• 제목/요약/키워드: Radial flow

검색결과 780건 처리시간 0.026초

Simultaneous Multi-Channel Sensor System for Gas Flow Measurementtion Measurement

  • Kim, Young-Han;Joung, Ok-Jin
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2002년도 ICCAS
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    • pp.95.3-95
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    • 2002
  • A multi-channel electrostatic probe is utilized to determine gas flow rate in a cylindrical container. A numerical analysis is conducted to compare experimental measurement with the computed gas velocity in radial and axial directions.

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웨버수 및 운동량 플럭스비에 따른 동축형 다공성재 분사기의 거시적 분무특성 (Effect of Weber Number and Momentum Flux Ratio on Macroscopic Characteristics of Spray from a Coaxial Porous Injector)

  • 김도헌;서민교;이인철;구자예
    • 한국추진공학회지
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    • 제16권5호
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    • pp.1-9
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    • 2012
  • 동축형 다공성재 분사기에서는 중심 액체제트 주위를 둘러싼 원통형 다공성재의 내부 표면에서 반경방향으로 분사된 기체가 중심액체제트와 상호작용을 하게 된다. 표면분사된 기체제트는 반경방향에서 축방향으로 발달하며, 그 과정에서 액체분무의 중심부까지 운동량을 효과적으로 전달하여 미립화 및 혼합 성능을 향상시킨다. 본 연구에서는 기체분사 면적 및 기체분사 질량유량을 변화시켜 각각 운동량 비 및 웨버수의 크기를 조절하였으며, 이에 따른 물-공기 모사추진제 수류시험에서의 분무특성에 대한 고찰을 수행하고 동일 스케일의 전단 동축형 분사기와의 비교 분석이 이루어졌으며, 동축형 다공성재 분사기에서 반경방향으로의 기체분사가 2상유체의 미립화/혼합에 긍정적인 영향을 주는 것으로 판단된다.

해양온도차발전용 반경류 터빈의 설계 및 해석 (Design and Analysis of a Radial Turbine for Ocean Thermal Energy Conversion)

  • ;이근식
    • 대한기계학회논문집B
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    • 제39권3호
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    • pp.207-214
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    • 2015
  • 해양온도차발전용 터빈의 효율과 크기를 파악하기 위해 R134a를 작동유체로 하고 출력 5 kW인 반경류형 터빈의 설계가 수행되었다. 터빈입구온도 $25^{\circ}C$, 출구 정압 4.9 bar, 질량유량 1.16 kg/s 로 설정하고 평균유동해석을 수행하여 터빈의 회전수와 주요 치수를 결정하였다. 이들을 바탕으로, 3 차원 터빈 모델을 구축하였으며, 도출된 터빈회전수 12,820 rpm에 대하여 전산유체역학(CFD) 소프트웨어 ANSYS CFX를 이용하여 볼류트와 노즐을 포함하는 터빈 내부 유동장 특성과 효율이 조사되었다. 80%이상의 터빈 효율이 적정 범위 내의 노즐 안내깃 수(10-15 개)에서 제시되었으며, 가장 높은 터빈 효율은 15 개의 안내 깃에서 나타났다.

Experimental and computational analysis of behavior of three-way catalytic converter under axial and radial flow conditions

  • Taibani, Arif Zakaria;Kalamkar, Vilas
    • International Journal of Fluid Machinery and Systems
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    • 제5권3호
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    • pp.134-142
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    • 2012
  • The competition to deliver ultra-low emitting vehicles at a reasonable cost is driving the automotive industry to invest significant manpower and test laboratory resources in the design optimization of increasingly complex exhaust after-treatment systems. Optimization can no longer be based on traditional approaches, which are intensive in hardware use and laboratory testing. The CFD is in high demand for the analysis and design in order to reduce developing cost and time consuming in experiments. This paper describes the development of a comprehensive practical model based on experiments for simulating the performance of automotive three-way catalytic converters, which are employed to reduce engine exhaust emissions. An experiment is conducted to measure species concentrations before and after catalytic converter for different loads on engine. The model simulates the emission system behavior by using an exhaust system heat conservation and catalyst chemical kinetic sub-model. CFD simulation is used to study the performance of automotive catalytic converter. The substrate is modeled as a porous media in FLUENT and the standard k-e model is used for turbulence. The flow pattern is changed from axial to radial by changing the substrate model inside the catalytic converter and the flow distribution and the conversion efficiency of CO, HC and NOx are achieved first, and the predictions are in good agreement with the experimental measurements. It is found that the conversion from axial to radial flow makes the catalytic converter more efficient. These studies help to understand better the performance of the catalytic converter in order to optimize the converter design.

축류터어빈의 기초설계 해석 (Preliminary Design Analysis of an Axial-Flow Turbine)

  • 구삼옥;최동환
    • 한국기계연구소 소보
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    • 통권14호
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    • pp.111-119
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    • 1985
  • A review on the design analysis of an axial-flow turbine is presented. Followed by a brief introduction to the fundamentals on an axial-flow turbine, a design procedure is described with a sample design of one for a small turbo-jet engine. Design procedure is composed of two parts: one-dimensional analysis of three-dimensional effects based on radial equilibrium theory. The method described herein is so simple and rapid that it can be applied to the preliminary design analysis of turbo-machinery equipped with axial-flow turbines.

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The Wall Shear Rate Distribution Near an End-to-End Anastomosis : Effects of Graft Compliance and Size

  • Rhee, Kye-Han
    • International Journal of Vascular Biomedical Engineering
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    • 제1권1호
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    • pp.41-47
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    • 2003
  • The patency rates of small diameter vascular grafts are disappointing because of the formation of thrombus and intimal hyperplasia. Among the various factors influencing the success of graft surgery, the compliance and the size of a graft are believed to be the most important physical properties of a vascular graft. Mismatch of compliance and size between an artery and a graft alters anastomotic flow characteristics, which may affect the formation of intimal hyperplasia. Among the hemodynamic factors influencing the development of intimal hyperplasia, the wall shear stress is suspected as the most important one. The wall shear stress distributions are experimentally measured near the end-to-end anastomosis models in order to clarify the effects of compliance and diameter mismatch on the hemodynamics near the anastomosis. The effects of radial wall motion, diameter mismatch and impedance phase angle on the wall shear rate distributions near the anastomosis are considered. Compliance mismatch generates both different radial wall motion and instantaneous diameter mismatch between the arterial portion and the graft portion during a flow cycle. Mismatch in diameter seems to be affecting the wall shear rate distribution more significantly compared to radial wall motion. The impedance phase angle also affects the wall shear rate distribution.

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Numerical prediction of pressure pulsation amplitude for different operating regimes of Francis turbine draft tubes

  • Lipej, Andrej;Jost, Dragica;Meznar, Peter;Djelic, Vesko
    • International Journal of Fluid Machinery and Systems
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    • 제2권4호
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    • pp.375-382
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    • 2009
  • Hydraulic instability associated with pressure fluctuations is a serious problem in hydraulic machinery. Pressure fluctuations are usually a result of a strong vortex created in the centre of a flow at the outlet of a runner. At every radial turbine and also at every single regulating axial turbine, the draft tube vortex appears at part-load operating regimes. The consequences of the vortex developed in the draft tube are very unpleasant pressure pulsation, axial and radial forces and torque fluctuation as well as turbine structure vibration. The consequences of the vortex are transferred upstream and downstream with amplitude and frequency modulation in respect of the turbine operating regime, cavitation conditions and air admitted content. Numerical prediction of the vortex appearance in the design stage is a very important task. The amplitude of the pressure pulsation is different for each operating regime therefore the main goal of this research was to numerically predict pressure pulsation amplitude versus different guide vane openings and to compare the results with experimental ones. For the numerical flow analysis of a complete Francis turbine (FT), the computer code ANSYS-CFX11 has been used.

배전운영 시스템에서 상시개방 연계 스위치 투입에 의한 루프 운전 중 구간전압 계산 방법 (Section Voltage Calculation while a Loop Operation by Tie-Switch Close in a Distribution Management System)

  • 서정수;임일형;박종호;신용학;최면송
    • 전기학회논문지
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    • 제65권3호
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    • pp.397-403
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    • 2016
  • Generally, an electrical distribution configuration is a radial system with one-way current in a distribution management system (DMS). All feeders in a DMS have tie-switches to make radial system. Sometimes, DMS should change a tie-switch for operation. In that case, the tie-switch has to be closed first; then a switch is opened as another tie-switch in order to prevent blackout for customers. At the moment when the tie-switch is closed, distribution system is operated in a loop state, not radial. Before the loop operation, DMS operator has to check any expected events for stable distribution system operation; and the most important event is a mis-operation of a protection relay. In addition, DMS operator should check voltage profile violation but a calculation method of section voltages had not been used. Thus, this paper proposes a calculation method of section voltages at a loop operation in a DMS. The proposed calculation algorithm is verified by Matlap Simulink.

열선유속계를 이용한 좁은 유로 내 유속 측정법 (Velocity Measurement Technique in a Narrow Passage by Hot-wire Anemometer)

  • 김원갑;한성호;최영돈
    • 설비공학논문집
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    • 제19권2호
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    • pp.191-201
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    • 2007
  • It was noted by the several researchers that the voltage outputs in response to a single yawed hot-wire sensor in a flow perpendicular to the axis deviate from the theoretical voltage output by King's law and Jorgensen's relation. This study noticed that the calibration coefficients of original Grande's method are not constant and fairly sensitive to the radial angle (${\alpha}_{R}$). For more accuracy, this study interpolated the parameters of the Grande relation as a function of radial angle and compared velocity components with ones by Jorgensen and original Grande relation in the calibration jet flow. Finally, as a test case, 3-dimensional turbulent flows of the inlet plane of 180 degree bend are measured and compared the velocity components by above three methods and showed the characteristics of the flows.

콘형 가스버너의 난류유동장에 대한 슬릿과 스월베인의 역할 (The Role of Slits and Swirl Vanes on the Turbulent Flow Fields in Cone Type Gas Burner)

  • 김장권;정규조
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 추계학술대회논문집B
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    • pp.341-346
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    • 2001
  • The gun-type gas burner adopted in this study is generally composed of some slits and swirl vanes. Therefore, this paper is studied to investigate the effect of slits and swirl vanes on the turbulent flow fields in the horizontal plane of gas swirl burner with a cone type baffle plate measured by using X-probe from hot-wire anemometer system. This experiment is carried out at flow rate $450\;{\ell}/min$, which is equivalent to the combustion air flow rate necessary for heat release 15,000 kcal/hr in gas furnace, in the test section of subsonic wind tunnel. When the burner has only swirl vanes, the axial mean velocity component shows the characteristic that spreads more remarkably toward radial direction than axial one, but when it has only slits, that is developed spreading more toward axial direction than radial one. Therefore, because the biggest speed is spurted in slits and it derive main flow toward axial direction encircling rotational flow that comes out from swirl vane that is situated on the inside of slits, both slits and swirl vanes composing of cone type gas burner act role that decreases the speed near slits and increases the flow speed in the central part of a burner. Moreover, because rotational flow by swirl vanes and fast jet flow by slits increase turbulent intensities effectively coexisting, the turbulent kinetic energy is distributed with a bigger size fairly near slits than burner models which have only slit or swirl vanes within X/R<0.6410.

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