Siddhartha Banerjee, Ph.D.

Affiliations: 
2011 University of Wisconsin, Madison, Madison, WI 
Area:
Mechanical Engineering
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"Siddhartha Banerjee"

Parents

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Christopher J. Rutland grad student 2011 UW Madison
 (Study of low temperature combustion using large eddy simulations.)
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Publications

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Banerjee S, Naber C, Willcox M, et al. (2017) High-Performance Computing and Analysis-Led Development of High Efficiency Dilute Opposed Piston Gasoline Engine Journal of Engineering For Gas Turbines and Power-Transactions of the Asme. 140: 102803
Banerjee S, Rutland CJ. (2015) Study on spray induced turbulence using large eddy simulations Atomization and Sprays. 25: 285-316
Hu B, Banerjee S, Liu K, et al. (2015) Large eddy simulation of a turbulent non-reacting spray jet Asme 2015 Internal Combustion Engine Division Fall Technical Conference, Icef 2015. 2
Senecal PK, Mitra S, Pomraning E, et al. (2014) Modeling fuel spray vapor distribution with large eddy simulation of multiple realizations Asme 2014 Internal Combustion Engine Division Fall Technical Conference, Icef 2014. 2
Senecal PK, Pomraning E, Xue Q, et al. (2014) Large eddy simulation of vaporizing sprays considering multi-injection averaging and grid-convergent mesh resolution Journal of Engineering For Gas Turbines and Power. 136
Senecal PK, Pomraning E, Xue Q, et al. (2013) Large eddy simulation of vaporizing sprays considering multiinjection averaging and grid-convergent mesh resolution Asme 2013 Internal Combustion Engine Division Fall Technical Conference, Icef 2013. 2
Banerjee S, Liang T, Rutland CJ, et al. (2010) Validation of an les multi mode combustion model for diesel combustion Sae Technical Papers
Banerjee S, Bharadwaj N, Rutland CJ. (2009) Investigation of in-cylinder mixing using large Eddy simulation models for LTC diesel applications Proceedings of the Spring Technical Conference of the Asme Internal Combustion Engine Division. 521-527
Zheng M, Banerjee S. (2009) Diesel oxidation catalyst and particulate filter modeling in active – Flow configurations Applied Thermal Engineering. 29: 3021-3035
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