• 제목/요약/키워드: vertical earth pressure

검색결과 186건 처리시간 0.029초

다짐도에 따른 지중파형강판의 거동에 대한 원심모형실험 (Centrifugal Model Test on Behavior of Underground Corrugated Steel Plate with Compaction Degree)

  • 허열;권선욱;김홍종;배우석
    • 한국지반환경공학회 논문집
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    • 제12권10호
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    • pp.83-90
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    • 2011
  • 본 연구에서는 고성토 구간 파형강판 수로암거의 대표단면을 대상으로 뒤채움부의 다짐도에 따른 원형 연성지중 암거에 작용되는 수직토압 분포를 파악하기 위해 원심모형실험을 실시하였다. 모형실험은 뒤채움부의 다짐도를 80, 85, 90, 95%로 변화시키면서 현장의 상사성을 고려하여 53g-level의 중력수준에서 수행하였다. 실험결과, 연성거동을 하는 파형강판 상부의 아칭효과에 의한 하중감소계수는 AISI(2002) 설계법에서 규정한 뒤채움 다짐도에 따른 하중감소계수와 거의 일치하였다. 파형강판 상부에서 측정된 수직토압은 다짐도가 증가함에 따라 선형적으로 감소하였으며, 뒤채움부의 다짐도가 클수록 아칭효과에 의한 파형강판 상부의 상재하중 감소가 크게 발휘된다는 것을 확인할 수 있었다. 파형강판 상부에서 발생한 아칭효과에 의해 감소한 하중이 파형강판측면 뒤채움부(EP 1)와 뒤채움부 외부(EP 3)로 전이되는 것으로 나타났다.

Regime Shift of the Early 1980s in the Characteristics of the Tropical Cyclone Affecting Korea

  • Choi, Ki-Seon;Kim, Tae-Ryong
    • 한국지구과학회지
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    • 제32권5호
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    • pp.453-460
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    • 2011
  • By performing a statistical change-point analysis of activities of the tropical cyclones (TCs) that have affected Korea (K-TCs), it was found that there was a significant change between 1983 and 1984. During the period of 1984-2004 (P2), more TCs migrated toward the west, recurved in the southwest, and affected Korea, compared to the period of 1965-1983 (P1). These changes for P2 were related to the southwestward expansion of the subtropical western North Pacific high (SWNPH) and simultaneously elongation of its elliptical shape toward Korea. Because of these changes, the central pressure and lifetime of K-TC during P2 were deeper and longer, respectively, than figures for P1. This stronger K-TC intensity for P2 was related to the more southwestward genesis due to the southwestward expansion of the SWNPH. The weaker vertical wind shear environment during P2 was more favorable for K-TC to maintain a strong intensity in the mid-latitudes of East Asia.

Numerical study of fluid behavior on protruding shapes within the inlet part of pressurized membrane module using computational fluid dynamics

  • Choi, Changkyoo;Lee, Chulmin;Park, No-Suk;Kim, In S.
    • Environmental Engineering Research
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    • 제25권4호
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    • pp.498-505
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    • 2020
  • This study analyzes the velocity and pressure incurred by protruding shapes installed within the inlet part of a pressurized membrane module during operation to determine the fluid flow distribution. In this paper, to find the flow distribution within a module, it investigates the velocity and pressure values at cross-sectional and outlet planes, and 9 sections classified on outlet plane using computational fluid dynamics. From the Reynolds number (Re), the fluid flow was estimated to be turbulent when the Re exceeded 4,000. In the vertical cross-sectional plane, shape 4 and 6 (round-type protrusion) showed the relatively high velocity of 0.535 m/s and 0.558 m/s, respectively, indicating a uniform flow distribution. From the velocity and pressure at the outlet, shape 4 also displayed a relatively uniform fluid velocity and pressure, indicating that fluid from the inlet rapidly and uniformly reached the outlet, however, from detailed data of velocity, pressure and flowrate obtained from 9 sections at the outlet, shape 6 revealed the low standard deviations for each section. Therefore, shape 6 was deemed to induce the ideal flow, since it maintained a uniform pressure, velocity and flowrate distribution.

노후화된 균일형 저수지 제체의 월류모형실험과 3차원 침투특성 (Overtopping Model Experiments and 3-D Seepage Characteristics of the Embankment of Deteriorated Homogeneous Reservoirs)

  • 이영학;이태호;이달원
    • 한국농공학회논문집
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    • 제61권2호
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    • pp.13-23
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    • 2019
  • In this study, an overtopping model experiments and three dimensional seepage characteristics at the deteriorated homogeneous reservoirs were performed to investigate the behavior of failure for embankment and spillway transitional zone due to overtopping. The failure pattern, pore water pressure, earth pressure and settlement by overtopping were compared and analyzed. The pattern of the failure by overtopping was gradually enlarged towards reservoirs crest from the spillway transition zone at initial stage. In the rapid stage and peak stage, the width and depth of failure gradually increased, and the pattern of the failure appeared irregular and several direction of the erosion. In the early stage, the pore water pressure at spillway transitional zone was more affected as its variation and failure width increased. In the peak stage, the pore water pressure was significantly increased in all locations due to the influence of seepage. The earth pressure increased gradually according to overtopping stage. The pore pressure by the numerical analysis was larger than the experimental value, and the analysis was more likely to increase steadily without any apparent variation. The horizontal and vertical displacements were the largest at the toe of slope and at the top of the dam crest, respectively. The results of this displacement distribution can be applied as a basis for determining the position of reinforcement at the downstream slope and the crest. The collapse in the overtopping stage began with erosion of the most vulnerable parts of the dam crest, and the embankment was completely collapsed as the overtopping stage increased.

Real-scale field testing for the applicability examination of an improved modular underground arch culvert with vertical walls

  • Tae-Yun Kwon;Jin-Hee Ahn;Hong-duk Moon;Kwang-Il Cho;Jungwon Huh
    • Advances in concrete construction
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    • 제15권6호
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    • pp.377-389
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    • 2023
  • In this study, an improved modular arch system with the lower arch space composed of a precast arch block and an outrigger was proposed as an underground culvert, and its applicability and structural behaviors were confirmed. This modular arch culvert structure with vertical walls was designed using precast blocks and by adjusting the placement spacing of concrete blocks to the upper part form an arch shape and the lower part form a vertical wall shape, based on previously researched modular arch systems. Owing to the vertical wall of the proposed modular arch system, it is possible to secure a load-carrying capacity and an arch space that can sufficiently resist the earth pressure generated from the backfill soil and loading on the arch system. To verify the structural characteristics, and applicability of the proposed modular precast arch culvert structure, a full-scale modular culvert specimen was fabricated, and a loading test was conducted. By examining its construction process and loading test results, the applicability and constructability of the proposed structure were analyzed along with its structural characteristics. In addition, its the structural predictability and safety for the applicability were evaluated by comparing the construction process and loading test results with the FE analysis results.

파형 강관 지중구조물의 토피고에 따른 거동특성 (The Behavior of Corrugated Steel Pipes on Underground Structures According to the Depth of Cover)

  • 육정훈;김낙영
    • 한국지반환경공학회 논문집
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    • 제5권1호
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    • pp.65-73
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    • 2004
  • 파형강관의 해석은 2차원 프레임 해석이나 압축링 모델에 의존하고 있다. 이는 흙-구조물 합성구조계의 거동을 고려하지 않은 해석이다. 파형강관 구조물은 토피고와 지간에 따라 하중저항시스템이 변화한다. 따라서, 흙-구조물 합성구조계의 작용을 고려한 유한요소해석을 통해 파형강관의 거동특성을 확인하였다. 적정토피고 이상 성토하면 파형강관은 연성관의 토압분포에 따른 거동과 유사하며, 차량하중의 영향은 적정토피고 이상 성토할수록 감소하였다. 그러나, 적정토피고 이하로 성토할 경우, 연직토압이 감소하고 파형강관 측면의 수동토압도 감소하여 완전한 연성관 거동을 나타내지 못했고, 성토 높이가 적정토피고 이하로 작아질수록 차량하중이 단면력에 미치는 영향이 커져, 파형강관 구조물의 거동을 지배하였다.

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EPS 블록을 이용한 파형강관의 하중저감에 관한 연구 (Research of Load Reduction on Corrugated Steel Pipe Using EPS Block)

  • 김진만;조삼덕;최봉혁;오세용;백영식
    • 한국지반공학회논문집
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    • 제20권1호
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    • pp.91-99
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    • 2004
  • 지중매설구조물의 하중저감과 관련하여 미국과 캐나다에서는 점토, 이토, 지푸라기 등의 압축재를 이용한 유도고랑 관거(induced-trench)기법에 대한 연구가 진행되어 왔으며, 일본과 노르웨이 등에서는 압축재로서 EPS 블럭을 이용한 하중 저감 방안에 대한 현장 시험시공을 통한 연구가 수행된 바 있다. 이와 같이 아칭효과를 극대화시키는 재료인 EPS 블록을 이용한 고성토 매설구조물 구축공법은 작용하중 저감에 따른 경제적인 구조물 단면의 선정, 구조물의 안정성 증대, 시공의 용이성 등 많은 장점을 갖고 있다. 본 논문에서는 연성 관거인 파형강관에 대한 토압 저감을 대상으로 아칭재인 EPS의 아칭 효과에 따른 토압 저감 효과를 분석하였다. 일련의 EPS를 이용한 하중 저감 평가시험이 수행되었으며, 현장 시험을 기초로 한 수직 토압 저감효과는 일반적인 연성관거에 비해 약 35∼40% 정도인 것으로 평가되었다.

Experimental and numerical study on the stability of slurry shield tunneling in circular-gravel layer with different cover-span ratios

  • Liu, Xinrong;Liu, Dongshuang;Xiong, Fei;Han, Yafeng;Liu, Ronghan;Meng, Qingjun;Zhong, Zuliang;Chen, Qiang;Weng, Chengxian;Liu, Wenwu
    • Geomechanics and Engineering
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    • 제28권3호
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    • pp.265-281
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    • 2022
  • A set of slurry shield test system capable of cutter cutting and slurry automatic circulation is used to investigate the deformation characteristics, the evolution characteristics of support resistance and the distribution and evolution process of earth pressure during excavating and collapsing of slurry shield tunneling in circular-gravel layer. The influence of cover-span ratio on surface subsidence, support resistance and failure mode of excavation face is also discussed. Three-dimensional numerical calculations are performed to verify the reliability of the test results. The results show that, with the decrease of the supporting force of the excavation face, the surface subsidence goes through four stages: insensitivity, slow growth, rapid growth and stability. The influence of shield excavation on the axial earth pressure of the front soil is greater than that of the vertical earth pressure. When the support resistance of the excavation face decreases to the critical value, the soil in front of the excavation face collapses. The shape of the collapse is similar to that of a bucket. The ultimate support resistance increase with the increase of the cover-span ratio, however, the angle between the bottom of the collapsed body and the direction of the tunnel excavation axis when the excavation face is damaged increase first and then becomes stable. The surface settlement value and the range of settlement trough decrease with the increase of cover-span ratio. The numerical results are basically consistent with the model test results.

앵커의 경사(傾斜)가 널말뚝의 거동(擧動)에 미치는 영향(影響) (Influence of the Anchor Slope on Behaviour of Sheet Pile)

  • 천병식;강인성
    • 대한토목학회논문집
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    • 제9권1호
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    • pp.79-87
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    • 1989
  • 본(本) 연구(硏究)는 앵커의 경사도(傾斜度)가 널말뚝의 거동(擧動)에 미치는 영향(影響)을 모형실험(模型實驗)의 결과(結果)로부터 분석(分析)한 것이다. 앵커 경사(傾斜)의 증가(增加)는 널말둑의 수직(垂直) 수평변위(水平變位), 앵커의 하중손실(荷重損失) 및 유지(維持)된 모래의 침하량(沈下量)에 크게 영향(影響)을 미치지만, 휨 모멘트의 크기에는 영향(影響)이 적은 것으로 나타났다. 또한 널말뚝의 수직침하(垂直沈下)에 대한 부마찰력(負摩擦力)은 말뚝 길이의 0.71~0.80배(倍)인 굴착(掘鑿) 깊이에서의 강복점(降伏點)을 가진다. 굴착(掘鑿)으로 인한 토압(土壓) 재분포(再分布)는 soil arching 현상을 고려해야 하고, 토압(土壓)이 0인 지점(支點)은 기존의 자유단지설계방법(自由端支設計方法)에 의한 위치(位置)보다 약 20% 상부(上部)에 있고, 활동면(滑動面)과 최대주응력면(最大主應力面)이 이루는 각(角) $45^{\circ}+{\phi}/2$ 보다 크다는 것을 확인하였다.

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수직 공간 내에서 고도변화에 따른 기압차로 인한 기류현상 예측에 관한 연구 (Effect of Atmospheric Pressure Difference with Altitude on the Induced Airflow Velocity in a Vertical Closed Conduit)

  • 정광섭;김철호
    • 설비공학논문집
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    • 제21권7호
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    • pp.409-416
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    • 2009
  • On 21st century, global warming is the most serious environmental problem threatening the existence of lives on the earth. One of the serious reasons of this nature phenomena was due to the greenhouse effect by carbon dioxide mainly produced with the combustion process of hydro-carbon fuel. and it is mostly produced. In the high oil prices age, intensification of energy efficiency promotion in the building sector is required. Windows are dominating large percentage whole building loads, and are regarding as the primary target of energy efficiency. The purpose of this research is on the obtaining of the renewable energy source in the skyscrape buildings in the metropolitan area. The air movement is happens due to the atmospheric pressure differences in the air. Due to this simple physical theory, it is easily expected to obtain the useful renewable nature energy through the high -raised vertical air stack installed in a tall building. However, there is one problem that should be resolved which is called air-hole effect in the sky -scrape buildings.