• 제목/요약/키워드: 2-Fluid nozzle

검색결과 239건 처리시간 0.028초

선회형 이유체노즐의 노즐캡 형상에 따른 분무특성 (Effect of Nozzle Cap Geometry for Swirl-Type Two-Fluid Nozzle on the Spray Characteristics)

  • 최윤준;강신명;김덕진;이지근
    • 한국분무공학회지
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    • 제13권3호
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    • pp.134-142
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    • 2008
  • In the case of heavy duty diesel engines, the Urea-SCR system is currently considered to reduce the NOx emission as a proved technology, and it is widely studied to get the high performance and durability. However, the nozzles to inject the urea-water solution into the exhaust pipe occur some problems, including the nozzle clogging, deposition of urea-water solution on the inner wall of the exhaust pipe, resulting in the production of urea salt. In this study, a swirl-type twin-fluid nozzle to produce more fine droplets was used as a method to solve the problems. The effect of the nozzle cap geometry, including the length to diameter ratio ($l_o/d_o$) and chamfer, on the spray characteristics were investigated experimentally. The length to diameter ratio of nozzle cap were varied from 0.25 to 1.125. The chamfer angle of the nozzle cap was constant at 90o. The mean velocity and droplet size distributions of the spray were measured using a 2-D PDA (phase Doppler analyzer) system, and the spray half-width, AMD (arithmetic mean diameter) and SMD (Sauter mean diameter) were analyzed. At result, The larger length to diameter ratio of nozzle cap were more small SMD and AMD. The effect of the chamfer did increase the radial velocity, while it did not affect the atomization effect.

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Numerical Analysis of Flow in Radial Turbine (Effects of Nozzle Vane Angle on Internal Flow)

  • OTSUKA, Kenta;KOMATSU, Tomoya;TSUJITA, Hoshio;YAMAGUCHI, Satoshi;YAMAGATA, Akihiro
    • International Journal of Fluid Machinery and Systems
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    • 제9권2호
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    • pp.137-142
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    • 2016
  • Variable Geometry System (VGS) is widely applied to the nozzle vane for the radial inflow turbine constituting automotive turbochargers for the purpose of optimizing the power output at each operating condition. In order to improve the performance of radial turbines with VGS, it is necessary to clarify the influences of the setting angle of nozzle vane on the internal flow of radial turbine. However, the experimental measurements are considered to be difficult for the flow in radial turbines because of the small size and the high rotational speed. In the present study, the numerical calculations were carried out for the flow in the radial turbine at three operating conditions by applying the corresponding nozzle vane exit angles, which were set up in the experimental study, as the inlet boundary condition. The numerical results revealed the characteristic flow behaviors at each operating condition.

단일 경사열선을 이용한 원형노즐의 유동해석 (Analysis of the Flow of a Circular Nozzle using a slant Hot-Wire)

  • 정의준;오상한
    • 한국유체기계학회 논문집
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    • 제12권2호
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    • pp.17-23
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    • 2009
  • The program using $C/C^{++}$ which could calculate 3-D velocities from data of the flowfield obtained by a slant hot-wire has been developed. The characteristic of the exit flowfield of a circular nozzle with a curved surface was investigated. From the result, the inward-flow was verified at adjacent layers near the boundary of the exit flowfield of a circular nozzle in Id and outward-flow was sensed gradually from down-flow of Id. Similarity of the nondimensional velocity profile properlly could be obtained except near Id and the virtual origin reasonably could be obtained.

공기구동 이젝터의 노즐 형상과 위치 변화에 따른 성능 특성 (Performance Characteristics of Air Driven Ejector According to the Position Changes and the Shape of Driving Nozzle)

  • 지명국;김필환;박기태;토니우토모;정한식;정효민
    • Journal of Advanced Marine Engineering and Technology
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    • 제32권4호
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    • pp.550-556
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    • 2008
  • The aim of this research is to analyze the influence of motive pressure, driving nozzle position and nozzle throat ratio on the performance of ejector. The experiment was conducted in the variation of motive pressure of 0.196, 0.294, 0.392 and 0.490MPa respectively. The position of driving nozzle was varied in difference locations according to mixing tube diameter(0.5d, 1d, 2d, 3d, 4.15d, 5d and 6d). The experimental results show when the nozzle outlet is located at 3d, the flow characteristics change abruptly. It is shown that the suction flow rate and pressure lift ratio of ejector is influenced by the driving nozzle position. At nozzle position location of the Id of mixing tube diameter the performance of ejector gives the best performance.

파력발전용 횡류형 수력터빈의 노즐형상에 관한 연구 (A Study on the Nozzle Shapes of a Cross-Flow Type Hydro Turbine for Wave Power Generation)

  • 최영도;김창구;김유택;이영호
    • 한국유체기계학회 논문집
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    • 제11권3호
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    • pp.30-35
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    • 2008
  • The purpose of this study is to examine the effect of nozzle shapes on the performance and internal flow characteristics of a cross-flow type hydro turbine for wave power generation. The performance of the turbine is calculated with the variation of rotational speed for 4 types of the nozzle shape using a commercial CFD code. The results show that nozzle shape should be designed considering available head of the turbine. Best efficiencies of the turbine by 4 types of the nozzle shape do not change largely but overall performances varies mainly by the nozzle width. The output power of the cross-flow type hydro turbine changes considerably by the nozzle shape and a partial region of stage 2 in the runner blade passage produces maximum regional output power in comparison with the other runner blade passage areas.

고압 분사노즐의 최적형상에 관한 연구 (A Study on the Optimum Shape of High-Pressure Injection Nozzle)

  • 이종선;김형철
    • 한국공작기계학회논문집
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    • 제12권2호
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    • pp.37-43
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    • 2003
  • This study makes to flow analysis of computational fluid dynamics(CFD) according to the basic theory of turbulent flow regarding high-pressure injection nozzle. It also makes structural analysis to find out the structural validity of the optimum shape of high-pressure injection nozzle. It divides to two areas such as plunger areas and high-pressure injection nozzle area including plunger.

소규모 헥산 풀화재를 이용한 2유체노즐의 소화 특성에 대한 실험적 연구 (Experimental Study on the Extinguishing Characteristics of Twin-fluid Nozzle using a Small-scale Hexane Pool Fire)

  • 정찬석;이치영
    • 한국화재소방학회논문지
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    • 제32권3호
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    • pp.35-41
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    • 2018
  • 본 연구에서는 2유체노즐을 이용하여 140 ml 헥산 풀화재(Pool fire)에 대한 소화 실험을 수행하였다. 해당 풀화재의 화원(직경 80 mm인 원형) 면적은 $0.005027m^2$이고, 열방출률은 2.81 kW로 측정되었다. 물 공급 유량은 156-483 g/min (~0.156-0.483 l/min), 기체(공기와 질소) 공급 유량은 30-70 l/min이었다. 본 실험조건에서 기체 공급 유량이 많은 경우에 성공적으로 소화가 가능하였다. 소화 가능 영역에서 기체 공급 유량이 적은 경우, 물 공급 유량이 많을 때 화재 소화 소요 시간이 길었고, 물 소모량은 많은 것으로 나타났다. 반면, 기체 공급 유량이 많은 경우, 물 공급유량에 따른 화재 소화 소요 시간 및 물 소모량은 상대적으로 큰 차이가 없는 것으로 나타났다. 한편, 본 실험조건에서 공급 기체의 종류는 소화 가능 여부, 소화 소요 시간, 물 소모량에 큰 영향을 미치지 않는 것으로 측정되었다. 마지막으로 본 실험결과와 단일유체노즐을 이용한 기존 실험결과를 이용하여, 2유체노즐과 단일유체노즐의 140 ml 헥산 풀화재 소화를 위한 물 소모량을 선행적으로 비교 및 검토하였다.

워터젯 노즐의 길이와 내부 나선 구조 유무에 따른 유체거동에 관한 전산해석 (A Study on the Simulation Analysis of Nozzle Length and Inner Spiral Structure of a Waterjet)

  • 곽청렬;신보성;고정상;김문정;유찬주;윤단희
    • 한국기계가공학회지
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    • 제16권1호
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    • pp.118-123
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    • 2017
  • It is well known that water jetting is now widely used in the advanced cutting processes of polymers, metals, glass, ceramics, and composite materials because of some advantages, such as heatless and non-contacting cutting different from the laser beam machining. In this paper, we proposed the simulation model of waterjet by lengths and the inner spiral structure of the nozzle. The simulation results show that the outlet velocity of the nozzle is faster than the inlet. Furthermore, we found rapid velocity reduction after passing through the outlet. The nozzle of diameter ${\phi}500$ and length 70mm, shows the optimal fluid width and velocity distribution. Also, the nozzle with inner spiral structure shows a Gaussian distribution of velocity and this model is almost twice as fast as the model without spiral structure, within the effective standoff distance (2.5 mm). In the future, when inserting abrasive material into the waterjet, we plan to analyze the fluid flow and the particle behavior through a simulation model.

임계노즐 유동에 미치는 노즐 곡률의 영향 (Effect of the Nozzle Curvature on Critical Flows)

  • 김재형;김희동;박경암
    • 유체기계공업학회:학술대회논문집
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    • 유체기계공업학회 2002년도 유체기계 연구개발 발표회 논문집
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    • pp.331-336
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    • 2002
  • Recently the critical nozzles with small diameter are being extensively used to measure mass flow in a variety of industrial fields and these have different configurations depending on operation condition and working gas. The curvature radius of the critical nozzle throat is one of the most important configuration factors promising a high reliability of the critical nozzle. In the present study, computations using the axisymmetric, compressible, Navier-Stokes equations are carried out to investigate the effect of the nozzle curvature on critical flows. The diameter of the critical nozzle employed is D=0.3mm and the radius of curvature of the critical nozzle throat is varied in the range from 1D to 3D. It is found that the discharge coefficient is very sensitive to the curvature radius(R) of critical nozzle, leading to the peak discharge coefficient at R = 2.0D and 2.5D, and that the critical pressure ratio increases with the curvature radius.

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압력식 노즐에서 송풍공기가 미립화에 미치는 영향에 관한 연구 (A Study on the Effect of Atomization of Pressure Nozzle with Blower - Air)

  • 고경한;임상호
    • 디지털융복합연구
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    • 제10권5호
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    • pp.283-288
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    • 2012
  • 본 연구는 이유체 분무장치 미립화 장치 분무특성을 연구하기 위해 수행되었다. 실험 조건은 상온에서 분사압력을 5 bar에서 10 bar 까지 1 bar 간격과 송풍기로부터 공기유량은 0.5, 1.0, 2.0 mmH2O(X10-2)로 증가하였으며, 사용된 액체는 경유이다. 분무특성을 연구하기위해 SMD를 측정하였다. 이 실험으로 부터 다음과 같은 결과를 얻었다. 1. 분무 압력이 증가할수록 SMD는 점점 감소한다. 2. 압력노즐로부터 측정 거리가 증가할수록 SMD도 증가한다. 3. 송풍공기가 더해지면서 분무되는 경우의 SMD는 상대적으로 감소한 것으로 볼 수 있다. 이 연구의 결과로 알 수 있듯이, 송풍공기가 더해지는 분사 장치는 유용한 SMD의 변화를 볼 수 있다. 이는 이유체 분무장치 미립화 장치 분무특성 설계와 성능평가를 위한 중요한 지표로 사용될 수 있을 것으로 판단된다.