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Investigation on Application of Parshall Flume for Flow Measurement of Low-Flow Season in Korea

References Oh, B. D. (2004). Flow Analysis of Parshall Flume Using FLOW-3D Model. Ph. D. dissertation, Chungbuk Nation University, South Korea. International Standards Organization. (1992). Measurement of Liquid Flow in Open Channels - Parshall and SANIIRI Flumes. ISO 9826:1992. Peck, H. (1998). Submerged flows in Parshall flumes. In Proceeding, National Conference, Hydraulic Division of the American Society of Civil Engineers. ASCE, Colorado Springs, Colorado, 1155

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Fusion Research of Electrical Tomography with Other Sensors for Two-phase Flow Measurement

References Li, H. Q. (1991). Two-Phase Flow Parameter Measurement and Applications. Hangzhou, China: Zhejiang University Press. Xu, L. A., Deng, X., Dong, F. (2000). The application of electrical process tomography technique in production. In Proceedings of the 6 th National Multiphase Flows Measurement Technology Conference / Journal of Northeastern University , 21 (S1), 1-5. Deng, X. (2001). Study of an Intelligent Measurement System of Two-Phase Flows Based on Electrical

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Gas–liquid Flow Pattern Recognition Based on Wavelet Packet Energy Entropy of Vortex-induced Pressure Fluctuation

References [1] Rouhani, S.Z., Sohal, M.S. (1983). Two-phase flow patterns: A review of research results. Progress in Nuclear Energy , 11 (3), 219-259. [2] Cheng, L., Ribatski, G., Thome, J.R. (2008). Twophase flow patterns and flow-pattern maps: Fundamentals and applications. Applied Mechanics Reviews , 61 (1), 050802. [3] Sun, Z. (2010). Mass flow measurement of gas-liquid bubble flow with the combined use of a Venturi tube and a vortex flowmeter. Measurement Science and Technology , 21 (5), 055403

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Experimental Study on EHD Flow Transition in a Small Scale Wire-plate ESP

R eferences [1] Robinson, M. (1971). Electrostatic Precipitation . New York: Wiley Interscience. [2] Oglesby, S., Nichols, G.B. (1978). Electrostatic Precipitation . New York: Marcel Dekker Inc. [3] Liang, W., Lin, T. (1994). The characteristics of ionic wind and its effect on electrostatic precipitators. Aerosol Science and Technology , 20 (4), 330-344. [4] Seok, J.P., Sang, S.K. (2000). Electrohydrodynamic flow and particle transport mechanism in electrostatic precipitators with cavity walls. Aerosol Science and Technology , 33 (3

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Analysis and Calculation of the Fluid Flow and the Temperature Field by Finite Element Modeling

, W., Zhang, T., Xu, Y. et al. (2016). The effects of fluid viscosity on the orifice rotameter. Measurement Science Review, 16 (2), 87-95. [5] Finlayson, B.A. (1970). Convective instability of ferromagnetic fluids. Journal of Fluid Mechanics , 40, 753-767. [6] Baker, R.C. (2004). The impact of component variation in the manufacturing process on variable area (VA) flowmeter performance. Flow Measurement and Instrumentation , 15 (4), 207-213. [7] Guiggiani, M. (1999). The evaluation of Cauchy principal value integrals in the boundary element

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Calibration of Mineralization Degree for Dynamic Pure-water Measurement in Horizontal Oil-water Two-phase Flow

multiphase pipelines. IEEE Transactions on Instrumentation and Measurement , 29 (1), 24-27. [4] Ye, J.M., Peng, L.H., Wang, W.R., Zhou, W.X. (2011). Optimization of helical capacitance sensor for void fraction measurement of gas-liquid two-phase flow in a small diameter tube. IEEE Sensors Journal , 11 (10), 2189-2196. [5] Zhai, L.S., Jin, N.D., Gao, Z.K., Wang, Z.Y. (2015). Liquid holdup measurement with double helix capacitance sensor in horizontal oil-water two-phase flow pipes. Chinese Journal of Chemical Engineering , 23 (1), 268-275. [6] Han, L

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Field Programmable Gate Array (FPGA) Respiratory Monitoring System Using a Flow Microsensor and an Accelerometer

based on micro machined polycrystalline thin film. Flow Measurement and Instrumentation, 22 (2), 126-130. [12] Laghrouche, M., Montes, L., Boussey, J., Meunier, D., Ameur, S., Adane, A. (2011). In situ calibration of wall shear stress sensor for micro fluidic application. In Proceedings of Eurosensors XXV, September 4-7, 2011, Athens, Greece. [13] Makhlouf, S., Laghrouche, M., Adane, A.E.H. (2016). Hot wire sensor-based data acquisition system for controlling the laminar boundary layer near plant leaves within a greenhouse. IEEE Sensors

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Analysis of ATE Measurability Using Information Flow Model

Analysis of ATE Measurability Using Information Flow Model

Since many test equipments can't be calibrated conveniently, this paper proposed a new concept named measurability to solve the problem. The measurability is defined, and its indexes are given in detail. Selected from the models of testability, the information flow model is used to analyze the ATE (automatic test equipment) measurability. The correlative matrix of information flow model is decided according to the trace chain. Finally, a practical example is given to show the analysis process.

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Development of the Vortex Mass Flowmeter with Wall Pressure Measurement

References [1] Deng, X., Yang, W.Q. (2012). Fusion research of electrical tomography with other sensors for two-phase flow measurement. Measurement Science Review, 12 (2), 62-67. [2] Hall, R. (1990) Measuring mass flow and density with Coriolis meters. In Tech , 37 (4), 45-46. [3] Baker, R.C. (2000). Flow Measurement Handbook . New York: Cambridge University Press. [4] Kim, S.D., Lee, H.J., Oh, B.D. (2010). Investigation on application of Parshal flume for flow measurement of low-flow

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The Effects of Fluid Viscosity on the Orifice Rotameter

References [1] Head, V.P., Hatboro, P.A. (1954). Coefficients of float-type variable-area flowmeters. Transactions of the ASME, 76, 851-862. [2] Schoenborn, E.M., Colburn, A.P. (1939). The flow mechanism and performance of the rotameter. Transactions of the American Institute of Chemical Engineers, 35, 359-389. [3] Whitewell, J.C., Plumb, D.S. (1939). Correlation of rotameter flow rates. Industrial & Engineering Chemistry, 31 (4), 451-456. [4] Polentz, L.M. (1961). Theory and operation of

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