HITEMP, the high-temperature molecular spectroscopic database. A new molecular spectroscopic database for high-temperature modeling of the spectra of molecules in the gas phase is described. This database, called HITEMP, is analogous to the HITRAN database but encompasses many more bands and transitions than HITRAN for the absorbers H2O, CO2, CO, NO, and OH. HITEMP provides users with a powerful tool for a great many applications: astrophysics, planetary and stellar atmospheres, industrial processes, surveillance, non-local thermodynamic equilibrium problems, and investigating molecular interactions, to name a few. The sources and implementation of the spectroscopic parameters incorporated into HITEMP are discussed.

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  1. Ma, Li; Nmira, Fatiha; Consalvi, Jean-Louis: Exploring subgrid-scale variance models in LES of lab-scale methane fire plumes (2021)
  2. Mukut, Khaled Mosharraf; Roy, Somesh P.: Effect of (\mathrmO_2) concentration in ambient mixture and multiphase radiation on pollutant formation in ECN spray-a (2020)
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  4. Osama, A. Marzouk: Radiant heat transfer in nitrogen-free combustion environments (2018)
  5. Adamczyk, Wojciech P.: Application of the numerical techniques for modelling fluidization process within industrial scale boilers (2017)
  6. Ingo P. Waldmann, Giovanna Tinetti, Marco Rocchetto, Emma J. Barton, Sergey N. Yurchenko, Jonathan Tennyson: Tau-REx I: A next generation retrieval code for exoplanetary atmospheres (2014) arXiv
  7. Zhao, X. Y.; Haworth, D. C.; Ren, T.; Modest, M. F.: A transported probability density function/photon Monte Carlo method for high-temperature oxy-natural gas combustion with spectral gas and wall radiation (2013)
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  10. He, Jing; Cheng, Way Lee; Buckius, Richard O.: Wide band cumulative absorption coefficient distribution model for overlapping absorption in H(_2)O and CO(_2) mixtures (2008)