Dale R. Tree

Affiliations: 
Brigham Young University, Provo, UT, United States 
Area:
Mechanical Engineering, Petroleum Engineering
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"Dale Tree"

Children

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William B. Cooley grad student 2000 BYU
Kenth I. Svensson grad student 2005 BYU
Kyle F. Larsen grad student 2007 BYU
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Publications

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Stimpson CK, Chamberlain S, Tree DR. (2013) Pulverized-coal deposits collected under staged and unstaged oxy-fuel conditions for four U.S. coals Combustion Science and Technology. 185: 1098-1117
Chamberlain S, Reeder T, Stimpson CK, et al. (2013) A comparison of sulfur and chlorine gas species in pulverized-coal, air- and oxy-combustion Combustion and Flame. 160: 2529-2539
Stimpson CK, Brunner DR, Reeder TA, et al. (2013) Analysis of deposits collected under staged conditions in a pulverized coal reactor for eight US coals Applied Energy. 110: 65-72
Cundick D, Maynes D, Moore T, et al. (2012) In Situ Characterization of Ash Thermal Conductivity for Three Coal Types Formed Under Oxidizing and Reducing Conditions in a Laboratory Furnace Journal of Thermal Science and Engineering Applications. 4
Salt T, Tree DR, Kim C. (2012) Oxygen enhanced exhaust gas recirculation for compression ignition engines Journal of Engineering For Gas Turbines and Power. 134
MacKrory AJ, Tree DR. (2012) Measurement of nitrogen evolution in a staged oxy-combustion coal flame Fuel. 93: 298-304
Draper TS, Zeltner D, Tree DR, et al. (2012) Two-dimensional flame temperature and emissivity measurements of pulverized oxy-coal flames Applied Energy. 95: 38-44
Moore TJ, Cundick DP, Jones MR, et al. (2011) In situ measurements of the spectral emittance of coal ash deposits Journal of Quantitative Spectroscopy and Radiative Transfer. 112: 1978-1986
Moore TJ, Jones MR, Tree DR, et al. (2011) An experimental method for making spectral emittance and surface temperature measurements of opaque surfaces Journal of Quantitative Spectroscopy and Radiative Transfer. 112: 1191-1196
MacKrory AJ, Tree DR. (2009) Predictions of NOX in a laboratory pulverized coal combustor operating under air and oxy-fuel conditions Combustion Science and Technology. 181: 1413-1430
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