• 제목/요약/키워드: Density-induced flow

검색결과 158건 처리시간 0.03초

수평 흐름형 미생물 연료전지에서 유체의 흐름 형태에 따른 전력수율 평가 (The Effect of Fluid Flow on Power Density in a Horizontal-flow Microbial Fuel Cell)

  • 이채영;박수희;송영채;유규선;정재우;한선기
    • 유기물자원화
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    • 제21권1호
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    • pp.39-44
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    • 2013
  • 본 연구에서는 수평 흐름 미생물 연료전지에서 유체 흐름이 전력 수율에 미치는 영향을 평가하고자 하였다. 본 연구에서는 산화전극 반응조의 바닥에 아크릴 막대를 설치하여 각각 4가지 유체의 흐름을 유도하였다. 각 반응조 형상에 따라 최대전력수율을 평가하였으며 추적자 실험을 통해 유체 흐름을 해석하였다. 분극 곡선 실험 결과 반응조별 최대 전력수율은 case 1, 2, 3 및 4에서 각각 95.7, 129.1, 190.9 및 $114.2mW/m^2$로 나타났다. 좌우 도류벽을 설치하여 S 형태의 유체 흐름을 유도한 case 3 반응조에서 가장 높은 전력이 생산되는 것으로 나타났다. 추적자 실험의 Morrill 분산지수 값에 따르면 case 4 반응조의 경우 반응조 전체에 기질이 골고루 분포하여 미생물 활성을 높일 수 있을 것으로 나타났다. 그러나 월류 현상에 의해 안정적인 운영을 할 수 없을 것으로 판단된다. 따라서 case 3 반응조의 경우 안정적인 운영 및 높은 전력수율을 얻을 수 있으므로 미생물 연료전지로 이용하기에 효과적일 것으로 나타났다.

얼음 벽면의 융해율을 고려한 비평행 자연대류에서 유동의 불안정성과 천이에 관한 연구 (Instability and Transition of Nonparallel Bouyancy-Induced Flows Adjacent to an Ice Surface Melting in Water)

  • 황영규
    • 설비공학논문집
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    • 제8권3호
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    • pp.437-450
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    • 1996
  • A set of stability equations is formulated for natural convection flows adjacent to a vertical isothermal surface melting in cold pure water. It takes account of the nonparallelism of the base flows. The melting rate is regarded as a blowing velocity at the ice surface. The numerical solutions of the linear stability equations which constitute a two-point boundary value problem are accurately obtained for various values of the density extremum parameter $R=(T_m-T_{\infty})/(T_0-T_{\infty})$ in the range $0.3{\leq}R{\leq}0.6$, by using a computer code COLNEW. The blowing effects on the base flow becomes more significant as ambient temperature ($T_{\infty}$) increases to $T_{\infty}=10^{\circ}C$. The maximum decrease of heat transfer rate is about 6.4 percent. The stability results show that the melting at surface causes the critical Grashof number $G^*$ and the maximum frequency of disturbances to decrease. In comparision with the results for the conventional parallel flow model, the nonparallel flow model has a higher critical Grashof number but has lower amplification rates of disturbances than does the parallel flow model. The spatial amplification contours exhibit that the selective frequency $B_0$ of the nonparallel flow model is higher than that of the parallel flow model and that the effects of melting are rather small. The present study also indicates that the selective frequency $B_0$ can be easily predicted by the value of the frequency parameter $B^*$ at $G^*$, which comes from the neutral stability results of the nonparallel flow model.

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전달함수를 이용한 저파수 영역에서의 센서 유입 소음 특성 연구 (Inflow Noise Characteristics of the Sensor in Low Wave Number Region Using Transfer Function)

  • 박지혜;이종길;신구균;조치영
    • 대한공업교육학회지
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    • 제34권1호
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    • pp.238-251
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    • 2009
  • 배열센서에 영향을 주는 자체소음은 그 시스템이 설치된 곳에서 발생하는 소음과 해양으로부터 들어오는 주변소음을 포함한 소음으로 정의된다. 수중에서의 탐지를 위한 배열 구조는 표면을 따라 발생되는 유체 유기소음에 많은 영향을 받는다. 본 논문에서는 곡면배열 음향 센서를 설계하기 위하여 유동유기 소음의 영향으로 인한 주파수 밀도 함수의 적분식의 주요 구성요소인 전달함수(transfer function)를 저파수 영역에서 수치해석 하였다. 난류 경계층에서 발생하는 유입 소음은 수정된 Corcos 모델을 이용하였다. 저파수 영역에서의 전달함수의 특성은 고정판의 두께와 밀도가 작아질수록 함수의 적분값은 적어지므로 소음의 영향은 줄어드는 것으로 나타났다. 또한 Corcos 벽면 압력과 전달함수의 곱에 따른 특성과 주파수 밀도 함수의 곱의 변화를 보였다. 향후 이러한 연구는 무인 잠수정에 탑재할 수 있는 곡면배열 센서의 설계에 응용이 가능하리라 판단된다.

유입하천 밀도와 계절별 수온을 고려한 팔당호 성층 해석 (Stratified features in Paldang lake considering induced density currents and seasonal thermal effect)

  • 최수인;김동수;서일원
    • 한국수자원학회논문집
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    • 제57권2호
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    • pp.99-110
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    • 2024
  • 팔당호 취수장은 수도권 주민에게 상수원을 공급하는 주요 취수장으로, 상수원의 수질 관리를 위해 국가 차원에서 노력을 기울이고 있다. 팔당댐 취수장 인근의 수심이 가장 깊은 지역은 여름철에 연직 방향으로 성층이 발견되는데, 성층의 원인이 밀도류에 의한 것인지 여름철 기온에 의한 것인지 명확하게 분류하기 어려운 실정이다. 본 연구에서는 팔당호 주요 지점의 연직 수질 측정을 통해 밀도류에 의한 성층과 기온에 의한 성층을 분류하고, 발생 원인을 분석하였다. 연구 결과로는 밀도류와 기온에 의한 성층을 구분하였으며, 밀도류의 형성은 유입 하천 간 수온 차이에서 기인하는 것으로 확인되었지만, 밀도류의 지속 거리는 유속에 크게 의존하는 것으로 나타났다. 또한, 갈수기와 풍수기 혼합 특성을 기반으로 하천형과 호소형 특성을 가진 지역으로 팔당호를 분류하였다.

헬리콘 플라즈마원의 특성 (Characterization of a Helicon Plasma Source)

  • 현준원;노승정;김경례;김창연;김현후
    • 한국표면공학회지
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    • 제32권6호
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    • pp.658-664
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    • 1999
  • Helicon sources are attractive for plasma processing because they provide high plasma density in low magnetic fields. Helicon waves were excited by a Nagoya type III antenna in a magnetized plasma column. Plasma parameters were measured with a double probe, and the structure and adsorption of the helicon wave fields were determined with the probes. Argon is fed through a MFC (mass flow controller) for operation pressure of 10~110 mtorr. A 13.56 MHz r.f. power of 50~450 W is induced through the antenna. The plasma density and electron temperature are measured as functions of external magnetic field, r.f. power and pressure. The plasma density as functions of r.f. power and magnetic field at a constant pressure increased linearly, and the electron temperature did not change largely with various operation parameters and the value was around 5~7 eV.

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Some aspects of the dynamic cross-wind response of tall industrial chimney

  • Gorski, Piotr
    • Wind and Structures
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    • 제12권3호
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    • pp.259-279
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    • 2009
  • The paper is concerned with the numerical study of the cross-wind response of the 295 m-tall six-flue industrial chimney, located in the power station of Belchatow, Poland. The response of the chimney due to turbulent wind flow is caused by the lateral turbulence component and vortex excitation with taking into account motion-induced wind forces. The cross-wind response has been estimated by means of the random vibration approach. Three power spectral density functions suggested by Kaimal, Tieleman and Solari for the evaluation of the lateral turbulence component response are taken into account. The vortex excitation response has been calculated by means of the Vickery and Basu's model including some complements. Motion-induced wind forces acting on a vibrating chimney have been modeled as a nonlinear aerodynamic damping force. The influence of three components mentioned above on the total cross-wind response of the chimney has been investigated. Moreover, the influence of damping ratios, evaluated by Multi-mode Random Decrement Technique, and number of mode shapes of the chimney have been examined. Computer programmes have been developed to obtain responses of the chimney. The numerical results and their comparison are presented.

Effects of excess pore pressure dissipation on liquefaction-induced ground deformation in 1-g shaking table test

  • Wang, B.;Zen, K.;Chen, G.Q.;Kasama, K.
    • Geomechanics and Engineering
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    • 제4권2호
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    • pp.91-103
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    • 2012
  • Focusing on the effect of excess pore pressure dissipation on liquefaction-induced ground deformation, a series of 1-g shaking table tests were conducted in a rigid soil container by use of saturated Toyoura sand, the relative density of which was 20-60%. These tests were subjected to the sinusoidal base shaking with step increased accelerations: 100, 200, 300 and 400 Gals for 2-4 seconds. Shaking table tests were done using either water or polymer fluid with more viscous than water, thus varying the sand permeability of model tests. Excess pore pressures, accelerations, settlements and lateral deformations were measured in each test. Test results are presented in this paper and the effect of sand permeability on liquefaction and liquefaction-induced ground deformation was discussed in detail.

양측벽면에 반복돌출형 거칠기가 있는 이중관통로내의 난류유동과 열전달 (Turbulent Flow and heat Transfer in the Annular Passage with Repeated-Ribbed Roughness on Both Walls)

  • 안수환;김덕현
    • Journal of Advanced Marine Engineering and Technology
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    • 제20권1호
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    • pp.1-12
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    • 1996
  • The fully developed tubulent momentum and heat transfer induced by the square- ribbed roughness elements on both the inner and outer wall surfaces in the concentric annuli are studied analytically based on a modified turbulence model. Heat transfer coefficients for two conditions, i.e, a) inner wall heated as constant heat flux and outer wall insulated b) inner wall insulated and outer wall heated as constant heat flux, are investigated. The analytical results of the fluid flow are verified by experiment. The experiment is done with a pitot tube and a X-type hot wire anemometer to measure the time mean velocity profiles, zero shear stress positions, maximum velocity profiles and friction factors, and etc. The resulting momentum and heat transfer are discussed in terms of various parameters, such as the radius ratio, the relative roughness, the roughness density, Nusselt number and Prandtl number.

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양측벽면에 반복돌출형 거칠기가 있는 이중관통로내의 난류운동과 열전달 (Turbulent Flow and Heat Transfer in an Annular Passage with Repeated-Ribbed Roughness on Both Walls)

  • 안수환;이윤표
    • 한국자동차공학회논문집
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    • 제4권5호
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    • pp.26-36
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    • 1996
  • The fully developed turbulent momentum and heat transfer induced by the square-ribbed roughness elements on both the inner and outer wall surfaces in concentric annuli are studied analytically based on a modified turbulence model. The analytical results of the fuid flow are verified by experiment. The experiment is done with a pitot tube and a X-type hot wire anemometer to measure the time mean velocity profiles, zero shear stress positions, maximum velocity positions and friction factors, and etc. shown in Fig.1. The resulting momentum and heat transfer are discussed in terms of various parameters, such as the radius ratio, the relative roughness, the roughness density, Reynolds number, Nusselt bumber and Prand시 number. The study demonstrates that certain artificial roughness elements may be used to enhance heat transfer rates with advantage from the overall efficiency point of view by investigating turbulent flows and heat transfer in Fig.1.

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사각형 거칠기가 있는 동심 이중관내의 완전히 발달된 난류유동과 열전달 (Fully Developed Turbulent Flow and Heat Transfer in Concentric Annuli with Square-Ribbed Roughness)

  • 안수환;김경천;이윤표
    • 대한기계학회논문집
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    • 제18권4호
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    • pp.1072-1080
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    • 1994
  • The fully developed turbulent momentum and heat transfer induced by the square-ribed roughness elements on the outer wall surface in concentric annuli are studied analytically based on a modified turbulence model. The analytical results of the fluid flow are verified by experiment. The resulting momentum and heat transfer are discussed in terms of various parameters, such as the radius ratio, the relative roughness, the roughness density, Reynolds number, Nusselt number and Prandtl number. The study demonstrates that certain artificial roughness elements may be used to enhance heat transfer rates with advantages from the overall efficiency point of view.