Have a personal or library account? Click to login
Analysis and Calculation of the Fluid Flow and the Temperature Field by Finite Element Modeling Cover

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

Open Access
|Apr 2018

References

  1. [1] Dhamodaran, M., Dhanasekaran, R. (2014). Comparison of computational electromagnetics for electrostatic analysis. International Journal of Energy Optimization and Engineering, 3 (3), 86-100.10.4018/ijeoe.2014070106
  2. [2] Raine, A.B., Aslam, N., Underwood, C.P., Danaher, S. (2015). Development of an ultrasonic airflow measurement device for ducted air. Sensors, 15 (5), 10705-10722.10.3390/s150510705
  3. [3] Daev, Z.A. (2015). A comparative analysis of the discharge coefficients of variable pressure-drop flowmeters. Measurement Techniques, 58 (3), 323-326.10.1007/s11018-015-0708-0
  4. [4] Jiang, W., Zhang, T., Xu, Y. et al. (2016). The effects of fluid viscosity on the orifice rotameter. Measurement Science Review, 16 (2), 87-95.10.1515/msr-2016-0012
  5. [5] Finlayson, B.A. (1970). Convective instability of ferromagnetic fluids. Journal of Fluid Mechanics, 40, 753-767.10.1017/S0022112070000423
  6. [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), 207-213.10.1016/j.flowmeasinst.2004.03.002
  7. [7] Guiggiani, M. (1999). The evaluation of Cauchy principal value integrals in the boundary element method--a review. Mathematical and Computer Modelling, 15 (3), 175-184.
  8. [8] Schena, E., Massaroni, C., Saccomandi, P., Cecchini, S. (2015). Flow measurement in mechanical ventilation: A review. Medical Engineering & Physics, 37 (3), 257-264.10.1016/j.medengphy.2015.01.010
  9. [9] Ning, J., Peng, J. (2009). A temperature compensation method based on neural net for metal tube rotameter. In International Conference on Transportation Engineering 2009. ASCE, 2334-2339.10.1061/41039(345)386
  10. [10] Turkowski, M. (2004). Influence of fluid properties on the characteristics of a mechanical oscillator flowmeter. Measurement, 35 (1), 11-18.10.1016/j.measurement.2003.10.002
  11. [11] Turkowski, M. (2003). Progress towards the optimization of a mechanical oscillator flowmeter. Flow Measurement and Instrumentation, 14 (1-2), 13-21.10.1016/S0955-5986(02)00091-2
  12. [12] Gong, Y., Liu, Q.F., Zhang, C.L., Wu, Y., Rao, Y.R., Peng, G.D. (2015). Microfluidic flow rate detection with a large dynamic range by optical manipulation. IEEE Photonics Technology Letters, 27 (23), 2508-2511.10.1109/LPT.2015.2473836
  13. [13] Sadiku, M.N.O. (2007) Elements of Electromagnetics, 4th Edition. Oxford University Press, 740-748.
  14. [14] Thompson, E.G. (2004) Introduction to the Finite Element Method: Theory Programming and Applications. John Wiley & Sons.
  15. [15] Jin, J. (2002) Finite Element Method in Electromagnetics. Wiley.
Language: English
Page range: 59 - 64
Submitted on: Sep 12, 2017
|
Accepted on: Mar 20, 2018
|
Published on: Apr 4, 2018
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open

© 2018 M. Dhamodaran, S. Jegadeesan, R. Praveen Kumar, published by Slovak Academy of Sciences, Institute of Measurement Science
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.