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rmcdermo authored Oct 28, 2024
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# 5. References

1. Sung, K., Falkenstein-Smith, R. and Hamins, A., *Velocity and Temperature Structure of Medium-Scale Pool Fires*, NIST Technical Note 2162, National Institute of Standards and Technology, Gaithersburg, MD, 2021-06-22 2021, <https://10.6028/nist.tn.2162>; see also Sung, K., Falkenstein-Smith, R. and Hamins, A., *The Global and Local Structure of Medium-Scale Pool Fires*, NIST Technical Note 2162, Rev.1, National Institute of Standards and Technology, Gaithersburg, MD, 2024, <https://10.6028/NIST.TN.2162r1>.
1. Sung, K., Falkenstein-Smith, R. and Hamins, A., *Velocity and Temperature Structure of Medium-Scale Pool Fires*, NIST Technical Note 2162, National Institute of Standards and Technology, Gaithersburg, MD, 2021-06-22 2021, <https://doi.org/10.6028/nist.tn.2162>; see also Sung, K., Falkenstein-Smith, R. and Hamins, A., *The Global and Local Structure of Medium-Scale Pool Fires*, NIST Technical Note 2162, Rev.1, National Institute of Standards and Technology, Gaithersburg, MD, 2024, <https://doi.org/10.6028/NIST.TN.2162r1>.

2. Sung, K., Chen, J., Bundy, M., Fernandez, M. and Hamins, A., *The Thermal Character of a 1 m Methanol Pool Fire*, NIST Technical Note 2083, Rev.1, National Institute of Standards and Technology, Gaithersburg, MD, June 2021a, <https://doi.org/10.6028/NIST.TN.2083r1>, also see Sung, K., Chen, J., Bundy, M. and Hamins, A., The Characteristics of a 1 m Methanol Pool Fire, *Fire Safety Journal*, ***120***, 103121, (2021b), <https://doi.org/10.1016/j.firesaf.2020.103121>.

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9. Kim, S. C., Lee, K. Y. and Hamins, A., Energy Balance in Medium-Scale Methanol, Ethanol, and Acetone Pool Fires, *Fire Safety Journal*, ***107***, 44-53, (2019), <https://doi.org/10.1016/j.firesaf.2019.01.004>.

10. Wang, Z., Tam, W. C., Chen, J., Lee, K. Y. and Hamins, A., Thin Filament Pyrometry Field Measurements in a Medium-Scale Pool Fire, *Fire Technology*, ***56***, 837-861, (2020), <https://10.1007/s10694-019-00906-9>.
10. Wang, Z., Tam, W. C., Chen, J., Lee, K. Y. and Hamins, A., Thin Filament Pyrometry Field Measurements in a Medium-Scale Pool Fire, *Fire Technology*, ***56***, 837-861, (2020), <https://doi.org/10.1007/s10694-019-00906-9>.

11. Weckman, E. J. (1987). *The Structure of the Flowfield near the Base of a Medium-Scale Pool Fire.* (Ph.D. Thesis). University of Waterloo.

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19. Bryant, R. A. and Bundy, M. F., *The NIST 20 MW Calorimetry Measurement System for Large-Fire Research*, NIST Technical Note 2077, National Institute of Standards and Technology, Gaithersburg, MD, December 2019, <https://doi.org/10.6028/NIST.TN.2077>.

20. Mulholland, G. W. and Croarkin, C., Specific Extinction Coefficient of Flame Generated Smoke, *Fire and Materials*, ***24***, 227-230, (2000), <http://doi.org/10.1002/1099-1018(200009/10)24:5>\<227::aid-fam742\>3.0.co;2-9.
20. Mulholland, G. W. and Croarkin, C., Specific Extinction Coefficient of Flame Generated Smoke, *Fire and Materials*, ***24***, 227-230, (2000), <https://doi.org/10.1002/1099-1018(200009/10)24:5%3C227::AID-FAM742%3E3.0.CO;2-9>.

21. Pagni, P. J., Pool Fire Vortex Shedding Frequencies, In: Some Unanswered Questions in Fluid Mechanics, Applied Mechanics Reviews, (1990), <https://10.1115/1.3119167>.
21. Pagni, P. J., Pool Fire Vortex Shedding Frequencies, In: Some Unanswered Questions in Fluid Mechanics, Applied Mechanics Reviews, (1990), <https://doi.org/10.1115/1.3119167>.

22. Shaddix, C. R., Correcting Thermocouple Measurements for Radiation Loss: A Critical Review, American Society of Mechanical Engineers, New York, NY (US); Sandia National Labs., Livermore, CA (US), 1999.

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