• 제목/요약/키워드: pressure fluctuations

검색결과 381건 처리시간 0.027초

초음속 내부유동에서 다수의 충격파 구조에 대한 연구 (Study on Multiple Shock Wave Structures in Supersonic Internal Flow)

  • ;김희동
    • 한국추진공학회지
    • /
    • 제24권3호
    • /
    • pp.31-40
    • /
    • 2020
  • 다수의 충격파에 대한 구조와 거동특성은 노즐 출구 마하수가 1.75인 모델에 대하여 유한체적기법을 사용하여 수치해석적으로 조사하였다. 먼저 이미지를 기반으로 한 충격파 진동특성을 Matlab 프로그램을 사용하여 분석한 후 특정 위치에서 벽면 정압변화를 분석하였다. 또한 다수 충격파들의 진폭 및 주파수도 조사하였다. 충격파 위치들 사이의 상호상관은 첫번째 충격파와 두번째 충격파는 서로 관련이 있는 반면에 다른 충격파들은 진동특성에서 위상 지연을 나타내었다. 벽면 압력변동의 RMS값은 충격파 위치에서 최대이며 유동의 다른 부분에서는 낮은 OS 표준편차값을 나타내었다.

액체-기체 와류동축형 분사기의 자기-맥동에 대한 기체 밀도의 영향 (Effect of Gas Density on Self-Pulsation in Liquid-Gas Swirl Coaxial Injector)

  • 안종현;강철웅;안규복
    • 한국분무공학회지
    • /
    • 제27권3호
    • /
    • pp.134-143
    • /
    • 2022
  • When a recess is applied to a swirl coaxial injector that uses liquid and gas propellants, a self-pulsation phenomenon in which the spray oscillates at regular intervals may occur. The phenomenon is caused by the interaction between the liquid and gas propellants inside the injector recess region. The propellants' kinetic energies are expected to affect significantly the spray oscillation. Therefore, cold-flow tests using helium as a gas-simulating propellant were conducted and compared with the results of the previous study using air. Dynamic pressure was measured in the injector manifold and frequency characteristics were investigated through the fast Fourier transform analysis. In the experimental environment, the helium density was about seven times lower than the air density. Accordingly, the intensity of pressure fluctuations was confirmed to be greater when air was used. At the same kinetic energy condition, the perturbation frequency was almost identical in the low flow rate conditions. However, as the flow rate increased, the self-pulsation frequency was higher when helium was used.

Numerical Investigation of Pressure Fluctuation Reducing in Draft Tube of Francis Turbines

  • Li, WF;Feng, JJ;Wu, H;Lu, JL;Liao, WL;Luo, XQ
    • International Journal of Fluid Machinery and Systems
    • /
    • 제8권3호
    • /
    • pp.202-208
    • /
    • 2015
  • For a prototype turbine operating under part load conditions, the turbine output is fluctuating strongly, leading to the power station incapable of connecting to the grid. The field test of the prototype turbine shows that the main reason is the resonance between the draft tube vortex frequency and the generator natural vibration frequency. In order to reduce the fluctuation of power output, different measures including the air admission, water admission and adding flow deflectors in the draft tube are put forward. CFD method is adopted to simulate the three-dimensional unsteady flow in the Francis turbine, to calculate pressure fluctuations in draft tube under three schemes and to compare with the field test result of the prototype turbine. Calculation results show that all the three measures can reduce the pressure pulsation amplitude in the draft tube. The method of water supply and adding flow deflector both can effectively change the frequency and avoid resonance, thus solving the output fluctuation problem. However, the method of air admission could not change the pressure fluctuation frequency.

진공흡입노즐식 파종기의 종자함 진동이 파종성능에 미치는 영향 (Effect of the Seed Hopper Vibration on the Seeding Performance of the Vacuum Suction Nozzle Seeder)

  • 민영봉;김성태;권효동;문성원;강동현
    • Journal of Biosystems Engineering
    • /
    • 제33권3호
    • /
    • pp.179-185
    • /
    • 2008
  • The seeding rates of the vacuum suction nozzle seeders are affected by the jumping height of the seeds on the vibrating seed hopper. This study was performed to investigate the optimum vibration condition of the seed hopper on the vacuum suction nozzle seeder for improving seeding performance. Experiments were carried out to determine the vibration conditions of the seed hopper by air pressure and eccentric weight, and to optimize the seed-pickup performance of each nozzle by suction pressure. As the result with the experiments, the fluctuations of the jumping height of the seeds were showed at amplitude 0.4 mm and frequency 42 Hz, and jumping heights of the seeds were increased as the air pressure increase and the eccentric weight decrease, regardless number of seeds of the hopper. The best seeding rate of the seed hopper was 98% at the 300-seed cell, when the condition of the seed hopper was the suction air pressure of 94.6 kPa-abs., amplitude and frequency of the seed hopper vibration were at 0.57 mm and 43.6 Hz, respectively. The optimum vibrating conditions of the seed hopper were decided into frequency 43.6-43.8 Hz and the amplitudes 0.61-0.62 mm.

서로 다른 두 개의 와류방출 주파수간의 비선형간섭 (Harmonized Non-linear Interaction Between Different Two Vortex Shedding Frequencies)

  • 김상일;승삼선;이승철
    • 대한기계학회논문집B
    • /
    • 제38권3호
    • /
    • pp.211-217
    • /
    • 2014
  • 본 연구는 서로 다른 두 개의 직경을 가지는 원기둥으로부터 나오는 두 개의 와류방출주파수간의 비선형간섭에 관한 것이다. 두 개의 서로 다른 주파수는 두 개의 직경을 가지는 원기둥에 의해 인위적으로 만들어졌고, 원기둥 후류의 속도 변동은 3 차원으로 측정되었다. 그리고 원기둥 표면에는 압력공이 설치되어 원기둥 표면의 압력도 측정하였다. 이 압력 신호를 기준 신호로 사용하였다. TSC 해석을 병행하여 두 주파수간의 비선형간섭의 세기를 조사하였다. 그 결과, 다음과 사실을 알았다. i)원기둥 후류의 주파수 분포, ii)위상집합평균법에 의한 원기둥 후류의 3 차원적인 흐름 상태, iii)두 개의 직경을 가지는 원기둥에서 나오는 두 개의 주파수간의 비선형간섭과 저주파의 종와류과의 관계.

포고억제장치 설치에 따른 배관계 동특성 변화 (Change of Piping-System Dynamics with Installation of Pogo Suppression Device)

  • 이준경;이상용;이한주;오승협
    • 한국추진공학회지
    • /
    • 제9권2호
    • /
    • pp.32-39
    • /
    • 2005
  • 액체 연료 로켓의 연료 공급 라인을 모사 한 시스템에 대해, PSD가 시스템의 응답에 미치는 영향을 살펴보았다. 주관의 유량 변화에 대한 주관 압력 변화의 비(시스템 응답)를 PSD 내의 기체 체적$((0\~2)\times10^{-3}m^3)$과 PSD 배플의 직경(5, 50, 115 mm)을 변화시키며 살펴보았다. PSD 내에 기체가 있을 경우, 시스템의 고유진동 주파수가 작아짐을 확인하였다. 그리고 기체의 체적이 클수록 시스템 고유진동 주파수가 작아졌으나, 그 변화는 그리 크지 않았다. 또한 PSD 내 기체량이 많은 경우, 주관 내 압력 및 유량 변화의 진폭이 많이 감소함을 확인할 수 있었다. PSD 배플의 직경이 작아질수록 시스템 고유 진동 주파수가 작아졌으나 그 변화는 작았다. 또한 PSD 배플의 저항이 클 때, PSD 내 압력은 주관의 압력 크기보다 작고, 지연된 파형이 관찰되었다.

우주에서 작물 생산을 위한 공학적 접근 (Engineering Approach to Crop Production in Space)

  • 김용현
    • 생물환경조절학회지
    • /
    • 제14권3호
    • /
    • pp.218-231
    • /
    • 2005
  • 본고에서는 우주에서 장기간에 걸쳐 임무를 수행하는 인간의 생명지원을 목적으로 CELSS를 이용한 식물생산, 물과 공기의 정화 및 재생, 폐기물 처리 등을 위한 공학적 접근을 검토하였다. 이러한 공학적 접근에는 미소중력 또는 저압과 같은 우주 환경에 적용 가능한 폐쇄형 식물생산 시스템, 물질 순환, 물의 재생, 폐기물의 처리, 미량 유해가스의 제거, 조명, 배양액의 공급 등이 포함된다. 우주에서 재배 가능한 작물의 선택 기준으로 높은 생산성, 식용성, 소화성, 조리성, 자동화 가능성, 짧은 줄기, 높은 증산속도 등이 제기되고 있다. 화성 표면에서의 낮은 압력은 작물 생산용 온실을 설계할 때 주요 장애물에 해당한다. 때문에 저압하에서 식물 재배가 가능한 팽창식 온실의 개발에 관심이 집중되고 있다. 팽창식 온실의 구조, 내부 압력, 자재, 조명 방식, 방사선 차폐 등은 주요 설계 인자에 해당한다. 팽창식 온실 내의 낮은 압력은 구조물의 질량과 가스의 누출속도를 줄일 수 있다. 저압 조건에서는 증산속도가 급격하게 증가하여 식물의 수분요구도가 높게 나타난다. 증산 또는 수경재배시스템으로부터의 증발에 의해서 수분이 대기 중으로 방출될 때 증기압이 증가한다. 저압 조건에 있는 폐쇄계에서는 증기압의 변화가 전체 압력에 커다란 영향을 미친다. 그러므로 저압 조건의 수경재배시스템은 누수로 인하여 기화되는 수분 손실을 줄이기 위해서 고도로 밀폐되어야 한다. 또한 저압으로 유지되는 온실내의 상대습도를 높게 유지할 수 있는 환경제어 기술이 개발되어야 한다. 향후 폐쇄생태계 생명유지 시스템의 핵심 기술은 우주뿐만 아니라 지구상의 사막, 극지방 또는 해저와 같은 열악한 환경 조건에서도 생명 지원을 가능케 할 것이다.

Fluctuation in Plasma Nanofabrication

  • Shiratani, Masaharu
    • 한국진공학회:학술대회논문집
    • /
    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
    • /
    • pp.96-96
    • /
    • 2016
  • Nanotechnology mostly employs nano-materials and nano-structures with distinctive properties based on their size, structure, and composition. It is quite difficult to produce nano-materials and nano-structures with identical sizes, structures, and compositions in large quantities, because of spatiotemporal fluctuation of production processes. In other words, fluctuation is the bottleneck in nanotechnology. We propose three strategies to suppress such fluctuations: employing 1) difference between linear and nonlinear phenomena, 2) difference in time constants, and 3) nucleation as a bottleneck phenomenon. We are also developing nano- and micro-scale guided assembly using plasmas as a plasma nanofabrication.1-5) We manipulate nano- and micro-objects using electrostatic, electromagnetic, ion drag, neutral drag, and optical forces. The accuracy of positioning the objects depends on fluctuation of position and energy of an object in plasmas. Here we evaluate such fluctuations and discuss the mechanism behind them. We conducted in-situ evaluation of local plasma potential fluctuation using tracking analysis of fine particles (=objects) in plasmas. Experiments were carried out with a radio frequency low-pressure plasma reactor, where we set two quartz windows at the top and bottom of the reactor. Ar plasmas were generated at 200 Pa by applying 13.56MHz, 450V peak-to-peak voltage. The injected fine particles were monodisperse methyl methacrylate-polymer spheres of $10{\mu}m$ in diameter. Fine particles were injected into the reactor and were suspended around the plasma/sheath boundary near the powered electrode. We observed binary collision of fine particles with a high-speed camera. The frame rate was 1000-10000 fps. Time evolution of their distance from the center of mass was measured by tracking analysis of the two particles. Kinetic energy during the collision was obtained from the result. Potential energy formed between the two particles was deduced by assuming the potential energy plus the kinetic energy is constant. The interaction potential is fluctuated during the collision. Maximum amplitude of the fluctuation is 25eV, and the average is 8eV. The fluctuation can be caused by neutral molecule collisions, ion collisions, and fluctuation of electrostatic force. Among theses possible causes, fluctuation of electrostatic force may be main one, because the fine particle has a large negative charge of -17000e and the corresponding electrostatic force is large compared to other forces.

  • PDF

쿼드로터형 무인비행체의 후류 특성에 관한 실험적 연구 (An Experimental Study on the Wake Characteristics of a Quadrotor UAV)

  • 이승철;채석봉;김주하
    • 한국가시화정보학회지
    • /
    • 제16권1호
    • /
    • pp.30-36
    • /
    • 2018
  • In the present study, we investigate the flow characteristics of a quadrotor UAV in a hovering mode by measuring multiple two-dimensional velocity fields in the wake. The experiment is conducted at Re = 24,000 in a chamber large enough to neglect the ground effect, where Re is the Reynolds number based on the rotor chord length and the rotor tip speed. The rotational speed of the rotor is determined by an optical tachometer so that the lift force can be balanced with the weight of the UAV. The velocity field measured on the center plane of the rotor shows that the vortices are shedding from the tip of the rotor, inducing large fluctuations in the streamwise velocity along the wake shear layer. The strength of the rotor-tip vortex shedding is asymmetric with respect to the rotor axis due to the interaction between the rotor and the wake centerline of each rotor is inclined to the center of the UAV due to the pressure difference caused by the induced velocity. The wake from each rotor moves closer to each other while traveling in the streamwise direction, and then is merged together inducing large fluctuations in the transverse velocity. Due to the wake merging, on the center plane of the UAV, the velocity increases in the streamwise direction showing two-peak structure in the streamwise velocity contours.

Combustion Instability Mechanism of a Lean Premixed Gas Turbine Combustor

  • Seo, Seonghyeon
    • Journal of Mechanical Science and Technology
    • /
    • 제17권6호
    • /
    • pp.906-913
    • /
    • 2003
  • Lean premixed combustion has been considered as one of the promising solutions for the reduction of NOx emissions from gas turbines. However, unstable combustion of lean premixed flow becomes a real challenge on the way to design a reliable, highly efficient dry low NOx gas turbine combustor. Contrary to a conventional diffusion type combustion system, characteristics of premixed combustion significantly depend on a premixing degree of combusting flow. Combustion behavior in terms of stability has been studied in a model gas turbine combustor burning natural gas and air. Incompleteness of premixing is identified as significant perturbation source for inducing unstable combustion. Application of a simple convection time lag theory can only predict instability modes but cannot determine whether instability occurs or not. Low frequency perturbations are observed at the onset of instability and believed to initiate the coupling between heat release rate and pressure fluctuations.