• 제목/요약/키워드: Technology Flow Matrix

검색결과 164건 처리시간 0.021초

Optimal Mixture Proportion for High Performance Concrete Incorporating Ground Granulated Blast furnace Slag

  • Choi Jae-Jin;Kim Eun-Kyum;Yoo Jung-Hoon
    • 콘크리트학회논문집
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    • 제17권3호
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    • pp.473-480
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    • 2005
  • In this study, a mix design for self compacting concrete was based on Okamura's method and concrete incorporated just a ground granulated blast furnace slag. Replacement ratio of slag is in the range of $20-80\%$ of cement matrix by volume. For the optimal self compactability in mixture incorporating ground granulated blast furnace slag, the paste and mortar tests were first completed. Then the slump flow, elapsed time of 500mm slump flow, V funnel time and filling height by U type box were conducted in concrete. The volume of coarse aggregate in self compacting concrete was in the range of $50-60\%$ to the solid volume percentage of coarse aggregate. Finally, the compressive and splitting tensile strengths were determined in the hardened self compacting concrete incorporating ground granulated blast furnace slag. From the test results, it is desirable for self compacting concrete that the replacement of ground granulated blast furnace slag is in the range of $40-60\%$ of cement matrix by volume and the volume of coarse aggregate to the solid volume percentage of coarse aggregate with a limit of $55\%$.

소성 비대칭성을 갖는 HCP 소재의 국부변형 및 네킹해석 (Localized Necking in a Round Tensile Bar for a HCP Material Considering Tension-compression Asymmetry in Plastic Flow)

  • 윤종헌;이정환
    • 소성∙가공
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    • 제21권5호
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    • pp.285-290
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    • 2012
  • In spite of progress in predicting ductile failure, the development of a macroscopic yield criterion to describe damage evolution in HCP (hexagonal close-packed) materials remains a challenge. HCP materials display strength differential effects (i.e., different behavior in tension versus compression) in their plastic response due to twinning. Cazacu and Stewart(2009) developed an analytical yield criterion for porous material containing randomly distributed spherical voids in an isotropic, incompressible matrix that shows tension-compression asymmetry. The goal of the calculations in this paper is to investigate the effect of the tension-compression asymmetry on necking induced by void nucleation, evolution and consolidation. In order to investigate the effect of the tension-compression asymmetry of the matrix on necking and fracture initiation, three isotropic materials A, B, and C were examined with different ratios of tension-compression asymmetry. The various types of material had BCC, FCC, and HCP crystal structures, respectively. The ratio between tension and compression in plastic flow significantly influences the fracture shape produced by damage propagation as well as affecting the localized neck.

FET형 용존 산소 센서의 유속에 의한 영향 조사와 감쇄 기법 (Investigation of the Flow Dependence of a FET-Type Dissolved Oxygen Sensor and Its Reducing Method)

  • 정훈;김영진;이영철;손병기
    • 센서학회지
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    • 제10권3호
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    • pp.180-186
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    • 2001
  • 최근 전류 법적인 Clark형 센서의 단점을 극복하기 위해 FET형 용존 산소 센서가 제안되었다. 그러나 제안된 센서의 출력은 작업전극에서 발생하는 pH의 변화를 감지하기 때문에 유속에 대한 영향을 받는다. 본 논문에서는 FIA(flow injection analysis)를 이용하여 유속의 영향을 최소화 할 수 있는 방향을 결정하였다. 그리고 완충막을 작업전극과 감지막 위에 형성시켜 작업전극과 감지부가 측정용액에 직접 노출되어 용액의 유동에 의해 센서의 출력이 불안정한 문제를 개선하였다. TEOS(tetraethylorthosilicate)와 DEDMS(diethoxydimethylsilane)를 혼합하여 졸-겔법으로 완충막을 형성하였다.

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Low flow-low power 유도결합 플라즈마 원자방출 분광법에서의 분석적 특성에 관한 연구 (A Study on the Analytical Characterizations of the Low Flow-Low Power ICP-AES)

  • 양혜순;김영만;김선태;최범석
    • 분석과학
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    • 제7권3호
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    • pp.253-260
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    • 1994
  • Low power-low flow 유도결합 플라즈마 원자방출 분광법(ICP-AES)에서 분석적 특성에 대해 연구하였다. Low power ICP에서는 moderate power ICP보다 알짜세기는 감소하지만 바탕세기도 감소하여 알짜세기에 대한 바탕세기의 비는 오히려 증가하였다. Low power ICP에서도 작동조건에 따라 moderate power와 비슷한 검출한계를 얻을 수 있으며, 검량곡선도 $10^4{\sim}10^5$ 정도의 직선성을 가질 수 있었다. 알칼리 금속에 의한 이온화 방해영향은 시료운반기체의 사용량을 증가시킬수록 증가하지만, RF power의 변화에 대해서는 큰 차이가 없었다.

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A FLOW AND PRESSURE DISTRIBUTION OF APR+ REACTOR UNDER THE 4-PUMP RUNNING CONDITIONS WITH A BALANCED FLOW RATE

  • Euh, D.J.;Kim, K.H.;Youn, Y.J.;Bae, J.H.;Chu, I.C.;Kim, J.T.;Kang, H.S.;Choi, H.S.;Lee, S.T.;Kwon, T.S.
    • Nuclear Engineering and Technology
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    • 제44권7호
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    • pp.735-744
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    • 2012
  • In order to quantify the flow distribution characteristics of APR+ reactor, a test was performed on a test facility, ACOP ($\underline{A}$PR+ $\underline{C}$ore Flow & $\underline{P}$ressure Test Facility), having a length scale of 1/5 referring to the prototype plant. The major parameters are core inlet flow and outlet pressure distribution and sectional pressure drops along the major flow path inside reactor vessel. To preserve the flow characteristics of prototype plant, the test facility was designed based on a preservation of major flow path geometry. An Euler number is considered as primary dimensionless parameter, which is conserved with a 1/40.9 of Reynolds number scaling ratio. ACOP simplifies each fuel assembly into a hydraulic simulator having the same axial flow resistance and lateral cross flow characteristics. In order to supply boundary condition to estimate thermal margins of the reactor, the distribution of inlet core flow and core exit pressure were measured in each of 257 fuel assembly simulators. In total, 584 points of static pressure and differential pressures were measured with a limited number of differential pressure transmitters by developing a sequential operation system of valves. In the current study, reactor flow characteristics under the balanced four-cold leg flow conditions at each of the cold legs were quantified, which is a part of the test matrix composing the APR+ flow distribution test program. The final identification of the reactor flow distribution was obtained by ensemble averaging 15 independent test data. The details of the design of the test facility, experiment, and data analysis are included in the current paper.

국지 앙상블자료와 홍수위험매트릭스를 이용한 홍수위험도 예측 방법 연구 (A study on prediction method for flood risk using LENS and flood risk matrix)

  • 최천규;김경탁;최윤석
    • 한국수자원학회논문집
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    • 제55권9호
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    • pp.657-668
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    • 2022
  • 하천 유량이 증가된 상태에서 집중호우의 발생은 유량과 강우량 모두 하천변 홍수피해에 영향을 미치게 된다. 또한, 하천변 사회·경제적 영향 수준에 따라 피해정도에 차이를 보이게 되며, 특히, 인구 및 자산 밀집도가 높은 경우 홍수대응에 필요한 충분한 예보 선행시간의 확보가 요구된다. 본 연구에서는 홍수대응에 필요한 시간적 여유의 확보를 통한 피해저감 효과를 증대하기 위해 앙상블 강우유출모델링을 활용한 홍수위험매트릭스를 구축하고, 그 적용성을 판단하고자 한다. 홍수위험매트릭스는 홍수피해 자료를 활용한 홍수피해 영향수준(X축)을 구성하고, 기상청 LENS 강우자료를 이용한 앙상블 강우유출모델링의 결과로 위험 홍수량의 발생 가능성을 예측(Y축)하여 확률예보에 기반한 예측이 가능하다. 이를 위해 과거 홍수피해 자료 및 정량적 홍수피해 평가방법을 이용한 홍수피해 영향수준 결정 방법을 제시하였다. 낙동강권역의 태화강유역 및 형산강유역의 홍수특보지점에 대하여 기존 홍수특보 자료 그리고 피해 발생 상황과 비교하였다. 그 결과 최대 3일전부터 홍수위험 발생시간 및 정도에 대한 예측이 가능한 것으로 분석되었다. 따라서 홍수대응에 필요한 예보 선행시간 확보를 통한 피해저감 활동에 도움이 되리라 판단된다.

유한요소법에 의한 펌프축계의 안정성해석 (Stability analysis of pump using finite element method)

  • 양보석
    • Journal of Advanced Marine Engineering and Technology
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    • 제10권4호
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    • pp.31-40
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    • 1986
  • With the tendency toward high speed and high pressure in centrifugal pumps, the problem of sub-synchronous vibration has arisen, caused by the hydraulic forces of the working fluid, such as wearring, balance piston, impeller, etc.. These forces can drastically alter the rotor critical speeds and stability characteristics, and can be acted significant destabilizing forces. For preventing such self-excited vibration, the desing of the rotor system needs, which would secure the stability of the machine. In this paper, a procedure is presented for dynamic modeling of rotor-bearing-seal-impeller systems which consist of rigid disks, distributed parameter finite rotor elements and discrete bearings, seals and impellers. A finite element model including the effects of rotatory inertia and gyroscopic moments is developed using the consistent matrix approach. The technique of dynamic matrix reduction is applied to the shaft matrices to reduce them to a set of matrices of dynamic of significantly fewer degrees of freedom. The representation of bearing, seal and impeller elements is in term of linearized stiffness and damping matrices by reasonably small perturbations from equilibrium. The stability behavior of a typical double suction centrifugal pump is presented. Results show the influence of clearance and flow conditions on running speeds and stability characteristics.

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Penetration Enhancement of β2-Selective Agonist, Tulobuterol, Across Hairless Mouse Skin

  • Kim, Byung-Do;Choi, Hoo-Kyun
    • Journal of Pharmaceutical Investigation
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    • 제33권2호
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    • pp.79-84
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    • 2003
  • The effects of various pressure sensitive adhesives (PSA) and enhancers on the percutaneous absorption of tulobuterol were investigated. The permeation rate of tulobuterol through hairless mouse skin from various adhesives was evaluated using a flow-through diffusion cell system at $37^{\circ}C$. The permeability of tulobuterol was variable depending on the physicochemical property of the PSA. The permeation rate of tulobuterol from polyethylene oxide grafted acrylic adhesive matrix was higher than that from other PSA matrices. The flux of tulobuterol was $4.37{\pm}0.34\;{\mu}g/hr/cm^2$ from polyethylene oxide grafted acrylic adhesive matrix. When the effects of various enhancers on the percutaneous absorption of tulobuterol from grafted acrylic adhesive were evaluated, Plurol $oleique^{\circledR}$ showed higher flux than all other enhancers tested.

Estimation of Beam Mode Frequencies of Co-axial Cylinders Immersed in Fluid by Equivalent Mass Approach

  • Kim, Tae-Wan;Park, Suhn;Park, Keun-Bae
    • Nuclear Engineering and Technology
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    • 제35권1호
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    • pp.1-13
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    • 2003
  • In this study, an effective method to estimate the fundamental frequencies of co-axial cylinders immersed in fluid is proposed. The proposed method makes use of the equivalent mass or density that is derived from the added mass matrix caused by the fluid-structure interaction (FSI) phenomenon. The equivalent mass is defined from the added mass matrix based on a 2-D potential flow theory. The theory on two co-axial cylinders extended to the case of three cylinders. To prove the validity of the proposed method, the eigenvalue analyses upon coaxial cylinders coupled with fluid gaps are peformed using the equivalent mass. The analyses results upon various fluid gap is conditions reveal that the present method could provide accurate frequencies and be suitable for expecting the fundamental frequencies of fluid coupled cylinders in beam mode vibration.

High Temperature Deformation Behavior of SiCp/2124Al Metal Matrix Composites

  • Tian, Y.Z.;Cha, Seung I.;Hong, Soon H.
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2002년도 춘계학술발표대회 논문집
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    • pp.69-72
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    • 2002
  • The high temperature deformation behavior of SiCp/2124Al composite and 2124Al alloy was investigated by hot compression test in a temperature ranged $400~475^{\circ}C$ over a strain rate ranged $10^{-3}~1s^{-1}$. The billets of 2124Al alloy and SiCp/2124Al composite were fabricated by vacuum hot pressing process. The stress-strain curve during high temperature deformation exhibited a peak stress, and then the flow stress decreased gradually into a steady state stress with increasing the strain. It was found that the flow-softening behavior was attributed to the dynamic recovery, local dynamic recrystallization and dynamic precipitation during the deformation. The precipitation phases were identified as S' and S by TEM diffraction pattern. Base on the TEM inspection, the relationship between the Z-H parameter and subgrain size was found based on the experiment data. The dependence of flow stress on temperature and strain rate could be formulated well by a hyperbolic-sinusoidal relationship using the Zener-Hollomon parameter.

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