• 제목/요약/키워드: 위상도플러 입자분석기

검색결과 48건 처리시간 0.021초

작동 유체에 따른 단순 압력식 연료노즐의 분무특성 (Spray Characteristics of the Simplex Atomizer with Working Fluids)

  • 최채홍;임병준;최성만
    • 한국추진공학회지
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    • 제13권6호
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    • pp.41-47
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    • 2009
  • 작동 유체에 따른 APU 가스터빈에 적용되는 연료노즐의 분무특성을 확인하였다. 액체연료에 따라 점도, 표면장력 및 비중 등이 상이하여 분무특성이 변화될 수 있다. 본 연구에서는 연료 물성치 변화에 따른 분무특성을 이해하기 위하여 케로신과 유사한 특성을 갖는 보정 유체 2와 일반적으로 연료노즐의 분무특성을 시험하는데 사용하는 물을 이용하여 분무 시험을 수행하였다. 분무가시화와 분무입자 크기 및 분포를 ND-Yag 레이저 및 PDPA(Phase Doppler Particle Analyzer)를 이용하여 측정하였다. 분무시험 결과, 두 작동유체의 분무형태는 유사하게 나타났으며 주 분무영역에서의 SMD 또한 유사하게 분포됨을 확인할 수 있었다.

액체 물성치에 따른 APU 연료 노즐의 분무특성 (Spray Characteristics of the APU fuel injector with liquid properties)

  • 최채홍;전용민;최성만
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2008년도 제31회 추계학술대회논문집
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    • pp.175-178
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    • 2008
  • 심플렉스 연료노즐의 분무시험을 수행하였다. 가스터빈의 주 연료인 등유를 이용한 연료노즐 분무시험의 경우 폭발의 위험과 유해성으로 인하여 물을 이용하여 시험을 수행하는 경우가 많이 있게 된다. 본 연구에서는 ND:Yag 레이저를 이용한 가시화 시험과 PDPA 시스템을 이용한 입자 크기 측정 시험을 등유와 같은 특성을 가지는 Calibration Fluid Type # 2와 물을 작동유체로 사용하여 수행하였다. 시험결과에서 물의 SMD는 Calibration Fluid Type # 2 보다 5$\sim$15 mm 정도 크게 나타났으며 이는 물의 표면장력이 3배 정도 크기 때문으로 판단된다. 반면에 분무각과 분무형태는 유사하게 나타났다.

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노즐 홀 직경에 따른 단공 GDI 인젝터의 분무 특성 연구 - (2) 분무 균일도 및 미립화 특성 비교 (Study on Spray Characteristics of Single-Hole GDI Injector according to Nozzle Hole Diameter - (2) Comparison of Spray Uniformity and Atomization Characteristics)

  • 박정현;노승천;상몽소;박수한
    • 한국분무공학회지
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    • 제25권4호
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    • pp.154-161
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    • 2020
  • A single spray plume is the basic unit of the entire spray plume and is an important factor in understanding the spray characteristics. However, since the multi-hole GDI injector has a narrow spray angle, the superposition of the spray plumes occurs severely. Therefore, the spray uniformity and the spray atomization characteristics of a single spray plume were analyzed in this study using a single-hole GDI injector. Five single-hole GDI injectors with different nozzle hole diameters were used in the experiment. The uniformity of the spray was evaluated through the analysis of the spray pattern images. In addition, the atomization characteristics were compared using the diameter distribution of the spray droplets obtained using PDPA. As a result, the larger diameter of the nozzle hole, the less uniformity of the spray, and the injection pressure did not have a significant effect on the spray uniformity. It is judged that the surface roughness of the injector has a greater effect on spray uniformity than the diameter of the nozzle hole. Also, the size of the spray droplets increased sharply when the diameter of the nozzle hole was 230 ㎛.

분사 압력 변화에 따른 농업용 노즐의 분무 및 미립화 특성 (Spray and Atomization Characteristics of an Agricultural Nozzle by Changing the Injection Pressures)

  • 상몽소;박수한
    • 한국분무공학회지
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    • 제26권4호
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    • pp.189-196
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    • 2021
  • Spray drift of agricultural nozzles has become a big issue because it causes low precision targeting and environmental pollution. In order to reduce the spray drift, study spray characteristics of agricultural nozzles is virtually important. In this study, shadowgraph and Mie-scattering visualization techniques were used to study the macroscopic spray and atomization characteristics of an agricultural nozzle. PDPA was used to measure the atomization characteristics of spray. The injection pressure is set to 1 bar, 3 bar and 5 bar, which covers the working range of the nozzle. For the PDPA experiment, 75 points were measured in an area of 160 mm × 120 mm at 10 mm intervals directly below the nozzle to grasp the overall atomization characteristics of the spray. It was found that the spray width and sheet width showed a linear correlation. As the injection pressure increased, the sheet expansion in the 0-degree direction and the sheet swing in the 90-degree direction jointly promoted the breakup of the sheet. In addition, the area close to the central axis had a large droplet velocity, and since a large droplet velocity promoted atomization of spray, the area close to the central axis had a smaller spray droplet diameter than the left and right regions.

2상 내부 혼합형 노즐분사에서 ALR 변화에 따른 액적의 거동 (On the Behavior of Liquid Droplets Depending upon ALR in Two-phase Internal Mixing Nozzle Jet)

  • 김규철;남궁정환;이상진;노병준
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2002년도 학술대회지
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    • pp.385-388
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    • 2002
  • The researches of a two-phase atomizers have been carried out in the field of automotive and aerospace industries in order to improve the atomization performance of the liquid droplets ejecting from these nozzles. The smaller droplets have the advantages of the reduction of environmental pollution matter and effective use of energy through the improvement of heat and mass transfer efficiency. Thus, to propose the basic information of two-phase flow, an internal mixing atomizer was designed, its shape factor was 0.6 and the liquid feeding hole was positioned at the center of the mixing tube which was used to mix the air and liquid. The experimental work was performed in the field after the nozzle exit orifice. The measurement of the liquid droplets was made by PDPA system. This system can measure the velocity and size of the droplets simultaneously. The number of the droplets used in this calculation was set to 10,000. The flow patterns were regulated by ALR (Air to Liquid mass Ratio). ALR was varied from 0.1024 to 0.3238 depending on the mass flow rate of the air. The analysis of sampling data was mainly focused on the spray characteristics such as flow characteristics distributions, half-width of spray, RMS, and turbulent kinetic energy with ALR.

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역선회 이류체 미립화기의 선회각 변화에 따른 미립화 특성연구 (Study on the Atomization Characteristics of a Counter-swirling Two-phase Atomizer with Variations of Swirl angle)

  • 김남훈;이삼구;하만호;노병준;강신재
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집E
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    • pp.125-130
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    • 2001
  • Experimental and analytical researches have been conducted on the twin-fluid atomizers for better droplet breakup during the past decades. But, the studies on the disintegration mechanism still present a great challenge to understand the drop behavior and breakup structure. In an effort to describe the aerodynamic behavior of the sprays issuing from the internal mixing counter-swirling nozzle, the spatial distribution of axial (U) radial (V) and tangential (W) components of droplet velocities are investigated across the radial distance at several axial locations of Z=30, 50, 80, 120 and 170mm, respectively. Experiments were conducted for the liquid flow rates which was kept constant at 7.95 g/s and the air injection pressures were varied from 20 kPa to 140 kPa. Counter-swirling internal mixing nozzles manufactured at angles of $15^{\circ},\;30^{\circ},\;45^{\circ}$ and $60^{\circ}$ the central axis with axi-symmetric tangential-drilled holes was considered. The distributions of velocities and turbulence intensities are comparatively analyzed. PDPA is installed to specify spray flows, which have been conducted along the axial downstream distance from the nozzle exit. Ten thousand of sampling data was collected at each point with time limits of 30 second. 3-D automatic traversing system is used to control the exact measurement. It is observed that the sprays with all swirl angle have the maximum SMD for on air injection pressure of 20 kPa and 140 kPa with centerline, respectively. The nozzle with swirl angle of $60^{\circ}$ has vest performance.

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항공기 작동조건에 따른 APU 가스터빈엔진 연료노즐의 분무특성 (Spray Characteristics of the Injector for the APU Gas Tubine Engine at Airplane Operating Conditions)

  • 최채홍;최성만;임병준
    • 한국추진공학회지
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    • 제12권1호
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    • pp.29-36
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    • 2008
  • APU 가스터빈에 적용되는 연료노즐의 분무특성을 확인하였다. 분무시험은 항공기의 비행조건에 따라 4개의 작동조건에 대하여 수행하였으며 각 분무조건은 지상에서의 무부하 및 통합부하 조건과 고도 20,000 feet에서의 무부하 및 통합부하에 대해서 실험을 수행하였다. 분무특성은 레이저 빔을 이용한 가시화와 PDPA 시스템을 이용하여 SMD 및 속도측정을 수행하였으며 노즐출구에서 $20{\sim}100\;mm$지점에서 측정하였다. 연구결과 20,000 feet 무부하 조건의 경우 $90{\sim}95\;{\mu}m$ 정도의 SMD를 나타내었고 지상무부하의 경우 약 $60{\sim}75\;{\mu}m$로 측정되었으며 20,000 feet 통합부하의 경우 약 $55{\sim}65\;{\mu}m$ 지상 통합부하의 경우 $30{\sim}70\;{\mu}m$의 값을 나타내었다. 20,000 feet 무부하의 경우 화염 불안정이 발생할 가능성이 있으므로 연료분무입자의 크기를 감소하는 다양한 노력이 요구된다.

수중 내 발포성 정제로부터 생성된 미세기포 특성에 관한 실험적 연구 (Experimental Study on the Characteristics of Microbubbles Generated by an Effervescent Tablet in Water)

  • 명재원;맹주영;김영준;조경민;이웅희;김성호;박영철;손영구;신원규
    • 한국가시화정보학회지
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    • 제19권3호
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    • pp.84-91
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    • 2021
  • Effervescent tablets generate gas bubbles when chemical reaction occurs between water and tablets. Most of previous studies have been focused on pharmaceutical characteristics of tablets. However, for their applications in disinfectants, cleaners, and pesticides, physical characteristics of bubbles released from the effervescent tablets when they are in water are important. In this study, we experimentally investigated the characteristics of microbubbles generated by an effervescent tablet made of sodium bicarbonate and tartaric acid using PDPA and high-speed camera. Microbubbles were generated using different weights of effervescent tablet as well as in different water temperature. The experimental study shows increase in reaction time, bubble concentration and rise velocity as the weight of effervescent tablet increases from 1 to 20 g. The decrease in average bubble diameter was observed when the temperature of water increased from 25 to 45 ℃. Further, reaction time varies inversely with increase in water temperature, while bubble rise velocity is directly proportional to increase in water temperature. Effervescent table continuously generates the bubble with approximately constant diameter (235 ㎛) in the water. However, bubble concentration and bubble rise velocity decreased over time.