• 제목/요약/키워드: Nozzle Separation Device

검색결과 11건 처리시간 0.026초

고기동 추진기관의 노즐개방형 측추력기 개발 (Development of Side Jet Thruster with Nozzle Closure Separation Device)

  • 한혁섭;박의용;김동진;손영일
    • 한국추진공학회지
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    • 제18권2호
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    • pp.80-85
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    • 2014
  • 노즐개방형 측추력기는 고체 추진기관을 사용하는 비행체의 궤도 수정 기능을 제공하는 장치이다. 노즐개방형 측추력기는 비교적 낮은 연소온도를 가지는 추진제, 안정된 추력을 공급하기 위한 중립형 추진제 그레인, 선택적 노즐 사용이 가능한 노즐개방장치로 구성되었다. 궤도 수정이 요구되면 추력 반대방향으로 필요한 추력만큼 노즐을 개방하여 비행체에 측추력을 발생시킨다. 궤도 수정 후 추력방향으로 노즐을 개방하여 측추력을 제거함으로써 추력 발생을 정지한다. 지상연소시험을 통해 측추력기의 작동과정을 확인하였으며, 본 연구를 통하여 개발된 노즐개방형 측추력기는 노즐개방을 통한 측추력 제어를 통해 비행체의 궤도 수정에 활용할 수 있다.

보텍스튜브의 노즐홀수가 에너지분리에 미치는 영향 (The effect of the number of nozzle holes on the energy separation)

  • 유갑종;이진호
    • 설비공학논문집
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    • 제11권5호
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    • pp.692-699
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    • 1999
  • The vortex tube is a sample device for separating a compressed gaseous fluid stream into two flows of high and low temperature without any chemical reactions. The phenomena of energy separation through the vortex tube were investigated experimentally, to see the effects of the number of nozzle holes on the energy separation. The experiment was carried out with the number of nozzle holes from 1 to 10 by varying inlet pressure and cold mass fraction. The experimental results were indicated that the effective number of nozzle holes for the best cooling performance was found as 4. Also, to find effective use in a given operation conditions, the temperature difference of cold air and the cooling capacity of vortex tube was compared. The result is that cooling capacity was more important than temperature difference of cold air.

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보텍스 튜브를 이용한 비압축성 유체의 에너지 분리 (Energy Separation of Incompressible Fluid Using Vortex Tube)

  • 유갑종;최병철;이병화
    • 대한기계학회논문집B
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    • 제25권1호
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    • pp.108-116
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    • 2001
  • The vortex tube is a simple device which separates fluid stream into a cold stream and a hot stream without any chemical reaction. The process of energy separation in the vortex tube has caused a great deal of interest. Although many studies on energy separation in the vortex tube using air as the working fluid have been made so far, few experimental studies treated energy separation for incompressible fluid. So, an experimental study for the energy separation in the vortex tube using the water which is essentially an incompressible fluid is presented. When working fluid is the water, the best geometric values of nozzle area ratio and number of nozzle holes are 0.155, 6 respectively. These geometric values are showed by the similar values which are presented by compressible fluid as working fluid. But hot side mass fraction of which maximum temperature drop is happened are different from compressible fluid.

Hot Gas와 Cold Gas를 이용한 모사 이중펄스 로켓 추진기관의 내부 유동 특성 (Internal Flow Characteristics of Simulated Dual Pulse Rocket Motor by Using the Hot Gas and Cold Gas)

  • 조기홍;박정호;김의용
    • 한국추진공학회지
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    • 제19권2호
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    • pp.1-8
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    • 2015
  • 이중펄스 로켓 추진기관은 하나의 펄스분리장치에 의해 분리된 2개의 추진제 그레인을 가진 변형된 고체 추진기관이다. 이러한 추진기관의 주요 성능은 펄스분리장치 홀 면적대 노즐 목 면적비의 변화에 영향을 받는다. 본 연구에서는 펄스분리장치 홀 면적대 노즐 목 면적비 변화에 따른 내부유동특성을 고찰하기 위해 유동해석을 수행하였다. 유동해석에 사용된 기체로는 hot gas로 HTPB/AP계 복합추진제 연소가스와 cold gas로 질소가스롤 사용하였다. 이중펄스 로켓 추진기관의 내부유동해석 결과는 공압실험 결과와 비교 분석을 통해 검증하였다. 본 논문에서는 상용 CFD(Computational Fluid Dynamics) 코드인 ANSYS FLUENT V14.5를 이용하여 유동을 모사하였다.

$CO_2$ 흡수용 $100Nm^3$/hr급 Vortex Tube의 에너지분리 특성에 관한 실험적 연구 (An Experimental Study on the Energy Separation of the $100Nm^3$/hr Vortex Tube for $CO_2$ Absorption)

  • 김창수;한근희;박성영
    • 청정기술
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    • 제16권3호
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    • pp.213-219
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    • 2010
  • 볼텍스튜브는 고압의 가스를 이용하여 고온 가스와 저온 가스를 분리하거나 입자상 물질의 분리에 사용할 수 있는 장치이다. 이러한 볼텍스튜브의 에너지분리 특성과 물질분리 특성을 활용하여, 연소가스로부터 $CO_2$를 흡수하는 장치의 핵심부품으로 적용할 수 있다. 본 연구에서는 $CO_2$ 흡수용 볼텍스튜브의 기본설계 자료를 구축하기 위하여 에너지분리 성능실험을 수행하였다. 설계를 위한 기초 자료를 확보하기 위하여, 볼텍스 발생기의 오리피스 직경, 노즐면적비 및 튜브의 길이가 에너지분리 특성에 미치는 영향력을 실험을 통하여 분석하였다. 결과적으로 오리피스 직경이 볼텍스튜브의 성능에 지배적인 설계인자임을 확인하였으며, 노즐면적비와 튜브길이의 영향력은 미미하였다. 오리피스 직경이 작고(Dc=0.6D), 노즐면적비가 중간 이상(AR=0.14~0.16)이며, 튜브 길이가 긴 모델(L=16D)이 저온 출구 측과 고온 출구 측의 열전달에서 가장 우수한 성능을 나타내었다. 본 연구의 결과는 $CO_2$흡수용 $100Nm^3$/hr급 볼텍스튜브의 기본설계 자료로 활용될 예정이다. 볼텍스튜브를 적용한 $CO_2$흡수 공정을 적용하면 기존의 대형 흡수탑 대비 상당한 공간과 에너지의 절감 효과가 기대된다.

An Experimental Study on the Characteristics of Rectangular Supersonic Jet on a Flat Plate

  • Kwak, Ji-Young;Lee, Yeol
    • International Journal of Aeronautical and Space Sciences
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    • 제17권3호
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    • pp.324-331
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    • 2016
  • The present study focuses on the characteristics of a supersonic jet flowing from a rectangular nozzle exit on a flat plate. Flow visualization techniques using schlieren and kerosene-lampblack tracing are utilized to investigate shock reflection structures and boundary-layer separations over a flat plate. Wall pressure measurements are also carried out to quantitatively analyze the flow structures. All observations are repeated for multiple jet flow boundary conditions by varying the flap length and nozzle pressure ratio. The experimental results show that the jet flow structures over the flat plate are highly three-dimensional with strong bleeding flows from the plate sides, and that they are sensitive to plate length and nozzle pressure ratio. A multi-component force measurement device is also utilized to observe the characteristics of the jet flow thrust vectoring over the plate. The maximum thrust deflection angle of the jet is about $8^{\circ}$, demonstrating the applicability of thrust vector control via a flat plate installed at the nozzle exit.

석탄 노즐내 미분탄 분리장치의 입자 분리 효과에 관한 실험적 연구 (An Experimental Study on the Separating Effect of Pulverized Coal at Coal Nozzle with Coal Separator)

  • 김혁제;송시홍;이건명;김상현;이익형
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 추계학술대회논문집B
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    • pp.764-769
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    • 2001
  • Recently, according to increase in the requirement of electric power, a thermoelectric power plant equipped with pulverized coal combustion system is highly valued, because coal has abundant deposits and a low price compared with others. For efficient use of coal fuel, most of plant makers are studying to improve combustion performance and flame stability, and reduce pollutant emission. One of these studies is how to control the profile of particle injection and velocity dependant on coal nozzle. Basically, a mixed flow of gas and particle in coal nozzle is required to have appropriate injection and concentration distribution at exit to achieve flame stability and low pollutant, but it is very difficult to obtain that without help of a coal separating device within nozzle. In this study, each distribution of air and coal flow rate is measured for the coal nozzle with coal separator developed by us. The coal concentration at exit is various according to inlet swirl values and positions of coal separator. Also pressure drop is measured for various operating conditions of this nozzle. From these results, we can find the separation characteristic of new developed coal separator, and select proper operation range of coal nozzle. When this coal nozzle is applied to actual plant, these investigations will be very useful to confirm the shape of coal separator to have efficient particle injection.

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Vortex Tube 성능 개선을 위한 절두체의 형상 매개변수에 대한 연구 (A PARAMETRIC STUDY OF CONICAL FRUSTUM GEOMETRY FOR IMPROVEMENT OF COOLING PERFORMANCE OF VORTEX TUBE)

  • 구한범;박준용;손덕영;최윤호
    • 한국전산유체공학회지
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    • 제20권4호
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    • pp.7-13
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    • 2015
  • Vortex tube is a thermal static device that separates compressed air into hot and cold streams. In general, the cooling efficiency of vortex tubes is lower than that of traditional air conditioning equipment and vortex tubes are mainly used for industrial spot cooling applications because of their quick responses. In this study, conical frustums are employed in the nozzle chamber to improve the cooling performance. Conical frustums can be used to decrease the ineffective mass fraction that directly passes through the cold exit without energy separation. The shape optimization of conical frustums has been performed using full factorial design. It is found that the height of frustums has the largest main effects on the cooling performance. Computational results show that the cooling performance can be increased by about 10% within the considered range of the design parameters. This is because the ineffective mass fraction toward the cold exit is decreased by about 20%.

Vortex Tube의 냉출구 Orifice에 관한 실험적 연구 (An experimental study for cold end orifice of vortex tube)

  • 유갑종;최병철
    • 대한기계학회논문집B
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    • 제20권3호
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    • pp.1061-1073
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    • 1996
  • Vortex tube is a simple device which splits a compressed gas stream into a cold stream and a hot stream without any chemical reactions. The phenomena of energy separation taking place in a vortex tube has been investigated experimentally. Recently, vortex tube is widely used to local cooler of industrial equipments and air conditioner of special purpose. In this study, experimental study on vortex tube efficiency was performed with various cold end orifices and nozzles type. The experimental results indicate that there is an optimum diameter of cold end orifice and nozzle type for the best cooling performance. The variation of the maximum wall temperature along the vortex tube surface provides useful information about the location of the stagnation point of the flow field at the axis of the vortex tube. The similarity relation for the prediction of the temperature of the cold exit air was obtained.

공기공급 시스템에 적응되는 Vortex Tube의 에너지 분리특성에 관한 연구(II) -표면의 단열효과에 따른 영향- (A Study for Energy Separation of Vortex Tube Using Air Supply System(II) - the effect of surface insulation -)

  • 방창훈;추홍록;유갑종
    • 한국안전학회지
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    • 제14권1호
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    • pp.3-9
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    • 1999
  • The vortex tube is a simple device which splits a compressed gas stream into a cold stream and a hot stream without any chemical reactions. Recently, vortex tube is widely used to local cooler of industrial equipments and air supply system. In this study, the insulation effect of surface on the efficiency of vortex tube was performed experimentally. The experiment is carried out for nozzle area ratio of 0.194, diameter ratio of cold end orifice of 0.6 and input pressure ranging from 0.2Mpa to 0.5Mpa. The purpose of this study is focused on the effect of surface insulation of vortex tube with the variation of cold air mass flow ratio. The results indicate that the temperature difference of cold and hot air are higher about 12% and 30% than that of not insulated vortex tube respectively. Furthermore, for the insulated vortex tube, the similarity relation for the prediction of cold end temperature as the function of cold air mass flow ratio and input pressure is obtained.

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