• 제목/요약/키워드: 미소 채널 유동

검색결과 24건 처리시간 0.023초

미소 채널에서의 표면 거칠기 영향에 대한 수치적 연구 (Numerical Investigation of Effect of Surface Roughness in a Microchannel)

  • 신명섭;변성준;윤준용
    • 대한기계학회논문집B
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    • 제34권5호
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    • pp.539-546
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    • 2010
  • 본 연구에서는 격자볼츠만 방법(LBM)을 이용하여 미소채널 내의 유동이 완전 발달 층류유동일 때, 미소채널 내에서의 표면 거칠기 영향에 대하여 수치계산을 수행하였다. 미소채널 내에서 표면 거칠기의 영향을 분석하기 위하여 표면 거칠기의 높이($\varepsilon$), 폭(w), 간격(s)을 조절하여 미소채널에서의 마찰계수(f), 포와이즈수(Po)와 거시적 이론값과 비교하였다. 미소채널에서의 표면 거칠기의 높이가 증가함에 따라 거시적 이론값(Po=24)에 비해서 수치해석으로부터 예측된 값($25{\leq}Po{\leq}29$)이 높게 나타났으며, 표면 거칠기의 폭과 간격은 표면 거칠기의 높이에 비해 미소채널 내부 유동의 변화에 큰 영향을 주지 않는 것을 알 수 있었다. 이 결과로부터 미소채널 내부 유동에서는 표면 거칠기의 영향으로 거시적 층류유동과는 다른 유동현상이 나타난다는 것을 알 수 있었다.

마이크로 밀링과 자기디버링을 적용한 마이크로 유동채널 가공 (A Study of Micro-Channel Fabrication by Micro-Milling and Magnetic Abrasive Deburring)

  • 곽태경;곽재섭
    • 대한기계학회논문집A
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    • 제35권8호
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    • pp.899-904
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    • 2011
  • 본 연구는 마이크로 머시닝을 적용한 유동채널가공에서 버의 발생과 제거에 관한 연구이다. AISI316 스테인리스강의 마이크로 유동채널가공은 마이크로 밀링과 자기 디버링을 결합하여 실시하였다. 먼저 마이크로 밀링으로 유동채널을 가공하였고, 가공조건에 따라 마이크로 채널주변에 미소 버가생성됨을 확인하였다. 미소 버를 제거하기 위해서 자기 디버링을 행하였다. AISI316 스테인리스강은 비자성체로 자기연마에 큰 영향을 미치는 자속밀도가 매우 낮은 금속이다. 본 연구에서는 공작물의 자속밀도를 향상시키기 위해서 자기 테이블을 개발하여 이를 자기연마 디버링에 적용하였고, 주사전자현미경(SEM)과 표면형상기로 자기 디버링에 의한 버의 제거효과를 측정하였다.

미소 사다리꼴 그루브를 갖는 채널내의 유동에서 기-액의 상호마찰의 영향 (Friction in Micro-Channel Flows of a Liquid and Vapor in Trapezoidal Grooves)

  • 서정세
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2000년도 추계학술대회논문집B
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    • pp.124-129
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    • 2000
  • The flow of liquid and vapor is investigated in trapezoidal grooves. The effect of variable shear stress along the interface of the liquid and vapor is studied for both co-current and counter-current flows. Velocity contours and results fur the friction are obtained for both trapezoidal grooves. An approximate relation that was previously utilized for the friction for the liquid was modified to obtain accurate agreement with the results for trapezoidal grooves.

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미소유동 채널에서 중첩된 전기이중층 구조의 과도 형성과정 (Transient Evolution of Overlapped EDL Fields in a Microfluidic Channel)

  • 곽호상
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.1528-1533
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    • 2004
  • A numerical investigation is made of transient evolutionary prcocess of electroosmotic flow in a two-dimensional microchannel connected to a reservoir. The channel height is very small so that two electric double layers forming on the charged surfaces are overlapped. Transient transports of ions in the electrolyte solution are computed by integrating the Nernst-Planck equation together with the Poisson equation for electric potential. The numerical results illustrate that there are two distinct transient phases. The physical mechanisms and relevant time scales for the transient evolution are described.

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격자 볼츠만 방법을 이용한 미소채널 내에서의 층류 유동에 대한 표면 거칠기의 영향 (Effect of surface roughness on laminar flow in a micro-channel by using lattice Boltzmann method)

  • 신명섭;윤준용;변성준;김각중
    • 유체기계공업학회:학술대회논문집
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    • 유체기계공업학회 2006년 제4회 한국유체공학학술대회 논문집
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    • pp.179-183
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    • 2006
  • Surface roughness is present in most of the microfluidic devices due to the microfabrication techniques. This paper presents lattice Boltzmann method (LBM) results for laminar flow in a microchannel with surface roughness. The surface roughness is modeled by an array of rectangular modules placed on top and bottom side of a parallel-plate channel. In this study, LBGK D2Q9 code in lattice Boltzmann Method is used to simulate flow field for low Reynolds number in a micro-channel. The effects of relative surface roughness, roughness distribution, roughness size and the results are presented in the form of the product of friction factor and Reynolds number. Finally, a significant increase in Poiseuille number is detected as the surface roughness is considered, while the effect of roughness on the microflow field depends on the surface roughness.

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Langmuir 미끄럼 모형을 사용한 미소채널 유동의 수치해석 (Numerical Analysis of Microchannel Flows Using Langmuir Slip Model)

  • 맹주성;최형일;이동형
    • 대한기계학회논문집B
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    • 제26권4호
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    • pp.587-593
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    • 2002
  • The present research proposes a pressure based approach along with Langmuir slip condition for predicting microscale fluid flows. Using this method, gaseous slip flows in 2 -dimensional microchannels are numerically investigated. Compared to the DSMC simulation, statistical errors could be avoided and computing time is much less than that of the aforementioned molecular approach. Maxwell slip boundary condition is also studied in this research. These two slip conditions give similar results except for the pressure nonlinearity at high Knudsen number regime. However, Langmuir slip condition seems to be more promising because this does not need to calculate the streamwise velocity gradient accurately and to calibrate the empirical accommodation coefficient. The simulation results show that the proposed method using Langmuir slip condition is an effective tool for predicting compressibility and rarefaction in microscale slip flows.

Langmuir 미끄럼 경계조건을 이용한 미소 박리유동의 예측 (Predictions of Microscale Separated Flow using Langmuir Slip Boundary Condition)

  • 이도형;맹주성;최형일;나욱상
    • 대한기계학회논문집B
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    • 제27권8호
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    • pp.1097-1104
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    • 2003
  • The current study analyzes Langmuir slip boundary condition theoretically and it is tested in practical numerical analysis for separation-associated flow. Slip phenomenon at the channel wall is properly implemented by various numerical slip boundary conditions including Langmuir slip model. Compressible backward-facing step flow is compared to other analysis results with the purpose of diatomic gas Langmuir slip model validation. The numerical solutions of pressure and velocity distributions where separation occurs are in good agreement with other numerical results. Numerical analysis is conducted for Reynolds number from 10 to 60 for a prediction of separation at T-shaped micro manifold. Reattachment length of flows shows nonlinear distribution at the wall of side branch. The Langmuir slip model predicts fairly the physics in terms of slip effect and separation.

DSMC를 이용한 미끄럼흐름영역에서 미소채널의 유동저항 해석 (Analysis of Flow Resistance in Microchannels at Slip-Flow Regime by Direct Simulation Monte Carlo Method)

  • 성재용;안영규;이석종;이명호
    • 대한기계학회논문집B
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    • 제30권1호
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    • pp.1-7
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    • 2006
  • The characteristics of micro gaseous flows in microchannels have been analyzed in view of flow resistance using the direct simulation Monte Carlo (DSMC) method which is a molecule-based numerical modeling technique. For this purpose, a DSMC code where the pressure boundary condition was specified at the inlet and outlet, has been developed and the results of simulations showed satisfactory agreements with the analytic solution in the slip flow regime. (0.01 < Kn < 0.1) By varying the height and length of the microchannel, the effect of pressure difference between the inlet and outlet was examined. The present computation indicates that the curvature in pressure distribution along the channel increases due to the effect of compressibility when the pressure difference increases. To obtain the flow resistance regardless of the channel dimensions, a standard curve is devised in the present study by introducing the concept of unit mass flowrate and unit driving pressure force. From this curve, it is shown that in micro flows, a significant deviation from the laminar incompressible flow occurs by reducing the flow resistance.