Title of article
Heat transfer characteristics of a ceramic honeycomb regenerator for an oxy-fuel combustion furnace
Author/Authors
Kang، نويسنده , , Kwangu and Hong، نويسنده , , Sung-Kook and Noh، نويسنده , , Dong-Soon and Ryou، نويسنده , , Hong-Sun، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
7
From page
494
To page
500
Abstract
Regenerative furnaces have been widely used to reduce waste heat, and to achieve constant temperature distribution in a furnace. However, direct application of the regenerative system for an air–fuel combustion furnace to an oxy-fuel combustion furnace is not possible, because of much higher volume flow rate in air–fuel combustion than the volume flow rate in oxy-fuel combustion. We therefore experimentally and numerically study the heat transfer performance of a ceramic honeycomb regenerator in oxy-fuel combustion. The pressures and temperatures in a regenerator are measured, and compared with numerical simulation that is calculated by using the CFD code, FLUENT, resulting in agreement. Numerical simulation shows that bypassing of ∼40% of the exhaust gas is essential, to prevent saturation of the honeycomb regenerator. Analysis of experimental data presents that a longer honeycomb and shorter switching time show better efficiency.
Keywords
Regenerative system , Temperature efficiency , Honeycomb , heat transfer , Oxy-combustion
Journal title
Applied Thermal Engineering
Serial Year
2014
Journal title
Applied Thermal Engineering
Record number
1907644
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