• 제목/요약/키워드: pumping effect

검색결과 287건 처리시간 0.031초

WINFLOW 모델을 이용한 지하수 유동해석 (Groundwater Movement Analysis Using the WINFLOW Model)

  • 최윤영;안승섭;김재광
    • 한국농공학회지
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    • 제45권3호
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    • pp.103-115
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    • 2003
  • This study examines groundwater movement system analysis and movement forecast algorithm using finite element method. The target is Cheongha-myeon area, Bukgu, Pohang-city which has many difficulties in water supply during drought period. From the comparison of the differences between obtained values by WINFlOW model and observed values, it is thought that groundwater head distribution under steady flow is reflected well at the level of reliability Groundwater movement of study area shows stable pattern from western watershed to eastern coastal area while flow path is dense and steep in the center of the coastal area. The results of particle tracing for each well show a comparatively straight line from the western boundary side to the observation position at the upper area of the well, and are analyzed as it diffuses according to getting closer to the coast at the lower area of the well. The result of effect circle examination attendant on pumping amount in study area shows variation tendency that groundwater head decreases at the side and the lower area more than at the upper area of the well when groundwater flows from west to east(coast). As mentioned above, satisfactory results of groundwater movement analysis using WINFlOW model, two dimensional groundwater movement analysis model, are obtained through the great decrease of physical uncertainty of groundwater movement system.

대기압의 변화에 따른 휘발성 오염물질의 토양에서 대기로의 거동

  • 최지원;;황경엽
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2005년도 총회 및 춘계학술발표회
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    • pp.114-116
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    • 2005
  • Natural attenuation has been actively studied and often selected as final clean-up process in remediation of contaminated ground-water and soil for the last decade. Accordingly, understanding of natural processes affecting the fate and transport of contaminants in the subsurface becomes important for a success of implementation of the natural remediation strategy, Contaminant advection and diffusion processes in the unsaturated zone are naturally related to environmental changes in the atmosphere. The atmospheric pressure changes affecting the transport of contaminants in the subsurface are investigated in this study. Moisture content, trichloroethylene (TCE) concentration, temperature, and pressure variations in the subsurface were measured for the July, August, November, and December 2001 at Picatinny Arsenal, New Jersey. These data were used for a one-phase flow and one-component transport model in simulating the soil-gas flow and accordingly the TCE transport in the subsurface in accordance with the atmosphere pressure variations at the surface. The soil-gas velocities during the sampling periods varied with a magnitude of $10^{-6}\;to\;10^{-7}\;m\;s^{-1}$ at land surface. The TCE advection fluxes at land surface were several orders of magnitude smaller than the TCE diffusion fluxes. A sensitivy analysis indicated that advection fluxes were more sensitive to changes in geo-environmental conditions compared to diffusion fluxes. Of all the parameters investigated in this study, moisture content has the most significant effect on TCE advection and diffusion fluxes.

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Useful effect of a clinical shoe insole, Mubal®, as orthotics

  • Park, Chan-Lee;Go, Ji-Hyun;Han, Na-Ra;Moon, Hong-Hee;Seo, Min-Jun
    • 셀메드
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    • 제5권2호
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    • pp.10.1-10.3
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    • 2015
  • Arthritis is a major cause of joint pain, stiffness, and subsequent disability which adversely affects quality of life. Seriously, it can lead to long term social and psychological effects including loss of independence, depression, and anxiety. Arthritis is usually treated with joint replacement surgery or medications. However, the artificial joint is temporary and pharmacological measures have side effects, such as addiction or hypersensitivity. Thus, orthotics has been developed to improve arthritis as a nonpharmacological measure. The increased regional load across compartments of articular cartilage is an important factor in the cause of the arthritis. Mubal$^{(R)}$, a clinical shoe insole, has a sliding function to help people to walk straight and realign the body balance. The slide of Mubal$^{(R)}$ reduces the knee joint loading in patients with arthritis. In addition, pumping function of Mubal$^{(R)}$ can mitigate arthritis by stretching the squashed nerves from lumbar to cervical vertebral and actively circulating blood of pelvic limb. In addition, Mubal$^{(R)}$ could help to stimulate the growth plate. Therefore, Mubal$^{(R)}$ can be used for the child with short stature as well as patients with arthritis.

Effect of Drag Stages Surface Roughness on the Compression Ratio of a TMDP

  • Bianco, Alessandra Dal;Bonmassar, Luca
    • Applied Science and Convergence Technology
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    • 제25권6호
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    • pp.120-123
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    • 2016
  • The rotor of a turbomolecular drag pump is generally made of an aluminum alloy. Its surface finish is affected by various processes that the rotor itself undergoes during the manufacturing phase. The impact of different surface finishes on the pumping performances of a turbomolecular pump has been mainly investigated by Sawada et al [1]. The present work aims to broaden the previous bibliographic study to the drag stages of a turbomolecular pump by testing the impact of different surface finishes on the compression ratio of the pump. Experimental tests have been made focusing on two processes: the corundum sandblasting and the glass microspheres shot-peening. Both the processes flatten and/or physically remove EDM melted spheres; in particular, blasted surfaces obtained by glass shot-peening are generally smoother than surfaces obtained by corundum sandblasting. In order to characterize the surface texture left by such processes, preliminary surface roughness measurements have been made on the drag rotor disks of several pumps. The experimental tests conducted on both sandblasted and shot-peened rotors confirms previous results obtained on the turbo stages by Sawada et al. [1], showing that the average roughness of the surface has an impact on the compression ratio of the pump; in particular, an increment in the surface roughness causes a corresponding increment in the compression ratio of the pump and vice versa. For the tested pumps, the higher surface roughness gives a factor of increment of about 2 on the measured hydrogen maximum compression ratio of the pump.

분당선 한강 하저터널의 방재시스템 (Preventing disaster system of the subaqueous tunnel under the Han river in the Bundang railway)

  • 김용일;황낙연;윤영훈;지홍근;장성욱;김동현
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2004년도 추계학술대회 논문집
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    • pp.308-327
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    • 2004
  • As use of tunnels and subways increase there also are accidents proportionate to it. Daegu Subway Station fire, Hongjimoon tunnel fire led people to be conscious of disaster protection and as a result, there is a trend to adopt standards for fire protection. Accordingly, this thesis is focused on investigating various fire and water protection related issues for subaqueous tunnel under Ran river. The thesis developed evacuation and disaster prevention plan as fire level increases and have identified the suitability of disaster prevention through evacuation and fire simulation, countermeasure of a water leakage during construction and operation considering the subaqueous tunnel. And we selected EPB shield TBM equipment considering the ground condition and effect of boring hole, and accomplished reasonable water protection design through setting goals using event-tree method, as well as examining model test of boring hole and flooding in heavy rain. Also included structured total system consist of water leakage sensing system, water protection gate, pumping system and fire protection system to respond systematically in emergency.

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가뭄 수요대응 단기간 허용 가능한 최대 취수량 평가 (Evaluation on Maximum Irrigation Amounts of Groundwater Keeping up with a Demand During Short-term Drought)

  • 이병선;명우호;이규상;송성호
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제26권1호
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    • pp.76-87
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    • 2021
  • Groundwater is considered to be the best water resource to solve water shortage problems during drought periods. Even though excessive pumping (overdraft) during short-period may give an unprofitable effect on groundwater hydrology, it has a primary role to solve a lack of water resources and to maintain incomes of farmers. This study evaluated maximum irrigation amounts of groundwater to each local-government and province during drought periods. Maximum irrigation amounts of groundwater were evaluated using cumulative groundwater usage data of each local-government during normal and drought years. Maximum irrigation amounts of groundwater during drought periods would be roughly identified as approximately 1.3 times more than the exploitable amounts of groundwater resources for each local-government. Drawdown-limitation depth on groundwater levels at each monitoring well was determined by transforming the maximum irrigating amounts into degree of change on levels. Universal limitation depth of drawdown on groundwater levels was evaluated to be approximately three times of annual fluctuating range on groundwater levels for each monitoring well. Systematic response on groundwater demands with abiding by drawdown-limitation depth can attain an optimal irrigation of groundwater resources during short-term drought.

Tribological behavior of concrete with different mineral additions

  • Belaidi, Amina;Hacene, Mohammed Amine Boukli;Kadri, El-Hadj;Taleb, Omar
    • Advances in concrete construction
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    • 제11권3호
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    • pp.231-238
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    • 2021
  • The present work aims at investigating the effects of using various fine mineral additions as partial replacement to Portland cement on the tribological properties of concrete. To achieve this goal, concrete mixtures were prepared with different percentages (10, 20 and 30%) of limestone fillers (LF) and natural pozzolana (NP), and (20, 40 and 60%) of blast furnace slag (BFS). The interface yield stress (τ0) and viscous constants (η) that allow characterizing friction at the concrete-pipe wall interface were determined using a rotational tribometer. In addition, the compositions of the boundary layers that formed in the pumping pipes of the different concretes under study were also identified and analyzed. The experimental results obtained showed that the concretes studied have a linear tribological behavior that can be described by the Bingham model. Furthermore, the use of different mineral additions, especially limestone fillers and blast furnace slags, even at high rates, had a beneficial effect on the optimization of the volume of paste present in the boundary layer, which made it possible to significantly reduce the viscous constant of concrete. However, a maximum rate of 10% of natural pozzolana was recommended to achieve tribological properties that are favorable to the pumpability of concrete.

양생환경 및 수중펌프압송이 고강도 그라우트의 강도에 미치는 영향 (The Effects of Curing Environment and Submerged Pump Pressure on the Strength of High-Strength Grout)

  • 김범휘;손다솜;이종구
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 봄 학술논문 발표대회
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    • pp.191-192
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    • 2023
  • In recent years, the use of high-strength grout has gained popularity in offshore wind power generation complexes for facility foundations and bridges. These marine wind farms require support for horizontal loads from wind and waves. To ensure the strength of the grout produced in environments similar to the actual placing site, this study investigated the curing of high-strength grout discharged through pump pressure in various environments, and examined the difference in strength according to different variables. Compressive strength measurements revealed that the core specimen collected from the bottom (3cm) and uppermost (50cm) of the specimen exhibited lower strength compared to other height specimens, while the core specimen obtained from the corner exhibited lower strength compared to the center. These findings suggest that the strength difference between the center and the corner is more pronounced when curing at low temperatures. This effect is greater than the strength reduction that typically occurs during low-temperature curing, and thus, necessitates careful attention in similar construction environments.

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서울지역의 지하수 수질특성에 관한 연구 (A Study on the Charateristic of the Groundwater Quality in Seoul)

  • 김익수;이재영;최상일
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제9권2호
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    • pp.54-63
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    • 2004
  • 서울의 지하수는 토양법이나 지하수법이 제정되기 전에 이미 오염물질의 토양 무단투기, 주유소나 유류의 지하저장 탱크 등이 들어서면서 오염에 노출되었으나 최근에 지하수에 관심이 많아지고 지하수 오염방지 계획에 따라 주기적이고 지역적인 검사가 이루어져 지하수 행정에 반명되고 있다. 서울시 소재 지하수 관정 1,352개소의 수질을 분석하여 먹는물중 적합은 52.6%,부적합은 47.4%로 나타났고 생활ㆍ농ㆍ공업용수로 적합은 91.9%인 8.1%가 부적합으로 나타났고 pH는 왜도와 첨도가 0.022와 -0.524인데 반하여 일반세균, 색도, 탁도, 암모니아성 질소, 질산성 질소, 철, 망간이 각각 11.641과 174.324, 8.501과 80.260, 5.675와 32.821, 가 19.507과 380.994, 가 3.323과 17.436, 10.544와 134.093, 5.979와 39.124로 나타났고, 지하수 먹는물 비상급수에서 설치년도, 심도 및 양수량은 수질의 적부에 영향을 미치지 않는 것으로 나타났고 관정 설치 해와 심도, 양수량은 각각 0.381, -0.169로 나타나 시간이 지날수록 지하수 관정의 굴착깊이는 깊어지고 양수량은 적어지는 것으로 나타났으며 심도와 질산성질소, 불소의 상관 계수는 -0.171, 0.332로 나타났다.

공내수 치환기법을 이용한 연안지역 대수층의 수리특성 평가 (Detection of inflow permeable zones using fluid conductivity logging in coastal aquifer)

  • 황세호;박윤성;신제현;박권규;최선영;이상규
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2005년도 제7회 특별심포지움 논문집
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    • pp.83-92
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    • 2005
  • 연안지역에서 해수침투대의 특성을 파악하기 위하여 전기전도도 검층을 수행하였다. 검층의 목적은 투수성 파쇄대 및 고염분 지하수가 유입되는 구간의 확인이다. 전기전도도 검층은 시추공 내의 지하수를 전기적으로 다른 성질을 갖는 지하수로 치환하고 일정 양수 또는 자연 상태에서 시간에 따른 전기전도도의 변화를 측정한다. 따라서 시추공과 교차하는 투수성 파쇄대 또는 다공성의 대수층에서 시추공내로 유입되는 지층수 전기전도도의 변화 특성을 일정 시간 간격에 따라서 측정하면 지하수가 유입되는 구간의 확인이 가능하다. 현장 시험에 적용한 공내수 치환 시스템은 주입과 양수, 유량측정이 가능하며 내경이 작은 모니터링 PVC 케이싱도 적용이 가능하도록 제작하였다. 전남 영광의 연안지역에 위치하는 3개 시추공에 공내수 치환기법을 적용하여 전기전도도의 변화 특성을 측정한 결과, 연안지역의 고염분지하수는 균열암반을 통한 해수침투는 물론 간척사업으로 인한 잔류염분의 영향을 동시에 받고 있음을 확인할 수 있었다. 공내수 치환기법과 추가적으로 수행될 정량적인 해석 결과는 연안지역에서 수리상수 추정, 최적의 양수설계, 해수침투 특성 평가 등에 활용될 것으로 예상된다.

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