• 제목/요약/키워드: Soil layer

검색결과 1,798건 처리시간 0.034초

Utilizing chromosome segment substitution lines (CSSLs) to evaluate developmental plasticity of root systems in hardpan penetration and deep rooting triggered by soil moisture fluctuations in rice

  • Nguyen, Thi Ngoc Dinh;Suralta, Roel R.;Mana, Kano-Nakata;Mitsuya, Shiro;Stella, Owusu Nketia;Kabuki, Takuya;Yamauchi, Akira
    • 한국작물학회:학술대회논문집
    • /
    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
    • /
    • pp.321-321
    • /
    • 2017
  • Water availability in rainfed lowlands (RFL) is strongly affected by climate change. In RFL, rice plants are exposed to soil moisture fluctuations (SMF) but rarely to simple progressive drought as widely believed. Typical RFL field is characterized by a about 5-cm thick high bulk density hardpan layer underneath the cultivated layer at about 20 cm depth that impedes deep root development. Root system has the ability to develop in response to changes in SMF, known as phenotypic plasticity. We hypothesized that genotypes that can adapt to RFL have root plasticity. The roots can sharply respond to re-wetting after drought period and thus penetrate the hardpan layer when the hardpan is wet and so becomes relatively soft, and thus access water under the hardpan. This study aimed to identify CSSLs derived from a cross between Sasanishiki and Habataki which adapted to such RFL conditions. We used 39 CSSLs together with the parent Sasanishiki, which were grown in hydroponics and pot under transient soil moisture stresses (drought and then rewatering), and compared with continuously well-watered (WW) (control) up to 14 days after sowing (DAS), and 20 DAS, respectively. Based on the results of hydroponics and pot experiments, we selected a few lines, which were grown in the soil-filled rootbox with artificial hardpan layer and without artificial hardpan. For the rootbox without artificial hardpan, plants were grown under WW and transient soil moisture stresses for 49 DAS. While the rootbox with artificial hardpan, the plants were grown under WW (control) and SMF (WW up to 21 DAS, 1st drought (22-36 DAS), rewatering (37-44 DAS), and followed by 2nd drought (45-58 DAS)). Among the 39 CSSLs, only CSSL439 (SL39) consistently showed significantly higher shoot dry weight (SDW) than Sasanishiki under transient soil moisture stress conditions as well as SMF conditions in all the experiments. Furthermore, under WW, SL39 consistently showed no significant differences from Sasanishiki in shoot and root growth in most of traits examined. SL39 showed significantly greater total root length (TRL) than Sasanishiki under transient soil moisture stress, which is considered as phenotypic plasticity in response to rewatering after drought period. Such plastic root development was the key trait that effectively contributed to root elongation and branching during the rewatering period and consequently enhanced the root to penetrate hardpan layer when the soil penetration resistance at hardpan layer reduced. In addition, using the rootbox with artificial hardpan layer ($1.7g\;cm^{-3}$, heavily compacted), SL39 showed greater root system development than Sasanishiki under SMF, which was expressed in its significantly higher TRL, total nodal RL, and total lateral RL at hardpan layer as well as at below the hardpan layer. These results prove that SL39 has plasticity that enables its root systems to penetrate hardpan layer in response to rewatering. Under SMF, such root plasticity contributed to its higher gs and Pn.

  • PDF

장기 모니터링을 통한 독도 자연사면의 토층 변화 분석 (Long-Term Monitoring and Analysis of Changes in the Soil Layer on Dokdo)

  • 김경수;송영석;윤대성;방은석
    • 지질공학
    • /
    • 제34권2호
    • /
    • pp.163-171
    • /
    • 2024
  • 독도의 토층 변화는 독도에 대한 학술적 가치와 함께 독도의 지속가능한 보전 및 활용 측면에서 상당히 중요한 의미를 가진다. 또한 독도에 자생하는 식물 및 생물의 발달에 필수적인 토대가 되므로 독도의 토층에 대한 지속적인 조사와 관찰이 필요하다. 따라서, 본 연구에서는 독도의 자연사면에 대한 토층 변화를 측정하기 위하여 내구성이 우수하고 설치 및 관리가 간편하며, 측정이 용이한 지표침식측정계를 설치하였다. 지표침식측정계는 길이 30~50 cm, 직경 1.5 cm의 강봉 형태이며, 해풍으로 인한 부식의 저항성을 높이기 위해 스테인리스 재질로 제작하였다. 그리고 동도와 서도의 토층분포구간을 대상으로 각각 6개씩의 지표침식측정계를 설치하였으며, 2014년부터 2021년까지 약 8년 동안 매년 1회에서 3회의 현장 측정을 실시하였다. 측정결과 지표침식측정계가 설치된 동도의 토층에서는 전반적으로 미세하게 퇴적되는 양상을 보였으며, 서도의 경우 동도와 반대로 미세하게 침식되는 양상이 나타났다. 동도에 설치된 지표침식측정계는 비교적 동도의 중간 혹은 하부지역에 설치되어 있으므로 동도의 토층 변화는 상부에 존재하는 토층에서의 풍화에 의한 침식 혹은 토사유출로 인하여 주로 퇴적되는 양상이 나타났다. 그러나 서도에 설치된 지표침식측정계는 서도의 상부 혹은 중간지역에 설치되어 있으므로 서도의 토층에서는 풍화로 인한 침식 및 유출이 직접 발생되었을 것으로 판단된다.

익산 쌍릉 소왕릉 봉분 토층의 물리화학적 특성과 조영과정 해석 (Interpretation of Construction Procedure and Physicochemical Characteristics for Soil Layers from Sowangneung (Small Royal Tomb) of Ssangneung (Twin Tombs) in Iksan, Korea)

  • 채준;박석태;조지현;이찬희
    • 보존과학회지
    • /
    • 제37권6호
    • /
    • pp.748-766
    • /
    • 2021
  • 익산 쌍릉은 대왕릉과 소왕릉을 포함하는 명칭으로 백제 사비기(538~660 AD)의 횡혈식석실묘이다. 소왕릉의 발굴과정에서 노출된 봉분 동측 토층은 하부로부터 기반층, 정지층, 백제시대 판축층, 도굴층 및 일제강점기 복토층으로 나눌 수 있다. 이 연구를 위해 층준을 세분하여 시료를 확보하고 재료학적 특성을 분석하였다. 토층의 입도분석 결과, 대체로 사양토의 토성을 보이며, 백제시대 판축토층에서는 양질사토가 성토되어 있고 그 위로 사양토가 판축의주를 이룬다. 백제층의 중앙부와 최상부에는 점토 함량이 많고 일정한 입도를 가진 양토를 사용하였다. 모든 토층은 층위에 따라 약간의 차이가 있지만, 유사한 지구화학적 거동특성을 보여 토양의 모재와 성인은 거의 같은 것으로 나타났다. X-선 회절분석으로 모든 층위에서 카올리나이트를 동정하였으며, 주사전자현미경으로 카올리나이트와 할로이사이트를 확인하였다. 따라서 소왕릉 봉분의 백제시대 판축토층은 유적 일대에서 조달한 고령토가 함유된 사양토로 성토하였으며, 중상부에 점성이 강한 양토를 사용하여 불투수층을 조성하고 봉분 최상부를 밀실하게 마감한 것으로 해석된다.

암종에 따른 토사와 암반 경계면의 마찰각 변화 특성에 관한 연구 (A Study on Friction Angle of Rock-Soil Contacts for Rock Type)

  • 이수곤;임창호
    • 한국환경복원기술학회지
    • /
    • 제5권3호
    • /
    • pp.9-14
    • /
    • 2002
  • It is common that the soil layer is few meters below the earth surface and there are rock masses below the soil layer in the view of geological characteristics in Korea. The boundary between rock and soil is clearly divided. When dealing with the stability of rock masses, as in the case of rock slopes or dam foundations, the majority of the collapses is not within the soil layer, but within the soil-rock boundary. Therefore, it is important to identify the shear strength characteristics between soil-rock contacts. It has been common practice to assume that the strength of the soil or shale represents the minimum strength present. However, it has been suggested by Patton(1968) that such an assumption may not be valid and that lower shear strengths might be obtained along the soil-rock interface than for either material alone. Then, in this thesis, introduce rock and residual soil shear strength tests and the specimen preparation and testing procedures are described in detail and also the testing results are presented and discussed.

특이산성토의 중화처리기법에 따른 생태적 녹화 (The Ecological Vegetation by the Neutralizing Treatment Techniques of the Acid Sulfate Soil)

  • 조성록;김재환
    • 한국환경복원기술학회지
    • /
    • 제22권1호
    • /
    • pp.47-59
    • /
    • 2019
  • This study was composed of four treatments [no treatment, phosphate + limestone layer treatment, phosphate + sodium bicarbonate + cement layer treatment, and phosphate + sodium bicarbonate + limestone layer treatment] for figuring out vegetation effects on the acid drainage slope. Treated acid neutralizing techniques were effective for neutralizing acidity and vegetative growth in order of [first: phosphate + sodium bicarbonate + limestone layer treatment, second: phosphate + sodium bicarbonate+cement layer treatment, third: phosphate + limestone layer treatment and fourth: no treatment] on the acid drainage slope. We found out that sodium bicarbonate treatment was additory effect on neutralizing acidity and increasing vegetaive growth besides phosphate and neutralizing layer treatments. In neutralizing layer treatments, Limestone layer was more effective for vegetation and acidity compared to cement layer treatment. Cement layer showed negative initial vegetative growth probably due to high soil hardness and toxicity in spite of acid neutralizing effect. Concerning plants growth characteristics, The surface coverage rates of herbaceous plants, namely as Lotus corniculatus var. japonicus and Coreopsis drummondii L were high in the phosphate + sodium bicarbonate + limestone layer treatment while Festuca arundinacea was high in the phosphate + sodium bicarbonate + cement layer treatment. We also figured out that soil acidity affected more on root than top vegetative growth.

Study on failure and subsidence law of frozen soil layer in coal mine influenced by physical conditions

  • Zhang, Yaning;Cheng, Zhanbo;Lv, Huayong
    • Geomechanics and Engineering
    • /
    • 제18권1호
    • /
    • pp.97-109
    • /
    • 2019
  • Physical conditions play vital role on the mechanical properties of frozen soil, especially for the temperature and moisture content of frozen soil. Subsequently, they influence the subsidence and stress law of permafrost layer. Taking Jiangcang No. 1 Coal Mine as engineering background, combined with laboratory experiment, field measurements and empirical formula to obtain the mechanical parameters of frozen soil, the thick plate mechanical model of permafrost was established to evaluate the safety of permafrost roof. At the same time, $FLAC^{3D}$ was used to study the influence of temperature and moisture content on the deformation and stress law of frozen soil layer. The results show that the failure tensile stress of frozen soil is larger than the maximum tensile stress of permafrost roof occurring in the process of mining. It indicates that the permafrost roof cannot collapse under the conditions of moisture content in the range from 20% to 27% as well as temperature in the range from $-35^{\circ}C$ to $-15^{\circ}C$. Moreover, the maximum subsidence of the upper and lower boundary of the overlying permafrost layer decreases with the increase of moisture content in the range of 15% to 27% or the decrease of temperature in the range of $-35^{\circ}C$ to $-15^{\circ}C$ if the temperature or moisture content keeps consistent with $-25^{\circ}C$ or 20%, respectively.

동결지반 내 방진벽의 차진성능에 관한 연구 (A Study on the Vibration Isolation Effect of Wave Barrier in Frozen Soils)

  • Heo, Yeong
    • 터널과지하공간
    • /
    • 제11권4호
    • /
    • pp.362-367
    • /
    • 2001
  • 지반에서 겨울에 발생할 수 있는 단단한 상부층은 방진벽의 진동차단성능을 변화시킬 수 있다. 본 논문은 상부에 단단한 층이 존재하는 층진 지반(layered soil)에서 표면파의 진동전파와 강성 방진벽의 진동차단 성능에 관한 것이다. 연구는 이차원문제로, 경계요소법을 이용한 수치해석적 방법에 의해 수행되었으며, 진동원은 수직방향으로 조화가 진을 받는 줄기초이다. 검토된 지반은 세 가지로, 균질의 반무한 지반과, 단단한 상부층의 두께를 달리하는 두 개의 지반이다. 단단한 상부층을 갖는 지반에서는 굴절의 지반과 비교하여 아주 커다란 진폭의 감소가 나타났으며, 진동전파 속도의 경우, 물성치에 의해 계산으로 구해지는 진동전파 속도만큼의 크기가 나타나지 않았다. 더욱이 동결지반에서의 진폭은 비동결지반에서 보다 거리에 따라 아주 작은 값이 구해졌다.

  • PDF

Influence of inclusion of geosynthetic layer on response of combined footings on stone column reinforced earth beds

  • Maheshwari, Priti;Khatri, Shubha
    • Geomechanics and Engineering
    • /
    • 제4권4호
    • /
    • pp.263-279
    • /
    • 2012
  • The present paper deals with the analysis of combined footings resting on geosynthetic reinforced granular fill overlying stone column improved poor soil. An attempt has been made to study the influence of inclusion of geosynthetic layer on the deflection of the footing. The footing has been idealized as a beam having finite flexural rigidity. Granular fill layer has been represented by Pasternak shear layer and stone columns and poor soil have been represented by nonlinear Winkler springs. Nonlinear behavior of granular fill layer, stone columns and the poor soil has been considered by means of hyperbolic stress strain relationships. Governing differential equations for the soil-foundation system have been derived and solution has been obtained employing finite difference scheme by means of iterative Gauss Elimination method. Results of a detailed parametric study have been presented, for a footing supporting typically five columns, in non-dimensional form in respect of deflection with and without geosynthetic inclusion. Geosynthetic layer has been found to significantly reduce the deflection of the footing which has been quantified by means of parametric study.

이중층 토양 여과시설을 이용한 도로 강우 유출수 처리성능 평가 (I) - 시설 설계인자 결정을 중심으로 - (Performance Evaluation of a Double Layer Biofilter System to Control Urban Road Runoff (I) - System Design -)

  • 조강우;김태균;이병하;이슬비;송경근;안규홍
    • 상하수도학회지
    • /
    • 제23권5호
    • /
    • pp.599-608
    • /
    • 2009
  • This manuscript covers the results of field investigation and lab-scale experiments to design a double-layered biofilter system to control urban storm runoff. The biofilter system consisted of a coarse soil layer (CSL) for filtration and fine soil layer (FSL) for adsorption and biological degradation. The variations of flow rate and water quality of runoff from a local expressway were monitored for seven storm events. Laboratory column experiments were performed using seven kinds of soil and mulch to maximize pollutants removal. The site mean concentration (SMC) of storm runoff from the drainage area (runoff coefficient: 0.92) was measured to be 203 mg/L for SS, 307 mg/L for $TCOD_{Cr}$, 12.3 mg/L for TN, 7.3 mg/L for ${NH_4}^+-N$, and 0.79 mg/L for TP, respectively. This study employed a new design concept, to cover the maximum rainfall intensity with one month recurrence interval. Effective storms for last ten years (1998-2007) in seoul suggested the design rainfull intensity to be 8.8 mm/hr Single layer soil column showed the maximum removal rate of pollutants load when the uniformity coefficient of CSL was 1.58 and the silt/clay contents of FSL was virtually 7%. The removal efficiency during operation of double layer soil column was 98% for SS and turbidity, 75% for TCODCr, 56% for ${NH_4}^+-N$, 87% for TP, and 73-91% for heavy metals. The hydraulic conductivity of the soil column, 0.023 cm/sec, suggested that the surface area of the biofilter system should be about 1% of the drainage area to treat the rainfall intensity of one month recurrence interval.

토양의 산/염기 완충능의 모델링 (Modeling of Acid/Base Buffer Capacity of soils)

  • 김건하
    • 한국토양환경학회지
    • /
    • 제3권3호
    • /
    • pp.3-10
    • /
    • 1998
  • 토양의 산/염기 완충능은 토양-오염물질-공극수로 이루어진 시스템의 pH에 직접적인 영향을 미치므로 오염물질의 토양내 거동예측시에 많은 영향을 미치는 매우 중요한 토양의 성질이다. 본 연구는 이중확산층이론과 two layer electrostatic 흡착모델을 응용하여 토양의 산/염기 완충능의 이론모델을 유도하고 이 모델의 적용절차를 제시하였다. 산-염기 적정실험을 통하여 두 종류의 카올리나이트의 완충능을 실측하고 이를 본 연구에서 개발된 모델의 예측치와 비교하였다.

  • PDF