• 제목/요약/키워드: Gas motion

검색결과 377건 처리시간 0.023초

상용 CFD 프로그램을 사용한 베인형 관성분리기의 설계인자 영향 검토 (Study on the Effect of Design Parameters of the Vane Type Inertial Separator Using Commercial CFD Code)

  • 이답연;류재문
    • 대한조선학회논문집
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    • 제54권6호
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    • pp.470-475
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    • 2017
  • Since the intake air of gas turbine engine of marine purpose contains water particles, inertial separator for separating the air and water particles are provided. Saw type and wave type separator are now used to separate inflow water particle from the gas. In this paper, the design parameters of saw type separator are studied by numerical simulations. Using the commercial CFD program, Star-CCM+, Lagrangian-Eulerian method was used to perform the analysis of two phase flow of the mist in the air. This method solves Reynolds-Averaged Navier-Stokes equations in Eulerian framework for the continuous phase, while solves equation of motion for individual particles in Lagrangian framework. Lagrangian multiphase method was applied to monitor the particles of different sizes and shapes and to verify collision between particles by chasing particles. Water particles were injected through injectors located at the inlet of the separator and escape mode was used which assumes that the particles attached on the surface of inertial separator were removed from the simulation, effectively escaping the solution domain. Through the numerical computations with the inlet condition of constant water particle size in the wetness fraction of 85%, efficiency of eliminating the water particle and the pressure drop between the inlet and outlet were examined.

슬로싱 하중을 받는 한국형 LNG선 화물창(KC-1)의 보냉 판넬에 대한 구조 안전성 평가 (An Assessment of Structure Safety for Basic Insulation Panel of KC-1 LNG Cargo Containment system under Sloshing Load)

  • 진교국;오병택;김영균;윤인수;양영철
    • 한국가스학회지
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    • 제17권2호
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    • pp.85-89
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    • 2013
  • 한국형 LNG선 화물창(KC-1)의 개발은 LNG선의 핵심기술인 화물창시스템의 원천기술을 확보하여 외화절감 및 조선 산업의 경쟁력을 높이는데 그 목적이 있다. 화물창 내부의 액체가 선박의 모션에 의해 생기는 슬로싱 충격 하중에 대한 LNG선의 화물창의 구조 안전성 평가는 중요한 설계 요소가 되었다. 슬로싱 현상에 의한 구조 안전성을 평가하는 가장 이상적인 방법은 유체 영역과 화물창 구조의 상호 작용을 완벽하게 구현하는 것이다. 그러나 유체-구조 연성해석은 방대한 계산 시간과 결과의 정확성을 보장하기 어렵기 때문에 불규칙적인 슬로싱 압력을 삼각파의 형태로 이상화하여 구조 안전성을 평가하였다. 따라서 본 연구에서는 슬로싱 압력은 15/1000초 동안에 최대 10bar의 압력으로 가정한 삼각파로 고려하였고, 해석 결과 한국형 LNG선 화물창(KC-1)의 보냉 판넬은 슬로싱 하중에 대해 구조적으로 건전한 것으로 평가되었다.

배관의 형상 및 내부유체 유동이 배관계의 진동특성에 미치는 영향 (Effects of Curved Pipe Geometry and Inside Fluid Flow on the Vibrational Characteristics of Pipe Systems)

  • 최명진
    • 한국가스학회지
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    • 제20권6호
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    • pp.58-64
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    • 2016
  • 본 연구에서는 굴곡진 배관에서 내부 유체의 유동속도의 변화에 따른 진동특성을 고찰 하였다. 해밀톤의 원리에 근거하여 운동방정식을 유도하고 굽어진 배관계의 유한요소 방정식을 구성한 후, 진동수 방정식을 풀이하여 고유 진동수를 구하였다. 곡관부에 가해지는 초기 인장력을 무시하였을 경우에는 내부 유체의 유동속도가 증가함에 따라 파이프의 고유진동수의 값은 감소하였다. 초기 인장력을 고려할 경우에는 내부 유동속도의 변화에 상관없이 파이프의 고유진동수가 변하지 않았다. 배관의 자유진동 평가 시, 정확한 고유진동수를 구하기 위해서는 시스템 운동방정식을 구성할 때, 초기인장력을 반드시 고려하여야한다. 공진을 회피하기 위해서는 파이프의 강성 및 지지점의 위치를 변화시킴으로써 시스템의 기계적 성질을 조절해야 한다. 고유진동수는 가진 진동수 범위로부터 이격시켜야 한다. 엘보우의 각도는 제1차 고유진동수에 영향을 미치지 않음이 고찰되었으나, 3차 모드나 그 이상의 고주파 모드에서는 영향을 미쳤다.

CA기반의 다방향 보행자 시뮬레이션 모형개발 (Multi-directional Pedestrian Model Based on Cellular Automata)

  • 이준;배윤경;정진혁
    • 한국도로학회논문집
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    • 제12권4호
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    • pp.11-16
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    • 2010
  • 보행교통류를 주제로 다양한 연구들이 진행되었지만 초기의 보행연구는 차량의 교통류이론을 그대로 적용하여 해석하기도 하였다. 최근 보행교통류에 대한 다양한 모형들이 제시되고 있으며, 특히 CA모형은 보행교통류를 위한 시뮬레이션 모형으로 빈번하게 사용되고 있다. 대표적인 CA 모형으로 가스입자의 움직임을 이용하여 양방향의 보행교통류를 설명하기도 하였는데 초기에는 정방형의 Gas-lattice 모형이 제안되었으며 이후에 정육방 Gas-lattice 모형을 이용하여 보행자의 움직임과 회피를 묘사하기도 하였다. 하지만 이러한 모형들은 보행자의 움직임을 편의임의보행으로 가정하였기 때문에 단일방향으로의 움직임만을 설명할 수 있었다. 본 연구에서 제시된 MLPM(the Multi-Layer Pedestrian Model)은 어떤 공간에서 복수개의 기종점을 가진 경우에도 현실적인 보행자의 움직임을 설명할 수 있는 모형이다.

액체 로켓 엔진 스태틱 실 개발 (Development of Static Seal for a Liquid Rocket Engine)

  • 전성민;윤석환;정태검
    • 항공우주시스템공학회지
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    • 제16권4호
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    • pp.53-59
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    • 2022
  • 액체 로켓 엔진의 연소기, 터보펌프, 가스발생기, 밸브 등 주요 구성품 조립 부위에는 고압의 고온 가스와 극저온 유체의 기밀을 위해 스태틱 실이 사용된다. 스태틱 실은 조립 부위의 상대적 움직임이 없는 기밀 부위에 적용되는데, 극저온 및 고온 환경에서의 열팽창과 수축은 조립부에서 원치 않는 누설을 야기할 수 있기에 효과적인 스태틱 실 설계가 필수적이다. 조립성 개선을 위하여 비정렬 조립이 가능한 구면 플랜지가 체결부에 사용되는데, 구면 플랜지의 회전이 가능하도록 스태틱 실 역시 기능이 추가된 다. 본 연구에서는 스태틱 실 적용 주요 부위의 모사 플랜지 시험기를 제작하여 구조 해석과 함께 기밀시험을 수행하여 설계된 스태틱 실의 구조 건전성을 확인하였다.

How Supernovae Ejecta Is Transported In A Galaxy: DependenceOn Hydrodynamic Schemes In Numerical Simulations

  • Shin, Eun-jin;Kim, Ji-hoon
    • 천문학회보
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    • 제44권2호
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    • pp.48.4-48.4
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    • 2019
  • We studied the metal-distribution of isolated Milky-way mass galaxy using various hydrodynamic solvers and investigated the difference of the result between AMR and SPH codes. In particle-based codes, physical quantities like mass or metallicity defined in each particle are conserved unless being injected explicitly by the effect of the supernova, whereas in the Eulerian codes the diffusion is simply accomplished by hydro-equation. Therefore, without including explicit physics of diffusion on the SPH- codes, the metal mixing in the galaxy or CGM only can be accomplished by the direct motion of the particles, however, the standard-SPH codes depress the instability of the turbulent fluid mixing. In this work, we simulated under common initial conditions, common gas-physics like cooling-heating models, and star-formation feedback using ENZO(AMR) GIZMO and GADGET-2 codes. We additionally included a metal-diffusion algorithm on the SPH-codes, which follows the subgrid-turbulent mixing model investigated by Shen et al. (2010) and compared the effect of the metal-outflow on the halo region of the galaxy in different hydro-solvers. We also found that for the implementation of the diffusion scheme in the SPH-codes, the existence of a sufficient number of the gas-particles, which is the carrier of the metals, is necessary. So we tested a new initial condition for proper implementation of the diffusion scheme on the SPH simulations. By comparing the metal-contamination of the circumgalactic medium with different hydrodynamics models, we quantify the diffusion strength of AMR codes using diffusion parameterization of the SPH codes and also suggest the calibration solutions in the different behavior of codes in metal-outflow.

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부엌 수납장 설계 기준 설정을 위한 기초적 연구 (An Experimental Study for the Design of Household-Storage Facilities)

  • 최재순
    • 대한가정학회지
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    • 제20권4호
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    • pp.155-168
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    • 1982
  • What is attempted here is to find out an optimum method for the design of physical environments that could save human energy expenditures and safely perform household duties. There are, if any, very little amount of research done in this area. This is particulary so when the work relates to the designing of household storage facilities in the light of the energy metabolism of human body. The first step to this study, therefore, is to find out the ways by which we can determine the energy metabolism of human body accurately. To measure the volume and the concentration of human respiration continuously and automatically, a new apparatus is selected here. This includes the recording system with the Wright Respirometer and the Expired Gas Analyzer as well as the computer system to multiply volume by concentration of human respiration and to integrate them for a given time. Then, the author experimented on the reliability of this apparatus and came to the conclusion that this apparatus satisfied our need to research the energy metabolism of human body. Next, the general plan and procedures to experiment with this apparatus have been determined as follows: 1) subjects are three young and sound females. Their physical characteristics are shown in Table 1 and most approximates the standard characteristics of Japanese females, 2) height of open shelves is selected in such away as to correspond to the respective height of each subject(see Table 2), 3) utensils to be stored are box shaped object, which weight is 0.5kg, 1.0kg, 2.0kg or 3.0kg, 4) working motions are given while one or two hands as to place utensil on each shelf from the standard working board, 85 cm in height and then to place back it on the board from the shelf and repeated in constant velocity as 10 times per a minute, 5) each posture of motion is chosen by each subject in free, 6) procedures of measurement of human energy metabolism ard shown at(6), 1, Section 3 as specific methods for using this apparatus. Findings of this study are as follows: 1. Human energy expenditures for storing utensils on shelves by each subject are shown in quantity more accurately than in any other studies, under varying conditions about height of shelves, load of utensils and working motion with one hand and two hands (see Fig. 8~13 and Table 3). 2. Experimental formulae of human energy expenditure for that work are shown as formula (8), (9) and (10), to generalize results of 1. and to apply those for working motion under given conditions. 3. As results of analysis on gained data, we are able to show the standard model of human energy expenditures for storing untensils on shelves by the standard Japanese female (see Table 7 and Fig. 14).

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Piston Crevice Hydrocarbon Oxidation During Expansion Process in an SI Engine

  • Kyoungdoug Min;Kim, Sejun
    • Journal of Mechanical Science and Technology
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    • 제17권6호
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    • pp.888-895
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    • 2003
  • Combustion chamber crevices in SI engines are identified as the largest contributors to the engine-out hydrocarbon emissions. The largest crevice is the piston ring-pack crevice. A numerical simulation method was developed, which would allow to predict and understand the oxidation process of piston crevice hydrocarbons. A computational mesh with a moving grid to represent the piston motion was built and a 4-step oxidation model involving seven species was used. The sixteen coefficients in the rate expressions of 4-step oxidation model are optimized based on the results from a study on the detailed chemical kinetic mechanism of oxidation in the engine combustion chamber. Propane was used as the fuel in order to eliminate oil layer absorption and the liquid fuel effect. Initial conditions of the burned gas temperature and in-cylinder pressure were obtained from the 2-zone cycle simulation model. And the simulation was carried out from the end of combustion to the exhaust valve opening for various engine speeds, loads, equivalence ratios and crevice volumes. The total hydrocarbon (THC) oxidation in the crevice during the expansion stroke was 54.9% at 1500 rpm and 0.4 bar (warmed-up condition). The oxidation rate increased at high loads, high swirl ratios, and near stoichiometric conditions. As the crevice volume increased, the amount of unburned HC left at EVO (Exhaust Valve Opening) increased slightly.

고속 어뢰의 인공 초공동 특성에 대한 실험 연구 (Experimental Study on Artificial Supercavitation of the High Speed Torpedo)

  • 안병권;정소원;김지혜;정영래;김선범
    • 한국군사과학기술학회지
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    • 제18권3호
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    • pp.300-308
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    • 2015
  • Recently supercavitating underwater torpedo moving at high speed (over 200 knots) has been interested for their practical advantage of the dramatic drag reduction. Cavitator located in front of the torpedo plays an important role to generate a natural supercavity and control the motion of the object. Supercavity can be created artificially by injection of compressed gas from the rear of the cavitator at a relatively low speed. In this paper, we investigated physical characteristics of artificial supercavities through cavitation tunnel experiments. One of the main focuses of the study was to measure pressure inside the cavity, and examined variation of the gravity effects appearing according to different amount of injected air. It was also found that a stable supercavity could be sustained at injection rates less than that required to form the stable supercavity because of hysteresis effect.

내재적 경계 조건을 이용한 자유표면 유동 수치해석 (Numerical Simulation on the Free Surface using implicit boundary condition)

  • 이공희;백제현
    • 한국전산유체공학회지
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    • 제4권1호
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    • pp.19-26
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    • 1999
  • This paper describes a numerical method for predicting the incompressible unsteady laminar three-dimensional flows with free-surface. The Navier-Stokes equations governing the flows have been discretized by means of finite-difference approximations, and the resulting equations have been solved via the SIMPLE-C algorithm. The free-surface is defined by the motion of a set of marker particles and the interface behaviour was investigated by means of a "Lagrangian" technique. Using the GALA concept of Spalding, the conventional mass continuity equation is modified to form a volumetric or bulk-continuity equation. The use of this bulk-continuity relation allows the hydrodynamic variables to be computed over the entire flow domain including both liquid and gas regions. Thus, the free-surface boundary conditions are imposed implicitly and the problem formulation is greatly simplified. The numerical procedure is validated by comparing the predicted results of a periodic standing waves problems with analytic solutions. The results show that this numerical method produces accurate and physically realistic predictions of three-dimensional free-surface flows.

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