• Title/Summary/Keyword: 불확도측정

Search Result 337, Processing Time 0.021 seconds

Measurement Uncertainty Analysis of a Turbine Flowmeter for Fuel Flow Measurement in Altitude Engine Test (엔진 고공 시험에서 연료 유량 측정용 터빈 유량계의 측정 불확도 분석)

  • Yang, In-Young
    • The KSFM Journal of Fluid Machinery
    • /
    • v.14 no.1
    • /
    • pp.42-47
    • /
    • 2011
  • Measurement uncertainty analysis of fuel flow using turbine flowmeter was performed for the case of altitude engine test. SAE ARP4990 was used as the fuel flow calculation procedure, as well as the mathematical model for the measurement uncertainty assessment. The assessment was performed using Sensitivity Coefficient Method. 11 parameters involved in the calculation of the flow rate were considered. For the given equipment setup, the measurement uncertainty of fuel flow was assessed in the range of 1.19~1.86 % for high flow rate case, and 1.47~3.31 % for low flow rate case. Fluctuation in frequency signal from the flowmeter had the largest influence on the fuel flow measurement uncertainty for most cases. Fuel temperature measurement had the largest for the case of low temperature and low flow rate. Calibration of K-factor and the interpolation of the calibration data also had large influence, especially for the case of very low temperature. Reference temperature, at which the reference viscosity of the sample fuel was measured, had relatively small contribution, but it became larger when the operating fuel temperature was far from reference temperature. Measurement of reference density had small contribution on the flow rate uncertainty. Fuel pressure and atmospheric pressure measurement had virtually no contribution on the flow rate uncertainty.

Development of Uncertainty Evaluation Model for Vacuum Measurement Standards (진공측정표준의 불확도 평가모델 개발)

  • Hong, S.S.;Lim, J.Y.;Shin, Y.H.
    • Journal of the Korean Vacuum Society
    • /
    • v.20 no.5
    • /
    • pp.313-321
    • /
    • 2011
  • The Korea Research Institute of Standards and Science (KRISS) has three major vacuum systems: an ultrasonic interferometer manometer (UIM), a static volume expansion system (SVES), and an orifice-type dynamic expansion system (ODES). For each system explict measurement model equations with multiple variables are respectively given. According to ISO standards, all these system variables errors were used to calculate the expanded uncertainty (U).

Measurement of Rotor Blade Deformation and Motions using Stereo Pattern Recognition Method (SPR 기법을 이용한 회전 블레이드의 변형 및 모션 측정)

  • Park, Jae-Won;Kim, Hong-Il;Han, Jae-Hung;Kim, Do-Hyung;Song, Keun-Woong
    • Journal of the Korean Society for Aeronautical & Space Sciences
    • /
    • v.39 no.5
    • /
    • pp.442-450
    • /
    • 2011
  • A measurement system using stereo pattern recognition (SPR) method was configured to measure the rotor blade deformations and motions. An SPR-based measurement system was prepared using six stereo cameras. Through a series of experiments to evaluate the system measurement uncertainty, it was verified that the SPR system had less than 0.2mm standard uncertainty. The combined standard uncertainties for the lead-lag, flapping, and pitching motions were estimated as 0.296mm, 0.209mm, and $0.238^{\circ}$, respectively. The SPR system was installed at a general small-scaled rotor test system at Korea Aerospace Research Institute. The blade motions and elastic deformation were successfully measured under the conditions with rotating speeds of 360rpm or 589rpm, and collective pitch angles of $0^{\circ}$, $4^{\circ}$, or $6^{\circ}$. The advantages of the SPR system was analyzed in comparison with the measurement system used in Higher Harmonic Control Aeroacoustic Rotor Test -II.

Uncertainty Analysis on Vertical Wind Profile Measurement of LIDAR for Wind Resource Assessment (풍력자원평가를 위한 라이다 관측 시 풍속연직분포 불확도 분석)

  • Kim, Hyun-Goo;Choi, Ji-Hwee;Jang, Moon-Seok;Jeon, Wan-Ho
    • 한국신재생에너지학회:학술대회논문집
    • /
    • 2010.06a
    • /
    • pp.185.1-185.1
    • /
    • 2010
  • 원격탐사(remote sensing)란 관측 대상과의 접촉 없이 멀리서 정보를 얻어내는 기술을 말한다. 기상관측분야에는 이미 소다(SODAR) 장비가 폭넓게 사용되거 왔으나 최근 풍력자원평가(wind resource assessment)를 위한 풍황측정에 SODAR와 더불어 라이다(LIDAR)가 적극적으로 활용되기 시작하고 있다. 참고로 SODAR(SOnic Detection And Ranging)는 수직 및 동서 남북 방향으로 음파를 발생시키고 대기유동에 의해 산란 반사된 에코를 수신하여 진동수 변화와 반사에코 강도를 측정하여 각 방향의 에코자료를 벡터 합성함으로써 풍향 및 풍속을 산출하는 원리이다. 반면 LIDAR(Light Detection And Ranging)는 비교적 최근에 풍황측정 용도로 개발된 레이저 탐지에 바탕을 둔 원거리 센서로, 공기입자(먼지, 수증기, 구름, 안개, 오염물질 등)에 의해 산란된 레이저 발산의 도플러 쉬프트(Doppler shift)를 이용하여 풍향 및 풍속을 측정하는 원격탐사 장비이다. 풍력자원평가 측면에서 라이다는 그 정확도가 IEC61400-12에 의거한 풍황탑(met-mast) 측정자료 다수와의 비교검증 실측평가(Albers et al., 2009)를 통하여 입증된 바 있다. 한편 한국에너지기술연구원에서 운용 중인 라이다 시스템은 그림 1의 우측 그림과 같이 1초에 $360^{\circ}$를 스캔하여 50지점에서 반사되는 레이저를 스펙트럼으로 측정하되 설정된 관측높이에서 풍속은 샘플링 부피(sampling volume)의 평균값으로 정의된다. 그런데 샘플링 부피는 설정된 관측높이로부터 상하 12.5m, 총 25m의 높이구간에서 관측한 스펙트럼의 평균값을 그 중앙지점에서의 풍속으로 환산하는 알고리듬(algorithm)을 채택하고 있다. 따라서 비선형적으로 변화하는 풍속연직분포 관측 시 풍속환산 알고리듬에 의한 측정오차가 개입될 가능성이 존재하는 것이다. 이에 본 연구에서는 라이다에 의한 풍속연직분포 측정 시 샘플링 부피의 구간 평균화 과정에서 발생하는 불확도(uncertainty)를 정량적으로 분석함으로써 라이다에 의한 풍속연직분포 관측의 불확도를 정량평가하고자 한다.

  • PDF

Uncertainties in Pressure Calibration of Laboratory Standard Microphones by Reciprocity Technique (가역방법에 의한 표준 마이크로폰 음압교정의 불확도)

  • 서상준;권휴상;이용봉;서재갑
    • The Journal of the Acoustical Society of Korea
    • /
    • v.23 no.2
    • /
    • pp.90-102
    • /
    • 2004
  • According to the Mutual Recognition Arrangement (MRA), the calibration and/or test laboratories should satisfy the management and technical requirements ISO 17025 or equivalent. Chapter 5, Section 5.10.4 of the technical requirement of ISO 17025 suggests the required informations for calibration certificates, one of them is to state the uncertainty of measurement. The uncertainties of measurement in reciprocity calibration of standard laboratory microphone were calculated. The expanded uncertainties for 1 and 1/2 inch microphones were 0.03 dB in the middle frequency range and they increased up to 0.10 dB and 0.11 dB at 20 Hz, 0.07 dB and 0.08 dB at high frequency, respectively.

자기 표준

  • Park, Po-Gyu;Kim, Yeong-Gyun;Kim, Gyu-Tae
    • 전기의세계
    • /
    • v.58 no.11
    • /
    • pp.51-56
    • /
    • 2009
  • 산업이 고도로 발달함에 따라 자기장의 정밀 측정 및 발생 등에 대한 관심이 증대되고 있다. 정밀 자기장 측정기를 이용하여 생체.의료공학, 지하광물 및 매설물 탐사, 지진 및 전파방해 예측, 지구물리탐사 및 우주 자기장 분포 측정, 항법장치, 국방 및 우주항공분야, 송유관 부식 연구 등에 활용되고 있다. KRISS에서는 첨단 자기분야의 표준/정밀측정 보급 지원을 위해 자기장 범위 $20\;{\mu}T$ ~ 1.2 mT에서 비자성 실험실, 지구자기장 상쇄장치 등을 이용하여 불확도 (4 ~ 21) ${\mu}T$/T, 자기장 범위 1 mT ~ 2.5 T에서는 헬름홀스 코일, 전자석, NMR 자기장 측정기 등을 사용하여 불확도 (10 ~ 80) ${\mu}T$/T의 표준을 유지하고 있다. 자기장는 자속(magnetic flux) 및 자속밀도(magnetic flux density)로 나눌수 있으며, 그 SI 단위는 웨버(Wb, weber)와 테슬러(T, tesla)이다. 그러나 아직까지 자성재료 등의 특성을 측정하는 전문가들은 SI 단위보다는 지금까지 널리 사용되어온 cgs 단위인 맥스웰(Mx, maxwell), 가우스(G, gauss), 외르스테드(Oe, oersted) 등에 익숙해져 있다. 앞으로 자기분야 전문가들도 기본 SI 단위로부터 소급이 유지되는 SI 자기단위의 사용을 기대해 본다.

  • PDF

A Study on the Measurement Uncertainty of Pipe Prover (파이프 프루버의 측정불확도에 관한 연구)

  • Lim, Ki-Won
    • Transactions of the Korean Society of Mechanical Engineers B
    • /
    • v.24 no.10
    • /
    • pp.1388-1398
    • /
    • 2000
  • A pipe prover is a flowmeter calibrator used in flow measurement field. Gravimetric and volumetric methods were applied to determine the basic volume of the pipe prover. Uncertainty of its basic volume measurement was evaluated in accordance with the procedure recommended by International Organization for Standardization. The combined standard uncertainty of determining the basic volume was estimated from the sensitivity coefficient and the standard uncertainty of independent variables. It was found that the uncertainties of the weighing and volume measurements have dominant influence on that of the basic volume determination. With the quantitative analysis of the sensitivity coefficient, the contribution of the each variable uncertainty to the combined standard uncertainty of the basic volume is shown clearly.

Development of Inner Pressure Measurement System for Hermetic Sealed Small Components (밀폐된 소형부품의 내부압력 측정장치 개발)

  • Hong, S.S.;Lim, I.T.;Lim, J.Y.
    • Journal of the Korean Vacuum Society
    • /
    • v.21 no.1
    • /
    • pp.1-5
    • /
    • 2012
  • The measurement device of internal pressures of small components sealed hermetically was developed. The internal pressure of a sample measured with this device was 43.151 kPa, and the expanded uncertainty ($\kappa$=2) was 741 Pa. The resultant measurement ability of internal pressures in small vacuum components, which had been almost impossible previously, shows the possibility of internal vacuum detection of hermetically sealed parts.

A Study on the Measurement Uncertainty of Flowmeter Calibrator (유량계 교정장치의 측정불확도에 관한 연구)

  • Im, Gi-Won
    • Transactions of the Korean Society of Mechanical Engineers B
    • /
    • v.25 no.4
    • /
    • pp.561-571
    • /
    • 2001
  • The standard uncertainty of flowrate measurement is obtained by combining that of independent variables. Gravimetric and volumetric method were applied to determine the flowrate and the standard uncertainties of flowrate measurement by both methods were evaluated in accordance with the procedure recommended by International Organization for Standardization. The combined standard uncertainties of determining the flowrate were estimated from the sensitivity coefficient and the standard uncertainty of independent variables. For practical application, the methods for evaluating and expressing uncertainty in flow measurement were discussed. It was found that the uncertainties of the weighing and time measurement in gravimetric method, the volume and time measurement in volumetric method have dominant influence on that of flowrate measurement. With the quantitative analysis of the sensitivity coefficient, the contribution of the each variable uncertainty to the combined standard uncertainty of flowrate measurement is shown clearly.

Validation and Measurement Uncertainty Estimation in the Testing Method of Cable-harness Shielding Effectiveness (통신케이블 차폐시험방법의 유효성 확인 및 측정불확도 추정)

  • 김종상;조남호
    • Journal of the Korea Society of Computer and Information
    • /
    • v.7 no.1
    • /
    • pp.8-19
    • /
    • 2002
  • The laboratory shall validate nonstandard methods, laboratory-designed/ /developed methods, standard methods used outside ther intended scope, amplifications and modifications of standard methods to confirm that the methods are fit for the intended use. Therefor in this paper we propose the Validation methods using the statistical analysis and estimating the uncertainty of measurements estimations in the testing method of cable-harness shielding effectiveness

  • PDF