• Title/Summary/Keyword: 수압 저감

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The study on the hydraulic pressure reduction of drainage shield tunnel using model test and field instrumentation (모형실험 및 현장계측을 통한 배수형 쉴드터널의 작용수압 저감 평가)

  • Kim, Dong-Min;Ma, Sang-Joon;Lee, Young-Sub
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.17 no.4
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    • pp.429-440
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    • 2015
  • In this study, model test equipment was developed to evaluate the hydraulic pressure reduction in appling the drainage shield tunnel and the model test for hydraulic pressure difference was performed in case of drainage and undrained conditions. In the result of model test, increase ratio of pore water pressure was decreased in drainage condition and total stress in drainage condition was smaller than that in undrained condition, so the hydraulic pressure was reduced by the groundwater inflow into the model tunnel. In the result of field instrumentation, the hydraulic pressure in the back ground of shield tunnel was small by 11~22% in comparison with the calculated hydraulic pressure ($r_w{\cdot}H$) in same groundwater level. In the result of model test and field instrumentation, it was appeared in drainage and undrained conditions that the difference between the theoretical hydraulic pressure and the real hydraulic pressure. It shows that it is possible to apply the reduced hydraulic pressure in applying the drainage shield tunnel and to reduce the segment section due to hydraulic pressure reduction.

Evaluation of Reducing Cross Section of the Partial Drainage Shield Tunnel Segment using the Model Experiments (축소모형실험을 통한 부분배수 쉴드터널의 세그먼트 단면 축소 가능성 평가)

  • Ma, Sang Joon;Lee, Young Sub;Kim, Dong Min
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.35 no.2
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    • pp.387-396
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    • 2015
  • The existing shield tunnel has constructed in the concept of non-drainage uniformly, but the leak has become a problem in the construction and management. The Shield tunnel design allowed for the water and earth pressure bring about the increasing segment thickness and the construction costs. In order to improve these problems, the study of the partial drainage shield tunnel is in progress. In this study, th model experiment was performed to confirm the possibility of the partial drainage shield tunnel. And the water and earth pressure was measured in drainage and undrained condition. Based on the results of model experiments, the effect of water pressure reduction was confirmed by reviewed the structure stability of the real design case.

Numerical Analysis on Pore Water Pressure Reduction at Embankment Foundation of Fill Dam and Levee by Relief Well (감압정에 의한 필 댐 및 제방 기초지반의 간극수압 저감효과 수치해석)

  • Chang, Jaehoon;Yoo, Chanho;Baek, Seungcheol
    • Journal of the Korean GEO-environmental Society
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    • v.23 no.2
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    • pp.25-36
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    • 2022
  • In this study, seepage control effect of relief well was evaluated quantitatively on embankment of small fill dam and levee. Seepage analysis of dam and levee were carried out according to the permeability of fill material and foundation and to analyze behaviour characteristics of seepage. The up-lift pressure at toe of embankment was analyzed which is generated by seepage according to relief well installation condition. The relief well could reduce pore water pressure which is to cause piping or up-lift pressure at foundation ground of embankment and it does not be influenced on geometric condition such as dam height and slope incline. In case of relative low permeable ground, the pore water pressure reduction effect of relief well was decreased compare with high permeable ground but it shows pore water pressure reduction effect compare with no relief well condition. The reduction effect of relief well shows relative gap according to diameter and penetration length of relief well and the installation length of relief well is the most effective factor for seepage control.

초고층 건물의 층고저감을 위한 공조시스템

  • 신현준;김보철
    • The Magazine of the Society of Air-Conditioning and Refrigerating Engineers of Korea
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    • v.31 no.1
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    • pp.9-14
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    • 2002
  • 산업의 발전에 따른 도시화의 영향으로 대도시에서는 가용공간을 확보하기 위하여 건물의 고층화와 지하공간의 개발이 활발하게 이루어지고 있다. 최근 증가추세에 있는 초고층주상복합건물, 초고층아파트는 건물의 높이가 증가함으로 인하여 건축공사비의 증가는 물론 설비적인 측면에서는 저층부의 수압이 상승 하여 높은 수압과 수격작용(water hammer)에 대한 배관 및 기기의 내압강도와 안전대책이 요구된다. 또한 건물의 초고층화로 인하여 열원에서 공조기까지, 공조기에서 실내기기까지의 수직거리 (vertical distance)가 길어지게 되어 연장된 공조덕트 및 배관 의 길이로 인해 반송동력비의 상승에도 큰 영향을 미치게된다. 이러한 문제점을 해결하기 위하여 기기 및 재료의 선정시 내압을 고려하거나 기기의 적정배치와 조닝(zoning)을 통해 상기의 문제점을 해결하는 방법을 적극 채용하고 있다. 하지만 보다 근본적인 문제해결 방법으로 건물의 층고저감에 의한 건축공사비 및 연 간운전비의 절감을 통한 건물에서의 소비에너지량 감소로 부존자원이 부족한 우리나라의 에너지수급정책에 기여하여야 할 것이다. 본 고에서는 건축물의 층고저감 효과를 얻을 수 있는 공조시스템에 대해 전반적으로 기술하고자 한다.

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Pump operation based on pressure sensors for the damage reduction of water distribution system (상수도관망의 피해저감을 위한 센서기반 펌프운영)

  • Kwon, Hyuk Jae;Kim, Hyeong Gi
    • Proceedings of the Korea Water Resources Association Conference
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    • 2019.05a
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    • pp.200-200
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    • 2019
  • 본 연구에서는 실제 가압장 및 가압장후단부의 상수도관망에 발생가능한 수충격해석을 수행하고 신뢰성해석을 수행하여 파괴확률을 정량적으로 산정하였다. 이를 위해 가압장의 펌프운영조건을 다르게 적용하였고 관말단부의 압력센서를 이용하여 토출압을 선택적으로 운영하면 수충격의 규모도 작아지고 파괴확률도 대폭 줄어드는 것을 확인할 수 있었다. 가압장의 토출압을 선택적으로 운영하기 위해서는 관말단부에 필수적으로 충분한 수압이 존재해야하며 이를 위해서 실시간 모니터링이 가능한 압력계를 설치하게 된다. 이 압력계로부터 수신되는 데이터를 통하여 펌프의 운영이 이루어지고 최소한의 에너지 사용을 통해 효율을 증대하고 피해율도 저감하게 된다. 본 연구에서 개발된 센서기반 펌프운영시스템이 적용된 실제 상수도관망은 현재 가압장의 운영조건으로 24시간 75m의 펌프 토출압을 유지하고 있으며 관말단부의 수용가에 충분한 수압이 전달되고 있다. 가압장의 고압유지는 관말단부에 충분한 수압을 전달하기 위한 것이지만 상수도관망에서 누수와 시설물에 대한 많은 피해를 유발할 수 있다. 따라서 본 연구에서는 가압장의 펌프토출압을 75m와 60m로 선택적 운영을 할 수 있도록 프로그램을 개발하였다. 기존 가압장의 운영조건과 선택적 운영조건을 사용하여 수충격해석을 수행하였고 신뢰성해석모형을 사용하여 파괴확률을 정량적으로 산정할 수 있었다. 가압장의 운영조건을 최적화하여 효율은 증대하고 피해율을 저감할 수 있는 방법을 찾을 수 있었다. 이를 위해서 가압장의 인버터 설치는 물론이고 펌프의 최적운영을 위해 개발된 펌프운영 프로그램을 가압장 배전반에 장착하여 경제적인 운영이 될 수 있을 뿐만 아니라 실제 상수관망에서 과도한 수압으로 인해 발생할 수 있는 여러 가지 피해를 최소화할 수 있을 것으로 판단된다. 또한, 본 연구에서는 기존의 펌프장 토출압으로 운영되었을 때와 비교하여 에너지 절감율을 정량적으로 산정하여 비교분석하였다. 가압장 후단의 작은 마을을 대상으로 하여 절감된 전기요금은 적은 양이라 할 수 있겠으나 개발된 시스템을 전국에 적용한다면 에너지 절감으로 인한 경제적 파급효과는 크다고 할 수 있다.

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Evaluation on Behavior of Hydraulic Cycling Test for Type3 Hydrogen Composite Cylinder (수소복합재용기 TYPE3에 대한 수압반복 거동 평가)

  • Cho, Sung Min;Lee, Seung Hoon;Lyu, Geun Jun;Kim, Young Gyu
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.11a
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    • pp.98.2-98.2
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    • 2011
  • 지구 온난화의 원인이 되는 이산화탄소를 저감하며 유해한 배기가스를 배출하지 않는 수소연료전지자동차(FCV)에 대한 관심이 높아지고 있다. 한국가스안전공사에서 현재 구축하고 있는 평가장비는 이러한 수소연료전지자동차용으로 사용되는 고압용기의 수압반복시험 및 밸브류로 구성된 고압수소저장시스템의 단품 및 시스템 평가를 통한 안전신뢰성 검증을 목적으로 하고 있다. 현재 수소연료전지자동차는 차량이나 부품의 시험 방법에 대한 통일된 기준/표준/시험법이 아직 완전하게 정비되어 있지 않고, 시장에서의 도입 제도, 기준 등이 만들어지고 있는 현실이다. 또한 연료로 수소를 사용하는 도입단계에 있기 때문에, 수소용기가 반복압력변동에 따라 어떤 거동을 나타내는지에 대한 실험관련 연구가 미진한 상태이다. 따라서 수소연료전지자동차용 고압수소저장시스템에 대한 내구성, 안전성 확보를 위하여 수소연료전지자동차에서 중요한 부품인 용기에 대한 반복피로시험이 필요하다. 특히 복합재 용기 분야에서 Type3용기에 대한 높은 안전성과 내구성이 보고되고 있지만 실질적으로 얼마나 다른 용기에 비해 높은 성능을 가지고 있는지 국내에서는 체계적으로 검증된바 없다. 따라서 구축된 수압반복 장비를 이용하여 Type3 용기에 대한 수압반복시험을 실시하였으며, 이를 통해 수소용기의 거동을 확인하고자 한다.

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Verification of the Effectiveness of Hydraulic well through Large-scale Embankment Test (대형제방실험을 통한 Hydraulic well의 효용성 검증)

  • Park, Min-Cheol;Kim, Jin-Man;Moon, In-Jong;Jin, Yoon-hwa
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.10
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    • pp.24-35
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    • 2017
  • This paper reports the results of afield appliance study of the hydraulic well method to prevent embankment seepage, the large-scale embankment experiment and seepage analysis to examine the traits of the seepage pressure. The experimental procedure was focused on the pore pressure after examining the detected value of the pore pressure gage. The inner water levels of hydraulic well were compared with the pore pressure data, which were used to inspect the seepage variations. Two different large-scale experiments were conducted according to the installation points of the hydraulic wells. The decrease in seepage pressure reached a maximum of 37% from the experimental results. The experimental pore pressure results were similar to those of the analyses. In addition, the pore pressure oriented from the water level variations of the hydraulic well showed similar patterns between the experiment and analysis, but if the hydraulic well was deeper, the analyzed water levels were larger than the experimental values.

Performance of a Chimney Drain in Reinforced Earth Wall for Reduction of Pore Water Pressure During Rainfall - a Numerical Investigation (보강토 옹벽에 적용되는 연직 배수시스템의 강우시 수압 저감 효과 - 수치해석 연구)

  • Yoo, Chung-Sik;Kim, Sun-Bin;Jung, Hyuk-Sang
    • Journal of the Korean Geotechnical Society
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    • v.24 no.5
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    • pp.99-106
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    • 2008
  • This study is concernsed with the effect of a chimney drainage system installed at the back of reinforced soil block on preventing the pore water pressure development. A series of finite-element analyses based on transient seepage analysis were performed for a number of cases with different patterns of the chimney drainage system. The results were thoroughly analyzed to get insight into the mechanism of pore water pressure reduction effect of the chimney drainage system. It is shown that a vertical drainage system installed at the back of reinforced zone can be an effective means of maintaining the wall stability during rainfall by preventing pore pressure increase in the reinforced as well as the backfill zones. Also shown is that the optimum height of the chimney drain is 50% of the wall height. Practical implications of the findings were discussed.

Porewater Pressure Buildup Mode Induced in Near-field of Open-ended Pipe Pile during Earthquake and Sequake (지진과 해진시 개단강관말뚝 주변에 유발된 간극수압의 발생 양상)

  • 최용규
    • Journal of the Earthquake Engineering Society of Korea
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    • v.2 no.4
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    • pp.23-30
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    • 1998
  • During an earthquake, there are three components of excitation : horizontal excitation of the ground, vertical excitation of the pile due to superstructure feedback produced by vertical excitation of the ground, and the seawater excitation by the vertical ground shaking, that is, "the seaquake." These excitations could have effects on the pore pressure buildup mode induced in the near-field of open-ended pile and the soil plugs in open-ended pipe piles installed at offshore sites. While the ground and pile excitation could be modeled by exciting the soil and pile with simulated motions, seaquake excitation induced by the vertical ground shaking can be modeled by pulsing the water pressure at the seabed. The objectives of this study were to observe buildup trend for the porewater pressures developed in near-field of open-ended pipe pile installed in the calibration chamber during the simulated earthquake and seaquake and, also to confirm the cause for reduction of soil plugging according to pore pressure buildup. During the simulated horizontal seismic motion, there was no upward flow through soil plug because the similar magnitude of excess porewater pressure were occurred at the top and under the toe of soil plug. During the horizontal seismic motion, relatively higher hydraulic gradients caused upward flow in the soil plug and then the degradation of plugging resistance was about 20%. During seaquake, in the case of the open-ended pile installed in a deep sea with more than 220m of water depth, soil plug failed completely because of high upward hydraulic gradients through soil plug.soil plug.

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Behaviour of the Excess Pore Pressure Induced by Sand Mat on the Soft Clay (점토지반 샌드매트의 간극수압 거동)

  • Kim, Hyeong-Joo;Lee, Min-Sun;Paek, Pil-Soon;Jeon, Hye-Sun
    • Journal of the Korean Geotechnical Society
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    • v.22 no.8
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    • pp.55-62
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    • 2006
  • The design of sand mat should be reviewed by the behaviour of excess pore pressure which is obtained by combining characteristics of soft ground with the permeability of sand mat. In this paper, in order to investigate the distribution of hydraulic gradient of sand mat, a banking model test was performed using dredged sand as materials of sand mat, and these results were compared by the numerical analysis results utilizing Terzaghi's consolidation equation. The results show that the pore pressure was influenced by the settlement increasing in the central area of sand mat as the height of embankment increases, and uprising speed of excess pore pressure due to residing water pressure is delayed compared with the results of numerical analysis. Finally, the construction of sand mat should be spreaded to reduce the increased hydraulic gradient at the central area of embankment.