Parametric and model uncertainties induced by reduced order chemical mechanisms for biogas combustion

Author:

Freitas Rodolfo S.M.ORCID,Rochinha Fernando A.ORCID,Mira DanielORCID,Jiang XiORCID

Funder

European Union’s Horizon 2020 Programme

Brazilian Ministry of Science, Technology and Innovation

Rede Nacional de Pesquisa

Publisher

Elsevier BV

Subject

Applied Mathematics,Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry

Reference58 articles.

1. Abadi Martín, Agarwal Ashish, Barham Paul, Brevdo Eugene, Chen Zhifeng, Citro Craig, Corrado Greg S., Davis Andy, Dean Jeffrey, Devin Matthieu, Ghemawat Sanjay, Goodfellow Ian, Harp Andrew, Irving , Isard Michael, Jia Yangqing, Jozefowicz Rafal, Kaiser Lukasz, Kudlur Manjunath, Levenberg , Mané Dandelion, Monga Rajat, Moore Sherry, Murray Derek, Olah Chris, Schuster Mike, Shlens Jonathon, Steiner Benoit, Sutskever Ilya, Talwar Kunal, Tucker Paul, Vanhoucke Vincent, Vasudevan Vijay, Viégas Fernanda, Vinyals Oriol, Warden Pete, Wattenberg Martin, Wicke Martin, Yu Yuan, Zheng Xiaoqiang, 2015. TensorFlow: Large-scale machine learning on heterogeneous systems, 2015. Software available from tensorflow.org.

2. Acampora Luigi, Marra Francesco, Martelli Emanuele, 2016. Comparison of different CH4-air combustion mechanisms in a perfectly stirred reactor with oscillating residence times close to extinction. Combust. Sci. Technol. 188, 707–718.

3. LES combustion modeling using the eulerian stochastic field method coupled with tabulated chemistry;Avdic;Combust. Flame,2017

4. Bibrzycki, J., Poinsot, T., 2010. Reduced chemical kinetic mechanisms for methane combustion in O2/N2 and O2/CO2 atmosphere. Working note ECCOMET WN/CFD/10 17.

5. Examination of simplified mechanisms of CH4 combustion in N2/O2 and CO2/O2 atmosphere using mathematical modeling;Bibrzycki;Arch. Combust.,2011

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