258
Views
12
CrossRef citations to date
0
Altmetric
feature articles

Nonintrusive and Multidimensional Optical Diagnostics and Their Applications in the Study of Thermal-Fluid Systems

REFERENCES

  • Song, T.-H., Spectral Remote Sensing for Furnaces and Flames, Heat Transfer Engineering, vol. 29, no. 4, pp. 417–428, 2008.
  • Rosa, N.G., Linassier, G., Lecourt, R., Villedieu, P., and Lavergne, G., Experimental and Numerical Study of High-Altitude Ignition of a Turbojet Combustor, Heat Transfer Engineering, vol. 32, no. 11–12, pp. 949–956, 2011.
  • Fodemski, T.R., and Gorecki, G., The Particle Image Velocimetry Experimental Study of Flame Extinction in Standard Square Flammability Column Resulting From Stretching, Heat Transfer Engineering, vol. 32, no. 2, pp. 109–126, 2011.
  • Wang, Q., Chen, G., Chen, Q., and Zeng, M., Review of Improvements on Shell-and-Tube Heat Exchangers With Helical Baffles, Heat Transfer Engineering, vol. 31, no. 10, pp. 836–853, 2010.
  • Wang, Q.W., Yang, J., Zeng, M., and Wang, G., Three-Dimensional Numerical study of Natural Convection in an Inclined Porous Cavity with Time Sinusoidal Oscillating Boundary Conditions, International Journal of Heat and Fluid Flow, vol. 31, no. 1, pp. 70–82, 2010.
  • Zeng, M., Xue, F., Zhu, H., Wang, Q., and Zhan, R., Numerical Simulation of Unsteady 3D Air-Water Turbulent Flow in a Water Cannon, Progress in Computational Fluid Dynamics, vol. 11, no. 3–4, pp. 189–197, 2011.
  • Lin, M., Wang, Q.W., and Guo, Z.X., A Simple Method for Pedicting Bulk Temperature From Tube Wall Temperature With Uniform Outside Wall Heat Flux, International Communications in Heat and Mass Transfer, vol. 39, no. 5, pp. 582–586, 2012.
  • Mayinger, F., and Feldmann, O., Optical Measurements: Techniques and Applications, Springer, Berlin, Germany, 2001.
  • Eckbreth, A.C., Laser Diagnostics for Combustion Temperature and Species, CRC Press, Boca Raton, FL, 1996.
  • Yu, J., and Zhang, M., Modeling and Experiments for Heat Transfer Process in Pulverized Coal-Firing Furnace With Two-Dimensional Radiation Characteristics, Heat Transfer Engineering, vol. 30, no. 12, pp. 988–997, 2009.
  • Kohse-Hoinghaus, K., and Jeffries, J.B., Applied Combustion Diagnostics, Taylor & Francis, New York, NY, 2002.
  • Barlow, R.S., Laser Diagnostics and Their Interplay with Computations to Understand Turbulent Combustion, Proceedings of the Combustion Institute, vol. 31, no. 1, pp. 49–75, 2007.
  • Bray, K.N. C., The Challenge of Turbulent Combustion, Proceedings of the Combustion Institute, vol. 26, no. 1, pp. 1–26, 1996.
  • Ma, L., and Cai, W., Numerical Investigation of Hyperspectral Tomography for Simultaneous Temperature and Concentration Imaging, Applied Optics, vol. 47, no. 21, pp. 3751–3759, 2008.
  • Ma, L., Cai, W., Caswell, A.W., Kraetschmer, T., Sanders, S.T., Roy, S., and Gord, J.R., Tomographic Imaging of Temperature and Chemical Species Based on Hyperspectral Absorption Spectroscopy, Optics Express, vol. 17, no. 10, pp. 8602–8613, 2009.
  • Cai, W., and Ma, L., Hyperspectral Tomography Based on Proper Orthogonal Decomposition as Motivated by Imaging Diagnostics of Unsteady Reactive Flows, Applied Optics, vol. 49, no. 4, pp. 601–610, 2010.
  • Ma, L., Li, X., Sanders, S.T., Caswell, A.W., Roy, S., Plemmons, D.H., and Gord, J.R., 50-kHz-Rate 2D Imaging of Temperature and H2O Concentration at the Exhaust Plane of a J85 Engine Using Hyperspectral Tomography, Optics Express, vol. 21, no. 1, pp. 1152–1162, 2013.
  • Kranendonk, L.A., Walewski, J.W., Kim, T., and Sanders, S.T., Wavelength-Agile Sensor Applied for HCCI Engine Measurements, Proceedings of the Combustion Institute, vol. 30, no. 1, pp. 1619–1627, 2005.
  • Walewski, J.W., and Sanders, S.T., Rapid Wavelength Scans Over One Octave and Application to Laser-induced Fluorescence, Optics Letters, vol. 30, no. 18, pp. 2394–2396, 2005.
  • Cai, W., Li, X., Li, F., and Ma, L., Numerical and Experimental Validation of a Three-Dimensional Combustion Diagnostic Based on Tomographic Cheamiluminescence, Optics Express, vol. 21, no. 6, pp. 7050–7064, 2013.
  • Li, F., Yu, X., Gu, H., Li, Z., Zhao, Y., Ma, L., Chen, L., and Chang, X., Simultaneous Measurements of Multiple Flow Parameters for Scramjet Characterization Using Tunable Diode-laser Sensors, Applied Optics, vol. 50, no. 36, pp. 6697–6707, 2012.
  • Cai, W., Ewing, D.J., and Ma, L., Application of Simulated Annealing for Multispectral Tomography, Computer Physics Communications, vol. 179, no. 4, p. 250, 2008.
  • Arroyo, M.P., and Hanson, R.K., Absorption Measurements of Water-Vapor Concentration, Temperature, and Line-Shape Parameters Using a Tunable Ingaasp Diode-Laser, Applied Optics, vol. 32, no. 30, pp. 6104–6116, 1993.
  • Cai, W., Ewing, D.J., and Ma, L., Investigation of Temperature Parallel Simulated Annealing for Optimizing Continuous Functions with Application to Hyperspectral Tomography, Applied Mathematics and Computation, vol. 217, no. 12, pp. 575–5767, 2011.
  • An, X., Kraetschmer, T., Takami, K., Sanders, S.T., Ma, L., Cai, W., Li, X., Roy, S., and Gord, J.R., Validation of Temperature Imaging by H2O Absorption Spectroscopy Using Hyperspectral Tomography in Controlled Experiments, Applied Optics, vol. 50, no. 4, pp. A29–A37, 2011.
  • Savage, K.P., Beitel, G.R., Hiers, R.S., and Schulz, R.J., Test Capabilities in the AEDC/UTSI J85 Turbojet Test Stand, 48th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit, Atlanta, GA, 2007.
  • Ma, L., High Speed Imaging in Reactive Flows Using Hyperspectral Tomography and Photodissociation Spectroscopy, 2010 LACSEA Conference, San Diego, CA, February 3, 2010.
  • Wang, W.-C., Hung, C.-I., and Chao, Y.-C., Numerical and Experimental Studies of Mixing Enhancement and Flame Stabilization in a Meso-Scale TPV Combustor With a Porous-Medium Injector and a Heat-Regeneration Reverse Tube, Heat Transfer Engineering, vol. 35, no. 4, pp. 336–357, 2014.
  • Cai, W., and Ma, L., Applications of Critical Temperature in Minimizing Functions of Continuous Variables With Simulated Annealing Algorithm, Computer Physics Communications, vol. 181, no. 1, pp. 11–16, 2010.
  • Li, X., and Ma, L., Minimizing Binary Functions with Simulated Annealing Algorithm With Applications to Binary Tomography, Computer Physics Communications, vol. 183, no. 2, pp. 309–315, 2012.
  • Cai, W., Wickersham, A.J., and Ma, L., Three-Dimensional Combustion Diagnostics Based on Computed Tomography of Chemiluminescence, 51st AIAA Aerospace Sciences Meeting Including the New Horizons Forum and Aerospace Exposition, AIAA 2013-0557, Dallas Region, TX, January 7–10, 2013.
  • Li, X., and Ma, L., Three-Dimensional Measurements of Turbulent Jet Flames at kHz Rate Based on Tomographic Chemiluminescence, 2014 AIAA SciTech Meeting, National Harbor, MD, January 13–17, 2014.
  • Das, S.K., Issues of Heat and Mass Transfer in Fuel Cell Technology, Heat Transfer Engineering, vol. 30, no. 9, pp. 689–690, 2009.
  • Nemec, T., Marsik, F., and Mican, O., The Characteristic Thickness of Polymer Electrolyte Membrane and the Efficiency of Fuel Cell, Heat Transfer Engineering, vol. 30, no. 7, pp. 574–581, 2009.
  • Sasmito, A.P., Birgersson, E., and Mujumdar, A.S., Numerical Investigation of Liquid Water Cooling for a Proton Exchange Membrane Fuel Cell Stack, Heat Transfer Engineering, vol. 32, no. 2, pp. 151–167, 2011.
  • Joachin, H., Kaunb, T.D., Zaghibc, K., and Prakash, J., Electrochemical and Thermal Studies of LiFePO4 Cathode in Lithium-Ion Cells, Journal of the Electrochemical Society, vol. 6, no. 25, pp. 11–16, 2008.
  • Zeng, M., Yuan, J., Zhang, J., Sunden, B., and Wang, Q., Investigation of Thermal Radiation Effects on Solid Oxide Fuel Cell Performance by a Comprehensive Model, Journal of Power Sources, vol. 206, no. 1, pp. 185–196, 2012.
  • Pals, C.R., and Newman, J., Thermal Modeling of the Lithium/Polymer Battery I. Discharge Behavior of a Single Cell, Journal of the Electrochemical Society, vol. 142, no. 10, pp. 3274–3281, 1995.
  • Doyle, M., Newman, J., Gozdz, A.S., Schmutz, C.N., and Tarascon, J.M., Comparison of Modeling Predictions with Experimental Data from Plastic Lithium Ion Cells, Journal of the Electrochemical Society, vol. 143, no. 6, pp. 1890–1903, 1996.
  • Hatchard, T.D., MacNeil, D.D., Basu, A., and Dahn, J.R., Thermal Model of Cylindrical and Prismatic Lithium-ion Cells, Journal of the Electrochemical Society, vol. 148, no. 7, pp. A755–A761, 2001.
  • Newman, J., and Tiedemann, W., Temperature Rise in a Battery Module with Constant Heat-generation, Journal of the Electrochemical Society, vol. 142, no. 4, pp. 1054–1057, 1995.
  • Jeon, D.H., and Baek, S.M., Thermal Modeling of Cylindrical Lithium Ion Battery During Discharge Cycle, Energy Conversion and Management, vol. 52, no. 8–9, pp. 2973–2981, 2011.
  • Yeow, K., Teng, H., Thelliez, M., and Tan, E., 3D Thermal Analysis of Li-Ion Battery Cells with Various Geometries and Cooling Conditions Using Abaqus, 2012 SIMULIA Community Conference, Providence, RI, May 15–17, 2012.
  • Pals, C.R., and Newman, J., Thermal Modeling of the Lithium/Polymer Battery II. Temperature Profiles in a Cell Stack, Journal of the Electrochemical Society, vol. 142, no. 10, pp. 3282–3288, 1995.
  • Sun, H.G., Wang, X.H., Tossan, B., and Dixon, R., Three-dimensional Thermal Modeling of a Lithium-ion Battery Pack, Journal of Power Sources, vol. 206, no. 1, pp. 349–356, 2012.
  • Zhu, C., Li, X.H., Song, L.J., and Xiang, L.M., Development of a Theoretically Based Thermal Model for Lithium Ion Battery Pack, Journal of Power Sources, vol. 223, pp. 155–164, 2013.
  • Mahamud, R., and Park, C., Reciprocating Air Flow for Li-Ion Battery Thermal Management to Improve Temperature Uniformity, Journal of Power Sources, vol. 196, no. 13, pp. 5685–5696, 2011.
  • Duan, X., and Naterer, G.F., Heat Transfer in Phase Change Materials for Thermal Management of Electric Vehicle Battery Modules, International Journal of Heat and Mass Transfer, vol. 53, no. 23–24, pp. 5176–5182, 2010.
  • Kim, G.-H., Gonder, J., Lustbader, J., and Pesaran, A., Thermal Management of Batteries in Advanced Vehicles Using Phase-Change Materials, The World Electric Vehicle Journal, vol. 2, no. 2, pp. 46–59, 2008.
  • Khateeb, S.A., Amiruddin, S., Farid, M., Selman, J.R., and Al-Hallaj, S., Thermal Management of Li-Ion Battery With Phase Change Material for Electric Scooters: Experimental Validation, Journal of Power Sources, vol. 142, no. 1–2, pp. 345–353, 2005.
  • Taha, A., Ewing, D.J., Zhao, Y., and Ma, L., Numerical Investigation of Phase Change Materials for Thermal Systems, SAE International Journal of Materials and Manufacturing, vol. 2, no. 1, pp. 85–91, 2009.
  • Park, C.A., and Jaura, A. K., Dynamic Thermal Model of Li-Ion Battery for Predictive Behavior in Hybrid and Fuel Cell Vehicles, SAE Transactions, Journal of Engines, vol. 112, no. 3, pp. 1835–1842, 2003.
  • He, F., Ewing, D., Finn, J., Wagner, J., and Ma, L., Thermal Management of Vehicular Payloads Using Nanofluid Augmented Coolant Rail—Modeling and Analysis, SAE International Journal of Alternative Powertrains, vol. 2, no. 1, pp. 174–203, 2013.
  • He, F., Li, X., and Ma, L., Thermal Management of Battery Module Consisting of Multiple Li-ion Cells for Hybrid Power Systems, 52nd AIAA Aerospace Sciences Meeting, National Harbor, MD, January 13–17, 2014.
  • Li, X., He, F., and Ma, L., Thermal Management of Cylindrical Batteries Investigated Using Wind Tunnel Testing and CFD Simulation, Journal of Power Sources, vol. 238, no. 2013, pp. 395–402, 2013.
  • Sun, X., Ewing, D., and Ma, L., A Laser Extinction Based Sensor for Simultaneous Droplet Size and Vapor Measurement, Particuology, vol. 10, no. 1, pp. 9–16, 2012.
  • Ma, L., Sanders, S.T., Jeffries, J.B., and Hanson, R.K., Monitoring and Control of a Pulse Detonation Engine Using a Diode-Laser Fuel Concentration and Temperature Sensor, Proceedings of the Combustion Institute, vol. 29, no. 1, pp. 161–166, 2002.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.