• 제목/요약/키워드: Velocity profile

검색결과 1,020건 처리시간 0.029초

장입물 층상구조에 따른 고로내 운전상황 변화 연구 (A Study on Operation Condition of Blast Furnace According to Burden Distribution)

  • 양광혁;최상민;정진경
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2006년도 제33회 KOSCO SYMPOSIUM 논문집
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    • pp.145-150
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    • 2006
  • At the furnace top, the distribution of charging coke and ore is adjusted to control the reducing gas flow distribution in the furnace. It is necessary to predict operation condition of blast furnace according to the burden profile to judge whether charging is properly conducted In this study, We propose the model for predicting while layer structures whithin furnace when top burden profile was given. Layer structure of coke and ore could be predicted by top burden profile and solid velocity. Solid velocity is assumed as potential flow. Potential function distribution and timeline are also calculated using solid velocity field. The Calculation is conducted for different burden profile cases. As the result burden distribution and grid structure, which is deformed to match the layer structure in shaft and deadman profile. Gas flow was calculated using this grid, and calculated results are compared with each other.

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HWAW방법을 이용한 기존 건물 내진 보강을 위한 건물 하부지반 전단파 속도 주상도 결정 (Determination of Shear Wave Velocity Profile under Existing Building for Site Response Analysis Using HWAW Method)

  • 박형춘;황혜진
    • 한국지반공학회논문집
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    • 제33권5호
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    • pp.15-23
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    • 2017
  • 기존 구조물의 내진 보강을 위해서는 구조물이 경험하게 될 지진 하중의 결정이 매우 중요하며 이러한 지진 하중의 크기는 구조물 하부 지반의 전단파 속도 주상도에 의해 큰 영향을 받는다. 기존 건물 하부지반의 전단파 속도 주상도를 결정하기 위해서는 매우 협소한 공간에서 시험이 가능하며, 배경잡음의 영향을 효과적으로 배제할 수 있고, 하부지반 물성 변화에 민감하게 반응할 수 있는 시험법이 필요하다. 본 연구에서는 이러한 조건들을 만족시킬 수 있는 HWAW방법을 구조물 하부지반 전단파 속도 주상도 평가에 적용하였다. 제안된 방법의 타당성을 수치 모의 실험과 현장 적용을 통해 평가하였으며, 이를 통해 제안된 방법의 적용성을 확인할 수 있었다.

PIV를 이용한 비만관내 유속 분포 측정 (Measurements of Velocity Profiles Inside a Partially Filled Pipeline Using PIV)

  • 최중근;성재용;이명호
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2006년도 하계학술발표대회 논문집
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    • pp.773-778
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    • 2006
  • Velocity profiles inside a partially filled pipline have been investigated experimentally. To measure the velocity fields, a particle image velocimetry (PIV), which is a recent quantitative visualization technique, is applied. The velocity profile inside a circular pipe is well known, but if the pipe is partially filled, the problem is entirely different in the sense that the velocity distribution is significantly affected by the slope of pipe and filled water level, and so on. In order to calculate exact flow rate in the open channel or partially filled pipeline, three-dimensional velocity distributions at a given cross-sectional area are measured and compared the flow rates with the previously known empirical formula of Manning equation. The results show that the velocity profiles at center plane is considerably different from each other when the slope and water level change. Thus, The three-dimensional velocity profile can be the most plausible estimate for the exact flow rate.

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정상유동 장치에서 유동 특성 평가 방법에 대한 연구(3) - 유속분포(1) (Study on Evaluation Method of Flow Characteristics in Steady Flow Bench(3) - Velocity Profile(1))

  • 박찬준;성재용;엄인용
    • 한국자동차공학회논문집
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    • 제24권2호
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    • pp.169-182
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    • 2016
  • This paper is the third investigation on the evaluation methods of flow characteristics in a steady flow bench. In the previous works, several assumptions used in the steady flow bench were examined and the flow characteristics were estimated both by the conventional impulse swirl meter and a particle image velocimetry at 1.75B position. From these works, it was concluded that the assumption of the solid rotation might cause serious problems and both of the eccentricity and the velocity profile distort the flow characteristics when using the ISM at 1.75B plane. Therefore, the understanding of the detail velocity profiles is very important to keep discussing the issues about the steady flow evaluation method. For this purpose, the planar velocity profiles were measure at 1.75B position by particle image velocimetry and the characteristics were examined according to the valve angles and lifts. The results show that the planar velocity profiles of 11, 16, $21^{\circ}$ valve angle heads according to the lift are similar to each other, however, that of $26^{\circ}$ angle is an exceptional case in the all aspects. In addition, the swirl behaviors are not apparent up to 6~8 mm lift under the $21^{\circ}$ angle and somewhat arranged motions are observed over the whole plane near the highest lift. At this point, the narrower the angle, the lower the lift at which the swirl motions become clear. On the other hands, when the angle is $26^{\circ}$, the center of swirl is always farthest from the cylinder center and only the indistinct swirl is observed even if at the highest lift. Also, all the swirl centers are quite apart from the cylinder center so that the effect of eccentricity may not be negligible at 1.75B regardless the valve angle. Related to the tangential velocity along with the radial direction, the bands of the velocity distribution are very wide and the mean velocities of cylinder center basis are lower than the velocity which is assumed in the ISM evaluation. Lastly, the mean tangential velocity profiles of swirl center basis are sometimes higher than that of ISM-assumed up to 0.6 non-dimensional distance less than 6mm lift, however, as the lift increases the profiles are different according to the angles and profile $11^{\circ}$ is the most closed to the ideal profile. Consequently, the real velocity profile is far from the assumption of ISM evaluation.

속도 프로파일 기반의 가감속제어를 통한 DC 모터의 토크제어 (Torque Control of DC Motor Using Velocity Profile Based Acceleration/Deceleration Control)

  • 이종연;현창호
    • 한국지능시스템학회논문지
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    • 제22권1호
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    • pp.36-41
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    • 2012
  • 본 논문에서는 자동물류운반시스템(AGV)에 사용되는 가감속 제어를 위한 속도 프로파일 기반의 가감속 위치제어를 DC 모터 실험을 통한 토크변화에 대해서 고찰한다. 속도 프로파일을 이용한 모터의 가감속 제어는 모터에 걸리는 부하를 줄임으로써 시스템의 무리한 구동을 방지하고 수명을 연장 시키는 장점을 가지고 있다. 체계적인 설계 구조를 갖는 상태 피드백 제어기를 이용하여 속도 프로파일을 이용한 가감속 제어 기반의 DC 모터의 위치제어와 단순 위치제어를 모의실험을 통하여 비교함으로써 토크 크기를 비교 관찰한다. 또한 CEM-IP-01의 카트 위치 제어 실험을 통하여 이를 검증한다.

식생수로의 유속분포에 관한 실험적 연구 (An Experimental Study on Velocity Profile in a Vegetated Channel)

  • 권도현;박성식;백경원;송재우
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2004년도 학술발표회
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    • pp.957-960
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    • 2004
  • From a water-environmental point of view, with a change of understanding and concern about vegetation, it changes that vegetation acts as stability of channel and bed, providing habitats and feed for fauna, and means improving those with appreciation of the beautiful but resistant factor to the flow So, it becomes important concern and study subjects that turbulent structure by vegetation, shear stress and transport as well as roughness and average velocity by vegetation. But from a hydraulic point of view, vegetation causes resistance to the flow and can increase the risk of flooding, Therefore, this thesis concern the flow characteristics in vegetated open channels. According to the experimental results, $z_0$ was on an average $0.4h_p$ in a vegetated open channel. So, the elevation corresponding to zero velocity in a vegetated channel was the middle of roughness element. The limit for logarithmically distributed profile over the roughness element was from $z_0$ to $0.80h_{over}$ for a vegetated channel. Among the existing theory, the method of Kouwen et al.(1969), Haber(1982), and El-Hakim and Salama(1992) except Stephan(2001) gave a very good value compared to the measured velocity profile.

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동적 환경을 위한 A* 알고리즘 기반의 경로 및 속도 프로파일 설계 (A Path & Velocity Profile Planning Based on A* Algorithm for Dynamic Environment)

  • 권민혁;강연식;김창환;박귀태
    • 제어로봇시스템학회논문지
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    • 제17권5호
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    • pp.405-411
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    • 2011
  • This paper presents a hierarchical trajectory planning method which can handle a collision-free of the planned path in complex and dynamic environments. A PV (Path & Velocity profile) planning method minimizes a sharp change of orientation and waiting time to avoid a collision with moving obstacle through detour path. The path generation problem is solved by three steps. In the first step, a smooth global path is generated using $A^*$ algorithm. The second step sets up the velocity profile for the optimization problem considering the maximum velocity and acceleration. In the third step, the velocity profile for obtaining the shortest path is optimized using the fuzzy and genetic algorithm. To show the validity and effectiveness of the proposed method, realistic simulations are performed.

DRRD 캠 형상 최적 설계를 위한 다항식 합성법과 캠 로우브 면적에 미치는 형상 계수들의 영향 (A Multi-Polynomial Synthesis Method for DRRD Cam Profile Optimizations and Effects of Shape Factors on the Cam Lobe Area)

  • 김도중;박성태
    • 한국자동차공학회논문집
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    • 제2권4호
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    • pp.59-71
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    • 1994
  • A multi-polynomial method is proposed to synthesize DRRD cam profiles. A cam lift duration s divided into 10 sections, each of them is expressed by a polynomial equation. 12 design variables are extracted from the cam profile displacement, velocity, and acceleration curves. Because all the design variables have physical meanings which are familiar to most cam designers, it is easy to imagine a profile shape from the design variables. The design envelope of the method is wide enough to be used in DRRD automotive cam designs. Polydyne cams, widely used in automotive engines, are included into the envelope. Unlike Polydyne cams, the method provides capability of wide velocity factor variations, which gives much flexibility in flat-faced tappet design. Area factor of profiles designed by the method can be increased 5-10% compared to those of Polydyne cams without increasing acceleration factor. The method is especially useful for cam profile optimizations.

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매끄러운 하상위 난류의 내부 영역 유속 분포 공식 (An Inner Region Velocity-Profile Formula of Turbulent Flows on Smooth Bed)

  • 류권규;윤병만
    • 한국수자원학회논문집
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    • 제39권9호
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    • pp.737-744
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    • 2006
  • 난류의 내부 영역의 유속은 단순한 공식으로 표현하기 매우 어려운 형태를 가지고 있다. 이 속도 분포를 기술하는 여러 가지 공식들이 제안된 바 있지만, 모든 공식들은 많은 항들을 가지거나 적분형 또는 음함수꼴을 가지고 있다. 이것은 이 식들이 적용하기 힘들거나, 매개 변수들을 추정하기 어렵다는 것을 의미한다. 이 연구에서는 매끄러운 바닥 위를 흐르는 난류 내부 영역의 유속 분포를 표현할 수 있는 간단한 형태의 새로운 공식을 제안하였다. 이 공식은 전통적인 대수 법칙에 감쇄 함수를 곱한 형태이다. 단 하나의 추가적인 매개 변수를 도입하여, 전체 내부 영역의 유속 분포를 적절하게 표현할 수 있었다. 이 공식은 벽법칙이 성립하는 바닥 근처의 유속과 대수 법칙이 성립되는 중복 영역의 유속 분포까지를 적절하게 나타낼 수 있다. 또한, 추가된 매개 변수인 감쇄 계수는 쉽게 추정할 수 있다. 이 변수는 Reynolds 수의 변화에 민감하지 않으며, 공식에 의하여 계산된 유속 분포도 또한 이 매개 변수의 변화에 대해서 민감하지 않다.

액체용 중량식 유량계 교정장치의 일방향 Diverter 특성연구 (Characteristics of Uni-directional Diverter for Gravimetric Calibration Facility)

  • 남기한;박종호;김홍집
    • 한국유체기계학회 논문집
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    • 제20권1호
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    • pp.59-64
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    • 2017
  • Diverter is an essential element in gravimetric calibration method of flowmeter. Error of diverter are influenced by flow velocity profile of nozzle outlet, motion velocity of diverter and detecting location. That's why, time detection position of diverter is tuned through repetitive test for minimizing error of diverter. Further the diverter must be compared with the other institutions test since the influence on the accuracy of the flow meter used in the test. In this paper, errors (flow velocity profile of nozzle outlet, motion velocity of diverter and detecting location) of diverter are decreased by produced uni-direction diverter and error of gravimetric calibration system is decreased. Uni-direction diverter is calibrated by gravimetric calibration system with precision flowmeter, the flowmeter is calibrated by pipe prover and other institutions and uni-direction diverter is evaluated. Uni-direction diverter is not influenced by flow velocity profile of nozzle outlet, motion velocity of diverter and detecting location. As a result, Uni-direction diverter can calibrate in wider scope since increasing ratio of maximum and minimum flow rate of uni-direction diverter.