• 제목/요약/키워드: oscillation in water

검색결과 200건 처리시간 0.032초

지상에 떨어진 Opunttia bigelovii 선인장의 줄기에 있어서 광에너지의 이용한계 (Limitation of Light Energy Utilization in the Fallen Stems of Opunttia bigelovii without CO2 and Water Absorption)

  • Chang, Nam-Kee
    • The Korean Journal of Ecology
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    • 제3권1_2호
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    • pp.31-39
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    • 1980
  • 지상에 떨어진 Opuntia bigelovii 선인장의 줄기에 있어서 광 energy의 이용한계와 함수량과의 관계를 연구하였다. 이들 떨어진 선인장의 줄기는 주.야로 줄기확산저항이 256.0~310.4 sec $cm^{-1}$인 것으로 보아 기공은 주.야를 통하여 폐공하고 있음을 알 수 있었다. 또한 축적된 산의 감소율은 PAR이 1000${\mu}Em^{-2}sec^{-1}$인 조건 하에서 4시간이면 steady state로 감소하였다. 조직내의 산감소율은 조직의 함수량에 따라 감소하며 그 함수량이 56.4~46.8% 일때에는 4시간 동안의 광조사와 본실험방법으로는 거의 산감소율을 확인할 수 없었다. 일주기 rhythm에 의하여 나타나는 산도의 oscillation도 조직의 함수량으 감소에 따라 감소하였다. 한마디의 선인장줄기가 사막의 땅에 떨어져 두마디의 선인장이 되는 생존율을 22.7%였으며 그동안은 외부로 부터 $CO_2$와 물의 흡수없이 광energy를 이용하여 생존하고 비가 내리자 않는 긴 건조기에도 선인장은 똑같은 방법으로 생활한다는 것은 알 수 있었다. 이와 같이 외부로 부터 들어오는 광과 호흡에 의하여 내생되는 $CO_2$만을 이용하는 보상광합성의 대사과정을 model로 제시하였다.

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나노유체 자연대류의 과도 특성 (Transient features of natural convection in nanofluid)

  • 장병훈
    • 에너지공학
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    • 제18권1호
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    • pp.1-8
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    • 2009
  • 본 논문에서는 알루미나-물 나노유체를 사용하여 자연대류 실험을 수행하였다. 시험공간은 실린더이며 유체층 두께를 조절하여 종횡비는 10.9부터 30.4까지 변화를 주었다. 열전달계수는 순 물의 자연대류 실험과 비슷하게 30분 이내에 정상상태에 거의 도달한 것같이 보이나 경사도가 $0^{\circ}$인 경우 열전달계수가 $1{\sim}2$시간이상 감소하며 일부 종횡비에서는 열전달계수의 변동현상이 10시간이상 측정되었다. 변동형태와 주기는 종횡비와 각도에 따라 다르며 $0^{\circ}$의 경사도에서는 열전달계수의 변동주기가 $60^{\circ}$의 경사도에 비하여 2배 이상 이였다. Rayleigh 수가 $1.0{\times}10^5$ 보다 작은 경우, 평균 Nusselt 수는 $30^{\circ}$의 경사도에서 가장 높게 나타나며 $60^{\circ}$의 경사도에서 가장 낮게 나타났다. 그러나 본 실험결과도 응집된 상태의 나노유체가 사용되었으므로 일반성을 가지고 있지는 않는다.

접합모형을 이용한 경년 및 계절안 진동 모사실험 연구 (On the Study of Intraseasonal and Interannual Oscillations Simulation by using Coupled Model)

  • 안중배
    • 한국환경과학회지
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    • 제8권6호
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    • pp.645-652
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    • 1999
  • In order to simulate and investigate the major characteristics of El Nino/Southern Oscillation(ENSO) and Madden Jullian Oscillation(MJO), an intermediate type atmosphere-ocean coupled model is developed and their results are examined. The atmosphere model is a time-dependent non-linear perturbation moist model which can determine the internal heating for itself. The counterpart of the atmosphere model is GCM-type tropical ocean model which has fine horizontal and vertical grid resolutions. In the coupled experiment, warm SST anomaly and increased precipitation and eastward wind and current anomalies associated with ENSO and MJO are properly simulated in Pacific and Indian Oceans. In spite of some discrepancies in simulation MJO, the observed atmospheric and oceanic low-frequency characteristics in the tropics are successfully identified. Among them, positive SST anomalies centered at the 100m-depth of tropical eastern-central Pacific due to the eastward advection of warm water and reduced equatorial upwelling, and negative anomalies in the Indian and western Pacific seem to be the fundamental features of tropical low-frequency oscillations.

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Numerical Simulation of the Navier-Stokes Equations Using the Artificial Compressibility (AC) Method with the 4th Order Artificial Dissipation Terms

  • Park, Ki-Doo;Lee, Kil-Seong
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2009년도 학술발표회 초록집
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    • pp.516-523
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    • 2009
  • The artificial compressibility (AC) method for the incompressible Navier-Stokes equations in the generalized curvilinear coordinates using the primitive form is implemented. The main advantage of the AC approach is that the resulting system of equations resembles the system of compressible N-S equations and can thus be integrated in time using standard, well-established time-marching methods. The errors, which are the odd-even oscillation, for pressure field in using the artificial compressibility can be eliminated by using the $4^{th}$ order artificial dissipation term which is explicitly included. Even though this paper focuses exclusively on 2D laminar flows to validate and assess the performance of this solver, this numerical method is general enough so that it can be readily extended to carry out 3D URANS simulation of engineering flows. This algorithm yields practically identical velocity profiles and primary vortex and secondary vortices that are in excellent overall agreement with the results of the vorticity-stream function formulation (Ghia et al., 1982). However, the grid resolution have to be required to be large enough to express the various vortices.

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Multiple-Hole Effect on the Performance of a Sparger During Direct Contact Condensation of Steam

  • Seok Cho;Song, Chul-Hwa;Chung, Heung-June;Chun, Se-Young;Chung, Moon-Ki
    • Journal of Mechanical Science and Technology
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    • 제15권4호
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    • pp.482-491
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    • 2001
  • An experimental study has been carried out to investigate an I-type sparger-performance in view of pressure oscillation and thermal mixing in a pool. Its pitch-to-hole diameter, P/D, varies from 2 to 5. The test conditions are restricted to the condensation oscillation regime. In the present study, two different hole patterns, staggered and parallel types, are employed under various test conditions. The amplitude of the pressure pulse shows a peak for pool temperatures of 45∼85$\^{C}$, which depends on P/D and the steam mass flux. The effect of hole pattern on the pressure load is smaller than that of P/D. The dominant frequency increases with the subcooling temperature of pool water and P/D. A correlation for the dominant frequency is proposed in terms of the pitch-to-hole diameter ratio and other dimensionless thermal hydraulic parameters.

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Experimental study on liquid sloshing with dual vertical porous baffles in a sway excited tank

  • Sahaj, K.V.;Nasar, T.;Vijay, K.G.
    • Ocean Systems Engineering
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    • 제11권4호
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    • pp.353-371
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    • 2021
  • Sloshing behavior of liquid within containers represents one of the most fundamental fluid-structure interactions. Liquid in partially filled tanks tends to slosh when subjected to external disturbances. Sloshing is a vicious resonant fluid motion in a moving tank. To understand the effect of baffle positioned at L/3 and 2L/3 location, a shake table experiments was conducted for different fill volumes of aspect ratio 0.163, 0.325 and 0.488. For a fixed amplitude of 7.5 mm, the excitation frequencies are varied between 0.457 Hz to 1.976 Hz. Wave probes have been located at both tank ends to capture the surface elevation. The experimental parameters such as sloshing oscillation and energy dissipation are discussed here. Comparison is done for with baffles and without baffles conditions. For both conditions, the results showed that aspect ratio of 0.163 gives better surface elevation and energy dissipation than obtained for aspect ratio 0.325 and 0.488. Good agreement is observed when numerical analysis is compared with the experiments results.

원통형 액적내의 표면장력 변화로 인한 흐름특성에 관한 실험적 연구 (Experimental study of the surface-tension driven flow in a cylindrical liquid column)

  • 이진호;강희찬;이동진
    • 대한기계학회논문집
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    • 제11권4호
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    • pp.629-636
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    • 1987
  • An experiment is carried out to study the surface-tension driven flow characteristics in a cylindrical liquid column heated from above (which is the low gravity floating zone simulated on earth) with varing the aspect ratio and diameter of the liquid column. Hexadecane, octadecane, silicon oil(10cs), FC-40 and water are used as the test liquids. The free surface shape varies sinusoidally for Ma>M $a_{cr}$ and its frequency is found to be the same as that of temperature oscillation. It is verified that the surface temperature profile changes from linear to S-shaped profile for Ma>M $a_{cr}$ . The frequency of temperature oscillation decreases with increasing liquid volume, while its level increases. M $a_{cr}$ decreases with increasing aspect ratio, and also decreases with increasing Prandtl number in the range of 25

NUMERICAL SIMULATION OF COASTAL INUNDATION OVER DISCONTINUOUS TOPOGRAPHY

  • Yoon, Sung-Bum;Cho, Ji-Hoon
    • Water Engineering Research
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    • 제2권2호
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    • pp.75-87
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    • 2001
  • A new moving boundary technique for leap-frog finite difference numerical mode is proposed for the resonable simulation of coastal inundation over discontinuous topography. The new scheme improves the moving boundary technique developed by Imamura(1996). The present scheme is tested using the analytical solution of Thacker(1981) for the case of free oscillation with moving boundary in a parabolic bowl. Finally, a numerical simulation is conducted for the flooding over a tidal barrier constructed on a simple concave geometry. A general feature of inundation over a discontinuous topography is well described by the numerical model.

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Compensation for temperature-level control of tanked water system with time delay

  • Nakamura, Masatoshi;Watanabe, Kiyoto
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1993년도 한국자동제어학술회의논문집(국제학술편); Seoul National University, Seoul; 20-22 Oct. 1993
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    • pp.42-47
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    • 1993
  • Importance of separation of a nonlinear dynamical system into nonlinear static part and linear dynamical part was insisted in designing a controller for the nonlinear system. We further proposed compensation techniques for oscillation of controlled variables caused by system time delay and compensation of steady state errors caused by modelling errors of the systems. The proposed principle of designing procedure and the compensation methods were discussed by applying them for temperature and level control of an actual tanked water system.

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