• 제목/요약/키워드: Radial penetration

검색결과 70건 처리시간 0.036초

Transformation-associated recombination cloning에 의한 유전자 분리에 사용되는 target hook에 대한 GC content의 영향 (Effect of GC Content on Target Hook Required for Gene Isolation by Transformation-Associated Recombination Cloning)

  • 김중현;신영선;윤영호;장형진;김은아;김광섭;정정남;박인호;임선희
    • 미생물학회지
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    • 제39권3호
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    • pp.128-134
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    • 2003
  • Transformation-associated recombination (TAR) 클로닝법은 목적 유전자를 포함한 게놈 DNA와 그 유전자의 5' 또는 3' 말단 서열을 포함하고 있는 선형의 TAR vector를 동시에 출아효모의 spheroplast내로 co-penetration 시켜 상동부위에서 일어나는 재조합에 의해 환형의 Yeast Artification Chromosome(YAC)으로 분리되는 방법이다. 일반적으로 TAR 클로닝법에 의한 목적의 single-copy 유전자 분리 빈도는 전체 형질전환체의 0.01~1% 정도이다. 이러한 TAR 클로닝법을 개선하기 위하여 Tg.AC transgenic mouse를 모델계로 사용하여 유전자 분리에 대한 target hook 내의 GC content 가 미치는 영향을 조사하였다. 이러한 목적으로 한쪽에는 다양한 GC content(18~45%)를 지닌 transgene 특이적 hook을 포함하고 다른 한쪽은 B1 반복서열을 가지는 radial TAR vector를 사용하여 transgene 분리 빈도를 측정하였다. 그 결과 target hook의 GC content는 23% 이하의 경우, ~40%인 경우에 비해 두 배 정도 클로닝 빈도가 감소하였다. 따라서 TAR vector를 제작할 때, 유전자 분리에 이용되는 target hook의 GC content는 약 40% 일때 가장 적정한 것으로 나타났다. 또한 높은 target hook 내의 GC content(65%)위치분포에 의한 차이는 클로닝 빈도에 큰 영향을 미치지 않는 것으로 나타났다.

부분관통정의 유사표피인자 계산을 위한 새로운 방법 (A New Method to Calculate Pseudoskin Factor of a Partially-Penetrating Well)

  • Lee, Kun-Sang
    • 대한지하수환경학회지
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    • 제6권1호
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    • pp.42-47
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    • 1999
  • 층간 교차유동이 일어나는 다층 대수층에 존재하는 부분 관통정에서의 유사정상상태 유동에 대하여 연구하였다. 본 논문에서는 부분관통에 의해 발생하는 압력 감소를 나타내는 유사표피인자를 계산할 수 있는 간단한 해법을 제시하였다. 이 해법은 기존에 제시되었던 방법들이 가진 기하학적 또는 계산시간 상의 한계성을 극복한 것이다. 본 계산을 위하여 폐쇄 대수층에서의 장기 압력 거동을 나타내는 간략화된 유사정상상태 확산방정식을 방사형 시스템에 적용하고 그 해를 이용하였다. 다양한 형태의 원통좌표계 시스템에서 본 해법의 적용성을 검토하고 그 결과를 그래프로 제시하였다. 기존의 결과와 비교해볼 때 본 해법을 이용할 경우 최소의 계산량으로 매우 정확한 유사표피인자 값을 계산할 수 있음을 나타내었다. 특히 본 해법은 기하학적으로 복잡한 시스템에 매우 유용함을 보여주었다.

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전단농화유체가 함침된 Kevlar 재료의 방탄특성 (Ballistic Resistance Performance of Kevlar Fabric Impregnated with Shear Thickening Fluid)

  • 송흥섭;윤병일;김창연;박종열;강태진
    • Composites Research
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    • 제20권3호
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    • pp.1-7
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    • 2007
  • 본 연구는 전단농화유체(STF)가 함침된 Kevlar 복합재료(STF-Kevlar composite)의 제조 및 방탄성능 평가에 관한 내용이다. 전단농화유체는 fumed silica와 구형 silica를 에틸렌글리콜에 혼합하여 제조하였고 이 유체를 Kevlar직물에 함침시켜 액체방탄재료를 제작하였다. 전단농화거동을 조사한 결과 사용된 STF는 모두 전단농화거동이 발현됨을 확인하였다. 그리고 방탄시험 결과 구형silica STF-Kevlar 복합재료가 보다 우수한 방탄특성을 나타내었다. 한편 방탄시험 시 neat Kevlar 시험편에서는 탄자가 섬유를 pull-out하면서 관통하는 현상이 발생하였으나 LBA시험편에서는 섬유의 pull-out 대신 원주방향으로 섬유가 변형되면서 방탄재료가 변형되는 거동을 보여 서로 다른 변형거동을 각각 나타내는 것으로 관찰되었다.

Numerical simulation of set-up around shaft of XCC pile in clay

  • Liu, Fei;Yi, Jiangtao;Cheng, Po;Yao, Kai
    • Geomechanics and Engineering
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    • 제21권5호
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    • pp.489-501
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    • 2020
  • This paper conducts a complicated coupled effective stress analysis of X-section-in-place concrete (XCC) pile installation and consolidation processes using the dual-stage Eulerian-Lagrangian (DSEL) technique incorporating the modified Cam-clay model. The numerical model is verified by centrifuge data and field test results. The main objective of this study is to investigate the shape effect of XCC pile cross-section on radial total stress, excess pore pressure and time-dependent strength. The discrepancies of the penetration mechanism and set-up effects on pile shaft resistance between the XCC pile and circular pile are discussed. Particular attention is placed on the time-dependent strength around the XCC pile shaft. The results show that soil strength improved more significantly close to the flat side compared with the concave side. Additionally, the computed ultimate shaft resistance of XCC pile incorporating set-up effects is 1.45 times that of the circular pile. The present findings are likely helpful in facilitating the incorporation of set-up effects into XCC pile design practices.

TIG 용접에서의 실드 가스 혼합비에 따른 아크 압력분포 특성 (The Characteristics on Arc Pressure Distribution of TIG Welding with Shield Gas Mixing Ratio)

  • 오동수;김영식;조상명
    • Journal of Welding and Joining
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    • 제23권1호
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    • pp.41-47
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    • 2005
  • Arc pressure is one of important factors in understanding physical arc phenomena. Especially it affects on the penetration, size and shape of TIG welding. Some researches were reported on the effect of arc pressure in low and middle current region. But there are not any research in high current region. The purpose of this study is to investigate the arc pressure distribution with mixing ratio of shield gas such as Ar and He gases. A Cu block with water cooling was specifically designed and used as an anode electrode in order to measure the arc pressure in high current region. Then, the arc pressure distribution was measured with change in welding current and mixing ratio of shield gases. The arc force was obtained by numerically integrating the measured results. As the results, it was shown that the arc pressure was concentrated at the central part of the arc in middle and high current regions when a pure Ar gas was used. In case of Ar + He mixing gas, the arc pressure was much lower than that of pure Ar gas. In addition, it was widely distributed to radial direction.

Development Behavior of Vaporizing Sprays from a High-Pressure Swirl Injector Using Exciplex Fluorescence Method

  • Choi, Dong-Seok;Kim, Duck-Jool;Hwang, Soon-Chul
    • Journal of Mechanical Science and Technology
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    • 제14권10호
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    • pp.1143-1150
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    • 2000
  • The effects of ambient conditions on vaporizing sprays from a high-pressure swirl injector were investigated by an exciplex fluorescence method. Dopants used were 2% fluorobenzene and 9% DEMA (diethyl-methyl-amine) in 89% solution of hexane by volume. In order to examine the behavior of liquid and vapor phases inside of vaporizing sprays, ambient temperatures and pressures similar to engine atmospheres were set. It was found that the ambient pressure had a significant effect on the axial growth of spray, while ambient temperature had a great influence on the radial growth. The spatial distribution of vapor phase at temperatures above 473K became wider than that of liquid phase after half of injection duration. From the analysis of the area ratio for each phase, the middle part (region II) in the divided region was the region which liquid and vapor phases intersect. For liquid phase, fluorescence-intensity ratio was greatly changed at lms after the start of injection. However, the ratio of vapor phase was nearly uniform in each divided region throughout the injection.

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Numerical analysis of concrete degradation due to chloride-induced steel corrosion

  • Ayinde, Olawale O.;Zuo, Xiao-Bao;Yin, Guang-Ji
    • Advances in concrete construction
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    • 제7권4호
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    • pp.203-210
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    • 2019
  • Concrete structures in marine environment are susceptible to chloride attack, where chloride diffusion results in the corrosion of steel bar and further lead to the cracking of concrete cover. This process causes structural deterioration and affects the response of concrete structures to different forms of loading. This paper presents the use of ABAQUS Finite Element Software in simulating the processes involved in concrete's structural degradation from chloride diffusion to steel corrosion and concrete cover cracking. Fick's law was used for the chloride diffusion, while the mass loss from steel corrosion was obtained using Faraday's law. Pressure generated by steel corrosion product at the concrete-steel interface was modeled by applying uniform radial displacements, while concrete smeared cracking alongside the Extended Finite Element Method (XFEM) was used for concrete cover cracking simulation. Results show that, chloride concentration decreases with penetration depth, but increases with exposure time at the concrete-steel interface. Cracks initiate and propagate in the concrete cover as pressure caused by the steel corrosion product increases. Furthermore, the crack width increases with the exposure time on the surface of the concrete.

Study on Effects of Pressure Ratio on the Wall-impingement Spray Characteristics of Nitrogen Gas using CNG Injector

  • Pham, Quangkhai;Chang, Mengzhao;Choi, Byungchul;Park, Suhan
    • 한국분무공학회지
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    • 제27권1호
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    • pp.1-10
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    • 2022
  • In this study, an experimental investigation on the effects of the pressure ratio on the wall-impingement spray characteristics of nitrogen gas using a compressed natural gas (CNG) injector was conducted. The transient development of the impingement spray was recorded by a high speed camera with Z-type Schlieren visualization method. The spray behavior under various pressure ratio conditions were analyzed. The experimental results showed that the pressure ratio has positive effect on the development of spray wall-impingement. The effects of the above factor were evaluated in a constant volume chamber at atmospheric conditions. The data from test showed that, with the increase of the pressure ratio, the spray tip penetration (STP) quickly increases before the impingement and gradually increases after the impingement. Additionally, the spray velocity first increases and then sharply decreases on regardless of the injection pressure level. As the spray spreading angle increases, spray area and volume increases rapidly with the increase in STP at the beginning of injection, and finally entered a stable range, has a great correlation with the increase of pressure ratios.

유한 요소기법을 이용한 Slug시험 모델의 타당성 및 유용성 연구 (A Study about Effectiveness and Usefulness of a FEM Slug Test Model)

  • 한혜정;최종근
    • 대한지하수환경학회지
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    • 제7권2호
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    • pp.89-96
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    • 2000
  • Slug시험은 수리전도도 예측에 가장 널리 쓰이는 편리한 대수층 실험법이다. Slug시험 중인 관측정 수위 변동은 관측정 반경, 스크린 길이, 다공 매질의 수리전도도와 비저유계수에 영향을 받는다. 이 연구에서는 유한요소기법을 이용한 새 slug시험 모델을 개발하고 그 유용성을 시험하였다. 모델에서 관측정의 수위변동과 다공매질내 지하수유동을 반복기법(iteration technique)을 적용하여, 스크린상의 유동량 측정으로 연결하였다. 이 모델의 수치적 정확도는 Cooper et al. (1967)의 분석해에 대해 검증되었다, 본 방법은 주변 모니터링이 가능한 slug시험의 시뮬레이션, 부분관통과 비저유 계수의 반영 등의 장점이 있다. Slug시험을 통한 다공매질 반영 범위는 비저유계수에 민감하다. 작은 비저유계수일수록 수두압 변화 전파범위가 커져 그 반영률이 증가한다. 관측정의 표준곡선 비교를 통해 비저유계수 예측이 어려우므로, 다공매질 내에서 관측된 수두변화의 표준곡선 활용이 유용할 것이다. 지하수유동의 수직 성분이 커질수록 관측정 수위 회복에 대한 비저유계수의 영향은 더 감소한다. 실제 관측정 주변의 수평-수직한 지하수 유동 해석시, 비저유계수의 무시와 관측데이터의 적용구간 선택에 의한 수리전도도 예측 편차는 거의 무시할 만하며, 수평유동의 경우 분석방법상 편차가 약간 발생한다.

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직접분사식 엔진내의 분무/벽 충돌 현상에서 텀블 효과에 관한 연구 (A Numerical Study of Tumble Effect on Spray/wall Impingement in the D. I. Engines)

  • 채수;양협;유수열;유홍선
    • 한국자동차공학회논문집
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    • 제10권5호
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    • pp.45-57
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    • 2002
  • In this paper, the results gained by applying many impingement models to the cylinder and flat plate were analyzed in comparison with the experimental data to study a spray/wall interaction phenomena. To begin with, the behavior of spray injected normal to the wall was analysed using three different impingement models ; Naber and Reitz model(NR model), Watkins and Wang model(WW model) and Park and Watkins model(PW model) in the present calculation. The results obtained from these models were compared with experimental data of Katsura et. al. The results indicated that PW model was in better agreement with experimental data than the NR and WW model. Also f3r spray injected at 30DEG , the result of three models were compared with experimental data of Fujimoto et. al. The results showed that m model overpredicted the penetration in the radial direction because this model was based on the inviscid jet analogy. WW model did not predicted the radius and height of the wall spray effectively. It might be thought that this discrepancy was due to the lack of consideration of spray film velocity occurred at impingement site. The result of PW model agrees with the experimental data as time goes on. In particular, a height of the spray droplets was predicted more closely to the experimental data than the other two models. The results of PW model in which the spray droplets were distributed densely around the edge of droplet distribution shaped in a circle had an agreement with the experimental data of Fujimoto et. al. Therefore, it was concluded that PW model performed better than M and WW model for prediction of spray behavior. The numerical calculation using PW model performed to the cylinder similar to the real shape of DI engine. The results showed that vortex strength near the wall in the cylinder was stronger than that in the case of flat plate. Contrary to the flat plat, an existence of the side wall in the cylinder caused the tangential velocity component to be reduced and the normal velocity component to be increased. The flow tends to rotate to the inside of cylinder going upward to the right side wall of cylinder gradually as time passes. Also, the results showed that as the spray angle increases, the gas velocity distribution and the tumble flow seemed to be formed widely.