경우 '야지' 및 '제니스'의 잔디색상이 '중지'에 비해 양호하였다. 동절기 잔디색상의 지반 간 우열관계는 USGA 구조 > 다단 구조 > 약식 구조 순서로 나타났으며, 초종 간 차이는 난지형 '야지', '중지' 및 '제니스'의 경우 모두 완전히 갈색으로 나타났고, 반면 한지형 잔디는 모든 지반에서 녹색을 유지하였다. 이 중 퍼레니얼 라이그래스의 색상이 가장 양호하였으며, 톨 페스큐는 탈색이 빨리 진행되어 녹색이 가장 옅게 나타났고, 켄터키 블루그래스는 퍼레니얼 라이그래스와 톨 페스큐 사이의 색상을 나타내었다. 이른 봄 잔디녹화 속도는 난지형 및 한지형 잔디 모두 다단 구조에서 생육 시 가장 빨랐고, 반면 약식 구조에서 잔디녹화가 초종에 관계없이 가장 느리게 나타났다. 잔디지반에 관계없이 모두 난지형에 비해 한지형 잔디의 이른 봄 녹화속도가 훨씬 빨랐다. 한지형 잔디 중에서는 톨 페스큐의 색상 균일도가 가장 양호하였으며, 퍼레니얼 라이그래스의 경우 녹화 속도는 빨랐지만 색상의 균일도가 떨어졌다. 그리고 켄터키 블루그래스의 녹화 속도는 가장 느리게 나타났는데, 이는 근계 발달이 낮게 분포하기 때문이라 판단되었다. 종합적으로 잔디지반에 따라 색상 품질 차이가 크게 나타났고, 또한 동일 지반에서도 초종별로 그 차이가 크기 때문에 잔디 초종 및 지반 선정 시 주의 깊게 결정하는 것이 필요하다. 우수한 잔디 색상품질, 동절기 색상 및 이른 봄 녹화를 위해서는 약식 구조 대신 다층 구조(다단 구조 및 USGA 구조)가 바람직하다. 또한 혼합구의 경우 켄터키 블루그래스, 퍼레니얼 라이그래스 및 톨 페스큐 혼합 정도에 따라 연중 잔디색상품질, 동절기 색상 및 이른 봄 녹화가 다르게 나타났기 때문에 정원, 공원, 경기장 및 골프장 등 잔디밭 조성 시 컨셉에 의한 초종 선정 및 혼합율을 결정하는 것이 필요하다.

수치해석에 의한 다층토 압밀의 경계요소면 해석 (Layer Interface Analysis of Multi-Layered Soils by Numerical Methods)

  • 김팔규;류권일;구기욱;남상규
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1999년도 봄 학술발표회 논문집
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    • pp.349-356
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    • 1999
  • In general, the term soft ground includes clayey soils, which have large compressibility and small shear resistance due to the external load. All process of consolidation in compressible soils can be explained in terms of a transfer of load from an incompressible pore-water to a compressible soil structure. Therefore, one of the most important subjects about the characteristics of the time-dependent consolidation of the clay foundation by the change of load may be the presumption of the final settlement caused by consolidation and the degree of consolidation according to the time. The problems of discontinuous layer interface are very important in the algorithm and programming for the analysis of multi-layered soils using a numerical analysis, finite difference method. Better results can be obtained by the Process for discontinuous layer interface, since it can help consolidation analysis to model the actual ground. The purpose of this paper Provides an efficient computer algorithm based on numerical analysis using finite difference method(F.D.M.) which account for multi-layered soils to determine the degree of consolidation and excess pore pressures relative to time and positions more realistically.

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