Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Non-Premixed CH4 Combustion in a Porous Medium

View through CrossRef
Combustion process is the major contributor to the air pollution, such as CO, unburned hydrocarbon, soot and NOx, etc. Porous media can be a good candidate for improving the combustion efficiency and reducing pollution formation. Premixed combustion has been extensively investigated in the literature, experimentally and computationally. However, investigation of non-premixed combustion in porous media is limited in the open literature, which is the topic of this paper. The present work deals with the numerical modeling of methane/air non-premixed combustion in porous media. Physical problem that is considered here is fuel jet which is injected to the air in free flame case and injected into a porous medium, in the porous medium combustion case. The flow is assumed turbulent and standard k-ε model with standard wall functions is used in the simulation. The solid porous structure is assumed to be composed of alumina fiber material with temperature dependent heat conductivity. Discrete Ordinate method is used to solve radiative transport equations. The governing equations are solved using finite volume method. The results show that the combustion in porous media has superior combustion efficiency and significantly lower NOx and CO emissions compare to the free flame. This is due to the lower maximum temperature in porous media combustion. In comparison with the free flame case where the combustion zone is narrow and long, the results shows the combustion zone in porous media is shorter in axial and wider in radial direction.
Title: Non-Premixed CH4 Combustion in a Porous Medium
Description:
Combustion process is the major contributor to the air pollution, such as CO, unburned hydrocarbon, soot and NOx, etc.
Porous media can be a good candidate for improving the combustion efficiency and reducing pollution formation.
Premixed combustion has been extensively investigated in the literature, experimentally and computationally.
However, investigation of non-premixed combustion in porous media is limited in the open literature, which is the topic of this paper.
The present work deals with the numerical modeling of methane/air non-premixed combustion in porous media.
Physical problem that is considered here is fuel jet which is injected to the air in free flame case and injected into a porous medium, in the porous medium combustion case.
The flow is assumed turbulent and standard k-ε model with standard wall functions is used in the simulation.
The solid porous structure is assumed to be composed of alumina fiber material with temperature dependent heat conductivity.
Discrete Ordinate method is used to solve radiative transport equations.
The governing equations are solved using finite volume method.
The results show that the combustion in porous media has superior combustion efficiency and significantly lower NOx and CO emissions compare to the free flame.
This is due to the lower maximum temperature in porous media combustion.
In comparison with the free flame case where the combustion zone is narrow and long, the results shows the combustion zone in porous media is shorter in axial and wider in radial direction.

Related Results

Variability of methane content in bottom waters of 46 African lakes
Variability of methane content in bottom waters of 46 African lakes
Abstract. Methane (CH4) accumulates in bottom waters of lakes, however, the extent and drivers of inter-lake variation in bottom-water CH4 concentrations are poorly understood and ...
Isotopic characterization of methane emissions in Malaga, Spain
Isotopic characterization of methane emissions in Malaga, Spain
The reduction of methane emissions from energy, agriculture, and waste sectors presents a significant opportunity for making near-term strides in climate mitigation. To accomplish ...
Methane Flux Dynamics in a California Oak Savanna
Methane Flux Dynamics in a California Oak Savanna
Methane (CH4) is a potent greenhouse gas, yet the role of trees in the global CH4 budget remains uncertain. While some studies report CH4 emissions from wetland and certain upland ...
Gridded maps of geological methane emissions and their isotopic signature
Gridded maps of geological methane emissions and their isotopic signature
Abstract. Methane (CH4) is a powerful greenhouse gas, whose natural and anthropogenic emissions contribute ~20% to global radiative forcing. Its atmospheric budget (sources and sin...
Experimental Study on Characteristics of Conical Spray and Combustion for Medium Speed D.I. Diesel Engine
Experimental Study on Characteristics of Conical Spray and Combustion for Medium Speed D.I. Diesel Engine
<div class="htmlview paragraph">This paper inverstigates a new way of conical spray for medium speed D. I. diesel engine, with which three different construction injectors we...
Study on Anatomycal Structure of Watergum Wood (<i>Syzygium </i>sp.)
Study on Anatomycal Structure of Watergum Wood (<i>Syzygium </i>sp.)
<!--[if gte mso 9]><xml> <w:WordDocument> <w:View>Normal</w:View> <w:Zoom>0</w:Zoom> <w:TrackMoves /> <w:TrackFormatting /> &l...
Variability of tree methane emissions across regions of the Amazon rainforest
Variability of tree methane emissions across regions of the Amazon rainforest
Trees are recently understood to emit large quantities of CH4 through their stems, particularly in tropical wetland environments. There are still large uncertainties of the process...

Back to Top