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Numerical investigation of the flameless combustion mode of solid fuels

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

Abstract

In this chapter, computational fluid dynamics (CFD) modeling of solid fuels combustion in the moderate- or intense-low-oxygen dilution (MILD) regime is presented. The general description of the pulverized solid fuels conversion is provided, and treatment of fuel conversion processes and typically used models to represent them is provided. Specifically, heating, drying, devolatilization, and char oxidation are discussed. This is followed by a discussion of modeling the turbulence-chemistry interaction in the gaseous phase and the formation and reduction of nitrogen oxides. The chapter emphasizes the differences between approaches used in the modeling of conventional and MILD combustion systems. The advantages and drawbacks of the currently available models are pointed out. References to CFD studies of solid fuels combustion in the MILD regime are provided, which include both small-scale experimental facilities and industrial-scale combustion chambers and boilers.

Original languageEnglish
Title of host publicationFundamentals of Low Emission Flameless Combustion and Its Applications
PublisherElsevier
Pages361-376
Number of pages16
ISBN (Electronic)9780323852449
ISBN (Print)9780323903462
DOIs
Publication statusPublished - 1 Jan 2022

Keywords

  • CFD modeling
  • Flameless combustion
  • MILD combustion
  • Multiphase reactive flows
  • Solid fuels

ASJC Scopus subject areas

  • General Energy

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