• 제목/요약/키워드: Potential flow

검색결과 2,169건 처리시간 0.028초

EK Pumps 내의 유동 해석에 관한 연구 (Analysis of fluid flow in EK pumps)

  • 민정임;김성진;김덕종
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 춘계학술대회
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    • pp.1857-1862
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    • 2004
  • EK pumps packed with particles inside capillaries are involved in the mixed electroosmotic flow and pressure driven flow. For analysis in the porous EK pumps, the volume-averaging technique is applied to derive the volume-averaged equations for momentum and electrical potential. By using the volume-averaged equations, analytical solutions for electric potential and velocity distribution due to the mixed electroosmotic and pressure driven flows are obtained. The present analysis is validated by comparison with numerical and experimental results for the case of microchannel EK pumps.

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유한요소법을 이용한 유체속도가 고려된 덕트의 음향특성 해석 (Acoustic Analysis of a Duct with Mean Flow by Use of FEM)

  • 서영수;정의봉;윤상돈
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2002년도 춘계학술대회논문집
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    • pp.1026-1031
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    • 2002
  • This paper shows the effect of mean flow in duct. The potential equation of duct with mean flow is obtained. A finite element method(FEM) is used to predict acoustic performance of duct with mean flow. The formulation of the finite element method is derived for duct taking into consideration of the convective effect of mean flow. A simple duct, simple expansion chamber and a duct with resonator are implemented to show the effects of the mean flow.

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흐름 전위에 기초한 자연 전위 탐사법의 원리 및 활용 (A Technical Review on Principles and Practices of Self-potential Method Based on Streaming Potential)

  • 송서영;남명진
    • 지구물리와물리탐사
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    • 제21권4호
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    • pp.231-243
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    • 2018
  • 흐름 전위는 지하 공극 내 유체의 흐름에 의해 발생하는 자연 전위로 이러한 흐름 전위를 이용한 자연 전위 탐사는 유체 흐름 뿐만 아니라 지층 유체에 대한 정보도 파악할 수 있는 탐사법이다. 지하 매질과 유체 사이에 존재하는 전기 이중층과 같이 입자가 대전하고 있을 때 여러 원인에 의해 유체가 유동하여 발생하는 계면 동전기 현상 중 하나인 흐름 전위는, 발생 기작이 복잡하고 측정 전위 값이 비교적 작아 잡음에 취약하다는 어려움도 있지만 이를 이용한 자연전위 탐사는 인공적인 송신원이 없어 탐사가 용이할 뿐만 아니라 반복성도 좋기 때문에 지층 유체 모니터링 탐사에 적용이 확대되고 있다. 이 논문에서는 지금까지 흐름 전위의 발생 기작에 대한 연구와 지배 방정식들을 정리하여 설명한 뒤, 매질의 물리적 특성 변화에 따른 흐름 전위 반응 특성 및 다양한 국내외 유체 흐름 자연 전위 탐사의 사례 분석을 수행하였다. 이 기술보고에서는 흐름 전위에 대한 이해도를 높임과 동시에 적용 가능한 다양한 분야를 소개함으로써, 국내에서의 흐름 전위를 이용한 자연전위 탐사의 현장 적용 방안을 제시하고자 한다.

A study on the dynamic instabilities of a smart embedded micro-shell induced by a pulsating flow: A nonlocal piezoelastic approach

  • Atabakhshian, Vahid;Shooshtaria, Alireza
    • Advances in nano research
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    • 제9권3호
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    • pp.133-145
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    • 2020
  • In this study, nonlinear vibrations and dynamic instabilities of a smart embedded micro shell conveying varied fluid flow and subjected to the combined electro-thermo-mechanical loadings are investigated. With the aim of designing new hydraulic sensors and actuators, the piezoelectric materials are employed for the body and the effects of applying electric field on the stability of the system as well as the induced voltage due to the dynamic behavior of the system are studied. The nonlocal piezoelasticity theory and the nonlinear cylindrical shell model in conjunction with the energy approach are utilized to mathematically modeling of the structure. The fluid flow is assumed to be isentropic, incompressible and fully develop, and for more generality of the problem both steady and time dependent flow regimes are considered. The mathematical modeling of fluid flow is also carried out based on a scalar potential function, time mean Navier-Stokes equations and the theory of slip boundary condition. Employing the modified Lagrange equations for open systems, the nonlinear coupled governing equations of motion are achieved and solved via the state space problem; forth order numerical integration and Bolotin's method. In the numerical results, a comprehensive discussion is made on the dynamical instabilities of the system (such as divergence, flutter and parametric resonance). We found that applying positive electric potential field will improve the stability of the system as an actuator or vibration amplitude controller in the micro electro mechanical systems.

Fluid flow dynamics in deformed carbon nanotubes with unaffected cross section

  • Rezaee, Mohammad;Yeganegi, Arian;Namvarpour, Mohammad;Ghassemi, Hojat
    • Advances in nano research
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    • 제12권3호
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    • pp.253-261
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    • 2022
  • Numerical modelling of an integrated Carbon NanoTube (CNT) membrane is only achievable if probable deformations and realistic alterations from a perfect CNT membrane are taken into account. Considering the possible forms of CNTs, bending is one of the most probable deformations in these high aspect ratio nanostructures. Hence, investigation of effect associated with bent CNTs are of great interest. In the present study, molecular dynamics simulation is utilized to investigate fluid flow dynamics in deformed CNT membranes, specifically when the tube cross section is not affected. Bending in armchair (5,5) CNT was simulated using Tersoff potential, prior to flow rate investigation. Also, to study effect of inclined entry of the CNT to the membrane wall, argon flow through generated inclined CNT membranes is examined. The results show significant variation in both cases, which can be interpreted as counter-intuitive, since the cross section of the CNT was not deformed in either case. The distribution of fluid-fluid and fluid-wall interaction potential is investigated to explain the anomalous behavior of the flow rate versus bending angle.

고차 스펙트럴 / 경계적분법에 의한 수중익과 자유표면의 비선형 상호작용 계산 (Calculation of Nonlinear Interactions between Hydrofoil and Free-Surface by the High-Order Spectral/Boundary-Integral Method)

  • 김용직;하영록
    • 수산해양기술연구
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    • 제39권1호
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    • pp.27-32
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    • 2003
  • 본 논문에서는 수중익주위의 비선형/비정상 자유표면 유동을 다룰 수 있는 시간영역 수치해법으로 고차 스펙트럴법과 경계적분법을 조합한 고차 스펙트럴/경계적분법을 이용하였다. 이 수치해법은 자유표면 요소수를 N이라 할 때 그 산술 계산량이 NlogN에 비례하여 증가하므로 N 이 클 때는 거의 선형적으로 증가한다. 따라서, 이 수치해법은 자유표면 유통의 계산에 있어 매우 효율적인 방법이다. 적용예로서 균속전진하는 수중익에 의한 발생파형 계산결과를 Duncan/sup 3)/의 실험결과와 비교하였고 대체로 좋은 일치를 보이고 있다. 또한, 전진하며 상하동요하는 수중익에 의한 발생파형과 양력, 후류 보오텍스 둥을 시간영역에서 시뮬레이션하여 본 방법이 수중익주위 자유표면 유동의 다양한 문제들에 적용될 수 있는 강력한 수단임을 보였다.

유한수심(有限水深)의 해상(海上)에서 규칙파(規則波)에 놓인 구(球)의 운동특성(運動特性) (On the Motion Characteristics of a Freely-Floating Sphere in a Water of Finite Depth)

  • 최항순;이성균
    • 대한조선학회지
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    • 제19권1호
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    • pp.23-32
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    • 1982
  • Herein the motion of a freely-floating sphere in a water of finite depth is analysed within the framework of a linear potential theory. A velocity potential describing fluid motion is generated by distributing pulsating sources and dipoles on the immersed surface of the sphere, without introducing an inner flow model. The potential becomes the solution of an integral equation of Fredholm's second type. In the light of the vertical axisymmetry of the flow, surface integrals reduce to line integrals, which are approximated by summation of the products of the integrand and the length of segments along the contour. Following this computational scheme the diffraction potential and the radiation potential are determined from the same algorithm of solving a set of simultaneous linear equations. Upon knowing values of the potentials hydrodynamic forces such as added mass, hydrodynamic damping and wave exciting forces are evaluated by the integrating pressure over the immersed surface of the sphere. It is found in the case of finite water depth that the hydrodynamic forces are much different from the corresponding ones in deep water. Accordingly motion response of the sphere in a water of finite depth displays a particular behavior both in a amplitude and phase.

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오픈 소스 전산 유체 역학 해석 프로그램을 이용한 전기집진기 내부 정전 유동 해석 (Numerical Analysis of Electro-Hydrodynamic (EHD) Flows in Electrostatic Precipitators using Open Source Computational Fluid Dynamics (CFD) Solver)

  • 송동근;홍원석;신완호;김한석
    • 한국입자에어로졸학회지
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    • 제9권2호
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    • pp.103-110
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    • 2013
  • The electrostatic precipitator (ESP) has been used for degrading atmospheric pollutants. These devices induce the electrical forces to facilitate the removal of particulate pollutants. The ions travel from the high voltage electrode to the grounded electrode by Coulomb force induced by the electric field when a high voltage is applied between two electrodes. The ions collide with gas molecules and exchange momentum with each other thus inducing fluid motion, electrohydrodynamic (EHD) flow. In this study, for the simulation of electric field and EHD flow in ESPs, an open source EHD solver, "espFoam", has been developed using open source CFD toolbox, OpenFOAM(R) (Open Field Operation and Manipulation). The electric potential distribution and ionic space charge density distribution were obtained with the developed solver, and validated with experimental results in the literature. The comparison results showed good agreement. Turbulence model is also incorporated to simulate turbulent flow; hence the developed solver can analyze laminar and turbulent flow. In distributions of electric potential and space charge, the distributions become distorted and asymmetric as the flow velocity increases. The effect of electrical drift flow was investigated for different flow velocities and the secondary flow in a flow of low velocity is successfully predicted.

유역모형 구축을 위한 8일간격 유량측정자료의 일유량 확장 가능성 (The Possibility of Daily Flow Data Generation from 8-Day Intervals Measured Flow Data for Calibrating Watershed Model)

  • 김상단;강두기;김문수;신현석
    • 한국물환경학회지
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    • 제23권1호
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    • pp.64-71
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    • 2007
  • In this study daily flow data is constructed from 8-day intervals flow data which has been measured by Nakdong River Water Environmental Laboratory. TANK model is used to expand 8-day intervals flow data into daily flow data. Using the Sequential quadratic programing, TANK model is auto-calibrated with daily precipitation and 8-day interval flow data. Generated and measured daily surface flow, ground water flow data and ground water recharge are shown to be in a good agreement. From this result, it is thought that this method has the potential to provide daily flow data for calibrating an watershed model such as SWAT.

원형제트출구 전단류 조절에 따른 제트충돌면에서의 열전달 특성 ( 2 ) - 음향여기된 제트 - (Heat Transfer Characteristics on Impingement Surface with Control of Axisymmetric Jet ( 2 ) - With Acoustic Excitation -)

  • 황상동;이창호;조형희
    • 대한기계학회논문집B
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    • 제24권3호
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    • pp.373-381
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    • 2000
  • The flow and heat transfer characteristics on the impingement surface can be controlled by the change of vortex with the acoustic excitation, because the flow characteristics of an impinging jet are affected strongly by the vortices formed at the jet exit. To investigate the effects of acoustic excitation, we measured the velocity, turbulent intensity distributions for the free jet and local heat transfer coefficients on a impingement surface. As the acoustic excitation, subharmonic frequency of excited frequency plays an important role to the control of the jet flow. If the vortex pairings are promoted by the acoustic excitation, turbulence intensity of the jet flow is increased quickly. On the other hand if the vortex pairings are suppressed, the jet flow has low turbulence intensity at the center of the jet. Therefore, the low heat transfer rates are obtained on the impingement plate for a small nozzle-to-plate distance. However, it has high heat transfer rates at a large distance between the nozzle and plate due to the increasing of potential-core length.